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What Are Quarks? | Radioactivity | Physics | FuseSchool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, an...
published: 25 Jan 2013
-
What Are Quarks? Explained In 1 Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there a...
published: 09 Dec 2022
-
Quarks Explained in Four Minutes - Physics Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
published: 26 Jun 2015
-
Quarks: The Miracle That Saved Particle Physics
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Sam Lutfi, Nicholas Smith, D.A. Noe, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Patrick D. Ashmore, Tim Curwick, charles george, Kevin Bealer, Chris Peters
----------
Looking for SciShow elsewhere on the...
published: 19 Jul 2018
-
Could Quark Stars be the Engines of Self-Replicating Strange Matter?
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
→ Support our research: https://www.coolworldslab.com/support
→ Get merch: https://teespring.com/stores/cool-worlds-store
→ Check out our podcast: www.youtube.com/@CoolWorldsPodcast
THANK-YOU to D. Smith, M. Sloan, L. Sanborn, C. Bottaccini, D. Daughaday, ...
published: 10 Dec 2023
-
What’s the smallest thing in the universe? - Jonathan Butterworth
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leo...
published: 15 Nov 2018
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How to make Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
published: 31 Mar 2018
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What Makes The Strong Force Strong?
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space Time Discord!
https://www.patreon.com/pbsspacetime
Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
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Sign up for the mailing list to get episode notifications and hear special announcements!
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Search the Entire Space Tim...
published: 24 Aug 2022
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2 Subatomic Stories: Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
published: 15 Apr 2020
-
Did AI Prove Our Proton Model WRONG?
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space Time Discord!
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The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=...
published: 21 Jun 2023
3:18
What Are Quarks? | Radioactivity | Physics | FuseSchool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to proto...
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you.
These videos can be used in a flipped classroom model or as a revision aid.
Find all of our Chemistry videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlReKGMVfUt6YuNQsO0bqSMV
Find all of our Biology videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlQYSpKryVcEr3ERup5SxHl0
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Follow us: http://www.youtube.com/fuseschool
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This is an Open Educational Resource. If you would like to use the video, please contact us:
[email protected]
https://wn.com/What_Are_Quarks_|_Radioactivity_|_Physics_|_Fuseschool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you.
These videos can be used in a flipped classroom model or as a revision aid.
Find all of our Chemistry videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlReKGMVfUt6YuNQsO0bqSMV
Find all of our Biology videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlQYSpKryVcEr3ERup5SxHl0
Find all of our Physics videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlTWm6Sr5uN2Uv5TXHiZUq8b
Find all of our Maths videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlTKBNbHH5u1SNnsrOaacKLu
Instagram: https://www.instagram.com/fuseschool/
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Twitter: https://twitter.com/fuseSchool
Access a deeper Learning Experience in the FuseSchool platform and app: www.fuseschool.org
Follow us: http://www.youtube.com/fuseschool
Befriend us: http://www.facebook.com/fuseschool
This is an Open Educational Resource. If you would like to use the video, please contact us:
[email protected]
- published: 25 Jan 2013
- views: 630326
0:53
What Are Quarks? Explained In 1 Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electr...
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there are also "charm", "top" and "bottom" quarks.
Quarks combine to form composite particles called hadrons, the most stable of which are protons and neutrons, the components of atomic nuclei. All commonly observable matter comprises of quarks, down quarks, and electrons.
Owing to a phenomenon known as color confinement, quarks are never found in isolation; they can be found only within hadrons, which include baryons (such as protons and neutrons) and mesons, or in quark–gluon plasmas. For this reason, much of what is known about quarks has been drawn from observations of hadrons.
For every quark flavor, there is a corresponding type of antiparticle, known as an antiquark, that differs from the quark only in that some of its properties (such as the electric charge) have equal magnitude but opposite signs.
Video Editor: Team 121 Creators (https://bit.ly/team121x)
Narration: Sidhart Viyapu (https://bit.ly/sidvoice)
Project Head: Rajkumar Shukla
Production: World Of Science Media (https://theworldofscience.co)
©2022, World Of Science (WOS) Media. All Rights Reserved.
#quarks #particlephysics
-~-~~-~~~-~~-~-
Please watch: "The $1 Trillion Project Of Turning Sahara Green Again! What Could Go Wrong?" - https://youtu.be/mA77Pmwx9r0
-~-~~-~~~-~~-~-
https://wn.com/What_Are_Quarks_Explained_In_1_Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there are also "charm", "top" and "bottom" quarks.
Quarks combine to form composite particles called hadrons, the most stable of which are protons and neutrons, the components of atomic nuclei. All commonly observable matter comprises of quarks, down quarks, and electrons.
Owing to a phenomenon known as color confinement, quarks are never found in isolation; they can be found only within hadrons, which include baryons (such as protons and neutrons) and mesons, or in quark–gluon plasmas. For this reason, much of what is known about quarks has been drawn from observations of hadrons.
For every quark flavor, there is a corresponding type of antiparticle, known as an antiquark, that differs from the quark only in that some of its properties (such as the electric charge) have equal magnitude but opposite signs.
Video Editor: Team 121 Creators (https://bit.ly/team121x)
Narration: Sidhart Viyapu (https://bit.ly/sidvoice)
Project Head: Rajkumar Shukla
Production: World Of Science Media (https://theworldofscience.co)
©2022, World Of Science (WOS) Media. All Rights Reserved.
#quarks #particlephysics
-~-~~-~~~-~~-~-
Please watch: "The $1 Trillion Project Of Turning Sahara Green Again! What Could Go Wrong?" - https://youtu.be/mA77Pmwx9r0
-~-~~-~~~-~~-~-
- published: 09 Dec 2022
- views: 525721
4:19
Quarks Explained in Four Minutes - Physics Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instag...
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
https://wn.com/Quarks_Explained_In_Four_Minutes_Physics_Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
- published: 26 Jun 2015
- views: 1005071
6:34
Quarks: The Miracle That Saved Particle Physics
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the qu...
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Sam Lutfi, Nicholas Smith, D.A. Noe, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Patrick D. Ashmore, Tim Curwick, charles george, Kevin Bealer, Chris Peters
----------
Looking for SciShow elsewhere on the internet?
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Twitter: http://www.twitter.com/scishow
Tumblr: http://scishow.tumblr.com
Instagram: http://instagram.com/thescishow
----------
Sources:
http://hep.phy.syr.edu/~tomasz/PHY771.16Spring/ParticleZooQuarks.pdf
http://laplace.physics.ubc.ca/People/ainwood/Inwood_essay.pdf
http://web.ihep.su/owa/dbserv/hw.part1
https://www.nature.com/articles/160453a0
https://www.nature.com/articles/160855a0
https://www.nature.com/articles/163082a0
https://www.nature.com/articles/161518a0
https://www.annualreviews.org/doi/pdf/10.1146/annurev.nucl.52.050102.090730
http://electron6.phys.utk.edu/phys250/modules/module%206/particle_classification.htm
https://books.google.com/books?id=x1uxCwAAQBAJ&pg=PA225&lpg=PA225#v=onepage&q&f=false
https://www.osti.gov/biblio/4008239
https://journals.aps.org/pr/abstract/10.1103/PhysRev.125.1067
https://books.google.com/books?id=iN7ICgAAQBAJ&pg=PA194&lpg=PA194#v=onepage&q&f=false
http://www.physlink.com/education/askexperts/ae267.cfm
https://link.springer.com/article/10.1007%2FBF02748000
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.12.204
https://www.sciencedirect.com/science/article/pii/S0031916364920013
http://inspirehep.net/record/11881/files/CM-P00042883.pdf
https://www.sciencedirect.com/science/article/pii/0029558265903482
https://arxiv.org/pdf/1412.8681.pdf
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1404
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1408
https://smile.amazon.com/Discoveries-Breakthroughs-20th-Century-Including-Original/dp/037571345X/
https://press.cern/backgrounders/fourth-generation-particles
-------
Images:
https://commons.wikimedia.org/wiki/File:Liquid_hydrogen_bubblechamber.jpg
http://cds.cern.ch/record/39474
http://cds.cern.ch/record/39470
https://commons.wikimedia.org/wiki/File:First_neutrino_observation.jpg
https://commons.wikimedia.org/wiki/File:CERN_UA5_-_ppbar_interaction_at_540GeV.jpg
https://commons.wikimedia.org/wiki/File:SLAC_tunnel_2.jpg
http://cds.cern.ch/record/39453
https://www.videoblocks.com/video/changing-light-numbers-e3quqob
https://www.videoblocks.com/video/day-of-the-month-keyable-calendar-awzioep
https://www.istockphoto.com/vector/beautiful-vector-seamless-pattern-with-mathematical-figures-calculations-and-plots-gm908884642-250351696
https://wn.com/Quarks_The_Miracle_That_Saved_Particle_Physics
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Sam Lutfi, Nicholas Smith, D.A. Noe, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Patrick D. Ashmore, Tim Curwick, charles george, Kevin Bealer, Chris Peters
----------
Looking for SciShow elsewhere on the internet?
Facebook: http://www.facebook.com/scishow
Twitter: http://www.twitter.com/scishow
Tumblr: http://scishow.tumblr.com
Instagram: http://instagram.com/thescishow
----------
Sources:
http://hep.phy.syr.edu/~tomasz/PHY771.16Spring/ParticleZooQuarks.pdf
http://laplace.physics.ubc.ca/People/ainwood/Inwood_essay.pdf
http://web.ihep.su/owa/dbserv/hw.part1
https://www.nature.com/articles/160453a0
https://www.nature.com/articles/160855a0
https://www.nature.com/articles/163082a0
https://www.nature.com/articles/161518a0
https://www.annualreviews.org/doi/pdf/10.1146/annurev.nucl.52.050102.090730
http://electron6.phys.utk.edu/phys250/modules/module%206/particle_classification.htm
https://books.google.com/books?id=x1uxCwAAQBAJ&pg=PA225&lpg=PA225#v=onepage&q&f=false
https://www.osti.gov/biblio/4008239
https://journals.aps.org/pr/abstract/10.1103/PhysRev.125.1067
https://books.google.com/books?id=iN7ICgAAQBAJ&pg=PA194&lpg=PA194#v=onepage&q&f=false
http://www.physlink.com/education/askexperts/ae267.cfm
https://link.springer.com/article/10.1007%2FBF02748000
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.12.204
https://www.sciencedirect.com/science/article/pii/S0031916364920013
http://inspirehep.net/record/11881/files/CM-P00042883.pdf
https://www.sciencedirect.com/science/article/pii/0029558265903482
https://arxiv.org/pdf/1412.8681.pdf
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1404
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1408
https://smile.amazon.com/Discoveries-Breakthroughs-20th-Century-Including-Original/dp/037571345X/
https://press.cern/backgrounders/fourth-generation-particles
-------
Images:
https://commons.wikimedia.org/wiki/File:Liquid_hydrogen_bubblechamber.jpg
http://cds.cern.ch/record/39474
http://cds.cern.ch/record/39470
https://commons.wikimedia.org/wiki/File:First_neutrino_observation.jpg
https://commons.wikimedia.org/wiki/File:CERN_UA5_-_ppbar_interaction_at_540GeV.jpg
https://commons.wikimedia.org/wiki/File:SLAC_tunnel_2.jpg
http://cds.cern.ch/record/39453
https://www.videoblocks.com/video/changing-light-numbers-e3quqob
https://www.videoblocks.com/video/day-of-the-month-keyable-calendar-awzioep
https://www.istockphoto.com/vector/beautiful-vector-seamless-pattern-with-mathematical-figures-calculations-and-plots-gm908884642-250351696
- published: 19 Jul 2018
- views: 681593
25:38
Could Quark Stars be the Engines of Self-Replicating Strange Matter?
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type o...
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
→ Support our research: https://www.coolworldslab.com/support
→ Get merch: https://teespring.com/stores/cool-worlds-store
→ Check out our podcast: www.youtube.com/@CoolWorldsPodcast
THANK-YOU to D. Smith, M. Sloan, L. Sanborn, C. Bottaccini, D. Daughaday, A. Jones, S. Brownlee, N. Kildal, Z. Star, E. West, T. Zajonc, C. Wolfred, L. Skov, G. Benson, A. De Vaal, M. Elliott, B. Daniluk, M. Forbes, S. Vystoropskyi, S. Lee, Z. Danielson, C. Fitzgerald, C. Souter, M. Gillette, T. Jeffcoat, J. Rockett, D. Murphree, T. Donkin, K. Myers, A. Schoen, K. Dabrowski, J. Black, R. Ramezankhani, J. Armstrong, K. Weber, S. Marks, L. Robinson, S. Roulier, B. Smith, J. Cassese, J. Kruger, S. Way, P. Finch, S. Applegate, L. Watson, E. Zahnle, N. Gebben, J. Bergman, E. Dessoi, C. Macdonald, M. Hedlund, P. Kaup, C. Hays, W. Evans, D. Bansal, J. Curtin, J. Sturm, RAND Corp., M. Donovan, N. Corwin, M. Mangione, K. Howard, L. Deacon, G. Metts, G. Genova, R. Provost, B. Sigurjonsson, G. Fullwood, B. Walford, J. Boyd, N. De Haan, J. Gillmer, R. Williams, E. Garland, A. Leishman, A. Phan Le, R. Lovely, M. Spoto, A. Steele, M. Varenka, K. Yarbrough, A. Cornejo, D. Compos, F. Demopoulos, G. Bylinsky, J. Werner, B. Pearson, S. Thayer, T. Edris, A. Harrison, B. Seeley, F. Blood, M. O'Brien, P. Muzyka, E. Loomans, D. Lee, J. Sargent, M. Czirr, F. Krotzer, I. Williams, J. Sattler, J. Smallbon, B. Reese, J. Yoder, O. Shabtay & X. Yao.
REFERENCES
► Drake et al 2002, Is RX J185635-375 a Quark Star?, ApJ 572, 996: https://arxiv.org/abs/astro-ph/0204159
► Truemper et al 2003, The Puzzles of RX J1856.5-3754: Neutron Star or Quark Star?, Nuc Phys B Proc S 132, 560: https://arxiv.org/abs/astro-ph/0312600
► Kareet et al 2006, Evidence for 1122 Hz X-Ray Burst Oscillations from the Neutron-Star X-Ray Transient XTE J1739-285, ApJ 657, L97: https://arxiv.org/abs/astro-ph/0611716
► Chakrabarty 2008, The Spin Distribution of Millisecond X-ray Pulsars, In "A Decade if Accreting Millisecond X-Ray Pulsars", AIP Conf Proc 1068, 67: https://arxiv.org/abs/0809.4031
► Annala et al 2020, Evidence for quark-matter cores in massive neutron stars, Nat Phys 16, 907: https://arxiv.org/abs/1903.09121
► Cherman et al 2009, Bound on the speed of sound from holography, Phys Rev D 80, 066003: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.80.066003
► Ouyed et al 2002, Quark Nova, A&A 390, 39: https://arxiv.org/abs/astro-ph/0105109
► Gell-Mann 1964, A schematic model of baryons and mesons, Phys Lett 8, 214: https://linkinghub.elsevier.com/retrieve/pii/S0031916364920013
► Zweig 1964, An SU3 model for strong interaction symmetry and its breaking, Developments in the Quark Theory of Hadrons, 22: https://cds.cern.ch/record/570209
► Rochester & Butler 1947, Evidence for the Existence of New Unstable Elementary Particles, Nat 160, 855: https://www.nature.com/articles/160855a0
► Bodmer 1971, Collapsed Nuclei, Phys Rev D 4, 1601: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.4.1601
► Witten 1984, Cosmic separation of phases, Phys Rev D 30, 272: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.272
► Farhi & Jaffe 1984, Strange matter, Phys Rev D 30, 2379: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.2379
► Caldwell & Friedman 1991, Evidence against a strange ground state for baryons, Phys Lett B 264, 143: https://ui.adsabs.harvard.edu/link_gateway/1991PhLB..264..143C/PUB_HTML
► Ali Alpar 1987, Comment on Strange Stars, Phys Rev Lett 58, 2152: https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.58.2152
► Madsen 2000, Intermediate mass strangelets are positively charged, Phys Rev Lett 85, 4687: https://arxiv.org/abs/hep-ph/0008217
MUSIC
Licensed by SoundStripe.com (SS) [shorturl.at/ptBHI], Artlist.io, via CC Attribution License (https://creativecommons.org/licenses/by/4.0/) or with permission from the artist.
0:00: A Slowly Lifting Fog - Brad Hill
3:44: Unhurried - Unkown
5:12: Music From Neptune Flux 04 - Chris Zabriskie
8:05: World of Wonder - Unknown
9:42: Falls - Life in Binary
14:08: Chasing Out the Chaos - Unknown
16:00: Cylinder Seven - Chris Zabriskie
23:22: Y - Joachim Heinrich
CHAPTERS
0:00 Prologue
0:30 Neutron Stars
5:06 Quark Stars
8:09 NordVPN
9:43 Evidence for Quark Stars
12:12 Why They're Probably Real
15:50 Strange Matter Hypothesis
22:08 Is Strange Matter Real?
24:55 Outro & Credits
#QuarkStars #StrangeMatter #CoolWorlds
https://wn.com/Could_Quark_Stars_Be_The_Engines_Of_Self_Replicating_Strange_Matter
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
→ Support our research: https://www.coolworldslab.com/support
→ Get merch: https://teespring.com/stores/cool-worlds-store
→ Check out our podcast: www.youtube.com/@CoolWorldsPodcast
THANK-YOU to D. Smith, M. Sloan, L. Sanborn, C. Bottaccini, D. Daughaday, A. Jones, S. Brownlee, N. Kildal, Z. Star, E. West, T. Zajonc, C. Wolfred, L. Skov, G. Benson, A. De Vaal, M. Elliott, B. Daniluk, M. Forbes, S. Vystoropskyi, S. Lee, Z. Danielson, C. Fitzgerald, C. Souter, M. Gillette, T. Jeffcoat, J. Rockett, D. Murphree, T. Donkin, K. Myers, A. Schoen, K. Dabrowski, J. Black, R. Ramezankhani, J. Armstrong, K. Weber, S. Marks, L. Robinson, S. Roulier, B. Smith, J. Cassese, J. Kruger, S. Way, P. Finch, S. Applegate, L. Watson, E. Zahnle, N. Gebben, J. Bergman, E. Dessoi, C. Macdonald, M. Hedlund, P. Kaup, C. Hays, W. Evans, D. Bansal, J. Curtin, J. Sturm, RAND Corp., M. Donovan, N. Corwin, M. Mangione, K. Howard, L. Deacon, G. Metts, G. Genova, R. Provost, B. Sigurjonsson, G. Fullwood, B. Walford, J. Boyd, N. De Haan, J. Gillmer, R. Williams, E. Garland, A. Leishman, A. Phan Le, R. Lovely, M. Spoto, A. Steele, M. Varenka, K. Yarbrough, A. Cornejo, D. Compos, F. Demopoulos, G. Bylinsky, J. Werner, B. Pearson, S. Thayer, T. Edris, A. Harrison, B. Seeley, F. Blood, M. O'Brien, P. Muzyka, E. Loomans, D. Lee, J. Sargent, M. Czirr, F. Krotzer, I. Williams, J. Sattler, J. Smallbon, B. Reese, J. Yoder, O. Shabtay & X. Yao.
REFERENCES
► Drake et al 2002, Is RX J185635-375 a Quark Star?, ApJ 572, 996: https://arxiv.org/abs/astro-ph/0204159
► Truemper et al 2003, The Puzzles of RX J1856.5-3754: Neutron Star or Quark Star?, Nuc Phys B Proc S 132, 560: https://arxiv.org/abs/astro-ph/0312600
► Kareet et al 2006, Evidence for 1122 Hz X-Ray Burst Oscillations from the Neutron-Star X-Ray Transient XTE J1739-285, ApJ 657, L97: https://arxiv.org/abs/astro-ph/0611716
► Chakrabarty 2008, The Spin Distribution of Millisecond X-ray Pulsars, In "A Decade if Accreting Millisecond X-Ray Pulsars", AIP Conf Proc 1068, 67: https://arxiv.org/abs/0809.4031
► Annala et al 2020, Evidence for quark-matter cores in massive neutron stars, Nat Phys 16, 907: https://arxiv.org/abs/1903.09121
► Cherman et al 2009, Bound on the speed of sound from holography, Phys Rev D 80, 066003: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.80.066003
► Ouyed et al 2002, Quark Nova, A&A 390, 39: https://arxiv.org/abs/astro-ph/0105109
► Gell-Mann 1964, A schematic model of baryons and mesons, Phys Lett 8, 214: https://linkinghub.elsevier.com/retrieve/pii/S0031916364920013
► Zweig 1964, An SU3 model for strong interaction symmetry and its breaking, Developments in the Quark Theory of Hadrons, 22: https://cds.cern.ch/record/570209
► Rochester & Butler 1947, Evidence for the Existence of New Unstable Elementary Particles, Nat 160, 855: https://www.nature.com/articles/160855a0
► Bodmer 1971, Collapsed Nuclei, Phys Rev D 4, 1601: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.4.1601
► Witten 1984, Cosmic separation of phases, Phys Rev D 30, 272: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.272
► Farhi & Jaffe 1984, Strange matter, Phys Rev D 30, 2379: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.2379
► Caldwell & Friedman 1991, Evidence against a strange ground state for baryons, Phys Lett B 264, 143: https://ui.adsabs.harvard.edu/link_gateway/1991PhLB..264..143C/PUB_HTML
► Ali Alpar 1987, Comment on Strange Stars, Phys Rev Lett 58, 2152: https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.58.2152
► Madsen 2000, Intermediate mass strangelets are positively charged, Phys Rev Lett 85, 4687: https://arxiv.org/abs/hep-ph/0008217
MUSIC
Licensed by SoundStripe.com (SS) [shorturl.at/ptBHI], Artlist.io, via CC Attribution License (https://creativecommons.org/licenses/by/4.0/) or with permission from the artist.
0:00: A Slowly Lifting Fog - Brad Hill
3:44: Unhurried - Unkown
5:12: Music From Neptune Flux 04 - Chris Zabriskie
8:05: World of Wonder - Unknown
9:42: Falls - Life in Binary
14:08: Chasing Out the Chaos - Unknown
16:00: Cylinder Seven - Chris Zabriskie
23:22: Y - Joachim Heinrich
CHAPTERS
0:00 Prologue
0:30 Neutron Stars
5:06 Quark Stars
8:09 NordVPN
9:43 Evidence for Quark Stars
12:12 Why They're Probably Real
15:50 Strange Matter Hypothesis
22:08 Is Strange Matter Real?
24:55 Outro & Credits
#QuarkStars #StrangeMatter #CoolWorlds
- published: 10 Dec 2023
- views: 510260
5:21
What’s the smallest thing in the universe? - Jonathan Butterworth
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterwo...
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leos, Robert Patrick, Jorge, Marcus Appelbaum, Alan Wilder, Amin Talaei, Mohamed Elsayed, Angel Pantoja, Eimann P. Evarola, Claire Ousey, Carlos H. Costa, Tariq Keblaoui, Bela Namyslik, Nick Johnson, Won Jang, Johnnie Graham, Junjie Huang, Harshita Jagdish Sahijwani, Amber Alexander, Yelena Baykova, Laurence McMillan, John C. Vesey, Karmi Nguyen, Chung Wah Gnapp, Andrew Sprott, Jane White, Ayan Doss, BRENDAN NEALE, Lawrence Teh Swee Kiang, Alex Pierce, Nick Cozby, Jeffrey Segrest, Anthony Arcis, Ugur Doga Sezgin, Kathryn Vacha, Allyson Martin, Srinivasa C Pasumarthi, 张晓雨, Ann Marie Reus, Nishant Suneja, Javier Lara Rosado, Jerry Yang and Shubham Arora.
https://wn.com/What’S_The_Smallest_Thing_In_The_Universe_Jonathan_Butterworth
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leos, Robert Patrick, Jorge, Marcus Appelbaum, Alan Wilder, Amin Talaei, Mohamed Elsayed, Angel Pantoja, Eimann P. Evarola, Claire Ousey, Carlos H. Costa, Tariq Keblaoui, Bela Namyslik, Nick Johnson, Won Jang, Johnnie Graham, Junjie Huang, Harshita Jagdish Sahijwani, Amber Alexander, Yelena Baykova, Laurence McMillan, John C. Vesey, Karmi Nguyen, Chung Wah Gnapp, Andrew Sprott, Jane White, Ayan Doss, BRENDAN NEALE, Lawrence Teh Swee Kiang, Alex Pierce, Nick Cozby, Jeffrey Segrest, Anthony Arcis, Ugur Doga Sezgin, Kathryn Vacha, Allyson Martin, Srinivasa C Pasumarthi, 张晓雨, Ann Marie Reus, Nishant Suneja, Javier Lara Rosado, Jerry Yang and Shubham Arora.
- published: 15 Nov 2018
- views: 1272541
1:35
How to make Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some ...
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
https://wn.com/How_To_Make_Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
- published: 31 Mar 2018
- views: 77375
21:37
What Makes The Strong Force Strong?
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
PBS Member Stations rely on viewers like you. To support your local station, go to:ht...
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space Time Discord!
https://www.patreon.com/pbsspacetime
Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
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Sign up for the mailing list to get episode notifications and hear special announcements!
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Hosted by Matt O'Dowd
Written by Fernando Franco Félix & Matt O'Dowd
Post Production by Leonardo Scholzer, Yago Ballarini, Pedro Osinski, Adriano Leal & Stephanie Faria
GFX Visualizations: Ajay Manuel
Directed by Andrew Kornhaber
Associate Producer: Bahar Gholipour
Executive Producers: Eric Brown & Andrew Kornhaber
Executive in Charge for PBS: Maribel Lopez
Director of Programming for PBS: Gabrielle Ewing
Assistant Director of Programming for PBS: John Campbell
Spacetime is produced by Kornhaber Brown for PBS Digital Studios.
This program is produced by Kornhaber Brown, which is solely responsible for its content. © 2022 PBS. All rights reserved.
End Credits Music by J.R.S. Schattenberg: https://www.youtube.com/user/MultiDroideka
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https://wn.com/What_Makes_The_Strong_Force_Strong
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space Time Discord!
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Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
Check out the Space Time Merch Store
https://www.pbsspacetime.com/shop
Sign up for the mailing list to get episode notifications and hear special announcements!
https://mailchi.mp/1a6eb8f2717d/spacetime
Search the Entire Space Time Library Here: https://search.pbsspacetime.com/
Hosted by Matt O'Dowd
Written by Fernando Franco Félix & Matt O'Dowd
Post Production by Leonardo Scholzer, Yago Ballarini, Pedro Osinski, Adriano Leal & Stephanie Faria
GFX Visualizations: Ajay Manuel
Directed by Andrew Kornhaber
Associate Producer: Bahar Gholipour
Executive Producers: Eric Brown & Andrew Kornhaber
Executive in Charge for PBS: Maribel Lopez
Director of Programming for PBS: Gabrielle Ewing
Assistant Director of Programming for PBS: John Campbell
Spacetime is produced by Kornhaber Brown for PBS Digital Studios.
This program is produced by Kornhaber Brown, which is solely responsible for its content. © 2022 PBS. All rights reserved.
End Credits Music by J.R.S. Schattenberg: https://www.youtube.com/user/MultiDroideka
Special Thanks to Our Patreon Supporters
Big Bang Supporters
Steffen Bendel
Gautam Shine
NullBlox.ZachryWilsn
Adam Hillier
Bryce Fort
Peter Barrett
David Neumann
Charlie
Leo Koguan
Ahmad Jodeh
Alexander Tamas
Morgan Hough
Amy Hickman
Juan Benet
Vinnie Falco
Fabrice Eap
Mark Rosenthal
David Nicklas
Quasar Supporters
Vivaan Vaka
Glenn hEADcRASH Sugden
Sujasha Gupta Vaka, PhD.
Vikram Vaka, M.D.
Alex Kern
Ethan Cohen
Stephen Wilcox
Christina Oegren
Mike Conroy
Mark Heising
Hank S
Hypernova Supporters
Vyce Ailour
Brandon Paddock
Oneamazinguy
Ken S
Gregory Forfa
Kirk Honour
Mark Evans
drollere
Joe Moreira
Marc Armstrong
Scott Gorlick
Paul Stehr-Green
Russell Pope
Ben Delo
Scott Gray
Антон Кочков
John R. Slavik
Mathew
Donal Botkin
John Pollock
Edmund Fokschaner
Joseph Salomone
chuck zegar
Jordan Young
John Hofmann
Daniel Muzquiz
Gamma Ray Burst
Craig Falls
Kane Holbrook
Bradley S. Isenbek
John Yaraee
Ross Story
teng guo
Mason Dillon
Harsh Khandhadia
Thomas Tarler
Sean McCaul
Carsten Quinlan
Susan Albee
Frank Walker
Matt Q
WhizBangery
MHL SHS
Terje Vold
Anatoliy Nagornyy
comboy
Andre Stechert
Paul Wood
Kent Durham
jim bartosh
Nubble
Scott R Calkins
The Mad Mechanic
Ellis Hall
John H. Austin, Jr.
Diana S
Ben Campbell
Faraz Khan
Almog Cohen
Alex Edwards
Ádám Kettinger
MD3
Endre Pech
Daniel Jennings
Cameron Sampson
Geoffrey Clarion
Darren Duncan
Russ Creech
Jeremy Reed
Eric Webster
David Johnston
Web Browser
Michael Barton
Mr T
Andrew Mann
Isaac Suttell
Devon Rosenthal
Oliver Flanagan
Bleys Goodson
Robert Walter
Bruce B
Mirik Gogri
Mark Delagasse
Mark Daniel Cohen
Nickolas Andrew Freeman
Shane Calimlim
Tybie Fitzhugh
Robert Ilardi
Eric Kiebler
Craig Stonaha
Graydon Goss
Frederic Simon
Tonyface
John Robinson
A G
David Neal
John Funai
Tristan
Bradley Jenkins
Kyle Hofer
Daniel Stříbrný
Luaan
Cody
Thomas Dougherty
King Zeckendorff
Dan Warren
Patrick Sutton
John Griffith
Daniel Lyons
DFaulk
Kevin Warne
Ivari Tölp
- published: 24 Aug 2022
- views: 1064660
7:37
2 Subatomic Stories: Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neu...
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
https://wn.com/2_Subatomic_Stories_Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
- published: 15 Apr 2020
- views: 133818
16:57
Did AI Prove Our Proton Model WRONG?
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space ...
PBS Member Stations rely on viewers like you. To support your local station, go to:http://to.pbs.org/DonateSPACE
Sign Up on Patreon to get access to the Space Time Discord!
https://www.patreon.com/pbsspacetime
The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=388):
Proton Animation. Courtesy of James LaPlante, Sputnik Animation. © MIT and Jefferson Lab, 2021, All Rights Reserved. The Visualizing the Proton Project is presented by the MIT Center for Art, Science & Technology, Jefferson Lab, and US Department of Energy’s Office of Science.
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Dean Faulk
00:00 Introduction
01:24 The Physics of Scattering
03:06 Using Electrons To Study Protons
04:11 3 Quark Proton Model
05:28 The Quark Sea
06:56 Charm Quark Evidence
08:04 Intrinsic Vs. Extrinsic Particle
09:51 The Uncertainty of Proton Experiments
11:09 QCD & Heisenberg Uncertainty
12:33 Proving the Theory of Intrinsic Charm
13:41 Testing Intrinsic Charm with AI
https://wn.com/Did_Ai_Prove_Our_Proton_Model_Wrong
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The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=388):
Proton Animation. Courtesy of James LaPlante, Sputnik Animation. © MIT and Jefferson Lab, 2021, All Rights Reserved. The Visualizing the Proton Project is presented by the MIT Center for Art, Science & Technology, Jefferson Lab, and US Department of Energy’s Office of Science.
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Hosted by Matt O'Dowd
Written by Fernando Franco Félix & Matt O'Dowd
Post Production by Leonardo Scholzer, Yago Ballarini, Adriano Leal & Stephanie Faria
Directed by Andrew Kornhaber
Associate Producer: Bahar Gholipour
Executive Producers: Eric Brown & Andrew Kornhaber
Executive in Charge for PBS: Maribel Lopez
Director of Programming for PBS: Gabrielle Ewing
Assistant Director of Programming for PBS: John Campbell
Spacetime is produced by Kornhaber Brown for PBS Digital Studios.
This program is produced by Kornhaber Brown, which is solely responsible for its content.
© 2023 PBS. All rights reserved.
End Credits Music by J.R.S. Schattenberg: https://www.youtube.com/user/MultiDroideka
Space Time Was Made Possible In Part By:
Big Bang Sponsors
Bryce Fort
Peter Barrett
David Neumann
Sean Maddox
Alexander Tamas
Morgan Hough
Juan Benet
Vinnie Falco
Fabrice Eap
Mark Rosenthal
Quasar Sponsors
Vivaan Vaka
Glenn Sugden
Alex Kern
Ethan Cohen
Stephen Wilcox
Christina Oegren
Mark Heising
Hypernova Sponsors
Stephen Spidle
Chris Webb
Ivari Tölp
Zachary Wilson
Kenneth See
Gregory Forfa
Kirk Honour
Joe Moreira
Bradley Voorhees
Marc Armstrong
Scott Gorlick
Paul Stehr-Green
Ben Delo
Scott Gray
Антон Кочков
Robert Ilardi
John R. Slavik
Donal Botkin
John Pollock
Edmund Fokschaner
Chuck Zegar
Jordan Young
Daniel Muzquiz
Gamma Ray Burst
Jakub Jasinski
Robin Bayley
Piotr Sarnicki
Matthew Oldfield
Massimiliano Pala
Thomas Nielson
Joe Pavlovic
Ryan McGaughy
Chuck Lukaszewski
Edward Hodapp
Cole Combs
Andrea Galvagni
Jerry Thomas
Nikhil Sharma
Ryan Moser
John Anderson
David Giltinan
Scott Hannum
Bradley Ulis
Craig Falls
Kane Holbrook
Ross Story
teng guo
Mason Dillon
Matt Langford
Harsh Khandhadia
Thomas Tarler
Susan Albee
Frank Walker
Matt Quinn
Michael Lev
Terje Vold
James Trimmier
Andre Stechert
Paul Wood
Kent Durham
Ramon Nogueira
Ellis Hall
John H. Austin, Jr.
Diana S Poljar
Faraz Khan
Almog Cohen
Alex Edwards
Daniel Jennings
Cameron Sampson
Jeremy Reed
David Johnston
Michael Barton
Andrew Mann
Isaac Suttell
Bleys Goodson
Robert Walter
Mark Delagasse
Mark Daniel Cohen
Nickolas Andrew Freeman
Shane Calimlim
Tybie Fitzhugh
Eric Kiebler
Craig Stonaha
Graydon Goss
Frederic Simon
Dmitri McGuinness
John Robinson
Jim Hudson
Alex Gan
David Barnholdt
David Neal
John Funai
Bradley Jenkins
Jiri Borkovec
Vlad Shipulin
Cody Brumfield
Thomas Dougherty
Dan Warren
Patrick Sutton
John Griffith
Dean Faulk
00:00 Introduction
01:24 The Physics of Scattering
03:06 Using Electrons To Study Protons
04:11 3 Quark Proton Model
05:28 The Quark Sea
06:56 Charm Quark Evidence
08:04 Intrinsic Vs. Extrinsic Particle
09:51 The Uncertainty of Proton Experiments
11:09 QCD & Heisenberg Uncertainty
12:33 Proving the Theory of Intrinsic Charm
13:41 Testing Intrinsic Charm with AI
- published: 21 Jun 2023
- views: 2329758
-
What Are Quarks? | Radioactivity | Physics | FuseSchool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, an...
published: 25 Jan 2013
-
What Are Quarks? Explained In 1 Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there a...
published: 09 Dec 2022
-
Quarks Explained in Four Minutes - Physics Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
published: 26 Jun 2015
-
Quarks: The Miracle That Saved Particle Physics
To get 2 months of unlimited access to Skillshare for free, click here:
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Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
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Looking for SciShow elsewhere on the...
published: 19 Jul 2018
-
Could Quark Stars be the Engines of Self-Replicating Strange Matter?
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Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
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published: 10 Dec 2023
-
What’s the smallest thing in the universe? - Jonathan Butterworth
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View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leo...
published: 15 Nov 2018
-
How to make Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
published: 31 Mar 2018
-
What Makes The Strong Force Strong?
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
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Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
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published: 24 Aug 2022
-
2 Subatomic Stories: Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
published: 15 Apr 2020
-
Did AI Prove Our Proton Model WRONG?
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The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=...
published: 21 Jun 2023
3:18
What Are Quarks? | Radioactivity | Physics | FuseSchool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to proto...
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you.
These videos can be used in a flipped classroom model or as a revision aid.
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https://wn.com/What_Are_Quarks_|_Radioactivity_|_Physics_|_Fuseschool
What Are Quarks? | Radioactivity | Physics | FuseSchool
Find out what quarks are, how they were discovered and why they are very important in relation to protons and neutrons. There are different types of quarks which you'll learn about in this GCSE / K12 "Radioactivity" video from FuseSchool.
SUPPORT US ON PATREON
https://www.patreon.com/fuseschool
SUBSCRIBE to the FuseSchool YouTube channel for many more educational videos. Our teachers and animators come together to make fun & easy-to-understand videos in Chemistry, Biology, Physics, Maths & ICT.
VISIT us at www.fuseschool.org, where all of our videos are carefully organised into topics and specific orders, and to see what else we have on offer. Comment, like and share with other learners. You can both ask and answer questions, and teachers will get back to you.
These videos can be used in a flipped classroom model or as a revision aid.
Find all of our Chemistry videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlReKGMVfUt6YuNQsO0bqSMV
Find all of our Biology videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlQYSpKryVcEr3ERup5SxHl0
Find all of our Physics videos here: https://www.youtube.com/playlist?list=PLW0gavSzhMlTWm6Sr5uN2Uv5TXHiZUq8b
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This is an Open Educational Resource. If you would like to use the video, please contact us:
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- published: 25 Jan 2013
- views: 630326
0:53
What Are Quarks? Explained In 1 Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electr...
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there are also "charm", "top" and "bottom" quarks.
Quarks combine to form composite particles called hadrons, the most stable of which are protons and neutrons, the components of atomic nuclei. All commonly observable matter comprises of quarks, down quarks, and electrons.
Owing to a phenomenon known as color confinement, quarks are never found in isolation; they can be found only within hadrons, which include baryons (such as protons and neutrons) and mesons, or in quark–gluon plasmas. For this reason, much of what is known about quarks has been drawn from observations of hadrons.
For every quark flavor, there is a corresponding type of antiparticle, known as an antiquark, that differs from the quark only in that some of its properties (such as the electric charge) have equal magnitude but opposite signs.
Video Editor: Team 121 Creators (https://bit.ly/team121x)
Narration: Sidhart Viyapu (https://bit.ly/sidvoice)
Project Head: Rajkumar Shukla
Production: World Of Science Media (https://theworldofscience.co)
©2022, World Of Science (WOS) Media. All Rights Reserved.
#quarks #particlephysics
-~-~~-~~~-~~-~-
Please watch: "The $1 Trillion Project Of Turning Sahara Green Again! What Could Go Wrong?" - https://youtu.be/mA77Pmwx9r0
-~-~~-~~~-~~-~-
https://wn.com/What_Are_Quarks_Explained_In_1_Minute
Quarks are the ultimate building blocks of visible matter in the universe.
If we could zoom in on an atom in your body, we would see that it consists of electrons swarming in orbits around a nucleus of protons and neutrons. And if we could zoom in on one of those protons or neutrons, we'd find that they themselves are made up of a trio of particles that are so small that they have almost no size at all, and are little more than points. These point-like particles are the quarks.
Quarks are elementary particles. Like electrons, they are not made up of any other particles. You could say that they are on the ground floor of the Standard Model of particle physics. It turns out that there are actually six types, or flavors, of quarks in total. Besides the up, down, and strange quarks, there are also "charm", "top" and "bottom" quarks.
Quarks combine to form composite particles called hadrons, the most stable of which are protons and neutrons, the components of atomic nuclei. All commonly observable matter comprises of quarks, down quarks, and electrons.
Owing to a phenomenon known as color confinement, quarks are never found in isolation; they can be found only within hadrons, which include baryons (such as protons and neutrons) and mesons, or in quark–gluon plasmas. For this reason, much of what is known about quarks has been drawn from observations of hadrons.
For every quark flavor, there is a corresponding type of antiparticle, known as an antiquark, that differs from the quark only in that some of its properties (such as the electric charge) have equal magnitude but opposite signs.
Video Editor: Team 121 Creators (https://bit.ly/team121x)
Narration: Sidhart Viyapu (https://bit.ly/sidvoice)
Project Head: Rajkumar Shukla
Production: World Of Science Media (https://theworldofscience.co)
©2022, World Of Science (WOS) Media. All Rights Reserved.
#quarks #particlephysics
-~-~~-~~~-~~-~-
Please watch: "The $1 Trillion Project Of Turning Sahara Green Again! What Could Go Wrong?" - https://youtu.be/mA77Pmwx9r0
-~-~~-~~~-~~-~-
- published: 09 Dec 2022
- views: 525721
4:19
Quarks Explained in Four Minutes - Physics Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instag...
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
https://wn.com/Quarks_Explained_In_Four_Minutes_Physics_Girl
Protons and neutrons are made of three quarks, right? Wrong! Explore the particle they should have told you about when you were a kid!
Instagram: http://instagram.com/thephysicsgirl
Facebook: http://www.physicsgirl.org/facebook
Twitter: http://www.physicsgirl.org/twitter
Updates: http://physicsgirl.org
Help us translate our videos! http://www.youtube.com/timedtext_cs_panel?c=UC7DdEm33SyaTDtWYGO2CwdA&tab=2
Colored Light Simulation courtesy from www.edumedia-sciences.com
Many thanks to the Richard Dawkins Foundation for Reason and Science for featuring Physics Girl https://richarddawkins.net/physicsgirl/
Music: "Eureka," "Safety Net," "Caudio the Worm," "On the Bach"
- published: 26 Jun 2015
- views: 1005071
6:34
Quarks: The Miracle That Saved Particle Physics
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the qu...
To get 2 months of unlimited access to Skillshare for free, click here:
http://skl.sh/scishow12
Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Sam Lutfi, Nicholas Smith, D.A. Noe, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Patrick D. Ashmore, Tim Curwick, charles george, Kevin Bealer, Chris Peters
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----------
Sources:
http://hep.phy.syr.edu/~tomasz/PHY771.16Spring/ParticleZooQuarks.pdf
http://laplace.physics.ubc.ca/People/ainwood/Inwood_essay.pdf
http://web.ihep.su/owa/dbserv/hw.part1
https://www.nature.com/articles/160453a0
https://www.nature.com/articles/160855a0
https://www.nature.com/articles/163082a0
https://www.nature.com/articles/161518a0
https://www.annualreviews.org/doi/pdf/10.1146/annurev.nucl.52.050102.090730
http://electron6.phys.utk.edu/phys250/modules/module%206/particle_classification.htm
https://books.google.com/books?id=x1uxCwAAQBAJ&pg=PA225&lpg=PA225#v=onepage&q&f=false
https://www.osti.gov/biblio/4008239
https://journals.aps.org/pr/abstract/10.1103/PhysRev.125.1067
https://books.google.com/books?id=iN7ICgAAQBAJ&pg=PA194&lpg=PA194#v=onepage&q&f=false
http://www.physlink.com/education/askexperts/ae267.cfm
https://link.springer.com/article/10.1007%2FBF02748000
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.12.204
https://www.sciencedirect.com/science/article/pii/S0031916364920013
http://inspirehep.net/record/11881/files/CM-P00042883.pdf
https://www.sciencedirect.com/science/article/pii/0029558265903482
https://arxiv.org/pdf/1412.8681.pdf
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1404
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1408
https://smile.amazon.com/Discoveries-Breakthroughs-20th-Century-Including-Original/dp/037571345X/
https://press.cern/backgrounders/fourth-generation-particles
-------
Images:
https://commons.wikimedia.org/wiki/File:Liquid_hydrogen_bubblechamber.jpg
http://cds.cern.ch/record/39474
http://cds.cern.ch/record/39470
https://commons.wikimedia.org/wiki/File:First_neutrino_observation.jpg
https://commons.wikimedia.org/wiki/File:CERN_UA5_-_ppbar_interaction_at_540GeV.jpg
https://commons.wikimedia.org/wiki/File:SLAC_tunnel_2.jpg
http://cds.cern.ch/record/39453
https://www.videoblocks.com/video/changing-light-numbers-e3quqob
https://www.videoblocks.com/video/day-of-the-month-keyable-calendar-awzioep
https://www.istockphoto.com/vector/beautiful-vector-seamless-pattern-with-mathematical-figures-calculations-and-plots-gm908884642-250351696
https://wn.com/Quarks_The_Miracle_That_Saved_Particle_Physics
To get 2 months of unlimited access to Skillshare for free, click here:
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Smaller than an atom, but majorly important: introducing the quark! Quarks helped make sense of particle physics, and we'll tell you all about it in this new episode of SciShow!
Hosted by: Stefan Chin
Head to https://scishowfinds.com/ for hand selected artifacts of the universe!
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Sources:
http://hep.phy.syr.edu/~tomasz/PHY771.16Spring/ParticleZooQuarks.pdf
http://laplace.physics.ubc.ca/People/ainwood/Inwood_essay.pdf
http://web.ihep.su/owa/dbserv/hw.part1
https://www.nature.com/articles/160453a0
https://www.nature.com/articles/160855a0
https://www.nature.com/articles/163082a0
https://www.nature.com/articles/161518a0
https://www.annualreviews.org/doi/pdf/10.1146/annurev.nucl.52.050102.090730
http://electron6.phys.utk.edu/phys250/modules/module%206/particle_classification.htm
https://books.google.com/books?id=x1uxCwAAQBAJ&pg=PA225&lpg=PA225#v=onepage&q&f=false
https://www.osti.gov/biblio/4008239
https://journals.aps.org/pr/abstract/10.1103/PhysRev.125.1067
https://books.google.com/books?id=iN7ICgAAQBAJ&pg=PA194&lpg=PA194#v=onepage&q&f=false
http://www.physlink.com/education/askexperts/ae267.cfm
https://link.springer.com/article/10.1007%2FBF02748000
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.12.204
https://www.sciencedirect.com/science/article/pii/S0031916364920013
http://inspirehep.net/record/11881/files/CM-P00042883.pdf
https://www.sciencedirect.com/science/article/pii/0029558265903482
https://arxiv.org/pdf/1412.8681.pdf
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1404
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.33.1408
https://smile.amazon.com/Discoveries-Breakthroughs-20th-Century-Including-Original/dp/037571345X/
https://press.cern/backgrounders/fourth-generation-particles
-------
Images:
https://commons.wikimedia.org/wiki/File:Liquid_hydrogen_bubblechamber.jpg
http://cds.cern.ch/record/39474
http://cds.cern.ch/record/39470
https://commons.wikimedia.org/wiki/File:First_neutrino_observation.jpg
https://commons.wikimedia.org/wiki/File:CERN_UA5_-_ppbar_interaction_at_540GeV.jpg
https://commons.wikimedia.org/wiki/File:SLAC_tunnel_2.jpg
http://cds.cern.ch/record/39453
https://www.videoblocks.com/video/changing-light-numbers-e3quqob
https://www.videoblocks.com/video/day-of-the-month-keyable-calendar-awzioep
https://www.istockphoto.com/vector/beautiful-vector-seamless-pattern-with-mathematical-figures-calculations-and-plots-gm908884642-250351696
- published: 19 Jul 2018
- views: 681593
25:38
Could Quark Stars be the Engines of Self-Replicating Strange Matter?
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type o...
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
→ Support our research: https://www.coolworldslab.com/support
→ Get merch: https://teespring.com/stores/cool-worlds-store
→ Check out our podcast: www.youtube.com/@CoolWorldsPodcast
THANK-YOU to D. Smith, M. Sloan, L. Sanborn, C. Bottaccini, D. Daughaday, A. Jones, S. Brownlee, N. Kildal, Z. Star, E. West, T. Zajonc, C. Wolfred, L. Skov, G. Benson, A. De Vaal, M. Elliott, B. Daniluk, M. Forbes, S. Vystoropskyi, S. Lee, Z. Danielson, C. Fitzgerald, C. Souter, M. Gillette, T. Jeffcoat, J. Rockett, D. Murphree, T. Donkin, K. Myers, A. Schoen, K. Dabrowski, J. Black, R. Ramezankhani, J. Armstrong, K. Weber, S. Marks, L. Robinson, S. Roulier, B. Smith, J. Cassese, J. Kruger, S. Way, P. Finch, S. Applegate, L. Watson, E. Zahnle, N. Gebben, J. Bergman, E. Dessoi, C. Macdonald, M. Hedlund, P. Kaup, C. Hays, W. Evans, D. Bansal, J. Curtin, J. Sturm, RAND Corp., M. Donovan, N. Corwin, M. Mangione, K. Howard, L. Deacon, G. Metts, G. Genova, R. Provost, B. Sigurjonsson, G. Fullwood, B. Walford, J. Boyd, N. De Haan, J. Gillmer, R. Williams, E. Garland, A. Leishman, A. Phan Le, R. Lovely, M. Spoto, A. Steele, M. Varenka, K. Yarbrough, A. Cornejo, D. Compos, F. Demopoulos, G. Bylinsky, J. Werner, B. Pearson, S. Thayer, T. Edris, A. Harrison, B. Seeley, F. Blood, M. O'Brien, P. Muzyka, E. Loomans, D. Lee, J. Sargent, M. Czirr, F. Krotzer, I. Williams, J. Sattler, J. Smallbon, B. Reese, J. Yoder, O. Shabtay & X. Yao.
REFERENCES
► Drake et al 2002, Is RX J185635-375 a Quark Star?, ApJ 572, 996: https://arxiv.org/abs/astro-ph/0204159
► Truemper et al 2003, The Puzzles of RX J1856.5-3754: Neutron Star or Quark Star?, Nuc Phys B Proc S 132, 560: https://arxiv.org/abs/astro-ph/0312600
► Kareet et al 2006, Evidence for 1122 Hz X-Ray Burst Oscillations from the Neutron-Star X-Ray Transient XTE J1739-285, ApJ 657, L97: https://arxiv.org/abs/astro-ph/0611716
► Chakrabarty 2008, The Spin Distribution of Millisecond X-ray Pulsars, In "A Decade if Accreting Millisecond X-Ray Pulsars", AIP Conf Proc 1068, 67: https://arxiv.org/abs/0809.4031
► Annala et al 2020, Evidence for quark-matter cores in massive neutron stars, Nat Phys 16, 907: https://arxiv.org/abs/1903.09121
► Cherman et al 2009, Bound on the speed of sound from holography, Phys Rev D 80, 066003: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.80.066003
► Ouyed et al 2002, Quark Nova, A&A 390, 39: https://arxiv.org/abs/astro-ph/0105109
► Gell-Mann 1964, A schematic model of baryons and mesons, Phys Lett 8, 214: https://linkinghub.elsevier.com/retrieve/pii/S0031916364920013
► Zweig 1964, An SU3 model for strong interaction symmetry and its breaking, Developments in the Quark Theory of Hadrons, 22: https://cds.cern.ch/record/570209
► Rochester & Butler 1947, Evidence for the Existence of New Unstable Elementary Particles, Nat 160, 855: https://www.nature.com/articles/160855a0
► Bodmer 1971, Collapsed Nuclei, Phys Rev D 4, 1601: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.4.1601
► Witten 1984, Cosmic separation of phases, Phys Rev D 30, 272: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.272
► Farhi & Jaffe 1984, Strange matter, Phys Rev D 30, 2379: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.2379
► Caldwell & Friedman 1991, Evidence against a strange ground state for baryons, Phys Lett B 264, 143: https://ui.adsabs.harvard.edu/link_gateway/1991PhLB..264..143C/PUB_HTML
► Ali Alpar 1987, Comment on Strange Stars, Phys Rev Lett 58, 2152: https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.58.2152
► Madsen 2000, Intermediate mass strangelets are positively charged, Phys Rev Lett 85, 4687: https://arxiv.org/abs/hep-ph/0008217
MUSIC
Licensed by SoundStripe.com (SS) [shorturl.at/ptBHI], Artlist.io, via CC Attribution License (https://creativecommons.org/licenses/by/4.0/) or with permission from the artist.
0:00: A Slowly Lifting Fog - Brad Hill
3:44: Unhurried - Unkown
5:12: Music From Neptune Flux 04 - Chris Zabriskie
8:05: World of Wonder - Unknown
9:42: Falls - Life in Binary
14:08: Chasing Out the Chaos - Unknown
16:00: Cylinder Seven - Chris Zabriskie
23:22: Y - Joachim Heinrich
CHAPTERS
0:00 Prologue
0:30 Neutron Stars
5:06 Quark Stars
8:09 NordVPN
9:43 Evidence for Quark Stars
12:12 Why They're Probably Real
15:50 Strange Matter Hypothesis
22:08 Is Strange Matter Real?
24:55 Outro & Credits
#QuarkStars #StrangeMatter #CoolWorlds
https://wn.com/Could_Quark_Stars_Be_The_Engines_Of_Self_Replicating_Strange_Matter
Check out https://NordVPN.com/coolworlds for 4 months for free when you sign up today, thanks to Nord for sponsoring us!
Could there be a bizarre exotic type of star out there made of quarks? What would these things be like and how could they form? Join us as we explore quark stars, and the terrifying implications they have for forging strange matter within their cores...
Written & presented by Prof. David Kipping. Edited by Jorge Casas. Special thanks to Dr Sam Gregson (www.youtube.com/@BadBoyofScience) for fact checking our script.
→ Support our research: https://www.coolworldslab.com/support
→ Get merch: https://teespring.com/stores/cool-worlds-store
→ Check out our podcast: www.youtube.com/@CoolWorldsPodcast
THANK-YOU to D. Smith, M. Sloan, L. Sanborn, C. Bottaccini, D. Daughaday, A. Jones, S. Brownlee, N. Kildal, Z. Star, E. West, T. Zajonc, C. Wolfred, L. Skov, G. Benson, A. De Vaal, M. Elliott, B. Daniluk, M. Forbes, S. Vystoropskyi, S. Lee, Z. Danielson, C. Fitzgerald, C. Souter, M. Gillette, T. Jeffcoat, J. Rockett, D. Murphree, T. Donkin, K. Myers, A. Schoen, K. Dabrowski, J. Black, R. Ramezankhani, J. Armstrong, K. Weber, S. Marks, L. Robinson, S. Roulier, B. Smith, J. Cassese, J. Kruger, S. Way, P. Finch, S. Applegate, L. Watson, E. Zahnle, N. Gebben, J. Bergman, E. Dessoi, C. Macdonald, M. Hedlund, P. Kaup, C. Hays, W. Evans, D. Bansal, J. Curtin, J. Sturm, RAND Corp., M. Donovan, N. Corwin, M. Mangione, K. Howard, L. Deacon, G. Metts, G. Genova, R. Provost, B. Sigurjonsson, G. Fullwood, B. Walford, J. Boyd, N. De Haan, J. Gillmer, R. Williams, E. Garland, A. Leishman, A. Phan Le, R. Lovely, M. Spoto, A. Steele, M. Varenka, K. Yarbrough, A. Cornejo, D. Compos, F. Demopoulos, G. Bylinsky, J. Werner, B. Pearson, S. Thayer, T. Edris, A. Harrison, B. Seeley, F. Blood, M. O'Brien, P. Muzyka, E. Loomans, D. Lee, J. Sargent, M. Czirr, F. Krotzer, I. Williams, J. Sattler, J. Smallbon, B. Reese, J. Yoder, O. Shabtay & X. Yao.
REFERENCES
► Drake et al 2002, Is RX J185635-375 a Quark Star?, ApJ 572, 996: https://arxiv.org/abs/astro-ph/0204159
► Truemper et al 2003, The Puzzles of RX J1856.5-3754: Neutron Star or Quark Star?, Nuc Phys B Proc S 132, 560: https://arxiv.org/abs/astro-ph/0312600
► Kareet et al 2006, Evidence for 1122 Hz X-Ray Burst Oscillations from the Neutron-Star X-Ray Transient XTE J1739-285, ApJ 657, L97: https://arxiv.org/abs/astro-ph/0611716
► Chakrabarty 2008, The Spin Distribution of Millisecond X-ray Pulsars, In "A Decade if Accreting Millisecond X-Ray Pulsars", AIP Conf Proc 1068, 67: https://arxiv.org/abs/0809.4031
► Annala et al 2020, Evidence for quark-matter cores in massive neutron stars, Nat Phys 16, 907: https://arxiv.org/abs/1903.09121
► Cherman et al 2009, Bound on the speed of sound from holography, Phys Rev D 80, 066003: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.80.066003
► Ouyed et al 2002, Quark Nova, A&A 390, 39: https://arxiv.org/abs/astro-ph/0105109
► Gell-Mann 1964, A schematic model of baryons and mesons, Phys Lett 8, 214: https://linkinghub.elsevier.com/retrieve/pii/S0031916364920013
► Zweig 1964, An SU3 model for strong interaction symmetry and its breaking, Developments in the Quark Theory of Hadrons, 22: https://cds.cern.ch/record/570209
► Rochester & Butler 1947, Evidence for the Existence of New Unstable Elementary Particles, Nat 160, 855: https://www.nature.com/articles/160855a0
► Bodmer 1971, Collapsed Nuclei, Phys Rev D 4, 1601: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.4.1601
► Witten 1984, Cosmic separation of phases, Phys Rev D 30, 272: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.272
► Farhi & Jaffe 1984, Strange matter, Phys Rev D 30, 2379: https://journals.aps.org/prd/abstract/10.1103/PhysRevD.30.2379
► Caldwell & Friedman 1991, Evidence against a strange ground state for baryons, Phys Lett B 264, 143: https://ui.adsabs.harvard.edu/link_gateway/1991PhLB..264..143C/PUB_HTML
► Ali Alpar 1987, Comment on Strange Stars, Phys Rev Lett 58, 2152: https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.58.2152
► Madsen 2000, Intermediate mass strangelets are positively charged, Phys Rev Lett 85, 4687: https://arxiv.org/abs/hep-ph/0008217
MUSIC
Licensed by SoundStripe.com (SS) [shorturl.at/ptBHI], Artlist.io, via CC Attribution License (https://creativecommons.org/licenses/by/4.0/) or with permission from the artist.
0:00: A Slowly Lifting Fog - Brad Hill
3:44: Unhurried - Unkown
5:12: Music From Neptune Flux 04 - Chris Zabriskie
8:05: World of Wonder - Unknown
9:42: Falls - Life in Binary
14:08: Chasing Out the Chaos - Unknown
16:00: Cylinder Seven - Chris Zabriskie
23:22: Y - Joachim Heinrich
CHAPTERS
0:00 Prologue
0:30 Neutron Stars
5:06 Quark Stars
8:09 NordVPN
9:43 Evidence for Quark Stars
12:12 Why They're Probably Real
15:50 Strange Matter Hypothesis
22:08 Is Strange Matter Real?
24:55 Outro & Credits
#QuarkStars #StrangeMatter #CoolWorlds
- published: 10 Dec 2023
- views: 510260
5:21
What’s the smallest thing in the universe? - Jonathan Butterworth
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterwo...
Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leos, Robert Patrick, Jorge, Marcus Appelbaum, Alan Wilder, Amin Talaei, Mohamed Elsayed, Angel Pantoja, Eimann P. Evarola, Claire Ousey, Carlos H. Costa, Tariq Keblaoui, Bela Namyslik, Nick Johnson, Won Jang, Johnnie Graham, Junjie Huang, Harshita Jagdish Sahijwani, Amber Alexander, Yelena Baykova, Laurence McMillan, John C. Vesey, Karmi Nguyen, Chung Wah Gnapp, Andrew Sprott, Jane White, Ayan Doss, BRENDAN NEALE, Lawrence Teh Swee Kiang, Alex Pierce, Nick Cozby, Jeffrey Segrest, Anthony Arcis, Ugur Doga Sezgin, Kathryn Vacha, Allyson Martin, Srinivasa C Pasumarthi, 张晓雨, Ann Marie Reus, Nishant Suneja, Javier Lara Rosado, Jerry Yang and Shubham Arora.
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Check out our Patreon page: https://www.patreon.com/teded
View full lesson: https://ed.ted.com/lessons/the-standard-model-of-particle-physics-jonathan-butterworth
If you were to take a coffee cup, and break it in half, then in half again, and keep carrying on, where would you end up? Could you keep on going forever? Or would you eventually find a set of indivisible building blocks out of which everything is made? Jonathan Butterworth explains the Standard Model theory and how it helps us understand the world we live in.
Lesson by Jon Butterworth, directed by Nick Hilditch.
Thank you so much to our patrons for your support! Without you this video would not be possible! Jennifer Kurkoski, phkphk12321, Arlene Weston, Mehmet Yusuf Ertekin, Ten Cha, Les Howard, Kevin O'Leary, Francisco Leos, Robert Patrick, Jorge, Marcus Appelbaum, Alan Wilder, Amin Talaei, Mohamed Elsayed, Angel Pantoja, Eimann P. Evarola, Claire Ousey, Carlos H. Costa, Tariq Keblaoui, Bela Namyslik, Nick Johnson, Won Jang, Johnnie Graham, Junjie Huang, Harshita Jagdish Sahijwani, Amber Alexander, Yelena Baykova, Laurence McMillan, John C. Vesey, Karmi Nguyen, Chung Wah Gnapp, Andrew Sprott, Jane White, Ayan Doss, BRENDAN NEALE, Lawrence Teh Swee Kiang, Alex Pierce, Nick Cozby, Jeffrey Segrest, Anthony Arcis, Ugur Doga Sezgin, Kathryn Vacha, Allyson Martin, Srinivasa C Pasumarthi, 张晓雨, Ann Marie Reus, Nishant Suneja, Javier Lara Rosado, Jerry Yang and Shubham Arora.
- published: 15 Nov 2018
- views: 1272541
1:35
How to make Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some ...
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
https://wn.com/How_To_Make_Quark
Quark is a very popular ingredient in a lot of delicious German recipes. In this recipe you will learn how easy it is to make your own homemade quark. Try some of our German recipes with quark and let us know how it turned out.
Recipe: https://alltastesgerman.com/homemade-quark
Join our Quark Masterclass here: https://alltastesgerman.com/quark-masterclass
- published: 31 Mar 2018
- views: 77375
21:37
What Makes The Strong Force Strong?
Check Out The Bigger Picture: https://www.youtube.com/watch?v=Wnr4RJxDifw
PBS Member Stations rely on viewers like you. To support your local station, go to:ht...
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Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
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https://wn.com/What_Makes_The_Strong_Force_Strong
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Quantum mechanics gets weirder as you go to smaller sizes and higher energies. It’s strange enough for atoms, but positively bizarre when we get to the atomic nucleus. And today we’re going nuclear, as we dive into the weird world of quantum chromodynamics and the strong force.
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- published: 24 Aug 2022
- views: 1064660
7:37
2 Subatomic Stories: Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neu...
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
https://wn.com/2_Subatomic_Stories_Quarks
Quarks are fundamental subatomic particles found in the center of atoms. They interact strongly with one another and are the building blocks of protons and neutrons. Two of them were discovered at Fermilab. In episode 2 of Subatomic Stories, Fermilab’s Dr. Don Lincoln tells us about these fascinating particles.
Fermilab physics 101:
https://www.fnal.gov/pub/science/particle-physics-101/index.html
Fermilab home page:
https://fnal.gov
- published: 15 Apr 2020
- views: 133818
16:57
Did AI Prove Our Proton Model WRONG?
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The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=388):
Proton Animation. Courtesy of James LaPlante, Sputnik Animation. © MIT and Jefferson Lab, 2021, All Rights Reserved. The Visualizing the Proton Project is presented by the MIT Center for Art, Science & Technology, Jefferson Lab, and US Department of Energy’s Office of Science.
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Hosted by Matt O'Dowd
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00:00 Introduction
01:24 The Physics of Scattering
03:06 Using Electrons To Study Protons
04:11 3 Quark Proton Model
05:28 The Quark Sea
06:56 Charm Quark Evidence
08:04 Intrinsic Vs. Extrinsic Particle
09:51 The Uncertainty of Proton Experiments
11:09 QCD & Heisenberg Uncertainty
12:33 Proving the Theory of Intrinsic Charm
13:41 Testing Intrinsic Charm with AI
https://wn.com/Did_Ai_Prove_Our_Proton_Model_Wrong
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The humble proton may seem simple enough, and they’re certainly common. People are made of cells, cells are made of molecules, molecules are made of atoms, atoms are made of electrons, protons, and neutrons. And protons are each made of three up or down quarks. Simple stuff, right? All except for that last part. Protons are actually made of many, many quarks that happen to look like three only when we look at them in a particular way. And even then, sometimes they’re made of 5 quarks - including the charm quark.
Image Credit for 6:28 (https://youtu.be/TbzZIMQC6vk?feature=shared&t=388):
Proton Animation. Courtesy of James LaPlante, Sputnik Animation. © MIT and Jefferson Lab, 2021, All Rights Reserved. The Visualizing the Proton Project is presented by the MIT Center for Art, Science & Technology, Jefferson Lab, and US Department of Energy’s Office of Science.
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Hosted by Matt O'Dowd
Written by Fernando Franco Félix & Matt O'Dowd
Post Production by Leonardo Scholzer, Yago Ballarini, Adriano Leal & Stephanie Faria
Directed by Andrew Kornhaber
Associate Producer: Bahar Gholipour
Executive Producers: Eric Brown & Andrew Kornhaber
Executive in Charge for PBS: Maribel Lopez
Director of Programming for PBS: Gabrielle Ewing
Assistant Director of Programming for PBS: John Campbell
Spacetime is produced by Kornhaber Brown for PBS Digital Studios.
This program is produced by Kornhaber Brown, which is solely responsible for its content.
© 2023 PBS. All rights reserved.
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Cody Brumfield
Thomas Dougherty
Dan Warren
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Dean Faulk
00:00 Introduction
01:24 The Physics of Scattering
03:06 Using Electrons To Study Protons
04:11 3 Quark Proton Model
05:28 The Quark Sea
06:56 Charm Quark Evidence
08:04 Intrinsic Vs. Extrinsic Particle
09:51 The Uncertainty of Proton Experiments
11:09 QCD & Heisenberg Uncertainty
12:33 Proving the Theory of Intrinsic Charm
13:41 Testing Intrinsic Charm with AI
- published: 21 Jun 2023
- views: 2329758
-
Quark solves the problem of War with Economics
Quark, a Ferengi, uses the Third Rule of Acquisition to convince a Vulcan working with the terrorist group, the "Maquis", that peace at any price is illogical.
published: 03 Jan 2012
-
I'm here to face D'Gor, Son of Whatever.
3x03 The House of Quark
published: 19 Jun 2019
-
Quark - Best Moments
Another fan favourite...I love this guy
Please remember to like and SUBSCRIBE
published: 27 Jan 2023
-
Quark They Irradiated Their Own Planet?
Buy me a coffee! https://www.buymeacoffee.com/sommersronc . Please let me know how you found this video on YT....
Snippet from Deep Space 9 "Little Green Men" - Quark crash lands on Earth in the 20th Century and learns the people irradiate their own planet.
Fair use. I don't claim any revenue for this work. Video is the property and copyright of their owners, and are provided here for educational purposes only.
published: 30 Mar 2011
-
funny quark moments in star trek
published: 02 Oct 2016
-
Quark's Worthless Gold
published: 07 Apr 2012
-
Garak Kills Quark
Or at least tries to find a way to do so that will satisfy Quark. From "Body Parts", 4x25.
published: 12 Jun 2010
-
Quark's Right Wing Tirade
Season 7 Episode 24 The Dogs Of War
published: 06 Nov 2011
-
Remeras Rojas Star Trek S06 - Ep16: First Frontier, la historia jamás contada del Capitán April
En este #RemerasRojas en #ElCapítuloDeLaSemana continúa la temática #losnro1delosnro1 donde los Número 1 eligen lo que vemos, hoy "Cause and Effect" de #starTrekTNG
Y en #ContinuandoElViaje le contamos sobre la película fanfilm "Star Trek: First Frontier" con una pequeña entrevistar a su creador, Kenny Smith.
Pueden ver la película completa por aquí: https://youtu.be/SAlGf5Wfe4g
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published: 25 Jun 2024
-
"It's Your Choice You're A Deputy or You're A Prisoner." Odo "I'm A Deputy." Quark
Star Trek Deep Space Nine Season 2 Episode 2 Episode The Circle
published: 08 Oct 2021
2:36
Quark solves the problem of War with Economics
Quark, a Ferengi, uses the Third Rule of Acquisition to convince a Vulcan working with the terrorist group, the "Maquis", that peace at any price is illogical.
Quark, a Ferengi, uses the Third Rule of Acquisition to convince a Vulcan working with the terrorist group, the "Maquis", that peace at any price is illogical.
https://wn.com/Quark_Solves_The_Problem_Of_War_With_Economics
Quark, a Ferengi, uses the Third Rule of Acquisition to convince a Vulcan working with the terrorist group, the "Maquis", that peace at any price is illogical.
- published: 03 Jan 2012
- views: 3501102
8:13
Quark - Best Moments
Another fan favourite...I love this guy
Please remember to like and SUBSCRIBE
Another fan favourite...I love this guy
Please remember to like and SUBSCRIBE
https://wn.com/Quark_Best_Moments
Another fan favourite...I love this guy
Please remember to like and SUBSCRIBE
- published: 27 Jan 2023
- views: 29306
0:31
Quark They Irradiated Their Own Planet?
Buy me a coffee! https://www.buymeacoffee.com/sommersronc . Please let me know how you found this video on YT....
Snippet from Deep Space 9 "Little Green Men" -...
Buy me a coffee! https://www.buymeacoffee.com/sommersronc . Please let me know how you found this video on YT....
Snippet from Deep Space 9 "Little Green Men" - Quark crash lands on Earth in the 20th Century and learns the people irradiate their own planet.
Fair use. I don't claim any revenue for this work. Video is the property and copyright of their owners, and are provided here for educational purposes only.
https://wn.com/Quark_They_Irradiated_Their_Own_Planet
Buy me a coffee! https://www.buymeacoffee.com/sommersronc . Please let me know how you found this video on YT....
Snippet from Deep Space 9 "Little Green Men" - Quark crash lands on Earth in the 20th Century and learns the people irradiate their own planet.
Fair use. I don't claim any revenue for this work. Video is the property and copyright of their owners, and are provided here for educational purposes only.
- published: 30 Mar 2011
- views: 780780
1:51
Garak Kills Quark
Or at least tries to find a way to do so that will satisfy Quark. From "Body Parts", 4x25.
Or at least tries to find a way to do so that will satisfy Quark. From "Body Parts", 4x25.
https://wn.com/Garak_Kills_Quark
Or at least tries to find a way to do so that will satisfy Quark. From "Body Parts", 4x25.
- published: 12 Jun 2010
- views: 1187799
1:40:16
Remeras Rojas Star Trek S06 - Ep16: First Frontier, la historia jamás contada del Capitán April
En este #RemerasRojas en #ElCapítuloDeLaSemana continúa la temática #losnro1delosnro1 donde los Número 1 eligen lo que vemos, hoy "Cause and Effect" de #starTre...
En este #RemerasRojas en #ElCapítuloDeLaSemana continúa la temática #losnro1delosnro1 donde los Número 1 eligen lo que vemos, hoy "Cause and Effect" de #starTrekTNG
Y en #ContinuandoElViaje le contamos sobre la película fanfilm "Star Trek: First Frontier" con una pequeña entrevistar a su creador, Kenny Smith.
Pueden ver la película completa por aquí: https://youtu.be/SAlGf5Wfe4g
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https://wn.com/Remeras_Rojas_Star_Trek_S06_Ep16_First_Frontier,_La_Historia_Jamás_Contada_Del_Capitán_April
En este #RemerasRojas en #ElCapítuloDeLaSemana continúa la temática #losnro1delosnro1 donde los Número 1 eligen lo que vemos, hoy "Cause and Effect" de #starTrekTNG
Y en #ContinuandoElViaje le contamos sobre la película fanfilm "Star Trek: First Frontier" con una pequeña entrevistar a su creador, Kenny Smith.
Pueden ver la película completa por aquí: https://youtu.be/SAlGf5Wfe4g
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-----------------------------------------------
- published: 25 Jun 2024
- views: 279