The atom was a unit of time referred to in medieval philosophical writings as the smallest possible division of time. The earliest known occurrence in English is in Byrhtferth's Enchiridion (a science text) of 1010–1012, where it was defined as 1/564 of a momentum (1½ minutes), and thus equal to 15/94 of a second. It was used in the computus, the calculation used to determine the calendar date of Easter.
An atom is the smallest constituent unit of ordinary matter that has the properties of a chemical element. Every solid, liquid, gas, and plasma is composed of neutral or ionized atoms. Atoms are very small; typical sizes are around 100pm (a ten-billionth of a meter, in the short scale). However, atoms do not have well-defined boundaries, and there are different ways to define their size that give different but close values.
Atoms are small enough that classical physics gives noticeably incorrect results. Through the development of physics, atomic models have incorporated quantum principles to better explain and predict the behavior.
Every atom is composed of a nucleus and one or more electrons bound to the nucleus. The nucleus is made of one or more protons and typically a similar number of neutrons (none in hydrogen-1). Protons and neutrons are called nucleons. More than 99.94% of an atom's mass is in the nucleus. The protons have a positive electric charge, the electrons have a negative electric charge, and the neutrons have no electric charge. If the number of protons and electrons are equal, that atom is electrically neutral. If an atom has more or fewer electrons than protons, then it has an overall negative or positive charge, respectively, and it is called an ion.
Atomè is an arrondissement in the Kouffo department of Benin. It is an administrative division under the jurisdiction of the commune of Aplahoué. According to the population census conducted by the Institut National de la Statistique Benin on February 15, 2002, the arrondissement had a total population of 13,582.
The name Atom applies to a pair of related Web standards. The Atom Syndication Format is an XML language used for web feeds, while the Atom Publishing Protocol (AtomPub or APP) is a simple HTTP-based protocol for creating and updating web resources.
Web feeds allow software programs to check for updates published on a website. To provide a web feed, the site owner may use specialized software (such as a content management system) that publishes a list (or "feed") of recent articles or content in a standardized, machine-readable format. The feed can then be downloaded by programs that use it, like websites that syndicate content from the feed, or by feed reader programs that allow Internet users to subscribe to feeds and view their content.
A feed contains entries, which may be headlines, full-text articles, excerpts, summaries, and/or links to content on a website, along with various metadata.
The Atom format was developed as an alternative to RSS. Ben Trott, an advocate of the new format that became Atom, believed that RSS had limitations and flaws—such as lack of on-going innovation and its necessity to remain backward compatible— and that there were advantages to a fresh design.
Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na... | 24 Oras
Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na ‘di kasama ang mga bayani ng Pilipinas
Pinuna ng isang grupo ang disenyo ng bagong perang polymer na inilbas ng Bangko Sentral ng Pilipinas kung saan hindi na mga bayani, kundi mga hayop at halaman ang tampok.
24 Oras is GMA Network’s flagship newscast, anchored by Mel Tiangco, Vicky Morales and Emil Sumangil. It airs on GMA-7 Mondays to Fridays at 6:30 PM (PHL Time) and on weekends at 5:30 PM. For more videos from 24 Oras, visit http://www.gmanews.tv/24oras.
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published: 20 Dec 2024
Latest Image of An Atom! 🔬
published: 21 Jul 2023
How small are atoms?
Atoms are measured in femtometres, that is 1,000,000,000,000,000th of a meter.
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published: 18 Jul 2022
What Is An Atom And How Do We Know?
Ever wonder how we actually know that atoms exist? Here we'll learn what atoms are and exactly how scientists went about figuring all this out.
Play the Bond Breaker game here: http://www.castl.uci.edu/games/bondbreaker
Note about the Nitrogen atom Image:
The nitrogen paper was supposed to be published along with this animation but the journal decided the nitrogen paper was too redundant. They already published the same imaging technique with an Ag atom back in 2017. Long stroy short: The only place to see the nitrogen atom is in this animation. That said, if you want to see an Ag atom imaged using the same technique, see this paper here: https://pubs.acs.org/doi/10.1021/acsnano.7b06022
Each pixel in the image represents a reading from the scanning probe. The colors show us how high t...
published: 18 Sep 2018
What is an atom | Matter | Physics | FuseSchool
What is an atom | Matter | Physics | FuseSchool
Atoms are tiny particles that are so small they are not possible to see with the naked eye, and are only barely possible to make out with the most powerful microscopes. Everything that exists in our universe is made up of atoms – including you, I and the device you’re watching this on! In fact, there are about 7 billion billion billion atoms in your body alone.
In this video we are going to look at what atoms are made of, and the mass and size of atoms, and the arrangement of electrons in an atom.Atoms may be tiny particles themselves but they are made of even smaller particles, called subatomic particles.
Atoms consist of a central nucleus that contains protons and neutrons. Protons are positively charged (+1) and neutrons have no charge...
published: 02 Jan 2018
What is an Atom ?
What is an Atom?
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An atom is the basic unit of matter, and it is the smallest unit of an element that retains the chemical properties of that element. Atoms are the building blocks of all matter in the universe. They are composed of t...
published: 08 Nov 2023
Atom: The Illusion Of Reality (Jim Al-Khalili) | Science Documentary | Reel Truth Science
The final part of Professor Jim Al-Khalili's documentary series about the basic building block of our universe, the atom.
Al-Khalili explores how studying the atom forced us to rethink the nature of reality itself, encountering ideas that seem like they are from science fiction but in fact are a central part of modern science. He discovers that there might be parallel universes in which different versions of us exist and finds out that empty space is not empty at all, but seething with activity.
The world we think we know - the solid, reassuring world of our senses - turns out to be a tiny sliver of an infinitely weirder and more wonderful universe than we had ever conceived in our wildest fantasies.
The story of the discovery that everything is made from atoms, one of the greatest scie...
published: 15 Jun 2018
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
Hi KIDZ! Welcome to a BRAND NEW SEASON of the DR. Binocs show. Have you ever wondered what the matter around us or even what we are made up of apart from flesh and bones? Watch this video by DR. Binocs to learn What an Atom is and how it works! Keep commenting your answers to win a shout out in the next video :D
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published: 08 Mar 2019
Atoms for Kids | What is an atom? | Learn about atoms and molecules with activities and worksheets
Atoms for kids is an introduction video that helps students learn all about atoms. We answer questions like "What is an Atom?", "What is an Atom made of?", and "What do Atoms do?". We explore protons, electrons and neutrons and give a brief overview of the periodic table of elements. But don't stop at this video! You can also download our FREE lesson plan that has many activities and worksheets about atoms that will help engage and reinforce the learning.
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published: 29 May 2020
A Better Way To Picture Atoms
Thanks to Google for sponsoring a portion of this video!
Support MinutePhysics on Patreon: http://www.patreon.com/minutephysics
This video is about using Bohmian trajectories to visualize the wavefunctions of hydrogen orbitals, rendered in 3D using custom python code in Blender.
REFERENCES
A Suggested Interpretation of the Quantum Theory in Terms of "Hidden" Variables. I
David Bohm, Physical Review, Vol 85 No. 2, January 15, 1952
Speakable and Unspeakable in Quantum Mechanics
J. S. Bell
Trajectory construction of Dirac evolution
Peter Holland
The de Broglie-Bohm Causal Interpretation of Quantum Mechanics and its Application to some Simple Systems by Caroline Colijn
Bohmian Trajectories as the Foundation of Quantum Mechanics
http://arxiv.org/abs/0912.2666v1
The Pilot-Wave Perspectiv...
Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na ‘di kasama ang mga bayani ng Pilipinas
Pinuna ng isang grupo ang disenyo ng ...
Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na ‘di kasama ang mga bayani ng Pilipinas
Pinuna ng isang grupo ang disenyo ng bagong perang polymer na inilbas ng Bangko Sentral ng Pilipinas kung saan hindi na mga bayani, kundi mga hayop at halaman ang tampok.
24 Oras is GMA Network’s flagship newscast, anchored by Mel Tiangco, Vicky Morales and Emil Sumangil. It airs on GMA-7 Mondays to Fridays at 6:30 PM (PHL Time) and on weekends at 5:30 PM. For more videos from 24 Oras, visit http://www.gmanews.tv/24oras.
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Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na ‘di kasama ang mga bayani ng Pilipinas
Pinuna ng isang grupo ang disenyo ng bagong perang polymer na inilbas ng Bangko Sentral ng Pilipinas kung saan hindi na mga bayani, kundi mga hayop at halaman ang tampok.
24 Oras is GMA Network’s flagship newscast, anchored by Mel Tiangco, Vicky Morales and Emil Sumangil. It airs on GMA-7 Mondays to Fridays at 6:30 PM (PHL Time) and on weekends at 5:30 PM. For more videos from 24 Oras, visit http://www.gmanews.tv/24oras.
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Atoms are measured in femtometres, that is 1,000,000,000,000,000th of a meter.
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Atoms are measured in femtometres, that is 1,000,000,000,000,000th of a meter.
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Atoms are measured in femtometres, that is 1,000,000,000,000,000th of a meter.
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Ever wonder how we actually know that atoms exist? Here we'll learn what atoms are and exactly how scientists went about figuring all this out.
Play the Bond ...
Ever wonder how we actually know that atoms exist? Here we'll learn what atoms are and exactly how scientists went about figuring all this out.
Play the Bond Breaker game here: http://www.castl.uci.edu/games/bondbreaker
Note about the Nitrogen atom Image:
The nitrogen paper was supposed to be published along with this animation but the journal decided the nitrogen paper was too redundant. They already published the same imaging technique with an Ag atom back in 2017. Long stroy short: The only place to see the nitrogen atom is in this animation. That said, if you want to see an Ag atom imaged using the same technique, see this paper here: https://pubs.acs.org/doi/10.1021/acsnano.7b06022
Each pixel in the image represents a reading from the scanning probe. The colors show us how high that particular part of the atom's electron cloud is compared to the substrate it's sitting on. Red is highest, blue is lowest. We are only seeing the outline of the electron cloud, not the nucleus.
Get the Stated Clearly "Stay Curious" t-shirt here: https://teespring.com/en/stay-curious-with-us#pid=369&cid=6513&sid=front
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Correction: In this video I state that Jabir ibn Hayyan was Arabian, but there is uncertainty about this among historians. He may have been Persian. Like many influential people of his time, his story is almost mythical, with multiple origins being found in historical writings.
Also, he never used a Bunsen burner (which is what I drew him using) that wasn't invented until 1856. Jabir likely burnt wood or other solid fuels to heat his reactions.
Arabic Subtitles by Ammar Abu-Shukur and Mohammed Baset
#chemistry #atom #theory #science
Ever wonder how we actually know that atoms exist? Here we'll learn what atoms are and exactly how scientists went about figuring all this out.
Play the Bond Breaker game here: http://www.castl.uci.edu/games/bondbreaker
Note about the Nitrogen atom Image:
The nitrogen paper was supposed to be published along with this animation but the journal decided the nitrogen paper was too redundant. They already published the same imaging technique with an Ag atom back in 2017. Long stroy short: The only place to see the nitrogen atom is in this animation. That said, if you want to see an Ag atom imaged using the same technique, see this paper here: https://pubs.acs.org/doi/10.1021/acsnano.7b06022
Each pixel in the image represents a reading from the scanning probe. The colors show us how high that particular part of the atom's electron cloud is compared to the substrate it's sitting on. Red is highest, blue is lowest. We are only seeing the outline of the electron cloud, not the nucleus.
Get the Stated Clearly "Stay Curious" t-shirt here: https://teespring.com/en/stay-curious-with-us#pid=369&cid=6513&sid=front
Support Stated Clearly on Patreon: https://www.patreon.com/statedclearly
Correction: In this video I state that Jabir ibn Hayyan was Arabian, but there is uncertainty about this among historians. He may have been Persian. Like many influential people of his time, his story is almost mythical, with multiple origins being found in historical writings.
Also, he never used a Bunsen burner (which is what I drew him using) that wasn't invented until 1856. Jabir likely burnt wood or other solid fuels to heat his reactions.
Arabic Subtitles by Ammar Abu-Shukur and Mohammed Baset
#chemistry #atom #theory #science
What is an atom | Matter | Physics | FuseSchool
Atoms are tiny particles that are so small they are not possible to see with the naked eye, and are only barely...
What is an atom | Matter | Physics | FuseSchool
Atoms are tiny particles that are so small they are not possible to see with the naked eye, and are only barely possible to make out with the most powerful microscopes. Everything that exists in our universe is made up of atoms – including you, I and the device you’re watching this on! In fact, there are about 7 billion billion billion atoms in your body alone.
In this video we are going to look at what atoms are made of, and the mass and size of atoms, and the arrangement of electrons in an atom.Atoms may be tiny particles themselves but they are made of even smaller particles, called subatomic particles.
Atoms consist of a central nucleus that contains protons and neutrons. Protons are positively charged (+1) and neutrons have no charge. This makes the nucleus overall positively charged.
Much like how the sun has planets orbiting it, the nucleus has electrons orbiting. Electrons have a negative charge (-1). Because electrons are negatively charged and the nucleus is positively charged, they are electrostatically attracted to each other, like how gravity ensures attraction between planets and the sun.
So that’s the general structure of an atom, what about its mass and size? Protons and neutrons have the same mass, but electrons are so small they weigh almost nothing in comparison to protons and neutrons. In fact they are about 2000 times lighter. As a result, the mass of an atom is concentrated at its nucleus.
So that’s the mass of an atom, but what about it’s size? One way to describe the size of an atom is its radius. The radius of an atoms is the distance from its centre, where the nucleus is, to the outermost shell of electrons. The radius of an atom is typically 10-10m.
So the majority of the mass of an atom is contained in its nucleus, but in terms of size the nucleus is much smaller than the atom as a whole. In fact, electrons can orbit really far away from the nucleus. If the atom was the size of a sports arena, the nucleus could be the size of a pea in the middle!
Let’s finish off by looking at the electrons in a little more detail.
Negatively charged electrons orbit around the positive nucleus in specific orbits or shells. Different atoms have different numbers of shells (or orbitals).
Each shell is of a specific energy level, meaning an electron must possess a certain amount of energy to reside in a certain shell. Electrons in shells closest to the nucleus have the least energy, and electrons in the outermost shells have the highest energy levels.
In other words, electrons orbit the nucleus similar to how planets orbit the sun; however, electrons can only orbit at specific distances and with specific energies.
We will look at the differences in structure of atoms of different elements and the periodic table in this video
So there we have the structure of an atom. Atoms have a positively charged nucleus made up on positive protons and neutral neutrons, which is orbited by negatively charged electrons. The majority of the mass of an atom [10-23g] is found in the nucleus, and the typical size of atoms is 10-10m.
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.
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This Open Educational Resource is free of charge, under a Creative Commons License: Attribution-NonCommercial CC BY-NC ( View License Deed: http://creativecommons.org/licenses/by-nc/4.0/ ). You are allowed to download the video for nonprofit, educational use. If you would like to modify the video, please contact us: [email protected]
What is an atom | Matter | Physics | FuseSchool
Atoms are tiny particles that are so small they are not possible to see with the naked eye, and are only barely possible to make out with the most powerful microscopes. Everything that exists in our universe is made up of atoms – including you, I and the device you’re watching this on! In fact, there are about 7 billion billion billion atoms in your body alone.
In this video we are going to look at what atoms are made of, and the mass and size of atoms, and the arrangement of electrons in an atom.Atoms may be tiny particles themselves but they are made of even smaller particles, called subatomic particles.
Atoms consist of a central nucleus that contains protons and neutrons. Protons are positively charged (+1) and neutrons have no charge. This makes the nucleus overall positively charged.
Much like how the sun has planets orbiting it, the nucleus has electrons orbiting. Electrons have a negative charge (-1). Because electrons are negatively charged and the nucleus is positively charged, they are electrostatically attracted to each other, like how gravity ensures attraction between planets and the sun.
So that’s the general structure of an atom, what about its mass and size? Protons and neutrons have the same mass, but electrons are so small they weigh almost nothing in comparison to protons and neutrons. In fact they are about 2000 times lighter. As a result, the mass of an atom is concentrated at its nucleus.
So that’s the mass of an atom, but what about it’s size? One way to describe the size of an atom is its radius. The radius of an atoms is the distance from its centre, where the nucleus is, to the outermost shell of electrons. The radius of an atom is typically 10-10m.
So the majority of the mass of an atom is contained in its nucleus, but in terms of size the nucleus is much smaller than the atom as a whole. In fact, electrons can orbit really far away from the nucleus. If the atom was the size of a sports arena, the nucleus could be the size of a pea in the middle!
Let’s finish off by looking at the electrons in a little more detail.
Negatively charged electrons orbit around the positive nucleus in specific orbits or shells. Different atoms have different numbers of shells (or orbitals).
Each shell is of a specific energy level, meaning an electron must possess a certain amount of energy to reside in a certain shell. Electrons in shells closest to the nucleus have the least energy, and electrons in the outermost shells have the highest energy levels.
In other words, electrons orbit the nucleus similar to how planets orbit the sun; however, electrons can only orbit at specific distances and with specific energies.
We will look at the differences in structure of atoms of different elements and the periodic table in this video
So there we have the structure of an atom. Atoms have a positively charged nucleus made up on positive protons and neutral neutrons, which is orbited by negatively charged electrons. The majority of the mass of an atom [10-23g] is found in the nucleus, and the typical size of atoms is 10-10m.
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/watch?v=cRnpKjHpFyg&list=PLW0gavSzhMlReKGMVfUt6YuNQsO0bqSMV
Find all of our Biology videos here:
https://www.youtube.com/watch?v=tjkHzEVcyrE&list=PLW0gavSzhMlQYSpKryVcEr3ERup5SxHl0
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https://www.youtube.com/watch?v=hJq_cdz_L00&list=PLW0gavSzhMlTyWKCgW1616v3fIywogoZQ
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Access a deeper Learning Experience in the FuseSchool platform and app: www.fuseschool.org
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This Open Educational Resource is free of charge, under a Creative Commons License: Attribution-NonCommercial CC BY-NC ( View License Deed: http://creativecommons.org/licenses/by-nc/4.0/ ). You are allowed to download the video for nonprofit, educational use. If you would like to modify the video, please contact us: [email protected]
What is an Atom?
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What is an Atom?
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An atom is the basic unit of matter, and it is the smallest unit of an element that retains the chemical properties of that element. Atoms are the building blocks of all matter in the universe. They are composed of three main subatomic particles:
1. Protons: Positively charged particles found in the nucleus of the atom.
2. Neutrons: Neutrally charged particles also located in the nucleus.
3. Electrons: Negatively charged particles that orbit the nucleus in electron shells or energy levels.
The protons and neutrons are tightly packed in the central nucleus of the atom, while the electrons move in various energy levels or orbitals around the nucleus. The number of protons in an atom's nucleus defines its atomic number, which, in turn, determines the element to which the atom belongs. The number of electrons typically matches the number of protons, creating a neutral atom.
Atoms can combine to form molecules through chemical bonding, and they can participate in chemical reactions by gaining, losing, or sharing electrons. The study of atoms and their interactions is a fundamental concept in chemistry and physics and has led to a deeper understanding of the properties and behavior of matter.
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What is an Atom?
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An atom is the basic unit of matter, and it is the smallest unit of an element that retains the chemical properties of that element. Atoms are the building blocks of all matter in the universe. They are composed of three main subatomic particles:
1. Protons: Positively charged particles found in the nucleus of the atom.
2. Neutrons: Neutrally charged particles also located in the nucleus.
3. Electrons: Negatively charged particles that orbit the nucleus in electron shells or energy levels.
The protons and neutrons are tightly packed in the central nucleus of the atom, while the electrons move in various energy levels or orbitals around the nucleus. The number of protons in an atom's nucleus defines its atomic number, which, in turn, determines the element to which the atom belongs. The number of electrons typically matches the number of protons, creating a neutral atom.
Atoms can combine to form molecules through chemical bonding, and they can participate in chemical reactions by gaining, losing, or sharing electrons. The study of atoms and their interactions is a fundamental concept in chemistry and physics and has led to a deeper understanding of the properties and behavior of matter.
At Manocha Academy, learning Science and Math is Easy! The school coursework is explained with simple examples that you experience every day! Yes, Science & Math is all around you! Let's learn every day from everyday life!
The final part of Professor Jim Al-Khalili's documentary series about the basic building block of our universe, the atom.
Al-Khalili explores how studying the ...
The final part of Professor Jim Al-Khalili's documentary series about the basic building block of our universe, the atom.
Al-Khalili explores how studying the atom forced us to rethink the nature of reality itself, encountering ideas that seem like they are from science fiction but in fact are a central part of modern science. He discovers that there might be parallel universes in which different versions of us exist and finds out that empty space is not empty at all, but seething with activity.
The world we think we know - the solid, reassuring world of our senses - turns out to be a tiny sliver of an infinitely weirder and more wonderful universe than we had ever conceived in our wildest fantasies.
The story of the discovery that everything is made from atoms, one of the greatest scientific breakthroughs in history, and the brilliant minds behind it.
For more awe inspiring documentaries, subscribe to our channel: https://www.youtube.com/channel/UCZSE95RmyMUgJWmfra9Yx1A?Sub_Confirmation=1
Welcome to ReelTruth.Science the home of inspiring documentaries from the scientific and medical world. Here you can find full length documentaries to discover and explore.
#atom #atomdocumentary #reeltruthscience
The final part of Professor Jim Al-Khalili's documentary series about the basic building block of our universe, the atom.
Al-Khalili explores how studying the atom forced us to rethink the nature of reality itself, encountering ideas that seem like they are from science fiction but in fact are a central part of modern science. He discovers that there might be parallel universes in which different versions of us exist and finds out that empty space is not empty at all, but seething with activity.
The world we think we know - the solid, reassuring world of our senses - turns out to be a tiny sliver of an infinitely weirder and more wonderful universe than we had ever conceived in our wildest fantasies.
The story of the discovery that everything is made from atoms, one of the greatest scientific breakthroughs in history, and the brilliant minds behind it.
For more awe inspiring documentaries, subscribe to our channel: https://www.youtube.com/channel/UCZSE95RmyMUgJWmfra9Yx1A?Sub_Confirmation=1
Welcome to ReelTruth.Science the home of inspiring documentaries from the scientific and medical world. Here you can find full length documentaries to discover and explore.
#atom #atomdocumentary #reeltruthscience
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
Hi KIDZ! Welcome to a BRAND NEW SEASON of the DR. Binocs show. Have you ...
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
Hi KIDZ! Welcome to a BRAND NEW SEASON of the DR. Binocs show. Have you ever wondered what the matter around us or even what we are made up of apart from flesh and bones? Watch this video by DR. Binocs to learn What an Atom is and how it works! Keep commenting your answers to win a shout out in the next video :D
#Atom
#drbinocs
#DrBinocsshow
#peekabookidz
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Storyboard - Kalpesh Bamne
Animators - Rupesh Hire, Sushant Hodage, Tushar Ishi , Raju Nikumbe
VFX Artist - Aliasgar Kagalwala
Background Score & SFX - Jay Rajesh Arya
Sound Engineer - Varad J. Khare
Producer - Neha Barjatya
Copyrights and Publishing: Rajshri Entertainment Private Limited
All rights reserved.
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
Hi KIDZ! Welcome to a BRAND NEW SEASON of the DR. Binocs show. Have you ever wondered what the matter around us or even what we are made up of apart from flesh and bones? Watch this video by DR. Binocs to learn What an Atom is and how it works! Keep commenting your answers to win a shout out in the next video :D
#Atom
#drbinocs
#DrBinocsshow
#peekabookidz
SUBSCRIBE to Peekaboo Kidz:http://bit.ly/SubscribeTo-Peekabookidz
Catch Dr.Binocs At - https://goo.gl/SXhLmc
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To Watch Alphabet Rhymes Go To - https://goo.gl/qmIRLv
To Watch Compilations Go To - https://goo.gl/nW3kw9
Voice of Dr. Binocs - Joseph D'Souza
Creative Head/Written/Directed by Nitin Navale
Illustrators - Kalpesh Bamne, Mukesh Ishi, Rupesh Hire
Storyboard - Kalpesh Bamne
Animators - Rupesh Hire, Sushant Hodage, Tushar Ishi , Raju Nikumbe
VFX Artist - Aliasgar Kagalwala
Background Score & SFX - Jay Rajesh Arya
Sound Engineer - Varad J. Khare
Producer - Neha Barjatya
Copyrights and Publishing: Rajshri Entertainment Private Limited
All rights reserved.
Atoms for kids is an introduction video that helps students learn all about atoms. We answer questions like "What is an Atom?", "What is an Atom made of?", and ...
Atoms for kids is an introduction video that helps students learn all about atoms. We answer questions like "What is an Atom?", "What is an Atom made of?", and "What do Atoms do?". We explore protons, electrons and neutrons and give a brief overview of the periodic table of elements. But don't stop at this video! You can also download our FREE lesson plan that has many activities and worksheets about atoms that will help engage and reinforce the learning.
Download the Atoms Lesson Plan here: https://learnbright.org/lessons/science/atoms/
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#Atoms
Atoms for kids is an introduction video that helps students learn all about atoms. We answer questions like "What is an Atom?", "What is an Atom made of?", and "What do Atoms do?". We explore protons, electrons and neutrons and give a brief overview of the periodic table of elements. But don't stop at this video! You can also download our FREE lesson plan that has many activities and worksheets about atoms that will help engage and reinforce the learning.
Download the Atoms Lesson Plan here: https://learnbright.org/lessons/science/atoms/
Thank you for watching and learning with us! We’re constantly releasing new content and videos, so click that “Subscribe” button and you’ll get notified.
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Website: https://learnbright.org/
*Teachers and Parents! Did you know? In addition to these great videos, we have also created a library of high quality and engaging lessons for your elementary aged student(s). Visit us, sign up for a free account, and instantly you'll have access to thousands of lesson plans, learning materials, teaching instructions, activities, and assignments that your kids will really enjoy! We hope to see you soon!
Browse our entire collection of Science lesson plans: https://learnbright.org/lessons/?filter_subject=science
#AtomsForKids
#Atoms
Thanks to Google for sponsoring a portion of this video!
Support MinutePhysics on Patreon: http://www.patreon.com/minutephysics
This video is about using Bohm...
Thanks to Google for sponsoring a portion of this video!
Support MinutePhysics on Patreon: http://www.patreon.com/minutephysics
This video is about using Bohmian trajectories to visualize the wavefunctions of hydrogen orbitals, rendered in 3D using custom python code in Blender.
REFERENCES
A Suggested Interpretation of the Quantum Theory in Terms of "Hidden" Variables. I
David Bohm, Physical Review, Vol 85 No. 2, January 15, 1952
Speakable and Unspeakable in Quantum Mechanics
J. S. Bell
Trajectory construction of Dirac evolution
Peter Holland
The de Broglie-Bohm Causal Interpretation of Quantum Mechanics and its Application to some Simple Systems by Caroline Colijn
Bohmian Trajectories as the Foundation of Quantum Mechanics
http://arxiv.org/abs/0912.2666v1
The Pilot-Wave Perspective on Quantum Scattering and Tunneling
http://arxiv.org/abs/1210.7265v2
A Quantum Potential Description of One-Dimensional Time-Dependent Scattering From Square Barriers and Square Wells
Dewdney, Foundations of Physics, VoL 12, No. 1, 1982
Link to Patreon Supporters: http://www.minutephysics.com/supporters/
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And facebook - http://facebook.com/minutephysics
Minute Physics provides an energetic and entertaining view of old and new problems in physics -- all in a minute!
Created by Henry Reich
Thanks to Google for sponsoring a portion of this video!
Support MinutePhysics on Patreon: http://www.patreon.com/minutephysics
This video is about using Bohmian trajectories to visualize the wavefunctions of hydrogen orbitals, rendered in 3D using custom python code in Blender.
REFERENCES
A Suggested Interpretation of the Quantum Theory in Terms of "Hidden" Variables. I
David Bohm, Physical Review, Vol 85 No. 2, January 15, 1952
Speakable and Unspeakable in Quantum Mechanics
J. S. Bell
Trajectory construction of Dirac evolution
Peter Holland
The de Broglie-Bohm Causal Interpretation of Quantum Mechanics and its Application to some Simple Systems by Caroline Colijn
Bohmian Trajectories as the Foundation of Quantum Mechanics
http://arxiv.org/abs/0912.2666v1
The Pilot-Wave Perspective on Quantum Scattering and Tunneling
http://arxiv.org/abs/1210.7265v2
A Quantum Potential Description of One-Dimensional Time-Dependent Scattering From Square Barriers and Square Wells
Dewdney, Foundations of Physics, VoL 12, No. 1, 1982
Link to Patreon Supporters: http://www.minutephysics.com/supporters/
MinutePhysics is on twitter - @minutephysics
And facebook - http://facebook.com/minutephysics
Minute Physics provides an energetic and entertaining view of old and new problems in physics -- all in a minute!
Created by Henry Reich
Grupong ATOM, pinuna ang bagong disenyo ng pera; Unang beses daw sa kasaysayan na ‘di kasama ang mga bayani ng Pilipinas
Pinuna ng isang grupo ang disenyo ng bagong perang polymer na inilbas ng Bangko Sentral ng Pilipinas kung saan hindi na mga bayani, kundi mga hayop at halaman ang tampok.
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Atoms are measured in femtometres, that is 1,000,000,000,000,000th of a meter.
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Ever wonder how we actually know that atoms exist? Here we'll learn what atoms are and exactly how scientists went about figuring all this out.
Play the Bond Breaker game here: http://www.castl.uci.edu/games/bondbreaker
Note about the Nitrogen atom Image:
The nitrogen paper was supposed to be published along with this animation but the journal decided the nitrogen paper was too redundant. They already published the same imaging technique with an Ag atom back in 2017. Long stroy short: The only place to see the nitrogen atom is in this animation. That said, if you want to see an Ag atom imaged using the same technique, see this paper here: https://pubs.acs.org/doi/10.1021/acsnano.7b06022
Each pixel in the image represents a reading from the scanning probe. The colors show us how high that particular part of the atom's electron cloud is compared to the substrate it's sitting on. Red is highest, blue is lowest. We are only seeing the outline of the electron cloud, not the nucleus.
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Correction: In this video I state that Jabir ibn Hayyan was Arabian, but there is uncertainty about this among historians. He may have been Persian. Like many influential people of his time, his story is almost mythical, with multiple origins being found in historical writings.
Also, he never used a Bunsen burner (which is what I drew him using) that wasn't invented until 1856. Jabir likely burnt wood or other solid fuels to heat his reactions.
Arabic Subtitles by Ammar Abu-Shukur and Mohammed Baset
#chemistry #atom #theory #science
What is an atom | Matter | Physics | FuseSchool
Atoms are tiny particles that are so small they are not possible to see with the naked eye, and are only barely possible to make out with the most powerful microscopes. Everything that exists in our universe is made up of atoms – including you, I and the device you’re watching this on! In fact, there are about 7 billion billion billion atoms in your body alone.
In this video we are going to look at what atoms are made of, and the mass and size of atoms, and the arrangement of electrons in an atom.Atoms may be tiny particles themselves but they are made of even smaller particles, called subatomic particles.
Atoms consist of a central nucleus that contains protons and neutrons. Protons are positively charged (+1) and neutrons have no charge. This makes the nucleus overall positively charged.
Much like how the sun has planets orbiting it, the nucleus has electrons orbiting. Electrons have a negative charge (-1). Because electrons are negatively charged and the nucleus is positively charged, they are electrostatically attracted to each other, like how gravity ensures attraction between planets and the sun.
So that’s the general structure of an atom, what about its mass and size? Protons and neutrons have the same mass, but electrons are so small they weigh almost nothing in comparison to protons and neutrons. In fact they are about 2000 times lighter. As a result, the mass of an atom is concentrated at its nucleus.
So that’s the mass of an atom, but what about it’s size? One way to describe the size of an atom is its radius. The radius of an atoms is the distance from its centre, where the nucleus is, to the outermost shell of electrons. The radius of an atom is typically 10-10m.
So the majority of the mass of an atom is contained in its nucleus, but in terms of size the nucleus is much smaller than the atom as a whole. In fact, electrons can orbit really far away from the nucleus. If the atom was the size of a sports arena, the nucleus could be the size of a pea in the middle!
Let’s finish off by looking at the electrons in a little more detail.
Negatively charged electrons orbit around the positive nucleus in specific orbits or shells. Different atoms have different numbers of shells (or orbitals).
Each shell is of a specific energy level, meaning an electron must possess a certain amount of energy to reside in a certain shell. Electrons in shells closest to the nucleus have the least energy, and electrons in the outermost shells have the highest energy levels.
In other words, electrons orbit the nucleus similar to how planets orbit the sun; however, electrons can only orbit at specific distances and with specific energies.
We will look at the differences in structure of atoms of different elements and the periodic table in this video
So there we have the structure of an atom. Atoms have a positively charged nucleus made up on positive protons and neutral neutrons, which is orbited by negatively charged electrons. The majority of the mass of an atom [10-23g] is found in the nucleus, and the typical size of atoms is 10-10m.
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What is an Atom?
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An atom is the basic unit of matter, and it is the smallest unit of an element that retains the chemical properties of that element. Atoms are the building blocks of all matter in the universe. They are composed of three main subatomic particles:
1. Protons: Positively charged particles found in the nucleus of the atom.
2. Neutrons: Neutrally charged particles also located in the nucleus.
3. Electrons: Negatively charged particles that orbit the nucleus in electron shells or energy levels.
The protons and neutrons are tightly packed in the central nucleus of the atom, while the electrons move in various energy levels or orbitals around the nucleus. The number of protons in an atom's nucleus defines its atomic number, which, in turn, determines the element to which the atom belongs. The number of electrons typically matches the number of protons, creating a neutral atom.
Atoms can combine to form molecules through chemical bonding, and they can participate in chemical reactions by gaining, losing, or sharing electrons. The study of atoms and their interactions is a fundamental concept in chemistry and physics and has led to a deeper understanding of the properties and behavior of matter.
At Manocha Academy, learning Science and Math is Easy! The school coursework is explained with simple examples that you experience every day! Yes, Science & Math is all around you! Let's learn every day from everyday life!
The final part of Professor Jim Al-Khalili's documentary series about the basic building block of our universe, the atom.
Al-Khalili explores how studying the atom forced us to rethink the nature of reality itself, encountering ideas that seem like they are from science fiction but in fact are a central part of modern science. He discovers that there might be parallel universes in which different versions of us exist and finds out that empty space is not empty at all, but seething with activity.
The world we think we know - the solid, reassuring world of our senses - turns out to be a tiny sliver of an infinitely weirder and more wonderful universe than we had ever conceived in our wildest fantasies.
The story of the discovery that everything is made from atoms, one of the greatest scientific breakthroughs in history, and the brilliant minds behind it.
For more awe inspiring documentaries, subscribe to our channel: https://www.youtube.com/channel/UCZSE95RmyMUgJWmfra9Yx1A?Sub_Confirmation=1
Welcome to ReelTruth.Science the home of inspiring documentaries from the scientific and medical world. Here you can find full length documentaries to discover and explore.
#atom #atomdocumentary #reeltruthscience
What Is An Atom? | The Dr. Binocs Show | Best Learning Videos For Kids | Peekaboo Kidz
Hi KIDZ! Welcome to a BRAND NEW SEASON of the DR. Binocs show. Have you ever wondered what the matter around us or even what we are made up of apart from flesh and bones? Watch this video by DR. Binocs to learn What an Atom is and how it works! Keep commenting your answers to win a shout out in the next video :D
#Atom
#drbinocs
#DrBinocsshow
#peekabookidz
SUBSCRIBE to Peekaboo Kidz:http://bit.ly/SubscribeTo-Peekabookidz
Catch Dr.Binocs At - https://goo.gl/SXhLmc
To Watch More Popular Nursery Rhymes Go To - https://goo.gl/CV0Xoo
To Watch Alphabet Rhymes Go To - https://goo.gl/qmIRLv
To Watch Compilations Go To - https://goo.gl/nW3kw9
Voice of Dr. Binocs - Joseph D'Souza
Creative Head/Written/Directed by Nitin Navale
Illustrators - Kalpesh Bamne, Mukesh Ishi, Rupesh Hire
Storyboard - Kalpesh Bamne
Animators - Rupesh Hire, Sushant Hodage, Tushar Ishi , Raju Nikumbe
VFX Artist - Aliasgar Kagalwala
Background Score & SFX - Jay Rajesh Arya
Sound Engineer - Varad J. Khare
Producer - Neha Barjatya
Copyrights and Publishing: Rajshri Entertainment Private Limited
All rights reserved.
Atoms for kids is an introduction video that helps students learn all about atoms. We answer questions like "What is an Atom?", "What is an Atom made of?", and "What do Atoms do?". We explore protons, electrons and neutrons and give a brief overview of the periodic table of elements. But don't stop at this video! You can also download our FREE lesson plan that has many activities and worksheets about atoms that will help engage and reinforce the learning.
Download the Atoms Lesson Plan here: https://learnbright.org/lessons/science/atoms/
Thank you for watching and learning with us! We’re constantly releasing new content and videos, so click that “Subscribe” button and you’ll get notified.
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Website: https://learnbright.org/
*Teachers and Parents! Did you know? In addition to these great videos, we have also created a library of high quality and engaging lessons for your elementary aged student(s). Visit us, sign up for a free account, and instantly you'll have access to thousands of lesson plans, learning materials, teaching instructions, activities, and assignments that your kids will really enjoy! We hope to see you soon!
Browse our entire collection of Science lesson plans: https://learnbright.org/lessons/?filter_subject=science
#AtomsForKids
#Atoms
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This video is about using Bohmian trajectories to visualize the wavefunctions of hydrogen orbitals, rendered in 3D using custom python code in Blender.
REFERENCES
A Suggested Interpretation of the Quantum Theory in Terms of "Hidden" Variables. I
David Bohm, Physical Review, Vol 85 No. 2, January 15, 1952
Speakable and Unspeakable in Quantum Mechanics
J. S. Bell
Trajectory construction of Dirac evolution
Peter Holland
The de Broglie-Bohm Causal Interpretation of Quantum Mechanics and its Application to some Simple Systems by Caroline Colijn
Bohmian Trajectories as the Foundation of Quantum Mechanics
http://arxiv.org/abs/0912.2666v1
The Pilot-Wave Perspective on Quantum Scattering and Tunneling
http://arxiv.org/abs/1210.7265v2
A Quantum Potential Description of One-Dimensional Time-Dependent Scattering From Square Barriers and Square Wells
Dewdney, Foundations of Physics, VoL 12, No. 1, 1982
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The atom was a unit of time referred to in medieval philosophical writings as the smallest possible division of time. The earliest known occurrence in English is in Byrhtferth's Enchiridion (a science text) of 1010–1012, where it was defined as 1/564 of a momentum (1½ minutes), and thus equal to 15/94 of a second. It was used in the computus, the calculation used to determine the calendar date of Easter.
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#13 AtomicBeauty will appreciate a soft time up front, and with Zac Purton taking the ride from a low draw, he looks poised to improve after being hindered by wide gates in his last two starts.
military dropped the atomic bomb on Aug ... 9, 2024, 79 years after the atomic bombing of Nagasaki ... Outraged, she disclosed her atomic bomb experience for the first time on the social media platform.
The Bulletin of the AtomicScientists updates the time annually based on information about catastrophic risks to the planet and humanity ... They meet virtually multiple times and twice in person in ...
... elements such as tritium, cesium-137 and strontium-90, according to the ChinaAtomicEnergyAuthority. The specific data will be compiled and published by the International Atomic Energy Agency.
... atomic clocks ... A satellite-based positioning system determines the location of objects by accurately measuring the time it takes for a signal to travel to and from it using the atomic clocks on board.
In the same way America recognized that it needed to develop the atomic bomb before Germany to maintain its very existence, so must we bring AI to full cognitive fruition ... In 2023, the New YorkTimes ...