-
EARTH'S SOLAR SYSTEM...THE INVARIABLE PLANE
"Imperfection clings to a person, and if they wait till they are brushed off entirely, they would spin for ever on their axis, advancing nowhere."
You have some nice answers to the question, but they don't really explain what is above and below planetary and galactic discs, nor do they say why. The real answer is in two parts, neither of which is especially well known.
The first thing is, neither galaxies nor solar systems start off as discs, but as more spherical clouds. A gravitational force called Equatorial Forcing, exerted by a rotating massive central body, very gradually normalizes the orbits of less massive bodies near it so that they get closer to its own equatorial plane (and direction) of rotation.
In the case of our Solar System, the planets once had much more random orbits ...
published: 17 Feb 2019
-
Invariable plane | Wikipedia audio article
This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Invariable_plane
00:01:56 Description
Listening is a more natural way of learning, when compared to reading. Written language only began at around 3200 BC, but spoken language has existed long ago.
Learning by listening is a great way to:
- increases imagination and understanding
- improves your listening skills
- improves your own spoken accent
- learn while on the move
- reduce eye strain
Now learn the vast amount of general knowledge available on Wikipedia through audio (audio article). You could even learn subconsciously by playing the audio while you are sleeping! If you are planning to listen a lot, you could try using a bone conduction headphone, or a standard speaker instead of a...
published: 29 May 2019
-
Why Do the Planets Orbit in the Same Plane?
While there is a little wiggle room, the planets in our solar system really are orbiting on mostly the same level. Why do they do that?
Hosted by: Olivia Gordon
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Kelly Landrum Jones, Sam Lutfi, Kevin Knupp, Nicholas Smith, D.A. Noe, alexander wadsworth, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Bader AlGhamdi, James Harshaw, Patrick Merrithew, Patrick D. Ashmore, Candy, Tim Curwick, charles george, Saul, Mark Terrio-Cameron, Viraansh Bhanushali, Kevin Bealer, Philippe von Bergen, Chris Peters, Justin Lentz
----------
Looking for SciShow elsewhere on the internet?
Facebook: h...
published: 13 Mar 2018
-
Lunar Eclipse, Earth Passes Through Invariable Plane
This is a fifteen second animation of the Earth crossing the invariable plane. Just before crossing, a total lunar eclipse occurs. The grid spacing is 1,000,000 km. The time scale is 1:21600 (1 second = 6 hours).
published: 20 Feb 2012
-
理系英単語リズミクス invariable plane
boost your science vocabulary!
http://rikeryth.sblo.jp
電子書籍『ドシロートのための英語発音独習法』
https://amzn.to/2OsVCLX
電子書籍『指導者いらずの英語発音筋肉解決』
https://amzn.to/2VHyPyN
published: 17 Nov 2018
-
Dlaczego układ słoneczny jest płaski?
Wyjaśnienie płaskości układu słonecznego oraz płaskiej formy pierścieni gazowych olbrzymów.
Źródła:
https://medium.com/starts-with-a-bang/ask-ethan-82-why-are-the-planets-all-in-the-same-plane-4470245c8743#.w5678vh94
https://www.zmescience.com/science/news-science/why-solar-system-flat/
https://caps.gsfc.nasa.gov/simpson/kingswood/rings/
Patronite:
https://patronite.pl/smartgasm
published: 15 Dec 2019
-
A Tenth Planet Could Be Warping Our Outer Solar System
Scientists have just found warping in the Kuiper Belt that suggests there might be a tenth planet.
How The Mysterious Planet 9 Is Tilting Our Solar System - https://youtu.be/Yo0Bz-8ZeR8
Proof We Landed on the Moon is in the Topography - https://youtu.be/fSDeIjSzTzA
Sign Up For The Seeker Newsletter Here - http://bit.ly/1UO1PxI
Get 15% off http://www.domain.com domain names and web hosting when you use coupon code SEEKER at checkout!
Read More:
UA Scientists and the Curious Case of the Warped Kuiper Belt
https://uanews.arizona.edu/story/ua-scientists-and-curious-case-warped-kuiper-belt
"The plane of the solar system is warped in the outer reaches of the Kuiper Belt, signaling the presence of an unknown Mars-to-Earth-mass planetary object far beyond Pluto, according to n...
published: 11 Jul 2017
-
Earth's motion around the Sun, not as simple as I thought
Source:
CassioPeia Project
http://www.cassiopeiaproject.com/
More at https://www.youtube.com/user/cassiopeiaproject
published: 17 Jan 2010
-
כבידה: שדה כבידה
אם עזרתי לכם בבקשה כנסו לתרום אפילו תרומה צנועה כך שאוכל להרחיב את היצע הסרטונים והנושאים
https://paypal.me/MATIMATIX?locale.x=en_US
published: 17 Jun 2020
22:02
EARTH'S SOLAR SYSTEM...THE INVARIABLE PLANE
"Imperfection clings to a person, and if they wait till they are brushed off entirely, they would spin for ever on their axis, advancing nowhere."
You have som...
"Imperfection clings to a person, and if they wait till they are brushed off entirely, they would spin for ever on their axis, advancing nowhere."
You have some nice answers to the question, but they don't really explain what is above and below planetary and galactic discs, nor do they say why. The real answer is in two parts, neither of which is especially well known.
The first thing is, neither galaxies nor solar systems start off as discs, but as more spherical clouds. A gravitational force called Equatorial Forcing, exerted by a rotating massive central body, very gradually normalizes the orbits of less massive bodies near it so that they get closer to its own equatorial plane (and direction) of rotation.
In the case of our Solar System, the planets once had much more random orbits about the Sun, the central massive body. Over about 1 billion years, Equatorial Forcing gradually brought the planets down to orbit close to the Sun's equatorial plane.
The effect is stronger nearer the Sun -- so the orbits of Pluto and other distant Trans-Neptunian objects in the Kuiper Belt and beyond stray more and more from the equatorial plane, the further you go from the Sun. Eventually, as with long-period comets, their orbits are completely random in this respect.
The graphic shows how the inner solar system is almost flat, the orbits of the outer solar system and Kuiper Belt objects are more inclined, and beyond them, the Oort Cloud objects move randomly with respect to the Sun's equator.
The same effects operate with galaxies. Young galaxies are usually globular, without an obvious disc. When an AGN (an active galactic nucleus or supermassive black hole) starts to build up, it slowly forces stars and solar systems within its gravitational reach down into its own plane of rotation. So older galaxies look like discs.
There is a quick summary of the effect at:
What is Equatorial Forcing? What is Equatorial Forcing?
The second part of the answer follows from the first. Because Equatorial Forcing pulls down bodies into the central body's plane of rotation, the space above and below the plane is left relatively empty. Looking again at the graphic, the Sun has effectively hollowed out most of the matter within its sphere of influence (the Heliosphere) and brought it down into the plane of the planets. What is left behind is a relatively good vacuum. Enjoy! And Subscribe! Thank you! Cosmic T.v.
If interested, you can find a fuller account at:
XT806: What is Equatorial Forcing? http://www.aoi.com.au/Extracts/X...
Or, if you want to dive deeper still into the whole topic at length, see at http://www.aoi.com.au/BIP/.
https://wn.com/Earth'S_Solar_System...The_Invariable_Plane
"Imperfection clings to a person, and if they wait till they are brushed off entirely, they would spin for ever on their axis, advancing nowhere."
You have some nice answers to the question, but they don't really explain what is above and below planetary and galactic discs, nor do they say why. The real answer is in two parts, neither of which is especially well known.
The first thing is, neither galaxies nor solar systems start off as discs, but as more spherical clouds. A gravitational force called Equatorial Forcing, exerted by a rotating massive central body, very gradually normalizes the orbits of less massive bodies near it so that they get closer to its own equatorial plane (and direction) of rotation.
In the case of our Solar System, the planets once had much more random orbits about the Sun, the central massive body. Over about 1 billion years, Equatorial Forcing gradually brought the planets down to orbit close to the Sun's equatorial plane.
The effect is stronger nearer the Sun -- so the orbits of Pluto and other distant Trans-Neptunian objects in the Kuiper Belt and beyond stray more and more from the equatorial plane, the further you go from the Sun. Eventually, as with long-period comets, their orbits are completely random in this respect.
The graphic shows how the inner solar system is almost flat, the orbits of the outer solar system and Kuiper Belt objects are more inclined, and beyond them, the Oort Cloud objects move randomly with respect to the Sun's equator.
The same effects operate with galaxies. Young galaxies are usually globular, without an obvious disc. When an AGN (an active galactic nucleus or supermassive black hole) starts to build up, it slowly forces stars and solar systems within its gravitational reach down into its own plane of rotation. So older galaxies look like discs.
There is a quick summary of the effect at:
What is Equatorial Forcing? What is Equatorial Forcing?
The second part of the answer follows from the first. Because Equatorial Forcing pulls down bodies into the central body's plane of rotation, the space above and below the plane is left relatively empty. Looking again at the graphic, the Sun has effectively hollowed out most of the matter within its sphere of influence (the Heliosphere) and brought it down into the plane of the planets. What is left behind is a relatively good vacuum. Enjoy! And Subscribe! Thank you! Cosmic T.v.
If interested, you can find a fuller account at:
XT806: What is Equatorial Forcing? http://www.aoi.com.au/Extracts/X...
Or, if you want to dive deeper still into the whole topic at length, see at http://www.aoi.com.au/BIP/.
- published: 17 Feb 2019
- views: 119
5:25
Invariable plane | Wikipedia audio article
This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Invariable_plane
00:01:56 Description
Listening is a more natural w...
This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Invariable_plane
00:01:56 Description
Listening is a more natural way of learning, when compared to reading. Written language only began at around 3200 BC, but spoken language has existed long ago.
Learning by listening is a great way to:
- increases imagination and understanding
- improves your listening skills
- improves your own spoken accent
- learn while on the move
- reduce eye strain
Now learn the vast amount of general knowledge available on Wikipedia through audio (audio article). You could even learn subconsciously by playing the audio while you are sleeping! If you are planning to listen a lot, you could try using a bone conduction headphone, or a standard speaker instead of an earphone.
Listen on Google Assistant through Extra Audio:
https://assistant.google.com/services/invoke/uid/0000001a130b3f91
Other Wikipedia audio articles at:
https://www.youtube.com/results?search_query=wikipedia+tts
Upload your own Wikipedia articles through:
https://github.com/nodef/wikipedia-tts
Speaking Rate: 0.7443326471079124
Voice name: en-US-Wavenet-E
"I cannot teach anybody anything, I can only make them think."
- Socrates
SUMMARY
=======
The invariable plane of a planetary system, also called Laplace's invariable plane, is the plane passing through its barycenter (center of mass) perpendicular to its angular momentum vector. In the Solar System, about 98% of this effect is contributed by the orbital angular momenta of the four jovian planets (Jupiter, Saturn, Uranus, and Neptune). The invariable plane is within 0.5° of the orbital plane of Jupiter, and may be regarded as the weighted average of all planetary orbital and rotational planes.
This plane is sometimes called the "Laplacian" or "Laplace plane" or the "invariable plane of Laplace", though it should not be confused with the Laplace plane, which is the plane about which orbital planes precess. Both derive from the work of (and are at least sometimes named for) the French astronomer Pierre Simon Laplace. The two are equivalent only in the case where all perturbers and resonances are far from the precessing body. The invariable plane is simply derived from the sum of angular momenta, and is "invariable" over the entire system, while the Laplace plane may be different for different orbiting objects within a system. Laplace called the invariable plane the plane of maximum areas, where the area is the product of the radius and its differential time change dR⁄dt, that is, its radial velocity, multiplied by the mass.
https://wn.com/Invariable_Plane_|_Wikipedia_Audio_Article
This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Invariable_plane
00:01:56 Description
Listening is a more natural way of learning, when compared to reading. Written language only began at around 3200 BC, but spoken language has existed long ago.
Learning by listening is a great way to:
- increases imagination and understanding
- improves your listening skills
- improves your own spoken accent
- learn while on the move
- reduce eye strain
Now learn the vast amount of general knowledge available on Wikipedia through audio (audio article). You could even learn subconsciously by playing the audio while you are sleeping! If you are planning to listen a lot, you could try using a bone conduction headphone, or a standard speaker instead of an earphone.
Listen on Google Assistant through Extra Audio:
https://assistant.google.com/services/invoke/uid/0000001a130b3f91
Other Wikipedia audio articles at:
https://www.youtube.com/results?search_query=wikipedia+tts
Upload your own Wikipedia articles through:
https://github.com/nodef/wikipedia-tts
Speaking Rate: 0.7443326471079124
Voice name: en-US-Wavenet-E
"I cannot teach anybody anything, I can only make them think."
- Socrates
SUMMARY
=======
The invariable plane of a planetary system, also called Laplace's invariable plane, is the plane passing through its barycenter (center of mass) perpendicular to its angular momentum vector. In the Solar System, about 98% of this effect is contributed by the orbital angular momenta of the four jovian planets (Jupiter, Saturn, Uranus, and Neptune). The invariable plane is within 0.5° of the orbital plane of Jupiter, and may be regarded as the weighted average of all planetary orbital and rotational planes.
This plane is sometimes called the "Laplacian" or "Laplace plane" or the "invariable plane of Laplace", though it should not be confused with the Laplace plane, which is the plane about which orbital planes precess. Both derive from the work of (and are at least sometimes named for) the French astronomer Pierre Simon Laplace. The two are equivalent only in the case where all perturbers and resonances are far from the precessing body. The invariable plane is simply derived from the sum of angular momenta, and is "invariable" over the entire system, while the Laplace plane may be different for different orbiting objects within a system. Laplace called the invariable plane the plane of maximum areas, where the area is the product of the radius and its differential time change dR⁄dt, that is, its radial velocity, multiplied by the mass.
- published: 29 May 2019
- views: 21
3:07
Why Do the Planets Orbit in the Same Plane?
While there is a little wiggle room, the planets in our solar system really are orbiting on mostly the same level. Why do they do that?
Hosted by: Olivia Gord...
While there is a little wiggle room, the planets in our solar system really are orbiting on mostly the same level. Why do they do that?
Hosted by: Olivia Gordon
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Kelly Landrum Jones, Sam Lutfi, Kevin Knupp, Nicholas Smith, D.A. Noe, alexander wadsworth, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Bader AlGhamdi, James Harshaw, Patrick Merrithew, Patrick D. Ashmore, Candy, Tim Curwick, charles george, Saul, Mark Terrio-Cameron, Viraansh Bhanushali, Kevin Bealer, Philippe von Bergen, Chris Peters, Justin Lentz
----------
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://www.ast.cam.ac.uk/public/ask/3088
https://www.noao.edu/staff/csalyk/AST101/presentations/SolarSystemFormation.pdf
http://theconversation.com/pluto-and-its-collision-course-place-in-our-solar-system-43404
http://www.astronomy.com/news/2013/11/astronomers-establish-the-strength-of-high-inclination-asteroids
https://arxiv.org/pdf/1501.06204.pdf
http://iopscience.iop.org/article/10.1086/320391/pdf
https://www.scientificamerican.com/article/experts-where-is-the-oort-cloud/
https://nerdfighteria.info/v/ZJscxTyI__s/
------
Images:
https://images.nasa.gov/details-PIA11800.html
https://svs.gsfc.nasa.gov/cgi-bin/details.cgi?aid=10635
https://commons.wikimedia.org/wiki/File:Orion_Nebula_with_proplyd_highlights_(captured_by_the_Hubble_Space_Telescope).jpg
https://en.wikipedia.org/wiki/File:Plutoorbit1.5sideview.gif
https://en.wikipedia.org/wiki/Halley%27s_Comet#/media/File:Halley%27s_Comet_animation.gif
http://www.thinkstockphotos.com/image/stock-illustration-planets-of-the-solar-system/525563143
https://wn.com/Why_Do_The_Planets_Orbit_In_The_Same_Plane
While there is a little wiggle room, the planets in our solar system really are orbiting on mostly the same level. Why do they do that?
Hosted by: Olivia Gordon
----------
Support SciShow by becoming a patron on Patreon: https://www.patreon.com/scishow
----------
Dooblydoo thanks go to the following Patreon supporters: Lazarus G, Kelly Landrum Jones, Sam Lutfi, Kevin Knupp, Nicholas Smith, D.A. Noe, alexander wadsworth, سلطان الخليفي, Piya Shedden, KatieMarie Magnone, Scott Satovsky Jr, Charles Southerland, Bader AlGhamdi, James Harshaw, Patrick Merrithew, Patrick D. Ashmore, Candy, Tim Curwick, charles george, Saul, Mark Terrio-Cameron, Viraansh Bhanushali, Kevin Bealer, Philippe von Bergen, Chris Peters, Justin Lentz
----------
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://www.ast.cam.ac.uk/public/ask/3088
https://www.noao.edu/staff/csalyk/AST101/presentations/SolarSystemFormation.pdf
http://theconversation.com/pluto-and-its-collision-course-place-in-our-solar-system-43404
http://www.astronomy.com/news/2013/11/astronomers-establish-the-strength-of-high-inclination-asteroids
https://arxiv.org/pdf/1501.06204.pdf
http://iopscience.iop.org/article/10.1086/320391/pdf
https://www.scientificamerican.com/article/experts-where-is-the-oort-cloud/
https://nerdfighteria.info/v/ZJscxTyI__s/
------
Images:
https://images.nasa.gov/details-PIA11800.html
https://svs.gsfc.nasa.gov/cgi-bin/details.cgi?aid=10635
https://commons.wikimedia.org/wiki/File:Orion_Nebula_with_proplyd_highlights_(captured_by_the_Hubble_Space_Telescope).jpg
https://en.wikipedia.org/wiki/File:Plutoorbit1.5sideview.gif
https://en.wikipedia.org/wiki/Halley%27s_Comet#/media/File:Halley%27s_Comet_animation.gif
http://www.thinkstockphotos.com/image/stock-illustration-planets-of-the-solar-system/525563143
- published: 13 Mar 2018
- views: 435571
0:17
Lunar Eclipse, Earth Passes Through Invariable Plane
This is a fifteen second animation of the Earth crossing the invariable plane. Just before crossing, a total lunar eclipse occurs. The grid spacing is 1,000,000...
This is a fifteen second animation of the Earth crossing the invariable plane. Just before crossing, a total lunar eclipse occurs. The grid spacing is 1,000,000 km. The time scale is 1:21600 (1 second = 6 hours).
https://wn.com/Lunar_Eclipse,_Earth_Passes_Through_Invariable_Plane
This is a fifteen second animation of the Earth crossing the invariable plane. Just before crossing, a total lunar eclipse occurs. The grid spacing is 1,000,000 km. The time scale is 1:21600 (1 second = 6 hours).
- published: 20 Feb 2012
- views: 270
0:18
理系英単語リズミクス invariable plane
boost your science vocabulary!
http://rikeryth.sblo.jp
電子書籍『ドシロートのための英語発音独習法』
https://amzn.to/2OsVCLX
電子書籍『指導者いらずの英語発音筋肉解決』
https://amzn.to/2VHyPyN
boost your science vocabulary!
http://rikeryth.sblo.jp
電子書籍『ドシロートのための英語発音独習法』
https://amzn.to/2OsVCLX
電子書籍『指導者いらずの英語発音筋肉解決』
https://amzn.to/2VHyPyN
https://wn.com/理系英単語リズミクス_Invariable_Plane
boost your science vocabulary!
http://rikeryth.sblo.jp
電子書籍『ドシロートのための英語発音独習法』
https://amzn.to/2OsVCLX
電子書籍『指導者いらずの英語発音筋肉解決』
https://amzn.to/2VHyPyN
- published: 17 Nov 2018
- views: 3
7:21
Dlaczego układ słoneczny jest płaski?
Wyjaśnienie płaskości układu słonecznego oraz płaskiej formy pierścieni gazowych olbrzymów.
Źródła:
https://medium.com/starts-with-a-bang/ask-ethan-82-why-ar...
Wyjaśnienie płaskości układu słonecznego oraz płaskiej formy pierścieni gazowych olbrzymów.
Źródła:
https://medium.com/starts-with-a-bang/ask-ethan-82-why-are-the-planets-all-in-the-same-plane-4470245c8743#.w5678vh94
https://www.zmescience.com/science/news-science/why-solar-system-flat/
https://caps.gsfc.nasa.gov/simpson/kingswood/rings/
Patronite:
https://patronite.pl/smartgasm
https://wn.com/Dlaczego_Układ_Słoneczny_Jest_Płaski
Wyjaśnienie płaskości układu słonecznego oraz płaskiej formy pierścieni gazowych olbrzymów.
Źródła:
https://medium.com/starts-with-a-bang/ask-ethan-82-why-are-the-planets-all-in-the-same-plane-4470245c8743#.w5678vh94
https://www.zmescience.com/science/news-science/why-solar-system-flat/
https://caps.gsfc.nasa.gov/simpson/kingswood/rings/
Patronite:
https://patronite.pl/smartgasm
- published: 15 Dec 2019
- views: 94039
2:55
A Tenth Planet Could Be Warping Our Outer Solar System
Scientists have just found warping in the Kuiper Belt that suggests there might be a tenth planet.
How The Mysterious Planet 9 Is Tilting Our Solar System -...
Scientists have just found warping in the Kuiper Belt that suggests there might be a tenth planet.
How The Mysterious Planet 9 Is Tilting Our Solar System - https://youtu.be/Yo0Bz-8ZeR8
Proof We Landed on the Moon is in the Topography - https://youtu.be/fSDeIjSzTzA
Sign Up For The Seeker Newsletter Here - http://bit.ly/1UO1PxI
Get 15% off http://www.domain.com domain names and web hosting when you use coupon code SEEKER at checkout!
Read More:
UA Scientists and the Curious Case of the Warped Kuiper Belt
https://uanews.arizona.edu/story/ua-scientists-and-curious-case-warped-kuiper-belt
"The plane of the solar system is warped in the outer reaches of the Kuiper Belt, signaling the presence of an unknown Mars-to-Earth-mass planetary object far beyond Pluto, according to new research from the UA."
'Planet Nine' Could Be an Alien Intruder
https://www.seeker.com/planet-nine-astronomy-solar-system-mystery-planets-pluto-2192095886.html
"There are few solar system mysteries quite as compelling as 'Planet Nine.' The hypothetical world, thought to be orbiting at an extreme distance from the sun, has some observational evidence that supports its existence. But as it is so far away and therefore so dim, it's not very easy to actually directly observe it."
NASA's Kepler Telescope Has Identified 10 New Earth-Like Exoplanets
https://www.seeker.com/space/planets/nasas-kepler-telescope-has-identified-10-new-earth-like-exoplanets
"NASA revealed Monday 10 new rocky Earth-sized planets that could potentially have liquid water and support life. The Kepler mission team released a survey of 219 potential exoplanets - planets outside of our solar system - that had been detected by the space observatory launched in 2009 to scan the Milky Way galaxy."
____________________
Seeker inspires us to see the world through the lens of science and evokes a sense of curiosity, optimism and adventure.
Visit the Seeker website http://www.seeker.com/shows/?utm_source=youtube&utm_medium=social&utm_campaign=seeker
Subscribe now! http://www.youtube.com/subscription_center?add_user=dnewschannel
Seeker on Twitter http://twitter.com/seeker
Trace Dominguez on Twitter https://twitter.com/tracedominguez
Seeker on Facebook https://www.facebook.com/SeekerMedia/
Seeker http://www.seeker.com/
Special thanks to Amy Shira Teitel for hosting and writing this episode of Seeker!
Check Amy out on Twitter: https://twitter.com/astVintageSpace
https://wn.com/A_Tenth_Planet_Could_Be_Warping_Our_Outer_Solar_System
Scientists have just found warping in the Kuiper Belt that suggests there might be a tenth planet.
How The Mysterious Planet 9 Is Tilting Our Solar System - https://youtu.be/Yo0Bz-8ZeR8
Proof We Landed on the Moon is in the Topography - https://youtu.be/fSDeIjSzTzA
Sign Up For The Seeker Newsletter Here - http://bit.ly/1UO1PxI
Get 15% off http://www.domain.com domain names and web hosting when you use coupon code SEEKER at checkout!
Read More:
UA Scientists and the Curious Case of the Warped Kuiper Belt
https://uanews.arizona.edu/story/ua-scientists-and-curious-case-warped-kuiper-belt
"The plane of the solar system is warped in the outer reaches of the Kuiper Belt, signaling the presence of an unknown Mars-to-Earth-mass planetary object far beyond Pluto, according to new research from the UA."
'Planet Nine' Could Be an Alien Intruder
https://www.seeker.com/planet-nine-astronomy-solar-system-mystery-planets-pluto-2192095886.html
"There are few solar system mysteries quite as compelling as 'Planet Nine.' The hypothetical world, thought to be orbiting at an extreme distance from the sun, has some observational evidence that supports its existence. But as it is so far away and therefore so dim, it's not very easy to actually directly observe it."
NASA's Kepler Telescope Has Identified 10 New Earth-Like Exoplanets
https://www.seeker.com/space/planets/nasas-kepler-telescope-has-identified-10-new-earth-like-exoplanets
"NASA revealed Monday 10 new rocky Earth-sized planets that could potentially have liquid water and support life. The Kepler mission team released a survey of 219 potential exoplanets - planets outside of our solar system - that had been detected by the space observatory launched in 2009 to scan the Milky Way galaxy."
____________________
Seeker inspires us to see the world through the lens of science and evokes a sense of curiosity, optimism and adventure.
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Special thanks to Amy Shira Teitel for hosting and writing this episode of Seeker!
Check Amy out on Twitter: https://twitter.com/astVintageSpace
- published: 11 Jul 2017
- views: 306370
9:28
Earth's motion around the Sun, not as simple as I thought
Source:
CassioPeia Project
http://www.cassiopeiaproject.com/
More at https://www.youtube.com/user/cassiopeiaproject
Source:
CassioPeia Project
http://www.cassiopeiaproject.com/
More at https://www.youtube.com/user/cassiopeiaproject
https://wn.com/Earth's_Motion_Around_The_Sun,_Not_As_Simple_As_I_Thought
Source:
CassioPeia Project
http://www.cassiopeiaproject.com/
More at https://www.youtube.com/user/cassiopeiaproject
- published: 17 Jan 2010
- views: 13138317
7:27
כבידה: שדה כבידה
אם עזרתי לכם בבקשה כנסו לתרום אפילו תרומה צנועה כך שאוכל להרחיב את היצע הסרטונים והנושאים
https://paypal.me/MATIMATIX?locale.x=en_US
אם עזרתי לכם בבקשה כנסו לתרום אפילו תרומה צנועה כך שאוכל להרחיב את היצע הסרטונים והנושאים
https://paypal.me/MATIMATIX?locale.x=en_US
https://wn.com/כבידה_שדה_כבידה
אם עזרתי לכם בבקשה כנסו לתרום אפילו תרומה צנועה כך שאוכל להרחיב את היצע הסרטונים והנושאים
https://paypal.me/MATIMATIX?locale.x=en_US
- published: 17 Jun 2020
- views: 225