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Saison 2019
Date de diffusion
Jan 04, 2019
People say that solar power is the future of renewable energy, but how do solar panels work anyway? Join us as we explore the world of semiconductors using chemistry. http://brilliant.org/ScienceAsylum
People say that solar power is the future of renewable energy, but how do solar panels work anyway? Join us as we explore the world of semiconductors using chemistry. http://brilliant.org/ScienceAsylum
Date de diffusion
Jan 17, 2019
Most of our energy isn't generated chemically like in batteries or by solar panels. Whether, it's coal, gas, nuclear, wind, or water power; it's generated by magnetic induction and governed by Faraday's law from electrodynamics.
Most of our energy isn't generated chemically like in batteries or by solar panels. Whether, it's coal, gas, nuclear, wind, or water power; it's generated by magnetic induction and governed by Faraday's law from electrodynamics.
2019x3
Energy doesn't FLOW the way you THINK! (Electrodynamics)
Episode overview
Date de diffusion
Fév 01, 2019
This episode has no summary.
This episode has no summary.
Date de diffusion
Fév 16, 2019
Most sources talk about Schwarzschild black holes, but those don't spin. Most are what we call Kerr black holes, or rotating black holes, surrounded by a region called an ergosphere. The
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Most sources talk about Schwarzschild black holes, but those don't spin. Most are what we call Kerr black holes, or rotating black holes, surrounded by a region called an ergosphere. The spacetime around them is not only stretched, but also twisted, leading to some strange phenomena.
Date de diffusion
Mar 14, 2019
Whether or not pi exists has some very deep implications about circles, matter, computing, space-time, gravity, and quantum physics. Let's see if we can tackle some of them in honor of pi day!
Whether or not pi exists has some very deep implications about circles, matter, computing, space-time, gravity, and quantum physics. Let's see if we can tackle some of them in honor of pi day!
Date de diffusion
Mar 29, 2019
Science Asylum is a proud partner of Dollar Shave Club. http://www.dollarshaveclub.com/scienceasylum
Science Asylum is a proud partner of Dollar Shave Club. http://www.dollarshaveclub.com/scienceasylum
Date de diffusion
Avr 15, 2019
It's often said that light is an electromagnetic wave, a disturbance in electric and magnetic fields, but what does that mean? How are they made? Let's take a deeper look at
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It's often said that light is an electromagnetic wave, a disturbance in electric and magnetic fields, but what does that mean? How are they made? Let's take a deeper look at electrodynamics and this history behind the discovery to see if we can find an answer.
Date de diffusion
Mai 01, 2019
When physics students first learn about Newton's law and momentum, they get the impression that it's all about mass. If that's true, how can mass-less light have momentum? It's because mass isn't actually required.
When physics students first learn about Newton's law and momentum, they get the impression that it's all about mass. If that's true, how can mass-less light have momentum? It's because mass isn't actually required.
Date de diffusion
Mai 17, 2019
Color is a property that belongs to light (i.e. electromagnetic waves). We only think objects are colored because of the light they reflect and scatter. In fact, some of the colors you
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Color is a property that belongs to light (i.e. electromagnetic waves). We only think objects are colored because of the light they reflect and scatter. In fact, some of the colors you see are an illusion created by your eyes and brain. What colors are real and which ones are fake? Let's find out.
Date de diffusion
Jun 03, 2019
We might not have unified electrodynamics until 1865, but we've known light was a wave since the original double-slit experiment in 1801. Let's talk about diffraction and wave interference.
We might not have unified electrodynamics until 1865, but we've known light was a wave since the original double-slit experiment in 1801. Let's talk about diffraction and wave interference.
Date de diffusion
Jun 20, 2019
Do quantum particles actually know if they're being watched like the double-slit experiment suggests? Does the delayed-choice quantum eraser finally prove this? No, but let's ask some better questions and see what's going on.
Do quantum particles actually know if they're being watched like the double-slit experiment suggests? Does the delayed-choice quantum eraser finally prove this? No, but let's ask some better questions and see what's going on.
Date de diffusion
Juil 09, 2019
Check out Brilliant for 20% off: http://brilliant.org/ScienceAsylum
Check out Brilliant for 20% off: http://brilliant.org/ScienceAsylum
Date de diffusion
Juil 22, 2019
Go to http://audible.com/thescienceasylum or text 'thescienceasylum' to 500 500 to get started today. Is energy always conserved? Well, Noether's theorem in combination with Lagrangian
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Go to http://audible.com/thescienceasylum or text 'thescienceasylum' to 500 500 to get started today. Is energy always conserved? Well, Noether's theorem in combination with Lagrangian mechanics and general relativity tells us that isn't true in general.
Date de diffusion
Août 07, 2019
Gradients, a form of the del operator, are a way to measure change in field strength across one, two, or even three dimensional space. They come up all over physics: fluid dynamics,
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Gradients, a form of the del operator, are a way to measure change in field strength across one, two, or even three dimensional space. They come up all over physics: fluid dynamics, conservative forces, electrodynamics, cosmology. They're the reason that anything ever happens.
Date de diffusion
Août 26, 2019
Maxwell's equation are written in the language of vector calculus, specifically divergence and curl. Understanding how the electromagnetic field works requires we also understand that
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Maxwell's equation are written in the language of vector calculus, specifically divergence and curl. Understanding how the electromagnetic field works requires we also understand that language. Unfortunately, symbols can be ugly, so let's try some dynamic visuals instead.
Date de diffusion
Sept 11, 2019
Electrodynamics (electricity and magnetism) is governed by Maxwell's equations and the Lorentz force law, but that left it a little broken. It would take Albert Einstein inventing
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Electrodynamics (electricity and magnetism) is governed by Maxwell's equations and the Lorentz force law, but that left it a little broken. It would take Albert Einstein inventing special relativity to fix it. If magnets are based on motion and motion is relative, how does that work?
Date de diffusion
Sept 27, 2019
The most mysterious aspect of quantum mechanics is the wave function. What does it have to do with probability and statistics? Let's find out. Also, check out Brilliant for 20%: http://brilliant.org/ScienceAsylum
The most mysterious aspect of quantum mechanics is the wave function. What does it have to do with probability and statistics? Let's find out. Also, check out Brilliant for 20%: http://brilliant.org/ScienceAsylum
Date de diffusion
Oct 12, 2019
Electric and magnetic fields were considered the end-all-be-all of electromagnetism. However, in 1959, two physicists (Aharonov and Bohm) proposed a quantum mechanical experiment that shows electric and magnetic potentials are actually more real.
Electric and magnetic fields were considered the end-all-be-all of electromagnetism. However, in 1959, two physicists (Aharonov and Bohm) proposed a quantum mechanical experiment that shows electric and magnetic potentials are actually more real.
2019x19
Photosynthesis is WAY Crazier than you Think! | #TeamTrees
Episode overview
Date de diffusion
Oct 25, 2019
Lots of sources and videos explain photosynthesis through the lens of biology, but what does a physicist see as important? Can a physicist explain a biology topic? How deep will their explanation go? Let's find out.
Lots of sources and videos explain photosynthesis through the lens of biology, but what does a physicist see as important? Can a physicist explain a biology topic? How deep will their explanation go? Let's find out.
Date de diffusion
Nov 12, 2019
Mirrors are weird. To truly understand them, we'll need not only ray and wave optics, but also photons, wave functions, probability, and quantum mechanics. Brilliant for 20% off: https://brilliant.org/ScienceAsylum
Mirrors are weird. To truly understand them, we'll need not only ray and wave optics, but also photons, wave functions, probability, and quantum mechanics. Brilliant for 20% off: https://brilliant.org/ScienceAsylum
2019x21
Why aren't Mirrors White? Why isn't EVERYTHING a Mirror?
Episode overview
Date de diffusion
Déc 02, 2019
What's the difference between a mirror and a piece of paper? The answer requires an understanding of surface texture, but also light scattering, Huygens principle, and electrical conductivity. Optics is metal!
What's the difference between a mirror and a piece of paper? The answer requires an understanding of surface texture, but also light scattering, Huygens principle, and electrical conductivity. Optics is metal!
Date de diffusion
Déc 13, 2019
A lot of optical illusions can be explained by Fermat's principle of least time, but why does light obey it? On a fundamental level, it all comes down to quantum mechanics, specifically
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A lot of optical illusions can be explained by Fermat's principle of least time, but why does light obey it? On a fundamental level, it all comes down to quantum mechanics, specifically quantum optics, where we use the famous "Feynman path integral formulation" to explain light through photons.
2019x23
Épisode final de la saison
Cosmic Time is UNIMAGINABLY HUGE! Let's fix that.
Episode overview
Date de diffusion
Déc 27, 2019
We measure geologic time millions of years and cosmic time in the billions. These numbers seem impossible to understand, so let's get some perspective with a different unit: the galactic year.
We measure geologic time millions of years and cosmic time in the billions. These numbers seem impossible to understand, so let's get some perspective with a different unit: the galactic year.
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