Photons increase in mass?
Photons increase in mass?
So when momentum is changed, by a mirror or by a black hole's gravity, a photon will have more mass? Is it really that simple? And, when light particles combine, into a bond state, they also increase in mass?
I'm trying to understand how light particles gain mass, while at the bottom of the math physics learning curve.
I'm trying to understand how light particles gain mass, while at the bottom of the math physics learning curve.
Re: Photons increase in mass?
Isaac wrote:So when momentum is changed, by a mirror or by a black hole's gravity, a photon will have more mass? Is it really that simple? And, when light particles combine, into a bond state, they also increase in mass?
I'm trying to understand how light particles gain mass, while at the bottom of the math physics learning curve.
Dude if you are indeed old enough to study such things, why make ME do YOUR research?
Git-r-DONE!
It's never good to wake up in the shrubs naked, you either got way too drunk, or your azz is a werewolf.
Re: Photons increase in mass?
Yeah.AlphaDoG wrote:Dude if you are indeed old enough to study such things, why make ME do YOUR research?
Git-r-DONE!
Google "do photons have mass",
get stuff like this -
http://imagine.gsfc.nasa.gov/docs/ask_a ... 60731.html
Have fun, my little mathematical flounder.
- Foil
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To say the least, there's a lot of misunderstanding about this topic.
Here's the fundamental thing to understand: There are two 'types' of mass being talked about here.
One is \"rest mass\" or \"invariant mass\" or \"intrinsic mass\". Being very un-technical, you can think of this as the classic \"mass\" we all learned about in grade school.
The other, and usually the source of the confusion, is something called \"relativistic mass\". It's essentially a term which acts like mass in the equations for relativistic motion. It's described and taught different ways (and there's still debate about the terminology), but when physicists say things like \"mass increases near light speed\", they're talking about relativistic mass.
So... do photons have zero mass? Depends on what you're talking about. They have zero rest mass, but nonzero relativistic mass.
... Does that help?
Here's the fundamental thing to understand: There are two 'types' of mass being talked about here.
One is \"rest mass\" or \"invariant mass\" or \"intrinsic mass\". Being very un-technical, you can think of this as the classic \"mass\" we all learned about in grade school.
The other, and usually the source of the confusion, is something called \"relativistic mass\". It's essentially a term which acts like mass in the equations for relativistic motion. It's described and taught different ways (and there's still debate about the terminology), but when physicists say things like \"mass increases near light speed\", they're talking about relativistic mass.
So... do photons have zero mass? Depends on what you're talking about. They have zero rest mass, but nonzero relativistic mass.
... Does that help?
Re:
I think so. Thanks.Foil wrote:To say the least, there's a lot of misunderstanding about this topic.
Here's the fundamental thing to understand: There are two 'types' of mass being talked about here.
One is "rest mass" or "invariant mass" or "intrinsic mass". Being very un-technical, you can think of this as the classic "mass" we all learned about in grade school.
The other, and usually the source of the confusion, is something called "relativistic mass". It's essentially a term which acts like mass in the equations for relativistic motion. It's described and taught different ways (and there's still debate about the terminology), but when physicists say things like "mass increases near light speed", they're talking about relativistic mass.
So... do photons have zero mass? Depends on what you're talking about. They have zero rest mass, but nonzero relativistic mass.
... Does that help?
Re:
Jesus did say "I am the light of the world ..."Kilarin wrote:Photons have Mass? I didn't even realize they were Catholic!
yer at college aight? http://en.wikipedia.org/wiki/Library
Paper converted pages? How innovative!
http://en.wikipedia.org/wiki/Books
http://en.wikipedia.org/wiki/Books