Jump to content

Give your Opinion !


Commander

Recommended Posts

Correction, mass (inertial) is an invariant. What increases is the total energy, not the mass:

 

[math](m_0c^2)^2=E^2-(pc)^2[/math]

So I get the idea concerning magnetism when there is an alignment, but I'm unclear about heat adding [effective] mass. Could you expound on that?
Link to comment
Share on other sites

Energy has a gravitational effect as long as there is no motion, energy involved with the motion (kinetic energy) doesn't seem to affect the rest mass at any stage. Is that also right?

 

Kinetic energy also has an equivalent gravitational effect.

Link to comment
Share on other sites

Now I am confused. I thought there has a lot of talk about saying the rest mass stays the same!

 

Rest mass does stay the same.

 

The "relativistic mass" is the rest mass plus the energy. This is why objects are said to increase in mass as the velocity increases. (A lot of people don't like this being described as relativistic mass, as it can be confusing.)

Link to comment
Share on other sites

  • 2 weeks later...

As X, Y and Z have different energy levels I would say that the weight is different for all 3.

For Z not only is there a difference in energy levels but there is also the gap between the 2 iron circles, this contains energy and mass to add to the total (or are they weighed without the gap?)

Link to comment
Share on other sites

As X, Y and Z have different energy levels I would say that the weight is different for all 3.

For Z not only is there a difference in energy levels but there is also the gap between the 2 iron circles, this contains energy and mass to add to the total (or are they weighed without the gap?)

good point

Link to comment
Share on other sites

Create an account or sign in to comment

You need to be a member in order to leave a comment

Create an account

Sign up for a new account in our community. It's easy!

Register a new account

Sign in

Already have an account? Sign in here.

Sign In Now
×
×
  • Create New...

Important Information

We have placed cookies on your device to help make this website better. You can adjust your cookie settings, otherwise we'll assume you're okay to continue.