The Schwarzschild radius RBH for an object of mass M is defined as RBH = 2GM c² where c is the speed of light and G is the universal gravitational constant. RBH gives the radius of the event horizon of a black hole with mass M. In other words, it gives the radius to which some amount of mass M would need to be compressed in order to form a black hole. RBH = The mass of the Sun is about 1.99 × 10³0 kg. What would be the radius of a black hole with this mass? m
The Schwarzschild radius RBH for an object of mass M is defined as RBH = 2GM c² where c is the speed of light and G is the universal gravitational constant. RBH gives the radius of the event horizon of a black hole with mass M. In other words, it gives the radius to which some amount of mass M would need to be compressed in order to form a black hole. RBH = The mass of the Sun is about 1.99 × 10³0 kg. What would be the radius of a black hole with this mass? m
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The Schwarzschild radius RBH for an object of mass M is defined as
(See image.)
where c is the
1. The mass of the Sun is about 1.99 × 1030 kg. What would be the radius of a black hole with this mass?
2. The mass of Mars is about 6.42 × 1023 kg. What would be the radius of a black hole with this mass?
3. Suppose you want to make a black hole that is roughly the size of an atom (take RBH = 1.10 x 10-10 m). What would be the mass M of such a black hole?

Transcribed Image Text:The mass of Mars is about 6.42 × 10²3 kg. What would be the radius of a black hole with this mass?
RBH
=
Suppose you want to make a black hole that is roughly the size of an atom (take RBH 1.10 × 10-¹0 m). What would be the
mass M of such a black hole?
M =
m
kg

Transcribed Image Text:The Schwarzschild radius RBH for an object of mass M is defined as
RBH
RBH
-
where c is the speed of light and G is the universal gravitational constant. RBH gives the radius of the event horizon of a black
hole with mass M. In other words, it gives the radius to which some amount of mass M would need to be compressed in order
to form a black hole.
2GM
c²
The mass of the Sun is about 1.99 × 10³0 kg. What would be the radius of a black hole with this mass?
=
m
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