b) A stationary observer at r = 7M in Schwarzschild geometry observes two particles travelling radially inward from infinity. If one body initially starts with a conserved energy per unit mass of 2 and the other of 3, determine the ratio of the speeds as they pass by the observer's position.
b) A stationary observer at r = 7M in Schwarzschild geometry observes two particles travelling radially inward from infinity. If one body initially starts with a conserved energy per unit mass of 2 and the other of 3, determine the ratio of the speeds as they pass by the observer's position.
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
Transcribed Image Text:b) A stationary observer at r = 7M in Schwarzschild geometry observes two particles
travelling radially inward from infinity. If one body initially starts with a conserved
energy per unit mass of 2 and the other of 3, determine the ratio of the speeds as
they pass by the observer's position.
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