3. Prove that the Galilean transformation of a position vector is expressed by r=r'+ vt + R, where v is the velocity of the frame S' relative to S and R the position vector of the origin O' as measured in S at t' = 0. (Agra 1980)

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3. Prove that the Galilean transformation of a position vector is expressed by
r=r'+ vt + R, where v is the velocity of the frame S'relative to S and R the position vector of the origin
O' as measured in S at t' = 0.
(Agra 1980)
Transcribed Image Text:3. Prove that the Galilean transformation of a position vector is expressed by r=r'+ vt + R, where v is the velocity of the frame S'relative to S and R the position vector of the origin O' as measured in S at t' = 0. (Agra 1980)
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