Q-1: for the following equation of longitudinal sound waves velocity in solids, prove that the units of Vc is m/s, 1/2 E(1 – v) Ve = (1 + v)(1 – 2v)p) Where E is the modulus of elasticity, p is density, and v is Poisson's ratio of the solid, respectively.
Q-1: for the following equation of longitudinal sound waves velocity in solids, prove that the units of Vc is m/s, 1/2 E(1 – v) Ve = (1 + v)(1 – 2v)p) Where E is the modulus of elasticity, p is density, and v is Poisson's ratio of the solid, respectively.
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![Q-1: for the following equation of longitudinal sound waves velocity in
solids, prove that the units of Vc is m/s,
1/2
E(1 – v)
! + v)(1 – 2v)p)
Ve =
Where E is the modulus of elasticity, p is density, and v is Poisson's ratio of
the solid, respectively.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa19cdd51-c73a-40ea-bbee-3556420d72d8%2F8a3095a9-a9e1-4142-abc1-f5a43698aabd%2Fbtvn7a6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q-1: for the following equation of longitudinal sound waves velocity in
solids, prove that the units of Vc is m/s,
1/2
E(1 – v)
! + v)(1 – 2v)p)
Ve =
Where E is the modulus of elasticity, p is density, and v is Poisson's ratio of
the solid, respectively.
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