Suppose a satellite has a mass of 2050 kg and is orbiting at 7.4 km/s. Use the approximation that γ ≈ 1+(1/2)(v2/c2) at low velocities. Part (a) What is the relativistic momentum of the satellite in kilogram meters per second? Part (b) Find the fractional difference between the relativistic and non-relativistic momenta, (p - pnr)/pnr
Suppose a satellite has a mass of 2050 kg and is orbiting at 7.4 km/s. Use the approximation that γ ≈ 1+(1/2)(v2/c2) at low velocities. Part (a) What is the relativistic momentum of the satellite in kilogram meters per second? Part (b) Find the fractional difference between the relativistic and non-relativistic momenta, (p - pnr)/pnr
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Suppose a satellite has a mass of 2050 kg and is orbiting at 7.4 km/s. Use the approximation that γ ≈ 1+(1/2)(v2/c2) at low velocities.
Part (a) What is the relativistic momentum of the satellite in kilogram meters per second?
Part (b) Find the fractional difference between the relativistic and non-relativistic momenta, (p - pnr)/pnr.
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