Physics
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Assuming that a deuterium atom has a kinetic energy of 17 MeV, determine what the speed of this particular deuterium atom will be.
Consider a cosmic ray particle located in deep space is moving at 2.0×107 m/s and has a kinetic energy of 1140 eV. Based on the provided information, identify what type of particle this is and what its mass value will be.
A proton is propelled to a velocity of 8.00 × 105 m/s in a particle accelerator. Assuming nonrelativistic speeds, calculate the proton's kinetic energy, expressing your answer in the most fitting unit: eV, keV, or MeV.
Determine the potential energy in electron volts (eV) of an electron-positron pair formed from a photon interaction and separated by a distance of 0.051 nm apart.
Use an appropriate metric prefix in the unit eV to report the potential energy of two alpha particles with a separation of 14 fm.
Ignoring air resistance, use the unit eV and an appropriate metric prefix to report the kinetic energy of a 250 g cup released from rest at a height of 1.5 m above the ground when it strikes the ground.