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Solve the all parts of given problem:
Problem: In the Bohr model of the hydrogen atom, an electron can orbit a proton (the nucleus) in a circular orbit of radius 1.32E-9 m.
Part A: What is the electric potential at the electron's orbit due to the proton?
(in V)
Part B: What is the kinetic energy of the electron?
(in eV)
Part C: What is the total energy of the electron in its orbit?
Part D: What is the ionization energy that is, the energy required to remove the electron from the atom and take it to r = infinity, at rest?
Please show all work and steps to find the electric potential at the electron's orbit due to the proton.
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Calculate Vertical Velocity in ft/min and Ground Speed in knots for an aircraft in a 180 KTAS climb with a climb angle of 10 degree.
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Consider a large 1.54 V carbon-zinc dry cell used in a physics lab to supply 2.15A to a circuit with an internal resistance of 0.12 ohms. How much electrical power does the cell produce
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