1. A hydrogen atom consists of a single proton and a single electron. The proton has a charge of +e and the electron has -e. In the "ground state" of the atom, the electron orbits the proton at most probable distance of 5.29 × 10-11 m. Calculate the electric force on the electron due to the proton and describe its direction.

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1. A hydrogen atom consists of a single proton and a single electron. The proton has a charge of +e
and the electron has -e. In the "ground state" of the atom, the electron orbits the proton at most
probable distance of 5.29 x 10-11 m. Calculate the electric force on the electron due to the proton
and describe its direction.
2. Two point charges of 50 nC each are located at points A(1, -2, 4) and B(-1, -3, 6). Find the force
acting on the two charges. Assume that the coordinates are in meters.
3. The charges q1 = 2.0 nC, q2 = 4.0 nC, and q3 = -1.0 nC are placed at the corners of the
triangle shown below. (a) What is the force on q1 due to q2, (b) What is the force on q1 due to
q3, (c) What is the total force on q1. (Note: Give the magnitude and direction for each.)
5.0 m
3.0 m
4.0 m
93
92
Transcribed Image Text:1. A hydrogen atom consists of a single proton and a single electron. The proton has a charge of +e and the electron has -e. In the "ground state" of the atom, the electron orbits the proton at most probable distance of 5.29 x 10-11 m. Calculate the electric force on the electron due to the proton and describe its direction. 2. Two point charges of 50 nC each are located at points A(1, -2, 4) and B(-1, -3, 6). Find the force acting on the two charges. Assume that the coordinates are in meters. 3. The charges q1 = 2.0 nC, q2 = 4.0 nC, and q3 = -1.0 nC are placed at the corners of the triangle shown below. (a) What is the force on q1 due to q2, (b) What is the force on q1 due to q3, (c) What is the total force on q1. (Note: Give the magnitude and direction for each.) 5.0 m 3.0 m 4.0 m 93 92
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