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Solve the following problem given below:
Problem: Two parallel conducting plates separated by 1.00 cm have a potential difference between them of 1.25 x 104 V.
Part A- How fast is the electron moving when it leaves the positive plate?
Rework your solution from the beginning and check each step carefully.
A grade school student plans to build a 38-power telescope as a science fair project. What focal length is needed for her objective
a mass m at the end of a spring vibrates with a frequency of .88 hz. when an additional 680g mass is added to m the
Two equally charged particles are held 3.9 x 10-3 m apart and then released from rest. Determine the mass of the second particle
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A concave mirror (f = 59.0 cm) produces an image whose distance from the mirror is exactly 1/8 the object distance. Decide (a) the object distance and (b) the (positive) image distance.
a pendulum is made with a 4 kg mass suspended at the end of a 75 cm thin rod. the pendulum is started at an angle 20
Two large, parallel, conducting plates are 26cm apart and have charges of equal magnitude and opposite sign on their facing surfaces. An electrostatic force of 2.8 x10-15 N acts on an electron placed anywhere between two plates.
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A photon is emitted from a light bulb located 2 m above the floor. The photon travels in a straight line shown with the dashed arrow in the diagram below. The angle among the photon’s path and the wall is 65 degrees.
To balance a 40 kilogram automobile tire and wheel, a mechanic must place a 55 gram lead weight 24 centimeter from the center of the wheel. Obtain how far from the center of the wheel was its center of mass before the lead weight was added
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