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A 10.0 O resistor, 10.0 mH inductor and a 110.0 µF capacitor are connected in series with a 50.0 V (rms) source having variable frequency. The resonance frequency of the circuit is 953 rad/s.
Find the energy delivered to the circuit during one period if the operating frequency is twice the resonance frequency
A child and sled with a combined mass of 42.0 kg slide down a frictionless slope. what is the height of the hill
q1. a 2.30-kg object attached to a spring moves without friction b 0 and is driven by an external force given by the
A rifle with a barrel length of 57 fires an 11 bullet with a horizontal speed of 440. The bullet strikes a block of wood and penetrates to a depth of 12. What resistive force (assumed to be constant) does the wood exert on bullet.
question1a 27 kg chair initially at rest on a horizontal floor requires a 377 n horizontal force to set it in motion.
The tub of a washer goes into its spin cycle, starting from rest and gaining angular speed steadily for 9.00 s, how many revolutions does the tub turn while it is in motion
An AC voltage with an amplitude of 114 V is applied to a series combination of a 247 ?F capacitor, Calculate the power dissipated by the circuit at a frequency of 60.0 Hz
An inductor has a 54.2-? reactance when connected to a 60.0-Hz source. What is the maximum current in the inductor
A bullet is fired horizontally from a gun while another bullet is dropped vertically from the same height as the gun. Ignoring air resistance
A lens placed at the origin with its axis pointing all along the x axis produces a real inverted image at x=-24cm that is twice as tall as the object. What is an image distance.
Two equally charged particles are held3.2x10 -3 m apart and then released from rest. determine the mass of the second particle
An electron starts from rest 5.00 cm from the center of a uniformly charged sphere of radius 4.00 cm. If the sphere carries a total charge of 1.00 x10-9 C, how fast would the electron be moving when it reaches the surface of the sphere.
A monoenergetic beam of neutrons, cp = 4 X 1 0 10 neutrons/cm2-sec, impinges on a target 1 cm2 in area and 0. 1 cm thick. How many neutron interactions per second occur in the target
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