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Determine the equation of motion for small oscillation about the equilibrium position in Problem.
Problem
A rigid uniform rod of length I is supported by a spring and a smooth floor, as shown in Figure. Determine its equilibrium position by virtual work. The upstretched length of the spring is h /4.
An electron is accelerated by a constant electric field of magnitude 305 N/C. Find the acceleration of the electron
A power line 50km long has a total resistance of 0.60ohm, What percentage of the original energy is lost when the transformer is not used
A circular loop of flexible iron wire has an initial circumference of 169cm, but its circumference starts to decrease at a constant rate of 10.0cm/s due to a tangential pull on the wire. What is the direction of the induced current in the loop
An unstable particle is at rest and suddenly decays into two fragments. No external forces act on the particle or its fragments. What is the speed of the less massive fragment
A certain superconducting magnet in the form of a solenoid of length 0.350 m can generate a magnetic field of 8.50 T in its core when its coils carry a current of 65 A. Find the number of turns in the solenoid.
Suppose that three astronauts outside a spaceship decide to play catch. All three astronauts have the same mass and are equally strong. How long will the game last
two parallel sheets of aluminum foil separated by 0.1 mm are connected to a 9-v battery. the area of each sheet is 0.5
suppose now that the air carts below are both moving to the right initially. the cart to the left has a mass m1 and an
The LC circuit of a radar transmitter oscillates at 30.2 GHz. What is the inductive reactance of the circuit at this frequency
a package is being vibrated on a vibration table. accelerometers attached to the the table and the product measure
A flywheel with a very low friction bearing takes 1.6 h to stop after the motor power is turned off. The flywheel was originally rotating at 41 rpm. What was the initial rotation rate in radians per second
A bicycle has wheels of radius 0.32 m. Each wheel has a rotationalinertia of 0.080 kg*m2 about its axle. The total mass of the bicycle includingthe wheels and the rider is 79 kg.
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