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A 2.20-kg object is attached to a spring and placed on frictionless, horizontal surface. A horizontal force of 11.0 N is required to hold the object at rest when it is pulled 0.200 m from its equilibrium position (the origin of the x axis). The object is now released from rest from this stretched position, and it subsequently undergoes simple harmonic oscillations.(a) Find the force constant of the spring.N/m(b) Find the frequency of the oscillations.Hz(c) Find the maximum speed of the object.m/s(d) Where does this maximum speed occur?x = ± m(e) Find the maximum acceleration of the object.m/s2(f) Where does the maximum acceleration occur?x = ± m(g) Find the total energy of the oscillating system.J(h) Find the speed of the object when its position is equal to one-third of the maximum value.m/s(i) Find the acceleration of the object when its position is equal to one-third of the maximum value.m/s2
In an experiment designed to measure the strength of a uniform magnetic field produced by a set coils, find the angular frequency of revolution of the electrons
A standard 1 kilogram weight is a cylinder 46.5 mm in height and 42.5 mm in diameter. What is the density of the material
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On average, each person in the industrialized world is responsible for the emission of 10,000 kg of carbon dioxide () every year. This includes that you generate directly, how long would each edge of the cube be
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Consider a uniform thin rod of length 2.00 m and mass 1.00 kg is lying on a smooth horizontal table. How far does the center of mass of the rod travel during the time it takes to make one complete revolution
In the drawing, the weight of the block on the table is 422 N and that of the hanging block is 185 N. calculate the acceleration of the two blocks
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