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Published byPhoebe Warren Modified over 9 years ago
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Work and Energy Conservation Law
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Work and Energy Work is a force applied to an object that causes the point of application of the force to move through some distance Energy is the capacity of an object to do work Unit: Joules Energy and work are scalar quantities
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Work Is work a dot product or a cross product?
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Example problem A man cleaning a floor pulls a vacuum cleaner with a force of magnitude F= 50.0 N at an angle of 30.0º with the horizontal. Calculate the work done by the force on the vacuum cleaner as the vacuum cleaner is displaced 3.00m to the right.
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Answer W=Fd cos θ W= 50.0 N (3.00m) cos 30º W = 130 J
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Work a Scalar Product Work is the dot product of Force and Displacement
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Work Done by a Constant Force A particle moving in the xy plane undergoes a displacement as shown below in a constant force as given below acts on the particle. A) Calculate the magnitude of the displacement and that of the force. B) Calculate the work done on the object.
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Answer
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Work Done by a Varying Force Imagine a particle undergoes a very small displacement Δx The F x is approximately constant over this small displacement. Work done can be expressed as
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Graph of a Varying Force
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Work Done by a Varying Force
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Work
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Integration
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Work Video
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Power Power is the rate of doing work or of transferring energy.
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Power Units Power is measured in joules per second. 1 J/s = Watt 1 hp = 746 W 1 kWh = 3.6 x 10 6 W
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Power and Force If force F causes a particle to undergo a displacement ds, the work done is dW=Fds. Since ds/dt is v the power is given by the following formula:
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Problem Consider a car traveling at a steady speed of 60 km/h (16.7 m/s). It encounters a frictional force (rolling and air drag) of 520 N. At what power level does the engine deliver energy to the wheels?
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Answer P = Fv 8.68 kW 11.6 hp
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