The 2.0-m-long, 15 kg beam in Figure P7.34 is hinged at its left end. It is “falling” (rotating clockwise, under the influence of gravity), and the figure shows its position at three different times. What is the gravitational torque on the beam about an axis through the hinged end when the beam is at the Figure P7.34 a. Upper position? b. Middle position? c. Lower position?
The 2.0-m-long, 15 kg beam in Figure P7.34 is hinged at its left end. It is “falling” (rotating clockwise, under the influence of gravity), and the figure shows its position at three different times. What is the gravitational torque on the beam about an axis through the hinged end when the beam is at the Figure P7.34 a. Upper position? b. Middle position? c. Lower position?
The 2.0-m-long, 15 kg beam in Figure P7.34 is hinged at its left end. It is “falling” (rotating clockwise, under the influence of gravity), and the figure shows its position at three different times. What is the gravitational torque on the beam about an axis through the hinged end when the beam is at the
Imagine you are out for a stroll on a sunny day when you encounter a lake. Unpolarized light from the sun is reflected off the lake into your eyes. However, you notice when you put on your vertically polarized sunglasses, the light reflected off the lake no longer reaches your eyes. What is the angle between the unpolarized light and the surface of the water, in degrees, measured from the horizontal? You may assume the index of refraction of air is nair=1 and the index of refraction of water is nwater=1.33 . Round your answer to three significant figures. Just enter the number, nothing else.
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