In Appendix C, see the elastic curve equation for a simply supported beam with a concentrated moment at one end. Assume a concentrated moment equal to MB from part 1 of this solution acts at B. For this calculation, the overhung part of the beam from A to B and the overhung part from D to E can be ignored. The effect of the distributed load from A to B is included by use of the moment MB. The beam is treated as a simply supported beam of length 2L2. Be careful with units and the sign convention. Determine the component of the beam deflection at point C due to the moment produced at point B by the portion of the distributed load between point A and point B.
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Physics, 21.06.2019 21:40
Avery hard rubber ball (m = 0.5 kg) is falling vertically at 4 m/s just before it bounces on the floor. the ball rebounds back at essentially the same speed. if the collision with the floor lasts 0.05 s, what is the average force exerted by the floor on the ball?
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The earth exerts a gravitational force of 500 n on amy. what is amy’s mass in kg?
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During the experiment if you could triple the breakaway magnetic force with all other quantities left unchanged, what is the new value for the critical velocity if it was v0 (initial velocity), initially? (b) now if you halved the radius with all other quantities left unchanged, what is the new critical velocity if it was v0 (initial velocity), initially? (c) if during the experiment, critical velocity quadrupled with all other quantities left unchanged, what is the new breakaway force if its magnitude was initially f0,?
Answers: 1
In Appendix C, see the elastic curve equation for a simply supported beam with a concentrated moment...
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