A student releases the 3.6kg bob of a 2.01m long pendulum from the position shown. Neglect loss. What is the pendulum's height (h) above its lowest point? unit What is the pendulum's maximum speed during the swing? unit What is the tension in the string at the lowest point? unit
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- The diagram below shows a pendulum in motion. Which describes the potential and kinetic energy of the pendulum at position X? ...1. A simple pendulum has a mass of 0.25 kg and a length of 1.0 m. It is displaced through an angle of 30 and then released. After a time, the maximum angle of swing is only 10 . How much energy has been lost to friction? a.00.29 J b.00.65 J c.00.80 J d.01.0 JChapter 15, Problem 083 The scale of a spring balance that reads from 0 to 26.2 kg is 14.6 cm long. A package suspended from the balance is found to oscillate vertically with a frequency of 2.25 Hz. (a) What is the spring constant? (b) How much does the package weigh? (a) Number Units (b) Number Units Click if you would like to Show Work for this question: Open Show Work
- Question 1 Which of the graphs below describes the energy of the pendulum at the highest point of its arc? A B KE KE PE PE therm EtotalA spring with a spring constant of 1200 N/m has a 55-g ball at its end. The energy of the system is 6.5 J . What is the amplitude A of vibration? What is the maximum speed of the ball? What is the speed when the ball is at a position x=+A/2?9. A pendulum is released with the goal of reaching a target located at a height just above the release height, but on the opposite side as shown. Make sure the pendulum's mass is large enough. Give the pendulum a large enough push when it is released. It isn't possible for the pendulum to reach the target if released from that position. Nothing. The target will be reached no matter what when the pendulum is released. What needs to be done to ensure the target is reached? CLEAR ALL ( PREVIOUS REVIEW bp y d g h j k C b n alt ctrl E
- Pls help ASAP ON ALL PLS I BEG4. MA 0.065 kg object is attracted to a spring with a spring constant of 100.0 N/m. The other end of the spring is attached to a wall in such a way that it rests on a frictionless horizontal surface. A force is exerted on the spring so that it experiences simple harmonic motion. a. How much work would be done on this spring to compress it by 12.0 cm? Given: k b. Assuming that there is no friction, describe the energy conversions that take place, being sure to explain the location of maximum elastic potential energy and maximum kinetic. c. What will be the speed of the object be when it is passing the point of being compressed by only 6.5 cm?A 3.7 kg mass attached to an ideal spring oscillates horizontally with an amplitude of 2.01 m. The spring constant is 137.29 N/m. What is the period of the motion? Round off your final answer to two decimal places. Add your answer