A force of constant magnitude For moment M is applied to a pendulum over an angular distance 0. L-1me A L-2m F-2N F-1N M-2 Nm C L-2m L-2m F-1N Which has the greatest amount of work done by force For moment M?
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![A force of constant magnitude F or moment M is applied to a pendulum over an angular distance 0.
L-1me
A
L-2 m
F-2N
F-1N
M-2 Nm
L-2m
L-2m
F-1N
Which has the greatest amount of work done by force F or moment M?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb21c7e2a-15df-42ad-95f2-74f54b3f2859%2Fbfb8b283-a3bf-4b53-a347-e92997fe5e85%2Futfh08t_processed.jpeg&w=3840&q=75)
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- Problem 1. Energy Terms Determine the potential energy of the pendulum shown below. Note: The potential en- ergy should be 0 when 0 = 0, mgL when 0=1, and 2mgL when 0 = 1. /////// 8 m Q Search 99+ HA pendulum is undergoing simple harmonic motion. At a particular instant, you measure its speed to be v0,and you notice that exactly half of its energy is potential, and the other half is kinetic. It is a simple pendulum oflength l, with all of its mass (m) concentrated in a point at the end. a) In terms of v0, what is the highest speed the pendulum will reach? b)What is the largest angle that the pendulum will reach?Refer to the picture below
- At sea level, at a latitude where g= 9.80 m/s^2, a pendulum that takes 3.00 s for a complete swing back and forth has a length of 2.24 m. What is the value of g in m/s2 at a location where the length of such a pendulum is 2.52 m? Question 13 options: 8.72 11.0 12.2 10.1 9.60KE of a simple pendulum Due in 6 hours, 20 minutes 70 60 50 40 30 20 10 -100 -50 50 100 e (mrad) In the figure above, the kinetic energy of a simple pendulum is plotted against its angle 0 from the vertical. If the mass of the pendulum bob is 1.14 kg, what is the length of the pendulum? 0.537 m Submit Answer Incorrect. Tries 9/10 Previous Tries Kinetic Energy (mJ)OK, once again we have a pendulum, this time of length 1.18 m, which you release from rest at an angle of 46.8 degrees to the vertical. What will be the speed of the pendulum at the instant it reaches an angle of 37.4 degrees above the vertical? 3.51 m/s 1.59 m/s 2.70 m/s 2.18 m/s