subject
Physics, 12.12.2019 01:31 sandygarcia65

Ablock-spring system consists of a spring with constant k = 475 n/m attached to a 2.50 kg block on a frictionless surface. the block is pulled 5.50 cm from equilibrium and released from rest. for the resulting oscillation, find the amplitude, angular frequency, frequency, and period. what is the maximum value of the block's velocity and acceleration?

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 02:30
Acup of coffee sits on the dashboard of an automobile. the car goes around a sharp curve. even though you hold the cup still, coffee still splashes out. this can best be explained due to a) density. b) friction. c) gravity. d) inertia.
Answers: 2
question
Physics, 22.06.2019 04:00
Several mountains together form a mountain . a few of these combined form a mountain system. several systems combined form a mountain , which can stretch thousands of miles in length.
Answers: 2
question
Physics, 22.06.2019 05:30
Anybody wanna ? (picture included? )
Answers: 1
question
Physics, 22.06.2019 06:00
Suppose water is leaking from a tank through a circular hole of area ah at its bottom. when water leaks through a hole, friction and contraction of the stream near the hole reduce the volume of water leaving the tank per second to cah 2gh , where c (0 < c < 1) is an empirical constant. a tank in the form of a right-circular cone standing on end, vertex down, is leaking water through a circular hole in its bottom. (assume the removed apex of the cone is of negligible height and volume.) (a) suppose the tank is 20 feet high and has radius 8 feet and the circular hole has radius 2 inches. the differential equation governing the height h in feet of water leaking from a tank after t seconds is dh dt = βˆ’ 5 6h3/2 . if the height of the water is initially 8 feet, how long will it take the tank to empty? (round your answer to two decimal places.)
Answers: 2
You know the right answer?
Ablock-spring system consists of a spring with constant k = 475 n/m attached to a 2.50 kg block on a...
Questions
Questions on the website: 13722360