What is the magnitude (in joules) of the work done by friction if constant horizontal applied force is P= 117 Nis applied as the mass moves 3 m up the inclined plane. Assume that the mass is 2 kg. and the initial velocity v, =5 m/s and the final velocity v, = 10 m/s. (use g-10 m/s). Express your answer to 3 significant figures. Enter a positive number 3.0 m 30 1) Calculate the maximum displacement x that the spring is compressed if the mass m=2 kg is released from rest on the inclined plane (as shown) and then slides a distance 'D before coming into contact with a spring of constant K-100 N/m, D-200 cm from its unstretched length. Use g=10 m/s. The coefficient of kinetic friction is 0.4 along the surface Answer in meters 8 = 53.1°
What is the magnitude (in joules) of the work done by friction if constant horizontal applied force is P= 117 Nis applied as the mass moves 3 m up the inclined plane. Assume that the mass is 2 kg. and the initial velocity v, =5 m/s and the final velocity v, = 10 m/s. (use g-10 m/s). Express your answer to 3 significant figures. Enter a positive number 3.0 m 30 1) Calculate the maximum displacement x that the spring is compressed if the mass m=2 kg is released from rest on the inclined plane (as shown) and then slides a distance 'D before coming into contact with a spring of constant K-100 N/m, D-200 cm from its unstretched length. Use g=10 m/s. The coefficient of kinetic friction is 0.4 along the surface Answer in meters 8 = 53.1°
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Practice P...
What is the magnitude (in joules) of the work done by friction if constant horizontal
applied force is P= 117 Nis applied as the mass moves 3 m up the inclined plane. Assume
that the mass is 2 kg, and the initial velocity v, =5 m/s and the final velocity v, =10
m/s. (use g=10 m/s:). Express your answer to 3 significant figures. Enter a positive number
P
3.0 m
1) Calculate the maximum displacement x that the spring is compressed if the mass m=2
kg is released from rest on the inc
before coming into contact with a spring of constant K=100 N/m, D-200 cm from its
unstretched length. Use g-10 m/s. The coefficient of kinetic friction is 0.4 along the
I then li
surface Answer in meters
0 = 53.1°
II
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