One end of an ideal massless string is attached to a box of mass M which is free to slide along a frictionless surface which is inclined at an angle 0 above the horizontal. The string is parallel to the inclined surface until it passes over an ideal pulley. The other end of the string is attached to a second box, also with mass M, which is freely suspended. Ftotal,x Ftotal, y Part (a) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the suspended box. Part (b) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the box which is sliding on the frictionless inclined surface. M M Add Force ✓ Reset All 0 M

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter9: Dynamics Of A System Of Particles
Section: Chapter Questions
Problem 9.44P
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Please answer parts a and b

One end of an ideal massless string is attached to a box of mass M which is
free to slide along a frictionless surface which is inclined at an angle 0 above the horizontal. The
string is parallel to the inclined surface until it passes over an ideal pulley. The other end of the
string is attached to a second box, also with mass M, which is freely suspended.
Etotal,x:
Ftotal, y
Part (a) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the suspended box.
Part (b) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the box which is sliding on the
frictionless inclined surface.
X
M
3
Add Force
✓ Reset All
0
M
Transcribed Image Text:One end of an ideal massless string is attached to a box of mass M which is free to slide along a frictionless surface which is inclined at an angle 0 above the horizontal. The string is parallel to the inclined surface until it passes over an ideal pulley. The other end of the string is attached to a second box, also with mass M, which is freely suspended. Etotal,x: Ftotal, y Part (a) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the suspended box. Part (b) Please use the interactive area below to draw the best Free Body Diagram to represent the forces on the box which is sliding on the frictionless inclined surface. X M 3 Add Force ✓ Reset All 0 M
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