Here's a problem to review free body analysis. The drawing shows three boxes resting on a horizontal surface. Block A has a rope connecting it to a wall and block B has a force F being applied to it. There is friction between all surfaces. Draw a A separate free-body diagram for blocks B and C. Follow the format that is shown for block A by labelling each force and describing each force using words. Identify any Newton's 3rd law pairs NB T= the tension in the string NB = the normal force of block B on A fg = the frictional force of B on A WA = the weight of A A fg WA

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter5: Newton's Law Of Motion
Section: Chapter Questions
Problem 16CQ: Drawing Free-Body Diagrams In completing the solution for a problem involving forces, what do we do...
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Here's a problem to review free body
analysis. The drawing shows three boxes
resting on a horizontal surface. Block A has
a rope connecting it to a wall and block B
has a force F being applied to it. There is
friction between all surfaces. Draw a
A
separate free-body diagram for blocks B and
C. Follow the format that is shown for block
A by labelling each force and describing
each force using words. Identify any
Newton's 3rd law pairs
NB
T= the tension in the string
NB = the normal force of block B on A
fg = the frictional force of B on A
WA = the weight of A
A
fg
WA
Transcribed Image Text:Here's a problem to review free body analysis. The drawing shows three boxes resting on a horizontal surface. Block A has a rope connecting it to a wall and block B has a force F being applied to it. There is friction between all surfaces. Draw a A separate free-body diagram for blocks B and C. Follow the format that is shown for block A by labelling each force and describing each force using words. Identify any Newton's 3rd law pairs NB T= the tension in the string NB = the normal force of block B on A fg = the frictional force of B on A WA = the weight of A A fg WA
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