For each object below, draw a clear Free Body Force Diagram. Label all forces that act on the object such as mg, T, n, etc. Label appropriate axes such as x, y, and z. Include friction in all cases where an object slides against another. All pulleys are massless and frictionless. 1. Static. Draw FBD for the bag and the point where the three ropes connect. 0, 02 2. Static. Draw FBD for each mass including the scale. 3. Static. Draw FBD for each mass including the scale. 5 kg 5 kg cement bag

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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For each object below, draw a clear Free Body Force Diagram. Label all forces that act
on the object such as mg, T, n, etc. Label appropriate axes such as x, y, and z. Include
friction in all cases where an object slides against another. All pulleys are massless
and frictionless.
1. Static. Draw FBD for the bag and the
point where the three ropes connect.
02
2. Static. Draw FBD for each mass including
the scale.
3. Static. Draw FBD for each mass including
the scale.
5 kg
5 kg
2
cement
beg
Transcribed Image Text:For each object below, draw a clear Free Body Force Diagram. Label all forces that act on the object such as mg, T, n, etc. Label appropriate axes such as x, y, and z. Include friction in all cases where an object slides against another. All pulleys are massless and frictionless. 1. Static. Draw FBD for the bag and the point where the three ropes connect. 02 2. Static. Draw FBD for each mass including the scale. 3. Static. Draw FBD for each mass including the scale. 5 kg 5 kg 2 cement beg
Name:
Newton's Laws of Motion
In each case a block is acted on by one or more forces. Draw a vector diagram
showing all forces acting on the block, and no other forces. Do it in pencil so you can
correct mistakes. The first two are done as examples.
1. Static
2. Static
3. Static
T2
mg
mg
4. Static
5. Block in free fall
6. Falling at terminal velocity
7. Static
8. Sliding at constant speed 9. Decelerating due to
without friction
friction
10. Static
12. Static friction prevents
sliding
11. Sliding without friction
1
Transcribed Image Text:Name: Newton's Laws of Motion In each case a block is acted on by one or more forces. Draw a vector diagram showing all forces acting on the block, and no other forces. Do it in pencil so you can correct mistakes. The first two are done as examples. 1. Static 2. Static 3. Static T2 mg mg 4. Static 5. Block in free fall 6. Falling at terminal velocity 7. Static 8. Sliding at constant speed 9. Decelerating due to without friction friction 10. Static 12. Static friction prevents sliding 11. Sliding without friction 1
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