1. A block of mass 9.0 kg rests on a table with us = 0.3. A force applied pushes the block. (a) Calculate the maximum force of static friction. Enter to 2 significant figures fs,max [26.49 N (b) If F = 5 N pulls the block, calculate the magnitude of force of friction f. Assume all quantities are correct to 2 significant figures. applied

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Chapter1: Units, Trigonometry. And Vectors
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Your diagram from Knowledge Check: Static Friction, Part 1 should have looked like this:
s,max
1. A block of mass 9.0 kg rests on a table with μ = 0.3.
A force #
applied pushes the block.
= 26.49
(a) Calculate the maximum force of static friction.
Enter to 2 significant figures
Enter to 2 significant figures
X
fs
1. Drag and drop the heads and tails of the vectors to construct the free-body diagram.
2. Note that angles do not need to be exact and magnitudes are not considered.
N; 90°
+
Fapplied; 0°
N
(b) If Fapplied = 5 N pulls the block, calculate the magnitude of force of friction f . Assume all
quantities are correct to significant figures.
= 26.49
fs; 180°
N
mg; 270°
Transcribed Image Text:Your diagram from Knowledge Check: Static Friction, Part 1 should have looked like this: s,max 1. A block of mass 9.0 kg rests on a table with μ = 0.3. A force # applied pushes the block. = 26.49 (a) Calculate the maximum force of static friction. Enter to 2 significant figures Enter to 2 significant figures X fs 1. Drag and drop the heads and tails of the vectors to construct the free-body diagram. 2. Note that angles do not need to be exact and magnitudes are not considered. N; 90° + Fapplied; 0° N (b) If Fapplied = 5 N pulls the block, calculate the magnitude of force of friction f . Assume all quantities are correct to significant figures. = 26.49 fs; 180° N mg; 270°
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