COLLEGE PHYSICS
COLLEGE PHYSICS
2nd Edition
ISBN: 9781464196393
Author: Freedman
Publisher: MAC HIGHER
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Chapter 3, Problem 3QAP
To determine

(a)

Whether the sum of two vectors having different magnitudes will be equal to zero or not. If yes, then state an example else state the reason for not having the sum equal to zero.

To determine

(b)

Whether the sum of three vectors that have different magnitudes ever be equal to zero or not.

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A = 2.00k + 6.00ý and 37. •Given the vectors B = 3.00â – 2.00ý and the vector Ď = Ã – B, calculate the magnitude and angle with the +x axis of the vector D. SSM
Example -9- O The magnitudes of two vectors A and B are A = 12 and B = 8. What is the largest and smallest possible values for the magnitude of the resultant vector R = Ā + B
1006 :: FI The figure shows four vectors A, B, C and D having magnitudes 12.0 m, 10.0 m, 8.0 m, and 4.0 m, respectively. The sum of these four vectors is y 2 148.432 @ W S Ć mmand + 30°, F2 ² O a. 16.4 m at an angle 77.8° with respect to +X-axis. O b. 16.4 m at an angle 12.3° with respect to +X-axis. O c. 19.5 m at an angle 77.8° with respect to +X-axis O d. 19.5 m at an angle 12.3° with respect to +X-axis. O e. 8.20 m at an angle 77.8° with respect to +x-axis. # 3 E D D 31. 211 80 4B F3 $ 4 R F a F4 30° % 5 tv♫ I F5 T 6 NAO X CV B s F6 Y & 7 G H 12982 k F7 U * 8 J DII F8 1 N M ( 9 K F9 O ) O 7 F10 P H "' command J F11 1 { + [ F option

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