A block of mass m=1.4 kg is attached to a spring of spring constant k = 140 N/m. The block has been extended by x = 0.12m then released from rest. The speed of the block when the elongation is x = 0.06m will be equal to: x=0 www.www. W O 1.039 m/s O 0.713 m/s 0.917 m/s O 0.869 m/s O 1.412 m/s m

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 15P: A block of mass m = 2.00 kg is attached to a spring of force constant k = 500 N/m as shown in Figure...
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A block of mass m=1.4 kg is attached to a spring of spring constant k = 140 N/m.
The block has been extended by x = 0.12m then released from rest. The speed of the
block when the elongation is x = 0.06m will be equal to:
x=0
m
O 1.039 m/s
0.713 m/s
0.917 m/s
0.869 m/s
1.412 m/s
O
Transcribed Image Text:A block of mass m=1.4 kg is attached to a spring of spring constant k = 140 N/m. The block has been extended by x = 0.12m then released from rest. The speed of the block when the elongation is x = 0.06m will be equal to: x=0 m O 1.039 m/s 0.713 m/s 0.917 m/s 0.869 m/s 1.412 m/s O
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