A block of mass 1 kg is dropped on a spring- mass system as shown in the figure. The block travels 100 meters in the air before striking the 3 kg mass. Calculate maximum compression in the spring, if both the blocks move together after the collision. Spring constant of the string k = 1.25 × 10º. 1kg 100m 3kg k = 1.25x10 ellle

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter8: Conservation Of Energy
Section: Chapter Questions
Problem 8.69AP: A block of mass M rests on a table. It is fastened to the lower end of a light, vertical spring. The...
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Q.13
SINGLE CHOICE
A block of mass 1 kg is dropped on a spring-
mass system as shown in the figure. The block
travels 100 meters in the air before striking the
3 kg mass. Calculate maximum compression
in the spring, if both the blocks move together
after the collision. Spring constant of the
string k = 1.25 × 10º.
1kg
100m
3kg
k = 1.25x10
i
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elle
Transcribed Image Text:40.00b/s ? ! 73%D 6:20 PM TEST FEEDBACK Q.13 SINGLE CHOICE A block of mass 1 kg is dropped on a spring- mass system as shown in the figure. The block travels 100 meters in the air before striking the 3 kg mass. Calculate maximum compression in the spring, if both the blocks move together after the collision. Spring constant of the string k = 1.25 × 10º. 1kg 100m 3kg k = 1.25x10 i PREVIOUS NEXT elle
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