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m2 = 1 kg. Find: a. potential energy stored in the springs in equilibrium
Sahay Sir
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m2 = 1 kg. Find: a. potential energy stored in the springs in equilibrium
Given k1 = 1500 N/m, k2 = 500 N/m, m1 = 2 kg, m2 = 1 kg. Find: a. potential energy stored in the springs in equilibrium, and b. work done in slowly pulling down m2 by 8 cm.
03
Oct
Given k1 = 1500 N/m, k2 = 500 N/m, m1 = 2 kg, m2 = 1 kg. Find: a. potential energy stored in the springs in equilibrium, and b. work done in slowly pulling down m2 by 8 cm. and b. work done in slowly pulling down m2 by 8 cm. Given k1 = 1500 [...]
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Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions)
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and b. work done in slowly pulling down m2 by 8 cm.
,
Given k1 = 1500 N/m
,
k2 = 500 N/m
,
m1 = 2 kg
,
m2 = 1 kg. Find: a. potential energy stored in the springs in equilibrium
,
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