Spring A will stretch vertically by 20.0 cm when it has a 1.00 kg mass hanging from it. Spring B will stretch vertically by 50.0cm when it has a 1.00 kg mass hanging from it. a) Draw a free body diagram for Spring A and include all relevant forces and values. Draw a free body diagram for Spring B and include all relevant forces and values. b) Calculate the spring constant of A. c) Calculate the spring constant of B.

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Chapter1: Units, Trigonometry. And Vectors
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Spring A will stretch vertically by 20.0 cm when it has a 1.00 kg mass hanging from it. Spring B will stretch vertically by 50.0cm when it has a 1.00 kg mass hanging from it. a) Draw a free body diagram for Spring A and include all relevant forces and values. Draw a free body diagram for Spring B and include all relevant forces and values. b) Calculate the spring constant of A. c) Calculate the spring constant of B.

Spring A will stretch vertically by 20.0 cm when it has a 1.00 kg mass hanging
from it. Spring B will stretch vertically by 50.0cm when it has a 1.00 kg mass
hanging from it.
a) Draw a free body diagram for Spring A and include all relevant forces and
values. Draw a free body diagram for Spring B and include all relevant forces and
values.
b) Calculate the spring constant of A.
c) Calculate the spring constant of B.
Transcribed Image Text:Spring A will stretch vertically by 20.0 cm when it has a 1.00 kg mass hanging from it. Spring B will stretch vertically by 50.0cm when it has a 1.00 kg mass hanging from it. a) Draw a free body diagram for Spring A and include all relevant forces and values. Draw a free body diagram for Spring B and include all relevant forces and values. b) Calculate the spring constant of A. c) Calculate the spring constant of B.
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