When performing the activity for Hooke's Law, the spring elongates (F)=0.542 cm and (G)=1.521 cm when a hanging mass of (B)=11.07 g and (C)=21.45 g, respectively, were suspended on the (A)=5.57 g mass hanger. What is the experimental force constant of the spring in (H)?

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter5: Newton's Laws Of Motion
Section: Chapter Questions
Problem 44PQ: A student working on a school project modeled a trampoline as a spring obeying Hookes law and...
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When performing the activity for Hooke's Law, the spring elongates (F)=0.542 cm
and (G)=1.521 cm when a hanging mass of (B)=11.07 g and (C)=21.45 g,
respectively, were suspended on the (A)=5.57 g mass hanger. What is the
experimental force constant of the spring in (H)?
Hooke's Law
Mass
Hanging
Elongation
4
Experimental Force
Constant (N/m)
Hanger (g)
Mass (g)
(cm)
(F)
(A)
(H)
(C)
(G)
17.41 N/m
O 30.09 N/m
10.39 N/m
O 23.75 N/m
P
Force (N)
(D)
(E)
2
Transcribed Image Text:When performing the activity for Hooke's Law, the spring elongates (F)=0.542 cm and (G)=1.521 cm when a hanging mass of (B)=11.07 g and (C)=21.45 g, respectively, were suspended on the (A)=5.57 g mass hanger. What is the experimental force constant of the spring in (H)? Hooke's Law Mass Hanging Elongation 4 Experimental Force Constant (N/m) Hanger (g) Mass (g) (cm) (F) (A) (H) (C) (G) 17.41 N/m O 30.09 N/m 10.39 N/m O 23.75 N/m P Force (N) (D) (E) 2
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