SITUATION. On a fictionless, horizontal air track, a glider oscillates at the end of an ideal spring of force constant. The graph in the figure below shows the acceleration of the glider as a function of time. 4. (m/s2) 12.0 6.0 010-020030 ဖ -6.0 -12.0 · 1 (s) 0.40 → Zoom image Find the maximum force the spring exerts on the glider in Newton. O 3.03 O 2.61 O 4.01 O 2.05

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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SITUATION. On a frictionless, horizontal air track, a glider oscillates at the end of an ideal spring of force constant.
The graph in the figure below shows the acceleration of the glider as a function of time.
a (m/s²)
12.0
6.0
t(s)
010 0.20 030 0.40
0
-6.0
-12.0
→ Zoom image
Find the maximum force the spring exerts on the glider in Newton.
O 3.03
2.61
O4.01
O2.05
Transcribed Image Text:SITUATION. On a frictionless, horizontal air track, a glider oscillates at the end of an ideal spring of force constant. The graph in the figure below shows the acceleration of the glider as a function of time. a (m/s²) 12.0 6.0 t(s) 010 0.20 030 0.40 0 -6.0 -12.0 → Zoom image Find the maximum force the spring exerts on the glider in Newton. O 3.03 2.61 O4.01 O2.05
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