experiment (scenario where the applied force is increasing; moving from left to right along the plot in 4.1) with "Shoe B" which has the same friction coefficients but is half the mass as "Shoe A". In the graph below we can see "Shoe A" is the solid pink curve. Which curve represents the friction as a function of applied force for "Shoe B"?

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(4.3) Now imagine that you do the same
experiment (scenario where the applied force is
increasing; moving from left to right along the
plot in 4.1) with "Shoe B" which has the same
friction coefficients but is half the mass as
"Shoe A". In the graph below we can see "Shoe
A" is the solid pink curve. Which curve
represents the friction as a function of applied
force for "Shoe B"?
Ffriction [N]
Fapplied [N]
Shoe A (pink, solid)
Red, solid
Green, dashed
Blue, solid
Black, dashed
Transcribed Image Text:(4.3) Now imagine that you do the same experiment (scenario where the applied force is increasing; moving from left to right along the plot in 4.1) with "Shoe B" which has the same friction coefficients but is half the mass as "Shoe A". In the graph below we can see "Shoe A" is the solid pink curve. Which curve represents the friction as a function of applied force for "Shoe B"? Ffriction [N] Fapplied [N] Shoe A (pink, solid) Red, solid Green, dashed Blue, solid Black, dashed
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