The bicycle and rider in (Figure 1) have a total weight of 120 lb. Neglect the resistance due to the wind and the size of the bicycle and rider. Part A Determine the resultant normal force acting on the bicycle when it is at point A while it is freely coasting at VA = 6 ft/s. Express your answer in pounds using three significant figures. —| ΑΣΦ [1] vec 1 N = Submit Part B at = Request Answer Submit Calculate the increase in the bicyclist's speed at this point. Express your answer in feet per second squared using three significant figures. AΣ vec 3 ? Request Answer lb ? ft/s²

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The bicycle and rider in (Figure 1) have a total weight of 120 lb. Neglect the resistance due to
the wind and the size of the bicycle and rider.
Part A
Determine the resultant normal force acting on the bicycle when it is at point A while it is freely coasting at VA = 6 ft/s.
Express your answer in pounds using three significant figures.
VE ΑΣΦΑ ↓↑ vec
N =
Submit
Part B
at =
Submit
Request Answer
Calculate the increase in the bicyclist's speed at this point.
Express your answer in feet per second squared using three significant figures.
D
ΠΙΑΣΦ
Request Answer
wwwww
vec
?
lb
?
ft/s²
Transcribed Image Text:The bicycle and rider in (Figure 1) have a total weight of 120 lb. Neglect the resistance due to the wind and the size of the bicycle and rider. Part A Determine the resultant normal force acting on the bicycle when it is at point A while it is freely coasting at VA = 6 ft/s. Express your answer in pounds using three significant figures. VE ΑΣΦΑ ↓↑ vec N = Submit Part B at = Submit Request Answer Calculate the increase in the bicyclist's speed at this point. Express your answer in feet per second squared using three significant figures. D ΠΙΑΣΦ Request Answer wwwww vec ? lb ? ft/s²
Figure
20 ft
-5 ft
VA = 6 ft/s
- y = 20 cos [ *
<
1 of 1
>
Transcribed Image Text:Figure 20 ft -5 ft VA = 6 ft/s - y = 20 cos [ * < 1 of 1 >
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