24. (III) (a) Calculate the impulse experienced when a 55-kg person lands on firm ground after jumping from a height of 2.8 m. (b) Estimate the average force exerted on the person's feet by the ground if the landing is stiff-legged, and again (c) with bent legs. With stiff legs, assume the body moves 1.0 cm during impact, and when the legs are bent, about 50 cm. [Hìnt: The average net force on him, which is related to impulse, is the vector sum of gravity and the force exerted by the ground. See Fig. 7-34.] We will see in Chapter 9 that the force in (b) exceeds the ultimate strength of bone (Table 9-2). mg grd FIGURE 7-34 Problem 24. E Floctio Callicin 25. (ID A ball of mass 0 440 . "pocu of 3.ðu m/s collides head u With a 0.220-kg ie speeu dilu unv Vv vun al[er the coIlisIon: 26. (II) A 0.450-kg hockey puck, moving east with a speed of 5.80 m/s, has a head-on collision with a 0.900-kg puck ini- tially at rest. Assuming a perfectly elastic collision, what will be the speed and direction of each puck after the collision?

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Chapter9: Linear Momentum And Collisions
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0.
FIGURE 7-33
Problem 23.
0.05
0.10
I (s)
24. (III) (a) Calculate the impulse experienced when a 55-kg
person lands on firm ground after jumping from a height
of 2.8 m. (b) Estimate the average force exerted on the
person's feet by the ground if the landing is stiff-legged,
and again (c) with bent legs. With stiff legs, assume the
body moves 1.0 cm during impact, and
when the legs are bent, about 50 cm.
[Hìnt: The average net force on
him, which is related to impulse,
is the vector sum of gravity and
the force exerted by the ground.
See Fig. 7-34.] We will see in
Chapter 9 that the force in (b)
exceeds the ultimate strength of
bone (Table 9–2).
mg
grd
FIGURE 7-34
Problem 24.
Claotia callicin
25. (II) A ball of mass 0 440
"pecu Ol 3.80 m/s collides her
wu with a 0.220-kg
we speed dllu
u vuuu aller the collisIOIN:
26. (II) A 0.450-kg hockey puck, moving east with a speed of
5.80 m/s, has a head-on collision with a 0.900-kg puck ini-
tially at rest. Assuming a perfectly elastic collision, what will
be the speed and direction of each puck after the collision?
of
060-kg tennis hall
Vinc -
m/s.
Udl after thecell:
UI edual mass undergo a perfectly
2.00 m/
collision?
The S ecouv
Transcribed Image Text:0. FIGURE 7-33 Problem 23. 0.05 0.10 I (s) 24. (III) (a) Calculate the impulse experienced when a 55-kg person lands on firm ground after jumping from a height of 2.8 m. (b) Estimate the average force exerted on the person's feet by the ground if the landing is stiff-legged, and again (c) with bent legs. With stiff legs, assume the body moves 1.0 cm during impact, and when the legs are bent, about 50 cm. [Hìnt: The average net force on him, which is related to impulse, is the vector sum of gravity and the force exerted by the ground. See Fig. 7-34.] We will see in Chapter 9 that the force in (b) exceeds the ultimate strength of bone (Table 9–2). mg grd FIGURE 7-34 Problem 24. Claotia callicin 25. (II) A ball of mass 0 440 "pecu Ol 3.80 m/s collides her wu with a 0.220-kg we speed dllu u vuuu aller the collisIOIN: 26. (II) A 0.450-kg hockey puck, moving east with a speed of 5.80 m/s, has a head-on collision with a 0.900-kg puck ini- tially at rest. Assuming a perfectly elastic collision, what will be the speed and direction of each puck after the collision? of 060-kg tennis hall Vinc - m/s. Udl after thecell: UI edual mass undergo a perfectly 2.00 m/ collision? The S ecouv
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