Take the horizontal plane containing CD as a reference level for gravitational potential cners • gravity g = 10 m/s? 1) Motion from A to B The particle (S) reaches the point B with a speed vp = 1 m/s Anply the work-energy theorem to determine the value of hị.

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Chapter7: Work And Kinetic Energy
Section: Chapter Questions
Problem 60P: A 2.0-kg block starts with a speed of 10 m/s at the bottom of a plane inclined at 37 to the...
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E. D
Take the horizontal plane containing CD as a reference level for gravitational potentiar chers)
gravity g = 10 m/s²
1) Motion from A to B
F.
The particle (S) reaches the point B with a speed vp = 1 m/s Apply the work-energy theorem to deternmne
the value of hị.
2) Motion from B to C
Particle (S) slides on BC. The height of B with respect to C is h2 = 15 cm.
G.
H.
2-1) Specify whether the mechanical energy of the system [(S), Earth] is conserved between B and C.
2-2) Deduce that (S) reaches the point C with a speed vc = 2 m/s.
3) Motion from C to D
3-1) Particle (S) continues its motion along CD and reaches the point D, 2 m away from C, with a speed
= 1 m/s. Determine the magnitude of friction force f.
3-2) Calculate the variation in the internal energy of the system [(S), atmosphere, track CD, Earth]
between C and D.
4) Motion from D to F
When the particle (S) reaches the point D, it continues its motion along the track DEF to reach
E with a speed VE = 2 m/s.
4-1) Determine the distance DE.
4-2) When (S) reaches the point E, the spring starts compressing and attains a maximum compression
Determine the value of the maximum compression Xmof the spring.
Transcribed Image Text:E. D Take the horizontal plane containing CD as a reference level for gravitational potentiar chers) gravity g = 10 m/s² 1) Motion from A to B F. The particle (S) reaches the point B with a speed vp = 1 m/s Apply the work-energy theorem to deternmne the value of hị. 2) Motion from B to C Particle (S) slides on BC. The height of B with respect to C is h2 = 15 cm. G. H. 2-1) Specify whether the mechanical energy of the system [(S), Earth] is conserved between B and C. 2-2) Deduce that (S) reaches the point C with a speed vc = 2 m/s. 3) Motion from C to D 3-1) Particle (S) continues its motion along CD and reaches the point D, 2 m away from C, with a speed = 1 m/s. Determine the magnitude of friction force f. 3-2) Calculate the variation in the internal energy of the system [(S), atmosphere, track CD, Earth] between C and D. 4) Motion from D to F When the particle (S) reaches the point D, it continues its motion along the track DEF to reach E with a speed VE = 2 m/s. 4-1) Determine the distance DE. 4-2) When (S) reaches the point E, the spring starts compressing and attains a maximum compression Determine the value of the maximum compression Xmof the spring.
no ic
Exercise 12:
Mechanical energy of a System
a track BCDEF.
top oh circular path, CD is a rough horizontal path and it exerts on (S) a horizontal and constant friction force
DEF is a smooth inclined plane making an angle a = 30° with the horizontal.
he bottom of the inclined plane F a massless spring of natural length l, and of stiffness constant
k= 100 N/m is placed as shown in Doc. 1.
(S)
ic energy of
hi
al energy, a
h2
ergy. What
Perichr
C
and
ure.
top of a track B. (S) the B, it on the track BCDEF that has BC to be a part of
The particle (S), of m = 200 g, is from a point A of hị to the
Transcribed Image Text:no ic Exercise 12: Mechanical energy of a System a track BCDEF. top oh circular path, CD is a rough horizontal path and it exerts on (S) a horizontal and constant friction force DEF is a smooth inclined plane making an angle a = 30° with the horizontal. he bottom of the inclined plane F a massless spring of natural length l, and of stiffness constant k= 100 N/m is placed as shown in Doc. 1. (S) ic energy of hi al energy, a h2 ergy. What Perichr C and ure. top of a track B. (S) the B, it on the track BCDEF that has BC to be a part of The particle (S), of m = 200 g, is from a point A of hị to the
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