Contoh Soal: 10. (II) A 380-kg piano slides 2.9 m down a 25° incline and is kept from accelerating by a man who is pushing back on it parallel to the incline (Fig. 6-36). Determine: (a) the force exerted by the man, (b) the work done on the piano by the man, (c) the work done on the piano by the force of gravity, and (d) the net work done on the piano. Ignore friction. FIGURE 6-36 Problem 10. mg Contoh Soal: 21. (II) An 85-g arrow is fired from a bow whose string exerts an average force of 105 N on the arrow over a distance of 75 cm. What is the speed of the arrow as it leaves the bow? 0

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Contoh Soal:
10. (II) A 380-kg piano slides 2.9 m down a 25° incline and is
kept from accelerating by a man who is pushing back on
it parallel to the incline (Fig. 6-36). Determine: (a) the
force exerted by the man, (b) the work done on the piano
by the man, (c) the work done on the piano by the force of
gravity, and (d) the net work done on the piano. Ignore
friction.
mg
FIGURE 6-36
Problem 10.
Contoh Soal:
21. (II) An 85-g arrow is fired from a bow whose string exerts
an average force of 105 N on the arrow over a distance of
75 cm. What is the speed of the arrow as it leaves the bow?
Transcribed Image Text:Contoh Soal: 10. (II) A 380-kg piano slides 2.9 m down a 25° incline and is kept from accelerating by a man who is pushing back on it parallel to the incline (Fig. 6-36). Determine: (a) the force exerted by the man, (b) the work done on the piano by the man, (c) the work done on the piano by the force of gravity, and (d) the net work done on the piano. Ignore friction. mg FIGURE 6-36 Problem 10. Contoh Soal: 21. (II) An 85-g arrow is fired from a bow whose string exerts an average force of 105 N on the arrow over a distance of 75 cm. What is the speed of the arrow as it leaves the bow?
Contoh Soal
A frictionless roller-coaster is given a maximum possible initial speed vo = 6 m/s
when it is at height y. = 6m above the ground and moves freely afterwards, see
Fig. 6.14 and take g = 10 m/s. (a) What will be the roller-coaster's speed when
it reaches the lowest point at y = 4 m? (b) What will be its maximum height y2?
Fig. 6.14
Contoh Soal
A block of initial speed v, slides across a floor, see Fig. 6.15. A kinetic fric-
tional force of magnitude f = 50N does work on the block, stopping it over a
displacement of magnitude d = 2m. Find the dissipated mechanical energy.
Fig. 6.15
Motion
Contoh Soal
Two forces Fi and F2 are acting on a box that slides horizontally to the right across
a frictionless surface, see Fig. 6.21. Force F has a magnitude of 5 N and makes
an angle e = 60° with the horizontal. Force F, is against the motion and has a
magnitude of 2 N. The speed v of the box at a certain instant is 4 m/s. What is the
power due to each force that acts on the box at that instant, and what is the net
power? Is the net power changing with time?
Fig. 6.21
Motion
mg
Transcribed Image Text:Contoh Soal A frictionless roller-coaster is given a maximum possible initial speed vo = 6 m/s when it is at height y. = 6m above the ground and moves freely afterwards, see Fig. 6.14 and take g = 10 m/s. (a) What will be the roller-coaster's speed when it reaches the lowest point at y = 4 m? (b) What will be its maximum height y2? Fig. 6.14 Contoh Soal A block of initial speed v, slides across a floor, see Fig. 6.15. A kinetic fric- tional force of magnitude f = 50N does work on the block, stopping it over a displacement of magnitude d = 2m. Find the dissipated mechanical energy. Fig. 6.15 Motion Contoh Soal Two forces Fi and F2 are acting on a box that slides horizontally to the right across a frictionless surface, see Fig. 6.21. Force F has a magnitude of 5 N and makes an angle e = 60° with the horizontal. Force F, is against the motion and has a magnitude of 2 N. The speed v of the box at a certain instant is 4 m/s. What is the power due to each force that acts on the box at that instant, and what is the net power? Is the net power changing with time? Fig. 6.21 Motion mg
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