SPC Student Login - One SPC mlc Ch_7_and_8_written_hw - PHY20- x O Ch_7_and_8_written_hw.pdf 回启动会议- Zoom 启动会议- Zoom 新标签页 O X# | C:/Users/cheny/Downloads/Ch_7_and_8_written_hw.pdf Ch_7_and_8_written_hw.pdf 2/2 36. (II) Consider the track shown in Fig. 8–37. The section AB is one quadrant of a circle of radius 2.0 m and is frictionless. B to C is a horizontal span 3.0 m long with a coefficient of kinetic friction µk = 0.25. The section CD under the spring is frictionless. A block of mass 1.0 kg is released from rest at A. After sliding on the track, it compresses the spring by 0.20 m. Determine: (a) the velocity of the block at point B; (b) the thermal energy produced as the block slides from B to C; (c) the velocity of the block at point C; (d) the stiffness constant k for the spring. m = 1.0 kg r= 2.0 m FIGURE 8–37 Problem 36. 12:06 P Type here to search O a 1)) ENG 2020/3/31

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Chapter19: Astrobiology: Life On Other Worlds
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36. (II) Consider the track shown in Fig. 8–37. The section AB
is one quadrant of a circle of radius 2.0 m and is frictionless.
B to C is a horizontal span 3.0 m long with a coefficient of
kinetic friction µk = 0.25. The section CD under the spring is
frictionless. A block of mass 1.0 kg is released from rest at A.
After sliding on the track, it compresses the spring by
0.20 m. Determine: (a) the velocity of the block at point B;
(b) the thermal energy produced as the block slides from B
to C; (c) the velocity of the block at point C; (d) the stiffness
constant k for the spring.
m = 1.0 kg
r= 2.0 m
FIGURE 8–37
Problem 36.
12:06
P Type here to search
O a 1)) ENG
2020/3/31
Transcribed Image Text:SPC Student Login - One SPC mlc Ch_7_and_8_written_hw - PHY20- x O Ch_7_and_8_written_hw.pdf 回启动会议- Zoom 启动会议- Zoom 新标签页 O X# | C:/Users/cheny/Downloads/Ch_7_and_8_written_hw.pdf Ch_7_and_8_written_hw.pdf 2/2 36. (II) Consider the track shown in Fig. 8–37. The section AB is one quadrant of a circle of radius 2.0 m and is frictionless. B to C is a horizontal span 3.0 m long with a coefficient of kinetic friction µk = 0.25. The section CD under the spring is frictionless. A block of mass 1.0 kg is released from rest at A. After sliding on the track, it compresses the spring by 0.20 m. Determine: (a) the velocity of the block at point B; (b) the thermal energy produced as the block slides from B to C; (c) the velocity of the block at point C; (d) the stiffness constant k for the spring. m = 1.0 kg r= 2.0 m FIGURE 8–37 Problem 36. 12:06 P Type here to search O a 1)) ENG 2020/3/31
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