Suppose that instead of hitting the center of the door, the bullet in (Eigure 5) strikes the door at the edge farthest away from the hinge and embeds itself there. What is the angular speed of the door just after the bullet embeds itself? Take Ubullet = 320 m/s. Express your answer in radians per second. ? rad/s Submit Request Answer Part F What fraction of the initial kinetic energy of the bullet remains as kinetic energy after the collision? Express your answer using two significant figures.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Be sure to review Examples 10.11 and 10.12 (Section
10.6) before attempting these problems.
Suppose that instead of hitting the center of the door, the bullet in (Figure 5) strikes the door at the edge farthest away
from the hinge and embeds itself there. What is the angular speed of the door just after the bullet embeds itself? Take
Vbullet = 320 m/s.
Express your answer in radians per second.
1να ΑΣφ.
W =
rad/s
Submit
Request Answer
Figure
5 of 5 >
Part F
Hinge
What fraction of the initial kinetic energy of the bullet remains as kinetic energy after the collision?
l= 0.50m
Express your answer using two significant figures.
m = 10g
Bullet
να ΑΣ φ.
Voullet
d = 1.00m M =15kg
K2/K1 =
Submit
Request Answer
Before
After
Transcribed Image Text:Be sure to review Examples 10.11 and 10.12 (Section 10.6) before attempting these problems. Suppose that instead of hitting the center of the door, the bullet in (Figure 5) strikes the door at the edge farthest away from the hinge and embeds itself there. What is the angular speed of the door just after the bullet embeds itself? Take Vbullet = 320 m/s. Express your answer in radians per second. 1να ΑΣφ. W = rad/s Submit Request Answer Figure 5 of 5 > Part F Hinge What fraction of the initial kinetic energy of the bullet remains as kinetic energy after the collision? l= 0.50m Express your answer using two significant figures. m = 10g Bullet να ΑΣ φ. Voullet d = 1.00m M =15kg K2/K1 = Submit Request Answer Before After
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