Use the exact values you enter in previous answer(s) to make later calculation(s). A 1,300-kg car traveling initially with a speed of 25.0 m/s in an easterly direction crashes into the rear end of a 9,900-kg truck moving in the same direction at 20.0 m/s (see figure below). The velocity of the car right after the collision is 18.0 m/s to the east. +25.0 m/s +20.0 m/s +18.0 m/s Before After (a) What is the velocity of the truck right after the collision? m/s (east) (b) How much mechanical energy is lost in the collision? Account for this loss in energy.

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Chapter1: Units, Trigonometry. And Vectors
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Use the exact values you enter in previous answer(s) to make later
calculation(s).
A 1,300-kg car traveling initially with a speed of 25.0 m/s in an easterly
direction crashes into the rear end of a 9,900-kg truck moving in the same
direction at 20.0 m/s (see figure below). The velocity of the car right after
the collision is 18.0 m/s to the east.
+25.0 m/s +20.0 m/s
+18.0 m/s
Before
After
(a) What is the velocity of the truck right after the collision?
m/s (east)
(b) How much mechanical energy is lost in the collision?
Account for this loss in energy.
Transcribed Image Text:Use the exact values you enter in previous answer(s) to make later calculation(s). A 1,300-kg car traveling initially with a speed of 25.0 m/s in an easterly direction crashes into the rear end of a 9,900-kg truck moving in the same direction at 20.0 m/s (see figure below). The velocity of the car right after the collision is 18.0 m/s to the east. +25.0 m/s +20.0 m/s +18.0 m/s Before After (a) What is the velocity of the truck right after the collision? m/s (east) (b) How much mechanical energy is lost in the collision? Account for this loss in energy.
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