A motor raises a mass of 3 kg to a height h at a constant speed of 0.05 m/s. The battery which provides energy to the motor originally stores 4 J of energy, all of which can be used to lift the mass. To what maximum height can the motor lift the mass using its stored energy? (Free- falling acceleration g =10 m/s^2). * O 0.13 m O 0.13 km 13 m 1.3 m None of the answers

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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ulgis saao pusi yula
2030212
23
2
A motor raises a mass of 3 kg to a height h at a constant speed of 0.05 m/s. The battery which
provides energy to the motor originally stores 4 J of energy, all of which can be used to lift the
mass. To what maximum height can the motor lift the mass using its stored energy? (Free-
falling acceleration g =10 m/s^2). * Q
%3D
O 0.13 m.
O 0.13 km
O 13 m
O 1.3 m
O None of the answers
3.
The force applied tangentially to a bar of a screw-jack at a radius of 250 mm, if the torque
roguired ic12 Am ie
Th
CS
hp
&
%23
8
9
6
V
E
T
Y
G
H.
J
K
D
A.
C
V
N
M
ー 4
Transcribed Image Text:ulgis saao pusi yula 2030212 23 2 A motor raises a mass of 3 kg to a height h at a constant speed of 0.05 m/s. The battery which provides energy to the motor originally stores 4 J of energy, all of which can be used to lift the mass. To what maximum height can the motor lift the mass using its stored energy? (Free- falling acceleration g =10 m/s^2). * Q %3D O 0.13 m. O 0.13 km O 13 m O 1.3 m O None of the answers 3. The force applied tangentially to a bar of a screw-jack at a radius of 250 mm, if the torque roguired ic12 Am ie Th CS hp & %23 8 9 6 V E T Y G H. J K D A. C V N M ー 4
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