Answer:
49 m/s
Explanation:
Initial potential energy = final kinetic energy
PE = KE
mgh = ½ mv²
v = √(2gh)
v = √(2 × 10 m/s² × 120 m)
v = 49 m/s
The sled land is "25.531 m" far from the foot of the cliff.
According to the question,
The velocity of the top =
then,
→
→
→
→
Now,
The projectile motion in horizontal direction,
→
or,
→
Thus the above answer is the correct one.
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b. The Volkswagen bug experiences a much greater force than the Ford pickup truck due to the larger mass of the truck.
c. The Volkswagen bug experiences a force that is the same as the Ford pickup truck experiences.
d. The Volkswagen bug experiences a much smaller force than the Ford pickup truck due to the smaller speed of the Volkswagen bug.
e. The Volkswagen bug experiences a much smaller force than the Ford pickup truck due to the smaller mass of the Volkswagen bug
Answer:C
Explanation:
Given
mass of Volkswagen
speed of Volkswagen
mass of Ford pick up
speed of ford pick up
When two bodies collide head-on then force experienced by both the bodies will be the same but opposite in direction.
According to newton's third law, the force exerted by one particle on another is equal to the force exerted by the second particle on first.
Thus two bodies will experience the same force
Answer:
c. The Volkswagen bug experiences a force that is the same as the Ford pickup truck experiences.
Explanation:
Given:
mass of Volkswagen bug,
speed of Volkswagen bug,
mass of Ford pickup,
speed of Ford pickup,
Since both undergo a head-on collision they both face the equal impact in accordance with the Newton's third law of motion which states that every action has equal and opposite reaction.
So the bug the force applied by the bug on the pickup is equal to the force applied by the pickup on the bug. This happens only till both the masses are in contact with each other.
B. 2 J
C. 1 J
D. 4 J
). What's the force of gravity acting on the column of water?
A. 73,500 N
B. 102,900 N
C. 68,600 N
D. 110,700 N
Given:
liquid column is 7 meters and the area is 1.5 square meters (m2)
Required:
force of gravity
solution:
P = F/A where P is pressure, F is force and A is area
Since P = DgH where D is density, g is gravitational acceleration and H is height
DgH = F/A
F = ADgH
Let us assume D for water is 1000kg/m3
F = (1.5m2)(1000kg/m3)(9.8m/s2)(7m)
F = 102,900N
your answer is B. 102,900 N
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