According to the given statement 3.77 m/s² is the acceleration of the block.
An object's motion is altered by a net force; the larger the net power, the higher the acceleration. To accelerate at the same rate as less massive objects, higher net forces are needed.
The capacity to acceleration demonstrates how quickly an athlete can increase or decrease their velocity over a specific period of time or over a specific distance after starting off at rest. For sprinting but in all ball games, it is a crucial skill. The main reasons of poor speed include problems with the delivery of air and fuel as well as sensor problems. Low power, meanwhile, can also be brought on by mechanical problems.
m = 0.52-kg
F = 2.63 N - 0.67 N
= 1.96 N (Net Force)
a or acceleration
Formula and solution:
a = F/
a = 1.96 kg.m/s² ÷ 0.52 kg
a = 3.77 m/s²
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Answer:
a = 3.77 m/s²
Explanation:
Given:
m = 0.52-kg
F = 2.63 N - 0.67 N = 1.96 N (Net Force)
Unknown:
a or acceleration
Formula and solution:
a = F/m
a = 1.96 kg.m/s² ÷ 0.52 kg
Final Answer:
a = 3.77 m/s²
There are the same unit in the solution which is kg so we cancel it then the rest which is m/s² combine it in the quotient of 1.96 kg.m/s² or N and 0.52 kg which is 3.769 then round off to nearest hundredths so the final answer is 3.77 m/s²
Answer:
Explanation:
Horizontal Launch
When an object is thrown horizontally with a speed v from a height h, it describes a curved path ruled by gravity until it eventually hits the ground.
The horizontal component of the velocity is always constant because no acceleration acts in that direction, thus:
vx=v
The vertical component of the velocity changes in time because gravity makes the object fall at increasing speed given by:
The horizontal component of the velocity is always the same:
The vertical component at t=5.5 s is:
Refrigerator
Counter
CO
The kitten's gravitational potential energy on top of the refrigerator is greater, but what is the kitten's gravitational
potential energy on top of the counter? Assume gravity as 10, if needed.
Answer:
E = 27 J
Explanation:
It is given that,
Mass of a kitten is 1.5 kg
Initially, it was at a height of 1.8 m refrigerator and finally jumps to a 0.9 m height counter.
We need to find the kitten's gravitational potential energy on top of the counter. Potential energy is possessed due to the position of an object. It can be given by :
g is acceleration due to gravity
So, the kitten's gravitational potential energy on top of the counter is 27 J.
Answer:175000N
Explanation:f=m(v-u)/t
F=1000(14-0)/0.08
F=(1000×14)/0.08
F=14000/0.08
F=175000N
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