Answer: True on odyssey
Explanation:
b. transferred
c. lost
d. created
b. fall over once you overcome its inertia
c. push against you with equal force
d. heat up due to energy transfer
c. push against you with equal force
Newton's third law simply states that for every action there is an equal and opposite reaction.
So, if object A acts a force upon object B, then object B will exert an opposite yet equal force upon object A.
Newton's third law of motion describes that,
Forces always act in equal but opposite pairs.
Another way of saying this is for every action, there is an equal but opposite reaction.
This means that when you push on a wall, the wall pushes back on you with a force equal in strength to the force you exerted.
A person pushes against a wall (action force), and the wall exerts an equal and opposite force against the person (reaction force).
Therefore,
According to Newton's third law of motion, if you push against a wall, the wall will push against you with equal force.
Learn more about Newton's third law of motion here:
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C. push against you with equal force
Answer:
The deceleration must have the engineer to avoid the accident is
a=-5.238
Explanation:
While the engineer reacts the train continue moving so
Now the final velocity have to be zero so using equation can find deceleration
b. Cardiac and smooth muscles are made of muscle fibers, nerves, and cartilage and are responsible for all movement in the body.
c. Smooth muscles, which are made of blood vessels, fibers, and nerves, allow for all activities that use slow-twitch muscle fibers.
d. Skeletal muscles, which are made of tendons, nerves, and fibers, line the body cavities and allow for support and movement.
A. Skeletal muscles, which are made of fibers, nerves, and blood vessels, contract in order to make the body move.
Answer:
A.
Skeletal muscles, which are made of fibers, nerves, and blood vessels, contract in order to make the body move.
Explanation:
water freezes inside a rock, causing it to break
oxygen reacts with the chemicals in rock
rocks break from repeated exposure to the Sun's heat
Answer: water freezes inside a rock, causing it to break
Weathering is a natural process in which the rocks break into pieces or sediments by the action of wind, water and chemical agents. Frost wedging is a physical weathering process. It occurs in an area where temperature fluctuations occurs due to change in the climatic conditions. This occurs due to rapid heating and cooling. The rocks lying in a cold environment, the water residing in the rocks gets freezed. The water in ice form that is solid form acquire more space than in liquid form, therefore, the developed ice will affect the physical structure of the rock. The formation of ice results in the development of break or crack in the rock typically in the shape of a wedge and thus the phenomena is called as frost wedging.
Hence, frost wedging happens when water freezes inside a rock, causing it to break.
Answer:
Frost wedging happens when water freezes inside of a rock, causing it to break