which statement best compares potential and kinetic energy

Answers

Answer 1
potential energy is what something has energy of staying still. if a car was the the top of a hill that’s where it has the most potential. kinetic energy is energy in motion. as that car on the hill starts to roll down, the potential of it lowers as the kinetic raises
Answer 2

Answer:

Potential energy is the energy possessed by a body at rest while kinetic energy is the energy possessed by a body in motion.

Explanation:

Potential energy is the energy possessed by a body by virtue of its position while kinetic energy is the energy possessed by a body by virtue of its motion. Potential energy is the energy acting on a body at rest(not moving) while kinetic energy is the energy acting on moving object(motion).

Example of potential energy is the energy possessed by a parked car. The parked car is not moving i.e the car is in a state of rest

Example of kinetic energy is the energy possessed by an accelerating car. The car is in motion (moving).


Related Questions

Beryllium has a nucleus composed of protons and neutrons. Given the data, how many neutrons are in a typical Beryllium nucleus?
A) 3
B) 4
C) 5
D) 9

Answers

Beryllium has a mass number of 9 and 4 protons.  To find the number of neutrons you need to subtract the number of protons from the mass number.  so...
neutrons = mass - # protons
neutrons = 9 - 4 = 5
I believe the answer is C

The larger the push, the larger the change in velocity. This is an example of Newton's Second Law of Motion which states that the acceleration an object experiences is _____ .

Answers

According to Newton, an object will only accelerate if there is a net or unbalanced forceacting upon it. The presence of an unbalanced force will accelerate an object - changing its speed, its direction, or both its speed and direction.

Newton's Second Law of Motion which states that the acceleration an object experiences is directly proportional to the force applied to it

Newton's Three Laws - Complete the sentences.

Newton's FIRST Law of Motion

An object at ___ stays at ___ or an object that is ___ at a ___ in a straight ___ keeps moving at that ___ unless another ___ acts on it.

Newton's SECOND Law of Motion

The amount of ___ needed to make an object change its ___ depends on the ___ of the object and the ___ required.

Newton's THIRD Law of Motion

For every ____ (or force), there is a(n) ___ and ___ action (or force).

Answers

1. The answer is An object won't move by itself, and once in motion, it won't stop unless some force acts upon it.
2. The rate of change of momentum is directly related to the force pressed upon it. In other words, when an object is pushed with more force, it will move faster and further away.
3. To every action, there is equal and opposite reaction. 
Final answer:

The FIRST law states that an object at rest stays at rest, or if it's moving it continues at a consistent speed and direction unless acted on by another force. The SECOND law implies that the force needed to change an object's motion depends on its mass and the required acceleration. The THIRD law states that every force (action) has an equal and opposite force (reaction).

Explanation:Newton's Laws of Motion

Newton's FIRST Law of Motion

An object at rest stays at rest, or an object that is moving at a consistent speed in a straight line keeps moving at that speed unless another force acts on it.

Newton's SECOND Law of Motion

The amount of force needed to make an object change its motion depends on the mass of the object and the acceleration required.

Newton's THIRD Law of Motion

For every action (or force), there is a(n) equal and opposite reaction (or force).

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Which of the follow represent a chemical changes

Answers

Answer:

C) steel turning to rust in salt air

Explanation:

The missing options are:

A) ice melting to form liquid water

B) water boiling to form steam

C) steel turning to rust in salt air

D) sugar dissolving into hot coffee

In a chemical change the atoms of the reacting compounds are reordered forming new compounds. In a chemical change, new compounds appear, but in a physical change not.

Then, change of states like ice melting and water boiling are not chemical changes.

During steel rust, components of steel, like iron, are oxidized, that is, reacts with oxygen forming oxides.

The dissolution of sugar into hot coffee is a physical change in which sugar molecules get further apart in the coffee,  but they don't change.

which of the following places would u expect to have the coldest climate?

a. a place that is very close to the poles

b. a place that is very close to the equator

c. a place that is near the equator

d. a place between the poles and equator

Answers

a.) a place that is very close to the poles
the equator is where the warmest places are and where the sun shines most directly, the poles don't get direct sunlight because the Earth is a sphere and all that science stuff

a. A place that is very close to the poles

what SD can friction do to moving objects

Answers

Friction can slow objects doing in a certain direction. This friction can affect speed, acceleration, and turning.

two important influences of dissolving a solute in a solution are temperature and ______.

Answers

xixigzizlgdkgchhcf0uxoyggdvigvoy cocgixt8
Density...
Maybe.. please let me know if this is right

In the early 19th century Christian Doppler, an Austrian physicist, proposed a theory regarding the properties of a moving source of sound. This is now known as Doppler’s law or the Doppler effect. What does this law state? A) The loudness of a moving source of sound is independent of the observer. B) The frequency of a moving source of sound is independent of the observer. C) The loudness of a moving source of sound is greater as it approaches an observer. D) The frequency of a moving source of sound is greater as it approaches an observer.

Answers

Answer:  D) The frequency of a moving source of sound is greater as it approaches an observer.

Explanation:

Doppler effect occurs when there is relative motion between source of sound and observer. The apparent frequency observed by observed is different from the actual frequency of the sound emitted from the source.

When the source and observer move closer, the apparent frequency is greater and when moving away, it is less than the actual frequency. Thus, the correct option is D.

The loudness is dependent on the amplitude of the sound which remains same.

Answer:

D!

Explanation:

its on usatest prep!

IF there are 10.0 g of source and 8.0 g of oxygen, how many moles of sucrose are available for this reaction

Answers

0.029 mol is the answer

In a two planet system, does an increase in planet velocity result in a decreased period?

Answers

In order to maintain orbit, aplanet with a faster velocity would have to have a shorter orbit radius. 

Answer:

d.

No, if velocity becomes too great, the planet can escape the Sun's gravitational pull.

Explanation:

It is correct on Edge 22

Select ALL correct layers.
Identify the intrusions in the rock layers.

A) J

B) H

C) G

D) K

Answers

h and j r the most accurate'

When are tides highest? a. during the moon’s first quarter phase b. when the sun, Earth, and the moon are nearly in a line c. during the moon’s third quarter phase d. when the moon is at a right angle to the sun

Answers

Ocean tides are highest when the sun, Earth, and the moon
are nearly in a line.  That means at the times of New Moon
and Full Moon.

Answer:

b. when the sun, Earth, and the moon are nearly in a line

Explanation:

Due to gravitational pull of sun and moon, the level of water in seas and oceans rises above its normal level. This is known as tides. Highest tides occur when the sun, the moon and the Earth align in a straight line i.e. during New moon and Full moon. This is because in this alignment, there is maximum effect of gravity. Tide occurrence during this phase are also referred as spring tides.

What determines the atomic number of an element? Question 2 options: A.protons
B.neutrons
C.electrons

Answers

Protons is what determines the atomic number of an element.

How much power is required to lift a 25 kg box to the top of a 4 meter flight of stairs in 3.5 seconds?

Answers

I believe it is 28.57. 
Around 28 I believe, excuse me if I’m wrong

HELP NEEDED FOR ASSIGNMENT PLZ HELP NOW Describe an environment in which the sound of a ringing cell phone could not be transmitted, and explain why the ringing wouldn't be heard. Justify your reasoning using complete sentences and key vocabulary.

Answers

The answer would be in space because there is no matter and if there isn't matter the sound of a ringing cell phone could not be transmitted.

Answer:

I did my best to research to help you

Explanation:

The answer would be in space because there is no matter and if there isn't matter the sound of a ringing cell phone could not be transmitted.

How much force is needed to lift a 25-kg mass?

Answers

The force needed to lift the object must be (at least) equal to the weight of the object itself. In fact, the weight W of the object pushes downward, while the force we apply, F, pushes upward. The weight of the object is
where [tex]m=25 kg[/tex] is the mass and [tex]g=9.81 m/s^2[/tex] is the gravitational acceleration. Substituting, we have
[tex]W=mg=(25 kg)(9.81 m/s^2)=245.3 N[/tex]
And therefore, the force F we have to apply must be at least equal to this value, in order to lift the object.

Which of the following statements about asteroids is true? A. The asteroids in our solar system are spread out uniformly and are not grouped in any particular orbit. B. The majority of the asteroids in our solar system are found in the space between Mars and Jupiter. C. The majority of the asteroids in our solar system are found in the space between Earth and Mars. D. The majority of the asteroids in our solar system are found in the space between Jupiter and Saturn.

Answers

The majority of the asteroids in our solar system are found
in the space between the orbits of Mars and Jupiter. (B)

Answer:

Option (B)

Explanation:

Asteroids are the rocky materials that are present abundantly in an orbit between the planet Mars and Jupiter. This is known as the asteroid belt, which is comprised of millions of asteroids that move around the sun. They are of various sizes ranging from a few meters to about hundreds of kilometers, which can cause mass extinction if strikes on the surface of the earth. They move at a speed of about 80,000 km/hr and during this motion, frequent collision takes place and they are considered to be the remnant of the early solar system.

Thus, the correct answer is option (B).

A woman falls to the ground while wearing a parachute. The air resistance on the parachute is 500N. If the woman falls at a constant rate of 5 m/s, then the gravitational force on her is

Answers

Then the gravitational force on her should be equal to the air resistance, i.e. 500 N.
In fact, the woman is falling at constant velocity, 5 m/s. This means there is no acceleration on her. But Netwon's second law states that the resultant of the forces acting on the body is equal to the product between the mass and the accleration:
[tex]\sum F =ma[/tex]
But the acceleration is zero, so the resultant of the forces acting on the woman must be zero. Since only two forces are acting (the air resistance, upward, and the gravity, downward) and they are in opposite direction, they must have equal intensity in order to produce a net acceleration of zero, so they both have intensity of 500 N.

And this one as well

The small shock you feel when you rub your shoes on carpet and touch something is called by

A conduction
B insulator
C induction
D current

Please need help

Answers

If I'm correct both of the answers are A.

12) Which is MOST LIKELY a solid at room temperature?

Answers

Gold
Silver
Iron
Platinum
Goes on and on 


A 140
B 78
C 186
D 124
Which statement is correct?
Material B is the least dense.
Material C is the most dense.
Material A is denser than Material D.
Material D is denser than Material A.

Answers

The correct statement is Material D is denser than Material A.

What is density of a material

Density of a material represents the amount of mass contained within a specific volume of that substance. It is calculated by dividing the material's mass by its volume.

This fundamental property, denoted as  ρ, varies based on the composition and structure of the substance. For instance, metals generally possess higher densities compared to gases or liquids.

Hence we can say that Material D is denser than Material A.

question

The speed of light in four different materials is shown below:

Material Speed of light in thousand miles per second

A 140

B 78

C 186

D 124

Which statement is correct?

Material B is the least dense.

Material C is the most dense.

Material A is denser than Material D.

Material D is denser than Material A. ((my answer))

I WILL GIVE BRANLIEST TO THE BEST ANSWER


1. What is weather?

2. What are 3 important things that our atmosphere does that allows for life on Earth?

3. The local news mentions that we will have a warm front coming through NH this week.  What might we experience for weather before, during and after this front passes?
4. Is it possible that humans and dinosaurs have drank the same water?  Formulate an argument to this question using your knowledge of the water cycle.

Answers

Hi there!

1. Weather is the condition in a day describing humidity, temperature, and rain or sun conditions. It also includes different features, including hail, snow, and storms.

2. Our atmosphere provides the air we need to breath. It also protects us from harmful UV rays from the sun, and it traps heat to ensure that the planet doesn't freeze.

3. We might have storms such as thunderstorms, or gusts of warm air coming our way. This is caused by the warm front.

4. Yes, it is possible that humans and dinosaurs drank the same water. Because of the water cycle and that water on earth never leaves the atmosphere since it is always cycled or recycled, it is possible that the same water, just in different states, have been in the mouth of a dinosuar.

Hope this helps!

What happens if different lights are shined through a prism

Answers

It will bend and create a rainbow

Final answer:

Different lights are separated into their individual colors when shined through a prism due to the phenomenon of dispersion. The prism refracts the light, bending different colors by different amounts based on their wavelengths.

Explanation:

When different lights are shined through a prism, they are separated into their individual colors. This is because the prism refracts (bends) the light, but not all colors are bent by the same amount. The bending of the light depends on its wavelength, with different wavelengths being bent by different amounts. This phenomenon is called dispersion.

For example, when white light is shined through a prism, it is separated into a rainbow of colors, known as a continuous spectrum. The colors are lined up side by side, with violet light being bent the most and red light being bent the least.

Overall, the prism acts as a dispersing tool that separates the different colors of light based on their wavelengths, allowing us to see the individual colors that make up white light.

A very small red laser pointer is pointed on the wall across the room. When inspecting the reddish light on the wall, you notice that it is _______________ because it has been diffracted.


A) bent

B) brighter

C) spread out

D) bounced back

Answers

I believe it is B Hope this helps

the answer is c) spread out

i need this as fast as possible

Answers

this is a law because it has been proven correct countless times

how could you make a sound wave sound louder

Answers

If you clap your hands, the shock causes the air around your hands to begin vibrating. When air particles vibrate, they bump into other particles near them. Then these particles begin to vibrate and bump into even more air particles. When the air particles begin vibrating the air inside your ear, you hear a sound.
Final answer:

The loudness of a sound can be increased by increasing the amplitude of the sound wave. This can be achieved by adjusting the volume on a speaker or by using devices designed to amplify sound, like a vuvuzela. Also, sounds with higher amplitude and intensity, such as those from a loud car stereo, are naturally louder.

Explanation:

The loudness or volume of a sound wave can be increased by increasing its amplitude. The amplitude of a sound wave determines how much energy it carries, which directly affects its loudness. An example of this is how a speaker produces louder sounds: as you increase the volume on a speaker, it causes the table or surface it is on to vibrate more vigorously. This is because the speaker is moving more air (higher amplitude), which translates to a louder sound.

Another example is using a vuvuzela. The size and construction of the vuvuzela are designed to amplify the sound produced by the person blowing into it, making it louder. The amplified sound has a higher amplitude and therefore a louder volume.

Finally, in a real-life scenario, consider two sounds: one from a passing car's stereo and the other from the person next to you. The sound from the car's stereo is amplified due to its higher intensity and amplitude, making it louder and causing it to dominate over the sound coming from the person next to you.

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HELP ASAP PLEASEEEEEEEEEEEE

Answers

it's the second graph!
it's the only one with a negative gradient.
so the temperature of the ball will fall in water as it looses its heat.

activate windows,:-P

Smoke alarms only emit alpha radiation. Why is it important that it does not emit other radiation?

Answers

because any other radiation can be harmful

Smoke alarms emit only alpha radiation, which has limited penetration power and is safe when contained, such as within the plastic casing of the detector. Inhaling alpha-emitting radioactive substances can be harmful, therefore strict containment like in smoke detectors is essential for safety.

It is important that smoke alarms only emit alpha radiation and not other types of radiation because alpha particles have limited penetration power, making them less harmful to humans when contained within a device. Alpha particles in smoke alarms are used to ionize the air and create a small electric current. In the event of a fire, smoke particles disrupt the flow of ions, which reduces the current and triggers the alarm. Many alpha-emitting substances are safe to handle because alpha particles can be blocked by simple barriers, like the plastic embedding in smoke detectors.

Inhaling or ingesting alpha-emitting radioactive dust, however, can be very dangerous as it exposes internal tissues to intense localized radiation, increasing the risk of cellular damage and cancer. For this reason, the containment of americium in smoke detectors ensuring that the radioactive material is not easily dispersed or inhaled is crucial to its safety in residential and commercial environments.

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I NEED HELP PLEASEEE

could you create a way to exert a continuous push on the ball? How would the ball respond to this continuous push?

Answers

It would respond like your using gravity by pushing and throwing!
You can create a way to exert a continuous push on a ball by getting rid of any fluid, static, sliding, and rolling friction. This way there would be no friction to slow the ball down. The ball would continue to move at a continuous pace until acted upon by an unbalanced force. Newton's First Law states that an object in motion will stay in motion until acted on by an unbalanced force.

what laws of motion are demonstrated by a hammer pounding a nail into a board?

Answers

A hammer pounding a nail into a board is an example of Newton’s Third law.

Newton’s third law states that for every action there is an equal and opposite reaction. Meaning, when you hit the hammer on the board the same amount of energy that is going into the board, is going into the hammer. Causing the hammer to bounce off the board.

Hope this helps!

The hammer pounding a nail demonstrates Newton's First Law, as the hammer's horizontal motion stops due to the opposing force of the nail and board, and Newton's Third Law, with the nail applying an equal and opposite force to the hammer.

The phenomenon of a hammer pounding a nail into a board can be analyzed using Newton's laws of motion. Specifically, two of these laws are demonstrated:

Newton's First Law (also known as the law of inertia). This law suggests that if an object is in motion, it will not change its velocity unless a force acts upon it. For example, a hammer in motion strikes a nail and is brought to rest because the nail and board apply a force opposing the hammer's motion.

Newton's Third Law states that for every action, there is an equal and opposite reaction. Therefore, as the hammer applies a force to drive the nail into the board, the nail applies an equal and opposite force to the hammer, causing it to stop.

When a hammer hits a nail, the horizontal momentum of the hammer is reduced to zero as the nail stops the hammer—illustrating Newton's First Law. Simultaneously, the force with which the hammer strikes the nail and the nail’s force on the hammer (which is responsible for stopping the hammer) is an example of Newton's Third Law in action.

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