Which two types of potential energies would be types of mechanical energies? electrical and kinetic nuclear and chemical radiant and thermal elastic and gravitational

Answers

Answer 1

The two types of  potential energies that would be types of mechanical energies are:

thermal elastic energy and gravitational energy.

What is potential energy?

The term potential energy is the energy possessed by a body by virtue of its position. It is different from kinetic energy which is due to the state of motion of a body.

The two types of  potential energies that would be types of mechanical energies are;

thermal elastic and gravitational energy.

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Answer 2

Answer: D - elastic and gravitational

Explanation: Edge 2023


Related Questions

which is the best insulator? metal, glass, plastic, or Styrofoam?

Answers

Answer:

Styrofoam would be the best insulator because it traps the air in small pockets, blocking the flow of heat energy.

Explanation:

True or false?
There is no
difference
between speed
and velocity

Answers

Answer:

False

Explanation:

Speed is the time rate at which an object is moving along a path, while velocity is the rate and direction of an object's movement.

A bicycle pump contains 20 cm3 of air at a pressure of 100 kPa. The air is then pumped in a tyre of volume 100 cm3. Calculate the pressure of the air in the tyre. Assume that the temperature is fixed. ​

Answers

Answer:

The pressure of the air in the tyre is 20 kPa

Explanation:

The parameters for the bicycle pump and tyre are;

The volume of air contained in the bicycle pump, V₁ = 20 cm³

The pressure of the air contained in the bicycle pump, P₁ = 100 kPa

The volume (available) of the tyre, where the air is pumped, V₂ = 100 cm³

Let P₂ represent the pressure in the tyre after the air is pumped

By Boyle's law, we have that at constant temperature, the volume of a given mass of gas is inversely proportional to its pressure;

Mathematically, Boyle's law gives the following equation;

P₁ × V₁ = P₂ × V₂

∴ P₂ = (P₁ × V₁)/V₂

Substituting the known values gives;

P₂ = (100 kPa × 20 cm³)/(100 cm³)

∴ P₂ = 100 kPa × 1/5 = 20 kPa

P₂ = 20 kPa

The pressure of the air in the tyre = P₂ = 20 kPa.

A car with a mass of 833 kg rounds an unbanked curve in the road at a speed of 28.0 m/s. If the
radius of the curve is 105 m, what is the centripetal force exerted on the car?

Answers

I had the same question

Lauren is comparing rocks from two different locations. She has the following
information about the rocks:
Rock A formed from small pieces of rock.
Rock B formed from liquid rock in a different place.
Rocks A and B formed at about the same time.
Are Rocks A and B the same or different types of rock?
.
The rocks are

Answers

Answer:

the same type because they both formed from rock material.

Explanation:

The rocks which are formed from small pieces of rocks are called sedimentary rocks whereas, the rocks formed from the liquid rocks or molten fluid rock, they are called igneous rocks. Hence, A rock A and B are of different types.

What is sedimentary rocks?

There are broadly three types of rocks namely  sedimentary rocks , igneous rocks and metamorphic rocks. These rocks can be interchanged to another forms through the process called rock cycle.

Sedimentary rocks are formed near the earth surface and which are deep within the earth. Sedimentary rocks are composed many  small pieces of rocks. Thus the rock A is sedimentary rock.

Igneous rocks are formed by the crystallization of molten magma after cooling. These magma are developed underground in the upper mantle. Magma becomes hot by the convection current and it flow making the nearby plates to move. When it cools, it solidifies to form igneous rocks. Thus, rock B is igneous type.

To find more on igneous rocks, refer here:

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A car travelling at 10 m/s accelerates at 3 m/s^2 for 6 seconds. What is the final velocity of the car?

Answers

Answer:28m/s

Explanation:I got one point so yeah hope this help

When a car traveling at 10 m/s accelerates at 3 meters/ second² for 6 seconds, then the final velocity of the car would be 28 meters per second.

What are the three equations of motion?

There are three equations of motion given by  Newton

v = u + at

S = ut + 1/2×a×t²

v² - u² = 2×a×s

As given in the problem, a car traveling at 10 m/s accelerates at 3 m/s^2 for 6 seconds,

the initial velocity of the traveling car = 10 m/s

time =  6 seconds,

acceleration = 3 meters/ second²


With the help of the first equation of the motion, we can calculate the final velocity of the car,

v = u + at

v = 10 + 3*6

v = 28 m/s

Thus, the final velocity of the car would be 28 meters per second.

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Which of these metals are magnetic?

Answers

Copper is not magnetic

Steel is magnetic

Nickel is magnetic

Tin is magnetic

Aluminum is not magnetic

Which competition is the “ most important soccer competition in the world “ ?

a - National championship

b - World Cup

c - olympics

Answers

It would be B. The World Cup

Hope this helps

Have a great day/night

A car is driving on the road. The car starts to decelerate at -3 m/s2. It stops moving after 125
meters. How fast was the car going initially?

Answers

Answer:

27.39 m/s

Explanation:

From the question given above, the following data were obtained:

Deceleration (a) = –3 m/s²

Distance (s) = 125 m

Final velocity (v) = 0 m/s

Initial velocity (u) =?

The initial velocity (u) of the car can be obtained as follow:

v² = u² + 2as

0² = u² + (2 × –3 × 125)

0 = u² + (– 750)

0 = u² – 750

Collect like terms

0 + 750 = u²

750 = u²

Take the square root of both side

u = √750

u = 27.39 m/s

Thus, the initial velocity of the car was 27.39 m/s

Help me with this question please

Answers

Answer:

Its true i'm pretty sure

Explanation:

Answer:

The answer is True

Explanation:

because it is and I suck at explaining

For what reason Do meteorogists use isobars on a weather map

Answers

Answer:

Isobars are similar to height lines on a geographical map, and they are drawn so that they can never cross each other. Meteorologists use isobars on weather maps to depict atmospheric pressure changes over an area and to make predictions concerning wind flow.

Explanation:

Answer:Isobars are similar to height lines on a geographical map, and they are drawn so that they can never cross each other.

Explanation:

A bulldozer uses a 500 N force to push a load of dirt 16 m to the worksite. How much work
does the bulldozer perform?

Answers

Explanation:

Force (F) = 500 N

Distance (d) = 16 m

work done (w) =?

We know that

w = F * d

= 500 * 16

= 8000 Joule.

The bulldozer performs 8000 Joule.

Hope it will help you :)❤

The _____ deflects these winds to the right in the northern hemisphere and to the Southern Hemisphere

Answers

Answer:

Coriolis Effect

Explanation:

The Coriolis effect is responsible for the deflection of winds to the right in the Northern hemisphere and to the right in the Southern hemisphere. It is an effect that occurs because of the rotation of the earth around its axis.

The implication of this is that in areas of low pressure in the Northern hemisphere, winds tend to blow in anticlockwise direction, and in areas of high pressure, it blows in a clockwise direction. The opposite of this happens in the Southern hemisphere.

A beam of light of wavelength lambda = 541nm is normally incident on a diffraction grating which has 600 lines m * m ^ - 1 Determine the angle theta 2 at which the second order diffracted beam is seen.

Answers

Answer:

Angle of diffraction for second order maxima is θ = 18.941°

Explanation:

From the question it is given that

wavelength of incident light = λ = 541 nm = 541 x [tex]10^-^9 m[/tex]

order of maxima = n =2

diffraction grating has 600 lines per mm

⇒ distance between two slit is [tex]\frac{1mm}{600}[/tex] = 1.66 x [tex]10^-^6[/tex] m

using the relation of Braggs diffraction formula i.e.,

2dsinθ = nλ ..................................(1)

where, d = distance between two lines of grating

θ is the angle of diffraction

n= order of maxima

λ is the intensity of incident photon

on substituting the respected values in relation (1) we get,

2 x 1.66 x [tex]10^-^6[/tex]m sinθ = 2 x 541 x [tex]10^-^9 m[/tex]

⇒ sinθ = 0.3246

θ = [tex]sin^-^1(0.3246)[/tex] = 18.941 °

1. Aling lalawigan ng rehiyon ang napapaligiran ng mga bundok?
A. Cavite B. Batangas C. Laguna D. Quezon​

Answers

B.batangas po

Explanation:Yan Lang po Ang Alam ko

A planet's rotation determines the length of its day and its revolution determines the length of its year. A day on Earth is 24 hours and a year on Earth is 365 days. In contrast to Earth, a day on Venus is longer than a year on Venus. Which is the best reason for why this is so?

Answers

Explanation:

The speed of rotation of Venus is slower than that of Earth that is why a day on Venus is longerthan Earth's day. Whereas, Venus is closer to sun than Earth, this means Venus trajectory of revolution is smaller than that of Earth.Therefore, a year on Venus is shorter than Earth's year.

The moon has a mass of 7.35x1022 kg and is a lot farther away than is shown in textbooks. The mass of the
Earth is 5.98 x 1024 kg. The moon's mean orbit distance (center-to-center) around the earth is 3.84
x10 m.
8. Using this information, determine the gravitational force exerted on the moon by the Earth.

Answers

Answer:

[tex]F=1.98\times 10^{20}\ N[/tex]

Explanation:

Given that,

The mass of a Moon, [tex]M_m=7.35\times 10^{22}\ kg[/tex]

The mass of the Earth, [tex]M_e=5.98\times 10^{24}\ kg[/tex]

The moon's mean orbit distance around the earth is, [tex]r=3.84\times 10^8\ m[/tex]

We need to find the gravitational force exerted on the moon by the Earth.

The formula of gravitational force is given by :

[tex]F=G\dfrac{M_mM_e}{r^2}\\\\F=6.67\times 10^{-11}\times \dfrac{7.35\times 10^{22}\times 5.98\times 10^{24}}{(3.84\times 10^8)^2}\\\\F=1.98\times 10^{20}\ N[/tex]

So, the required force is [tex]1.98\times 10^{20}\ N[/tex].

A car travels at a constant speed of 40 miles per hour down the street for around 0.25 hours. What is its acceleration?

Answers

It’s acceleration is 0 if it was traveling at a constant speed

Answer:

55

Explanation:

was moving at 25 miles per hour

If a roller coaster has 50,000 J of potential energy at the top of the first hill, how much kinetic energy does it have at the lowest point?

Answers

Answer:

50,000 J because of the transformation of energy

Explanation:

PLEASE HELP! Need this ASAP (in 10 minutes)
What happens to the speed (velocity) of a sound wave if the frequency decreases? (Assume the wavelength is constant.)
A. The speed is unchanged.
B. The speed quickly increases and then stops.
C. The speed increases.
D. The speed decreases.

Answers

The answer to your question here is A,


(I am dragging a very helpful piece of information from a website call “The Physics Classroom” for an explain took by the way so go check them out if you are still having trouble.)

From the paragraph I read, I could pull out “The data convincingly show that wave frequency does not affect wave speed.”

Thus concluding my answer of why the speed is unchanged.

A spring with a spring constant of 50 N/m is displaced by a force of 40 N. What is the displacement of the spring? (Fₛ = k Δx)

Answers

Answer:

The spring stretches or compresses 0.8 m (80 cm)

Explanation:

Hooke's Law

The force (F) needed to stretch or compress a spring by some distance Δx is given by

[tex]F=-k\Delta x[/tex]

Where k is a constant factor characteristic of the spring.

We are given the constant of a spring k=50 N/m and it's required to calculate the displacement Δx produced by a force of F=40 N. Solving for Δx:

[tex]\displaystyle \Delta x=\frac{F}{k}[/tex]

[tex]\displaystyle \Delta x=\frac{40}{50}[/tex]

Calculating:

[tex]\displaystyle \Delta x=0.8\ m[/tex]

The spring stretches or compresses 0.8 m (80 cm)

a moving truck takes a much longer time to stop than that taken by a car when brakes are pressed at the same time​

Answers

The magnitude of inertia depends on the mass of the body.

What is inertia?

The term inertia has to do with the degree of resistance to motion. We know that an object will continue in its state of rest or uniform motion unless it is acted upon by an external force.

The magnitude of inertia depends on the mass of the body. Since the truck is more massive than the car, it follows that a moving truck takes a much longer time to stop than that taken by a car when brakes are pressed at the same time​.

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A 100.0 kg safe is pushed across a floor with a force of 450 N. The coefficient of kinetic friction is 0.35. What is the acceleration of the safe?

Answers

Answer:

1.07m/s²

Explanation:

From the question we are given the following

applied force Fapp = 450N

mass of the safe m = 100kg

Weight of the safe W = 980N

coefficient of kinetic friction n = 0.35

Required

Acceleration of the safe

According to Newton's second law

\sum Fx = ma

Fapp - Ff = ma

Ff is the frictional force

Fapp - nmg = ma

450 - 0.35(100)(9.8) = 100a

450 - 343= 100a

107 = 100a

a = 107/100

a = 1.07m/s²

Hence the acceleration of the safe is 1.07m/s²

Compare and contrast a gas and a solid.

19 points ??? ASAP

Answers

Answer:

Gases, liquids and solids are all made up of atoms, molecules, and/or ions, but the behaviors of these particles differ in the three phases. ... gas are well separated with no regular arrangement. liquid are close together with no regular arrangement. solid are tightly packed, usually in a regular pattern.

Explanation:

gases are well separated with no regular arrangement.

solid are tightly packed usually in regular

pattern.

Hi, why do waves with longer wavelengths travel further than waves with shorter wavelengths?

Answers

Answer:

ones longer than the other daa

Explanation:

Answer:

well, because of the moon!

Explanation:

you see, the moon is what controls the waves. waves are most commonly caused by wind. wind-driven waves, or surface waves, are created by the friction between wind and surface water. as wind blows across the surface of the ocean or a lake, the continual disturbance creates a wave crest. the gravitational pull of the sun and moon on the earth also causes waves. so when the gravitation pull is weak, it creates the shorter wavelengths. without a stong pull, they don't go as far. when the pull is strong, the waves with longer wavelengths go further.

A 13.3 kg box sliding across the ground
decelerates at 2.42 m/s2. What is the
coefficient of kinetic friction?
(No unit)

Answers

Answer:

0.25

Explanation:

According to newtons law of motion

\sum F_x = ma

F_f =  ma

nR = ma

nmg = ma

ng = a

n = a/g

g is the acceleration due to gravity

Given

a = 2.42m/s²

g = 9.8m/s²

Substitute into the formula;

n = 2.42/9.8

n = 0.25

Hence the coefficient of kinetic friction is 0.25

Answer:

0.247

Explanation:

I had the same question and this is the correct answer.

2 forces that oppose motion?​

Answers

Answer:

gravity and friction

Explanation:

Picture is down below Thank you!​

Answers

I think the answer is 45 N Right

Hopefully I helped

Answer:

The answer is 45 N to the right.

Explanation:

To find the answer add 25 N and 20 N to get 45 N.

how much kinetic energy does a 2500kg minivan traveling at 35m/s have?

Answers

Answer:

Formular of kinteic energy is 0.5 × (mass x velocity)²

0.5 × 2500 kg × 35² =1,531,250 jules

Which of the following will result in the highest conductance?
large cross-sectional area, short pipe
small cross-sectional area, long pipe
small cross-sectional area, short pipe
large cross-sectional area, long pipe

Answers

Answer:

The highest conductance results from;

Large cross-sectional area, short pipe

Explanation:

The conductance, G, of a material is a measure of the rate or ease of electricity conduction of the material

[tex]The \ conductance \ G = Current/(Potential \ difference) = \dfrac{I}{V} =\dfrac{1}{R} = \dfrac{A}{\rho \cdot l}[/tex]

Where;

I = The current

V = The voltage (Potential difference)

R = The resistance

A = The cross-sectional area of the conductor

L = The length of the conductor

ρ = The resistivity of the conductor

Therefore, "G" is directly proportional to "A"  ang "G" is inversely proportional to "l" from which we have that as the cross-sectional area increases the conductance increases and as the length of the pipe decreases the conductance increases.

The highest conductance is given by a large cross-sectional area and a short pipe.

Answer:

Large cross-sectional area, short pipe

Explanation:

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