What is the force between a 3 C charge and a 4 C charge separated by a distance of 2 meter

Answers

Answer 1

Answer:

[tex]fr = \frac{9 \times 10 {}^{9} \times 3 \times 4}{2 {}^{2} } \\ fr = 27 \times 10 {}^{9} n[/tex]


Related Questions

A 188 W motor will lift a load at a rate of 0.065 m/s. How heavy of a load can the motor
lift at this rate?

Answers

Answer:

2892.31 N

Explanation:

Applying,

P = F×v................ Equation 1

Where P = power of the motor, F = Weight of the load the motor can lift, v = velocity

make F the subject of the equation

F = P/v.............. Equation 2

Given: P = 188 W, v = 0.065 m/s

Substitute into eequation 2

F = 188/0.065

F = 2892.31 N

Hence the weight of the load is 2892.31 N

Read the map key. Predict which location would expect to have the most extremes in average annual temperatures.

A.
B.
C.
D.

Answers

i think the answer is B

Answer:

D is the answer

Explanation:

State

What is the correct order of tasks for washing dishes in a three-compartment sink?

Answers

Answer:

The summary of the given statement is explained below throughout the explanation segment.

Explanation:

Drain certain surfaces throughout warm water of such soap during the very first sink. This same sanitizing of bacteria would not destroy whether grime would be in the direction.Exfoliate the plates throughout plain water during the secondary drain. As with grime, the residual soap could avoid the kill off bacteria and viruses by the sanitizer.

Witch of the following is the correct definition of convention
A. The transfer of heat by currents
B. The transmission of heat across matter
C. The transmission of heat across empty space
D. The electromagnetic radiation from the surface of an object witch is due to the objects temperature

Answers

Answer:

A is the answer .(A) is correct

I need the answer please

Answers

Answer:

,1) point B

2) point A

I hope it's helps you

Which statements explain the relationship between mass, velocity and kinetic energy? Consider the equation to calculate kinetic energy: KE = ½mv2

1. Kinetic energy increases if either the mass or the velocity of the object increases or if both increase.

2. Kinetic energy decreases if either the mass or the velocity of the object increases or if both increase.

3. Kinetic energy decreases if either the mass or the velocity of the object decreases or if both decrease.

4. Kinetic energy increases if either the mass or the velocity of the object decreases or if both decrease

Answers

Answer:

statement 1

Explanation:

When mass increases,KE increases and when mass decreases, KE also decreases

Name a device that transforms electrical energy to sound energy. ( it may also produce thermal (heat) energy)

Answers

the answer is speaker it transform electrical energy into sound energy

Answer:

Lightbulb.

Electric stove element.

Electric space heater.

lightning but it's not a device

Explanation:

Lightning converts electrical energy into light, heat and sound energy

A force of 24 Newtons acts on an object for 2 seconds. What is
the amount of the impulse?
O 26Ns
O 48 Ns
0 22Ns
O 12Ns

Answers

It’s (D.)
24/2=12
F=ma

A car is traveling at 120 kilometers per hour with 35,000 joules of kinetic energy on the freeway when it suddenly applies its brakes and comes to a screeching stop. How much of the original 35,000 joules of energy is left?

Answers

Answer:

0 J is left (No amount of the original 35000 J energy is left)

Explanation:

From the question

Kinetic Energy (K.E) = 1/2mv²................... Equation 1

Where m = mass of the car, v = velocity of the car.

make m the subject of the equation.

m = 2K.E/v²..................... Equation 2

Given: K.E = 35000 Joules, v = 120 km/h = (120×3600/1000) = 432 m/s

Substitute these values into equation 2

m  = (2×35000)/432²

m = 0.375 kg.

If a brake is suddenly apply,

Then, the velocity of the car = 0 m/s.

Therefore,

K.E = 1/2(0.375×0²)

K.E = 0 J.

From the baove analysis, No amount of the original 35000 J energy is left.

Three resistors, 3.0 Ω, 12 Ω, and 4.0 Ω, are connected in parallel across a 6.0-V battery as shown above. What is the current through the battery?

Answers

Answer:

the current flowing through the battery is 4 A.

Explanation:

Given;

resistance of the three resistors in parallel, R₁, R₂ and R₃ = 3.0 Ω, 12 Ω, and 4.0 Ω

voltage of the battery, V = 6.0 V

The equivalent resistance is calculated as follows;

[tex]\frac{1}{R_T} = \frac{1}{R_1} + \frac{1}{R_2} + \frac{1}{R_3} \\\\\frac{1}{R_T} = \frac{1}{3} + \frac{1}{12} + \frac{1}{4} \\\\\frac{1}{R_T} = \frac{4 \ + \ 1 \ + \ 3}{12} \\\\\frac{1}{R_T} = \frac{8}{12} \\\\\frac{1}{R_T} = \frac{2}{3} \\\\R_T = \frac{3}{2} \\\\R_T = 1.5 \ ohms[/tex]

The current flowing through the battery is calculated as follows;

[tex]I = \frac{V}{R_T} \\\\I = \frac{6}{1.5} \\\\I = 4 \ A[/tex]

Therefore, the current flowing through the battery is 4 A.

Neutrons have a
charge______.
Answer here

Answers

Answer:

neutral

Explanation:

how important is knowing and understanding the nature of the tasks and the function of a tool to successfully accomplish a specific task?​

Answers

Explanation:

Management is important in every organization for smooth operation, development, and growth, coordination, optimum use of resources, etc. Functions of management include planning, organizing, staffing, directing and controlling.

What is the unit for efficiency?
What is the biggest number the
efficiency can be?
How do you work out the % efficiency?

Answers

Answer:

Efficiency has no physical units  (example   .85 = 85%)

The largest number would be 1 or 100%

An example of efficiency is:  work out/work in

or (work in - work lost to friction) / work in    would be an example of the efficiency of the process

Yo can someone help this question is for 20 points : P pls solve

Answers

Answer:

10 points u liar so i wont answer

Explanation:

1.

If a force of 40N is applied for 0.2 sec

to change the momentum of a

volleyball, what is the impulse?

Answers

Answer:

J = 8 kg-s

Explanation:

Given that,

Force, F = 40 N

Time, t = 0.2 s

We need to find the impulse. We know that,

Impulse, J = F×t

So,

J = 40 × 0.2

J = 8 kg-s

So, the impulse is 8 kg-s.

11 points!!!
what happened when glucose reacts with air? ​

Answers

When glucose (C6H12O6) reacts with oxygen, carbon dioxide and water are produced. The reaction produces moles of carbon dioxide and moles of water.

transformation of energy torch light by a battery​

Answers

Answer:

electrical energy into light energy.

hope it helps.

Answer:

electrical energy to light energy

is the correct answer

hope it is helpful to you

and the above answer is correct

: where are you likely to find a cooling plant located in the duckwork? A. single family home B. A large apartment C. large factory D. A medium sized offices

Answers

Answer:

Option C

Explanation:

In a large sized factory, it is essential to create cooling system based on duct work because it can then be able to regulate cooling of any section of the factory from one place. Also, ductwork cooling is preferred in large spaces such as big offices building, towers, factories etc.

Hence, option C is correct

Can an object have both kinetic energy and gravitational potential energy? Explain.

Answers

Yes, for example a plain is moving so it has kinetic energy, it is also high above the ground so it has gravitational potential energy

When a charge moves between
two points that have a potential
difference of +12.0 V, its electric
potential energy increases by
0.418 J. What is the amount
of the charge?
Include the correct sign, + or -
(Unit = C)

Answers

Answer:

+ 0.07 C

Explanation:

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

Potential difference (V) = 12 V

Energy (E) = 0.418 J

Charge (Q) =?

The energy (E) , potential difference (V) and charge (Q) are related by the following equation:

E = ½QV

With the above formula, we can obtain the charge as follow:

Potential difference (V) = 12 V

Energy (E) = 0.418 J

Charge (Q) =?

E = ½QV

0.418 = ½ × Q × 12

0.418 = Q × 6

Divide both side by 6

Q = 0.418 / 6

Q = + 0.07 C

Answer:

.0348

Explanation:

right on Acellus

The force you apply to a machine is called the what force?

Answers

Answer:

When you use a machine, you apply force to the machine. This force is called the input force. The machine, in turn, applies force to an object. This force is called the output force.

The force you apply to a machine is called the effort force.

What is a machine?

A machine is a device that is designed to make work easier by changing the direction or magnitude of a force. Machines can be simple, like a lever or pulley, or complex, like an engine or computer.

The basic principle behind all machines is the idea of mechanical advantage, which allows us to do more work with less effort by trading off the force for distance.

The efficiency of a machine is a measure of how much of the input energy is converted into useful output work.

The efficiency of a machine is calculated as the ratio of output work to input work, expressed as a percentage:

Efficiency = (Output work / Input work) x 100%

Output work refers to the amount of work that is done by the machine,

input work is the energy that is put into the machine to make it work.

The difference between the two is the energy that is lost to friction, heat, or other inefficiencies.

Mechanical advantage is a measure of the amplification of force achieved by a machine. It is defined as the ratio of the output force(Load) to the input force (effort). A machine with a mechanical advantage greater than 1 will make it easier to do work by amplifying the force applied to it.

The mechanical advantage of a machine can be calculated using the following formula:

Mechanical Advantage = Output Force(load) / Input Force(effort)

The velocity ratio is a measure of how much the speed of the machine is changed relative to the input speed. It is defined as the ratio of the distance moved by the effort or input force to the distance moved by the load or output force. Velocity ratio is commonly used in the analysis of machines such as pulleys and gears.

The velocity ratio of a machine can be calculated using the following formula:

Velocity Ratio = Distance moved by effort force / Distance moved by load force

Here in the question,

The force you apply to a machine is called the effort force. The effort force is the force applied to a machine, such as a lever or a pulley, in order to move an object or overcome resistance.

In simple machines, the effort force is used to overcome a load or resistance, which is the force that opposes the movement of the object being moved.

The relationship between the effort force and the load or resistance is often described in terms of mechanical advantage, which is the ratio of the output force to the input force. By applying a smaller effort force, a machine can increase its mechanical advantage and make it easier to move a larger load or overcome a greater resistance.

Hence the force we applied to a machine is called effort force.

To learn more about mechanical advantage click:

https://brainly.com/question/16617083

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Hich type of electromagnetic waves are dangerous enough to be used to kill cancerous cells? gamma rays visible light infrared light microwaves

Answers

Answer:

gamma rays

Explanation:

Electromagnetic waves is a propagating medium used in all communications device to transmit data (messages) from the device of the sender to the device of the receiver.

Gamma rays is a type of electromagnetic waves that are dangerous enough to be used to kill cancerous cells.

In the electromagnetic spectrum, gamma rays are known to have the greatest amount of energy and shortest wavelength among the wave particles. They are generally produced through the disintegration of radioactive elements.

Answer:

A. Gamma rays

Explanation:

Proof:

what are four forms of energy

Answers

Answer:

The four forms of energy are:

1. Kinetic Energy

2. Radiation Energy

3. Potential Energy

4. Chemical Energy

Explanation:

Above are listed the four main types of energy. Hope this helps! :)

e=?
answer this and ill bump your streaks nd junk for brainliest nd whatnot..

Just answer

Answers

E=mc2 or MC Squared as in (mass energy equivalence)

E=mc2

Formula

E = energy

m = mass

c = the speed of light

A scooter is moving with a speed of 18 m/s. Its mass is 20 kg. What is the
magnitude of its momentum?
A. 360 kg.m/s
B. 2 kg-m/s
C. 3600 kg.m/s
D. 1.1 kg.m/s

Answers

Question:-

A scooter is moving with a speed of 18 m/s. Its mass is 20 kg. What is the magnitude of its momentum?

A. 360 kg.m/s

B. 2 kg.m/s

C. 3600 kg.m/s

D. 1.1 kg.m/s

Answer:-

Given:-

Speed (v) of a scooter = 18 m/s

Mass (m) = 20 kg

To Find:-

Magnitude of its momentum (p) = ?

Answer:-

Since, we know that,

p = mv

So,

p = 20 kg × 18 m/s

p = 360 kg.m/s

[tex] \therefore [/tex] The correct option is (A) 360 kg.m/s

The magnitude of its momentum is 360 kg.m/s. [Answer]

Forces between particles increase as the particles move faster and farther apart.true or false

Answers

Answer:

True

Explanation:

Please help me!! I will give brainliest!

Q: How do you determine speed over a crooked path? Explain.

Answers

Answer: If you solve for the orbit speed, v, in the mass formula, you can find how fast something needs to move to balance the inward pull of gravity: v 2 = (G M)/r . Taking the square root of both sides (you want just v not v 2), you get v = Sqrt.

Explanation:

If a machine increases force it must apply the force over a long distance? True or false

Answers

Answer: The machine must apply the force over a shorter distance. That's because a machine doesn't change the amount of work and work equals force times distance. Therefore, if force increases, distance must decrease

FALSE

HOPE THIS HELPS

plzzz help me fast i have absolutly no f-r-i-c-k-e-n idea what this is or how to do it

im giving 100 point plz dont screw me over on this :)

Answers

P.E =mgh

=5o x 4 x 10

Explanation:

= 2000J

Answer:

Explanation:

PE=mgh

mass, m is 50kg

gravity, g is 10m/s^2

height, h is 4m

So Potential Energy, PE

=50*10*4

=2000J


A concave shaving mirror has a radius of curvature of 25.0 cm. For each of the following cases, find the magnification and determine whether the image formed is real or virtual and upright
or inverted,
(a) an upright pencil placed 46.0 cm from the mirror
(b) an upright pencil placed 5.0 cm from the mirror

Answers

(a) The magnification is less than 1, the image is smaller than the object. Therefore, the image is real, inverted, and smaller than the object. (b)The  magnification is less than 1 in magnitude, the image is also smaller than the object. Therefore, the image is virtual, inverted, and smaller than the object.

What do you understand by magnification?

In mirrors, magnification refers to the degree to which an object's size appears to be larger or smaller when reflected in a mirror. The magnification of a mirror is determined by its curvature and distance from the object being reflected.

We can use the mirror equation and magnification formula to solve the problem:

Mirror equation:

1/f = 1/do + 1/di

Magnification formula:

m = -di/do

where

f = focal length of the mirror

do = object distance from the mirror

di = image distance from the mirror

m = magnification

Given:

Radius of curvature, R = 25.0 cm (since the mirror is concave, R is negative)

focal length, f = R/2 = -12.5 cm

(a) For an upright pencil placed 46.0 cm from the mirror:

do = 46.0 cm

Using the mirror equation, we can solve for di:

1/f = 1/do + 1/di

1/-12.5 = 1/46.0 + 1/di

di = -17.2 cm

Since di is negative, the image is formed behind the mirror, which means it is real. Also, the magnification is:

m = -di/do = -(-17.2 cm)/46.0 cm = 0.374

Since the magnification is less than 1, the image is smaller than the object. Therefore, the image is real, inverted, and smaller than the object.

(b) For an upright pencil placed 5.0 cm from the mirror:

do = 5.0 cm

Using the mirror equation, we can solve for di:

1/f = 1/do + 1/di

1/-12.5 = 1/5.0 + 1/di

di = 3.33 cm

Since di is positive, the image is formed in front of the mirror, which means it is virtual. Also, the magnification is:

m = -di/do = -3.33 cm/5.0 cm = -0.666

Since the magnification is negative, the image is inverted. Since the magnification is less than 1 in magnitude, the image is also smaller than the object. Therefore, the image is virtual, inverted, and smaller than the object.

Learn more about magnification here:

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