Objects 1 and 2 attract each other with a electrostatic force of 18.0 units. If the distance separating Objects 1 and 2 is changed to one-third the original value, then the new electrostatic force will be _____ units.

Answers

Answer 1
Final answer:

The new electrostatic force will be 9 times greater than the original force.

Explanation:

Coulomb's law, a fundamental principle in electrostatics, describes the relationship between the force F between two point charges q₁ and q₂ separated by a distance r. It states that F is directly proportional to the product of the charges and inversely proportional to the square of the distance, mathematically expressed as F = k * (q₁ * q₂) / r², where k is the electrostatic constant.

According to Coulomb's law, the electrostatic force between two charged objects is inversely proportional to the square of the distance between them. If the distance between Objects 1 and 2 is changed to one-third the original value, the new electrostatic force will be 9 times greater than the original force.

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Related Questions

The nervous system produces a response in your body in about 10 seconds.
O A. True
OB. False

Answers

Answer:

False

Explanation:

It takes a bout 0.3 seconded for your body to response

Answer:

⊙false

Explanation:

Hope it help

A worker pushes a box across the floor to the right at a constant speed with a force of 25N. What
can you conclude about the box? *

An unbalanced force of 25N is acting on the box.
Friction between the box and the floor is 25N to the left
The net horizontal force acting on the box is 50N.

Answers

Answer:

Friction between the box and the floor is 25N to the left

Explanation:

There are two forces acting on the box along the horizontal direction:

- The force of push applied by the worker, in the forward direction, F

- The force of friction, [tex]F_f[/tex], acting in the opposite direction (backward)

So the net force acting on the box is

[tex]F_{net}=F-F_f[/tex]

According to Newton's second law of motion, the net force on an object is equal to the product between its mass (m) and its acceleration (a), so we can write:

[tex]F_{net}=ma[/tex]

And so

[tex]F-F_f = ma[/tex]

However, in this case the box is moving at constant speed; this means that its acceleration is zero:

[tex]a=0[/tex]

Therefore we have:

[tex]F-F_f=0[/tex]

Which means

[tex]F_f=F[/tex]

And since we are told that

[tex]F=25 N[/tex]

This means that the force of friction is also 25 N:

[tex]F_f=F=25 N[/tex]

Answer:

C.Friction between the box and the floor is 25N to the left.

Explanation:

One can conclude that the friction between the box and the floor is 25N to the left.

Frictional force is a force that opposes motion of a body. It acts in the opposite direction as the net force applied on a body.

According to newton's third law of motion "action and reaction are equal and opposite in magnitude and direction".The action force is to right and the reaction force is to the left.

Find the acceleration of the change in personality is 5M/S and the time is 10 seconds

Answers

There is a misspelling: "change in personality is 5M/S". It should be "change in velocity is 5m/s"

Answer: 0.5 m/s^2

Explanation:

acceleration = ?

change in velocity = 5m/s

Time = 10 seconds

Acceleration is the rate of change of velocity per unit time. it is measured in metres per second square.

i.e Acc = (change in velocity) time

Acc = 5m/s / 10 seconds

Acc = 0.5 m/s^2

Thus, the acceleration is 0.5 m/s^2

Calculate the braking distance for a vehicle traveling at 30 mi/h (13.4 m/s) with an acceleration of - 9.0 (m/s)/s while breaking.

Answers

Answer:

Braking distance of vehicle is 9.97 m

Explanation:

It is given initial velocity of the vehicle u = 13.4 m/sec

Acceleration of the vehicle [tex]a=-9m/sec^2[/tex]

As the vehicle finally stops so final velocity of the vehicle v = 0 m/sec

We have to find the braking distance s

From third equation of motion

[tex]v^2=u^2+2as[/tex]

[tex]0^2=13.4^2+2\times -9\times s[/tex]

s = 9.97 m

So braking distance of the vehicle is 9.97 m

How far does a car in 90 sec if it is traveling at a speed of 55m/s show equation

Answers

Answer:

4950 meters

Explanation:

Recall that the formula for the speed (v) is given by the quotient of the distance traveled (d)  divided by the time (t) it took to cover that distance:

[tex]v=\frac{d}{t}[/tex]

Therefore, for this case in which the car travels at 55 m/s for 90 seconds, we can replace these values in the formula, and solve for the distance covered:

[tex]v =\frac{d}{t} \\55 \frac{m}{s} =\frac{d}{90\,s} \\d=55*90 m\\\\d=4950\,m[/tex]

Please hurry need ASAP!!! The diagram represents a diver's motion from the top of a high diving board into a
pool of water. At what point does the diver have the greatest kinetic energy and the
least potential energy?
1
2
3
4

Answers

Answer:

Position 3 has the most kinetic energy

Position 1 has the least potential energy

Explanation:

Kinetic energy: It is the moust because the iver is falling straight down

Potential energy:  It is the least because of how he is positioned, it's nearly straight.

The point at which the diver has the greatest kinetic energy and the least potential energy is at point 4.

To explain why, let's break down the concepts of kinetic and potential energy in the context of the diver's motion.

1. Kinetic Energy (KE): This is the energy associated with an object in motion. It depends on both the mass of the object and its velocity. KE = (1/2)mv^2, where "m" is the mass and "v" is the velocity.

2. Potential Energy (PE): In the case of a diver on a diving board, potential energy is gravitational potential energy. It is the energy an object has due to its position relative to a reference point (usually the ground). PE = mgh, where "m" is the mass, "g" is the acceleration due to gravity, and "h" is the height above the reference point.

At point 1, the diver is at the highest point on the diving board. Therefore, the potential energy is at its maximum because the height above the reference point (the water surface) is the greatest. At this point, the diver has little or no kinetic energy because they are momentarily at rest.

As the diver descends from point 1 to point 4, their height above the water decreases, reducing their potential energy. Simultaneously, their velocity increases, which means their kinetic energy also increases.

At point 4, the diver is at the lowest point of their dive, very close to the water surface. Here, their potential energy is minimal, as they are close to the reference point. At the same time, their velocity is at its maximum, resulting in the highest kinetic energy.

In conclusion, point 4 represents the moment of the greatest kinetic energy and the least potential energy because the diver is in rapid motion close to the water's surface, having converted most of their potential energy into kinetic energy during the dive.

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The greater the force squeezing 2 surfaces together, the smaller the
friction force. *
True
False

Answers

Answer:

False

Explanation:

It is false because the greater the force, the greater the friction.

The answer to this question is true

It takes 3 minutes to make toast in a 1500 watt toaster. Calculate how much work is done by the toaster.

Answers

Answer: 2.7 x 10^5 joules

Explanation:

Given that:

Time taken = 3 minutes

convert time in minutes to seconds

(Since 1 minute = 60 seconds

3 minutes = 3 x 60 = 180 seconds)

Power of toaster = 1500 watt

Work done by the toaster = ?

Recall that power is the rate of work done per unit time

i.e Power = work/time

work = Power x Time

Work = 1500 watt x 180 seconds

Work = 270000J

Place the result in standard form

270000J = 2.7 x 10^5J

Thus, 2.7 x 10^5 joules of work is done by the toaster.

Ice melts to form water. And water freezes to form ice. Choose the TRUE statement about these changes.
A. Both melting and freezing are physical changes.
B. Both melting and freezing are chemical changes.
C. Melting is a physical change while freezing is a chemical change.
D. Melting is a chemical change while freezing is a physical change.

Answers

Answer:

A. Both melting and freezing are physical changes

Explanation:

A chemical reaction occurs when there are new properties but the water keeps being water whether it is freezed or liquid so is not a,c,d.

A physical change occurs when the substance changes its state but no its components or properties so is A is the correct answer.

The true statement is A. Both melting and freezing are physical changes because the substance's composition remains H2O, and only its state changes.

When ice melts to form water or water freezes to form ice, the physical state of water changes from solid to liquid or vice versa, but the composition of water remains the same. This means that the molecules are not changed chemically.

Melting is when a solid becomes a liquid by absorbing heat or ambient temperature increases, during which its shape can change, but its composition does not. Freezing is the reverse process, where a liquid turns into a solid as it loses heat. Both processes are reversible, meaning you can switch from one state to another without altering the chemical identity of the substance. This marks the key characteristic of a physical change.

True or False? Sometimes, substances can be added to a reaction to cause the reaction to start or speed up. These are not considered reactants or products. They are called CATALYSTS.
A) True
B) False

Answers

The correct anwser is A true

Answer:

A catalyst is a chemical substance that affects the rate of a chemical reaction by altering the activation energy required for the reaction to proceed. This process is called catalysis. A catalyst is not consumed by the reaction and it may participate in multiple reactions at a time.

Explanation:

a

why do scientists use two different models of light​

Answers

Answer:

To distinguish results based on the only two variables of

awareness.

Explanation:

Final answer:

Scientists use two models of light: the wave model for interference and color observations, and the particle model for emission and absorption processes.

Explanation:

Scientists use two different models of light, namely the wave model and the particle model, because each is useful in explaining different phenomena associated with light.

While the wave model of light is excellent for describing scenarios such as the bending of light around edges, interference patterns, and observations of color, the particle model explains how light is emitted or absorbed by material.

Moreover, ray tracing, a more straightforward approach, is used for predicting images formed by lenses and mirrors, where light is interacting with objects much larger than a wavelength of light.

According to Essential Knowledge 6.F.4, the nature of light requires that different models are most appropriate at different scales. Furthermore, in the realm of quantitative models, a model of light propagation can predict outcomes that are testable and applicable in fields like lithography and sample analyses.

Thus, scientists often select a model based on the scale and context of the phenomenon they are investigating.

5. Because velocity is a _____ quantity, ______ matters.

Answers

Answer:

First blank is Speed, The Second Blank is Mass

Explanation:

Velocity is always speed and for mass thats just what they taught us>>>

Because velocity is a vector quantity, direction matters.

What is velocity?

Velocity is the rate of change of displacement. It is essentially a vector quantity.

Speed of an object moving can never be negative. The velocity of a moving object can be zero.

Speed gives us an idea of how fast an object is moving whereas velocity not only tells us its speed but also tells us the direction the body is moving in.

Initial velocity describes how fast an object travels when gravity first applies force on the object. On the other hand, the final velocity is a vector quantity that measures the speed and direction of a moving body after it has reached its maximum acceleration.

The motion with constant velocity is the simplest form of motion.

What is vector quantity?

Vector is the quantity that has both magnitude and direction.   For example, displacement, force, torque, momentum, acceleration, velocity, etc.

Thus, velocity has speed as well as direction, so it is vector quantity.

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After a recent experiment, a meteorologist noticed that the computer simulation varied from the actual experiment. What should the meteorologist do?
a: Repeat the experiment several times in order to verify the results
b: Adjust the computer's program so it matches the actual results.
c: Ignore the actual results as inaccurate because computers are very precise
d: Ignore the simulation as inaccurate because of a possible computer virus

Answers

Answer:

a: Repeat the experiment several times in order to verify the results

Explanation:

Computer simulations are models. They follow specific instructions and act based on those set of parameters.

Models study a part of the real world and makes useful inference from them. It is often common place to observe discrepancies between computer simulation and what is found in the actual experiment.

The most efficient thing to do is to run and repeat the experiment several times so as to verify the result. It will also help the precision and to know how accurate the readings might be.

What type of conversion is taking place when natural gas is used to heat water?
a chemical energy into thermal energy
b. thermal energy into mechanical energy
mechanical energy into electromagnetic energy
d electromagnetic energy into chemical energy
Please select the best answer from the choices provided
OOOO

Answers

When natural gas is used to heat water, a conversion of chemical energy into thermal energy is taking place. The Option A.

What type of energy conversion is it?

In this process, natural gas which contains stored chemical energy undergoes combustion in a water heater. This combustion releases heat energy which is transferred to the water, raising its temperature.

The chemical energy in the natural gas is transformed into thermal energy leading to hot water for various domestic purposes such as bathing and heating.

This conversion helps in household heating systems and makes efficient use of the chemical energy stored in natural gas to provide thermal comfort and convenience in homes.

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Final answer:

The conversion taking place when natural gas is used to heat water is 'chemical energy into thermal energy'. The energy from the chemical bonds in natural gas is released and changed to heat, which warms the water.

Explanation:

When natural gas is used to heat water, the type of conversion taking place is 'a chemical energy into thermal energy'. This happens because natural gas, a fossil fuel, is burned in this process. The energy stored in the chemical bonds of the gas is released and converted to thermal energy (heat), which is used to warm up the water.

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Closer to a point charge, the electrostatic field created is.
A. Stronger
b . Weaker

Answers

Answer:

stronger

Explanation:

its stronger because I don't have a good life for you guys but if I don't have a chance for it I can do it for you and I can get it to work on my own and then I can get a better idea

Final answer:

The electrostatic field created by a point charge is stronger the closer you are to the charge, due to the inverse relationship between field strength and distance. So the correct answer is option A.

Explanation:

The electrostatic field created by a point charge is stronger the closer you are to the charge. This is because the strength of the electrostatic field depends on the distance from the point charge, as described by Coulomb's Law. As the distance between charges decreases, the electrostatic force increases, resulting in a stronger field. When considering two unlike charges, the fields add together and become even stronger in the region between them because the fields from each charge are in the same direction. Conversely, the field is weaker at large distances, where the fields of individual charges may oppose each other, leading to a net effect of a weaker field. Examples from figures showing the electric fields demonstrate that field lines are closer together where the field is stronger, and farther apart where the field is weaker.

How much work is done by gravity when a pine cone (of mass 50g) falls from the top of a tree, 9 m high?

Answers

Answer: 4.41 joules

Explanation:

Given that:

work is done by gravity = ?

Mass of pine cone (m) = 50g

Convert mass in grams to kilograms

Since 1000g = 1kg

50g = (50/1000) = 0.05kg

Height of tree (h) = 9 m

Apply the formula for work,

Work = mass x acceleration due to gravity x height

Acceleration due to gravity has a value of 9.8m/s^2

Work = mgh

Work = 0.05kg x 9.8ms^2 x 9m

Work = 4.41J

Thus, 4.41 joules of work is done by gravity.

Answer:

4.5 J

Explanation:

I took the test

I need help fast pleaseeee

Answers

I h abitats is a boy or a party for me and you Friday the 13th to make a hoodie is better single

Which one is made up of one or more molecules

Answers

Ok so I already studied this and I realized it was water or also Oxygen

Students created a drawing to represent waves traveling along a slinky spring.
Which of the following accurately describes the properties of a wave if the students decided to increase the energy transmitted by the wave?

A) The frequency of the wave would increase and the wavelength would decreases
B) The frequency of the wave would decrease and the wavelength would increases
Eliminate
C) The frequency of the wave would increase and the wavelength would increases
D) The frequency of the wave would decrease and the wavelength would decreases

Answers

Answer:

The answer is A.

Explanation:

Since you're increasing the energy, the frequency would start increasing. The wavelength would start decreasing, since you're putting more energy into the slinky and making it go faster and faster.

How do lines of latitude affect how direct or indirect the Sun’s rays are on the Earth?

Answers

The technical definition of latitude is the angular distance north or south from the earth's equator measured through 90 degrees. ... Locations at lower latitudes receive stronger and more direct sunlight than locations near the poles. Energy input from the sun is the main driving force in the atmosphere.



The Seasons at Different Latitudes
The seasonal effects are different at different latitudes on Earth. Near the equator, for instance, all seasons are much the same. Every day of the year, the Sun is up half the time, so there are approximately 12 hours of sunshine and 12 hours of night.



When we consider Latitude alone as a control, we know that the low latitudes (say from the Equator to approximately 30 degrees N/S) are the warmest across the year (on an annual basis).

The iron ball is suspended from a box that floats in water.The box has a height of 5.00 cm, a face area of 10.0 cm​2​, and a density of 0.30 g/cm3, and 2.00cm of its height is above the water surface. What’s the radius of the ball?

Answers

Answer:

The iron ball is suspended from a box that floats in water. The box has a height of 5.00 cm, a face area of 10.0 cm ​ 2 ​ , and a density of 0.30 g/cm3, and 2.00 cm of its height is above the water surface. What’s the radius of the ball? Hints: ❏ Identify all forces acting on the box and write Newton’s second law. ❏ The box is stationary, which means the forces (including buoyant force) are balanced. You can use this to find tension in the rope. ❏ Identify all forces acting on the ball and write Newton’s second law. ❏ Iron ball is stationary, which means the forces (including buoyant force) are balanced.

Step by step:

the air pressure in a car is 210kPa at a temperature of 26°C. What is the temperature of the air in the tyre of the pressure of 220kPa? [assume that the volume of the air in the tyre is constant]​

Answers

Answer: 313.24K

Explanation:

Given that:

Initial air pressure P1 = 210kPa

Initial Temperature T1 = 26°C

(Since, the SI unit of temperature is Kelvin, convert temperature in celsius to kelvin

26°C + 273 = 299K)

Final temperature T2 = ?

Final pressure P2 = 220kPa

Since, pressure and temperature are involved while volume is constant, apply the formula for pressure law

P1/T1 = P2/T2

210kPa/299K = 220kPa/T2

Cross multiply

210kPa x T2 = 220kPa x 299K

210 x T2 = 65780

T2 = (65780/210)

T2 = 313.24K

Thus, the temperature of the air in the tyre is 313.24K

Explain why the stars look different between Jane and John

Answers

To summarize, Jane's star has a red light and is traveling towards the earth while John's star star has a blue light and is traveling away from the earth. ... The stars look different because they are traveling in different directions.

can any help me with this ? ​

Answers

Answer:

Sure i can help you

Explanation:

6) The force pairs are drawn on the diagram to the left.

a. What is the action force acting on

The Rocket pushes out gas

b. What is the reaction force acting on?

Gas on the rocket

C. If the forces are equal and opposite why does the rocket ship move?

Answer: Rocket Is its own system, So gas creates outside force on the rocket

The diagram below illustrates the law of reflection.
Incoming
light
Mirror
According to the law of reflection, which statement must be true?
The measure of angle A equals the measure of angle B.
The measure of angle B equals the measure of angle C.
The measure of angle A equals the measure of angle C.
-- -- ------ --- ----

Answers

Answer: B) The measure of angle B equals the measure of angle C.

A bowling ball has a mass of 1.7 The ball leaves a bowler's hand at a speed of 7.0 m/s calculate the kinetic energy of the bowling ball (I NEED QUICK ANSWERS PLEASE)

Answers

Answer:

the answer is 41.65 J

Final answer:

The kinetic energy of a bowling ball with a mass of 1.7 kg and a velocity of 7.0 m/s is calculated using the kinetic energy formula KE = 1/2 mv^2, resulting in a kinetic energy of 41.65 joules.

Explanation:

The subject of this question is physics, specifically covering the topic of kinetic energy which is a part of mechanical energy. The grade level of this question is high school. To calculate the kinetic energy of the bowling ball, we use the kinetic energy formula:

KE = ½ mv² where KE is kinetic energy, m is mass in kilograms, and v is velocity in meters per second.

Plugging in the given values (mass m = 1.7 kg, velocity v = 7.0 m/s), the calculation is as follows:

KE = ½ × 1.7 kg × (7.0 m/s)²

KE = 0.85 kg × 49 m²/s²

KE = 41.65 joules

So, the kinetic energy of the bowling ball is 41.65 joules.

What is one difference between an electromagnetic wave and a mechanical wave?
A
An electromagnetic wave can travel through a vacuum. A mechanical wave must have a medium to travel through.

B
An electromagnetic wave moves parallel to the direction of the wave's travel. A mechanical wave can move only perpendicular to the direction of the wave's travel.

C
An electromagnetic wave moves perpendicular to the direction of the wave's travel. A mechanical wave can move only parallel to the direction of the wave's travel.

D
A mechanical wave can travel through a vacuum. An electromagnetic wave must have a medium to travel through.

Answers

Electromagnetic waves are waves that have no medium to travel whereas mechanical waves need a medium for its transmission. Electromagnetic waves travel in a vacuum whereas mechanical waves do not. ... While an electromagnetic wave is called just a disturbance, a mechanical wave is considered a periodic disturbance.


The answer is A :)

An electromagnetic wave can travel through a vacuum without a medium, while a mechanical wave requires a medium to propagate. The answer is option D.

One difference between an electromagnetic wave and a mechanical wave is how they propagate through space. An electromagnetic wave can travel through a vacuum without the need for a medium, whereas a mechanical wave must have a medium like air, water, or solids to travel through. This is because electromagnetic waves, which include light waves, are composed of oscillating electric and magnetic fields that can generate each other, whereas mechanical waves, like sound waves, rely on the vibration of particles in a medium to propagate.

A 0.450-kg soccer ball has a kinetic energy of 119 J. What is the velocity of the
soccer ball?

Answers

Answer: 23m/s

Explanation:

Given that:

Mass of soccer ball = 0.450kg

kinetic energy = 119 J

velocity of the soccer ball = ?

Kinetic energy is the energy possessed by a moving object. It is measured in joules, and depends on the mass (m) of the object and the velocity (v) by which it moves

i.e K.E = 1/2mv^2

119J = 1/2 x 0.450kg x v^2

119J = 0.225kg x v^2

v^2 = 119J / 0.225kg

v^2 = 528.9

To get the value of velocity, find the square root of v

v = √528.9

v = 22.997m/s (Round result to 23)

Thus, the velocity of the soccer ball is 23m/s

Which object would a geologist date using carbon-14 dating?

A.a dinosaur fossil
B.a woolly mammoth fossil
C.an ancient volcanic rock
D.an igneous rock

Answers

Answer:

B.) A woolly mammoth fossil

Explanation:

Carbon-14 dating is normally used to find the age of a once-living object.

C and D are not accurate because they both refer to types of igneous rocks -- only sedimentary rocks can be used for Carbon Dating.

A isn't accurate because dinosaurs lived a very, very long time ago, therefore, the isotopes wouldn't be detectable during modern times.

Though woolly mammoths lived a long time ago, it is a short time compared to the long time gap between dinosaurs and modern era. Radioactive isotopes may still be present in a woolly mammoth fossil sample.

29. If you traveled to Mars, your mass would be
than your mass on Earth. *

Answers

yes it would be the same your weight would change:)

If you traveled to Mars, your mass would be exactly, precisely equal to your mass on Earth, PROVIDED you did not relieve the boredom of space travel by eating too many astronaut steaks along the way.

The only things that can affect your mass are your personal diet, exercise, sleep, and stress habits.  

Your mass has nothing to do with gravity. Your WEIGHT has.

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