To find the pressure caused by piston A on the fluid, we can use the formula:
Pressure = Force / Area
Given that the force exerted by piston A is 1000 N, and the area of each of the four pistons that hold up the car is 0.02 m^2, we can calculate the pressure as:
Pressure = 1000 N / (4 x 0.02 m^2)
Pressure = 25000 N/m^2
So the pressure caused by piston A on the fluid is 25000 N/m^2
Your spaceship is equipped with advanced sensing equipment and you have measured the following information based on your current situation.
The answer is
1 . The force of gravity on the ship at that orbit be using the early measurements be 5.435 × 10^5 N..
2. The acceleration of your lander due to gravity be 4.94 m/s^2..
Force of Gravity
The gravitational force, which is what pushes mass-containing objects toward one another. We frequently consider the pull of gravity from the Earth. Your body is kept on the ground by this force. However, all mass-bearing objects are pulled toward one another by gravity.
Super-Earth-sized exoplanet Proxima Centauri b revolves around a M-type star. It has an Earth-mass of 1, orbits its star every 11.2 days, and is 0.048 AU away from it. In 2016, news of its finding was released.
Given that,
Planet Proxima Centauri B has a mass of approximately7.6x10^24 kg.
The ship lander has a mass of approximately 1.1x10^5 kg.
stable orbit radius of 9000000 m from the center of planet Proxima Centauri B.
1. Using Newton's Law of Universal Gravitation, the force of gravity on the ship at that orbit be using the early measurements = GMm/r²
= (7.6 × 10⁻¹¹)×(7.6x10^24)(1.1x10^5)/(9000000)² N
= 5.435 × 10^5 N.
2. the acceleration of your lander due to gravity: a = F/m
= 5.435 × 10^5 N/ 1.1x10^5 kg.
= 4.94 m/s^2.
3.The planet's mass distribution might not be uniform, which is one of the potential factors that might explain the discrepancy between expected and actual figures. Therefore, the planet's centre of mass is not found at the geometric centre.
The orbiting path of gravity could be elliptical rather than circular.
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In a physics lab experiment, a spring clamped to the table shoots a 19 g ball horizontally. When the spring is compressed 20 cm, the ball travels horizontally 5.2 m and lands on the floor 1.6 m below the point at which it left the spring. What is the spring constant?
Answer:
The spring constant is 907.2 N/m
Explanation:
v^2 = u^2 + 2as
Where:
v = final velocity
u = initial velocity
a = acceleration
s = displacement
As the spring is clamped to the table, the only displacement is horizontal, so the only acceleration is due to gravity. The final velocity is 0, as the ball lands on the floor. Therefore, we can use the equation of motion to determine the initial velocity of the ball:
v^2 = u^2 + 2as
0 = u^2 + 2g(1.6 m)
u = √ (2g(1.6 m))
We know that acceleration due to gravity is 9.8 m/s^2, so:
u = √ (2 * 9.8 * 1.6) = 4.6 m/s
Now we can use the conservation of energy to solve for the spring constant.
The spring constant can be determined by using the equation:
PE = 1/2 kx^2
where PE is the potential energy stored in the spring, k is the spring constant, and x is the compression of the spring.
KE = 1/2 mv^2
where KE is the kinetic energy of the ball, m is the mass of the ball, and v is the initial velocity of the ball
The sum of the potential energy stored in the spring and the kinetic energy of the ball is conserved, so:
1/2 kx^2 = 1/2 mv^2
We can now substitute the values we know into the equation:
1/2 k * (0.2)^2 = 1/2 * (19g) * (4.6m/s)^2
Solving for k:
k = (19g * (4.6m/s)^2 ) / (0.2m)^2
k = 907.2 N/m
Note that the unit of mass is gram (g) and it needs to be converted to kg to make the units consistent.
Analyze the formula FG = mg to explain how an object's weight can change even when its 'mass remains constant.
Weight is the gravitational attraction that an object experiences. The mass of an item remains constant, but its weight might vary based on the amount of gravity acts on it.
The mass of the item has a direct relationship with the gravitational force (FG) and may be determined by applying the formula FG=mg.
The weight, mass, and gravitational force that are applied to an object are represented in the formula FG=mg by the letters FG, m, and g. FG varies if gravity changes, even though the mass remains constant.
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What is m1 and m2 in gravity formula?.
If G is the gravitational constant, m₁ and m₂ are the masses of the two objects, and d represents their separation from one another then the gravitational formula, where F is the gravitational force equation is,
F =G((m₁m₂)/d)
Every particle in the universe is drawn to every other particle with a force that is directly proportional to the product of their masses and inversely proportional to their separation from one another, according to Newton's Law of Universal Gravitation.
In addition to interactions between the earth and other objects, all objects are subject to gravitational forces, the strength of which is inversely proportional to the product of their masses. Planetary orbits are studied by scientists using the law of universal gravitation. Because all objects have gravitational pull on one another, it is simple to explain the minor changes in a planet's elliptical motion.
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Vegetative reproduction i a type of aexual reproduction in which nonreproductive part of an organim can break off and develop into new individual. Which event i an example of vegetative reproduction in plant?
Kalanchoe plants produce plantlets on their leaves is an example of vegetative reproduction in plant.
What is vegetative reproductionVegetative reproduction is a way of asexual reproduction of living things (without the fusion of male and female sex cells). Vegetative reproduction can occur naturally or artificially. In natural animals:
Splitting: Reproduction by dividing usually occurs in lower animals, single-celled animals/protozoa, for example: amoeba and paramaecium. Binary division occurs when an individual divides into 2 new individuals, and is called multiple division (spore reproduction) when an individual splits into many individuals, for example: plasmanium. Parthenogenesis: Breeding where reproduction only involves female gametes without fertilization, for example: Komodo dragons.[2] Fragmentation, namely the way animals reproduce by breaking or cutting their bodies into two or more parts. Then, these body parts will grow into new individuals, for example: Hydra, starfish, flatworms (planaria) and tapewormsYour question is incomplete but most probably your full question was:
Vegetative reproduction is a type of asexual reproduction in which nonreproductive parts of an organism can break off and develop into new individuals. Which event is an example of vegetative reproduction in plants? A. Pine trees produce seeds in cones. B. Mosses form spores in capsules. C. Sunflower plants produce seeds in their flowers. D. Kalanchoe plants produce plantlets on their leaves.
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What is equal value of 1 kg in Newton?.
1 kilogram is equal to 9.806 newton. A newton is equal to 1 kg/m2/s2 (it is a derived unit which is defined in terms of the SI base units).
The force required to accelerate one kilogrammes of mass at a rate of one meter per second squared in the direction of the applied force is consequently one newton. The term "meter per second squared" refers to the rate of change in velocity per unit of time, or the acceleration of velocity by one meter per second.
Isaac Newton inspired the naming of the newton. Like every SI unit named after a person, Newton's sign begins with an upper case letter (N), but when written in full, it adheres to the common noun capitalization rules, which means that "newton" is capitalized at the start of sentences and in titles but otherwise is written in lower case.
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How does this image portray the relationships between voltage, current and resistance Law?
The image shows that the voltage affects the current and so does the resistance.
What does the image mean?We know that the relationship between the voltage and the current can be obtained by the use of the Ohm's law. From the Ohm's law, we can see that;
V = IR
V = voltage
I = current
R = Resistance.
In this case, the resistance can be looked upon as the constnat of the proportionality. Based on the image, we can see that the current is related to the voltage and that the resistance also affects the current.
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What is momentum example?.
A truck loaded with goods has a large mass, so it have to slow down before a stop light as it has a large momentum with the same velocity, making stopping difficult.
What is momentum?A body's amount of motion is referred to as momentum. Since velocity and the direction of a body's motion have an impact on momentum, it is measured by "mass velocity". Given that mass is a scalar variable and velocity is a vector, momentum is a vector quantity. Mass multiplied by velocity equals momentum. Momentum is a body's "power" while it is moving, demonstrating how much force it can exert on another body. For instance, a baseball (small mass) thrown quickly can have the same momentum as a bowling ball (big mass) travelling slowly (low velocity) (high velocity).
Here,
Because a truck loaded with goods has a large momentum with the same velocity, it must slow down before a stop light, making stopping difficult.
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what is the ability of a fluid to exert an upward force on an object
The ability of a fluid to exert an upward force on an object is called buoyancy or upthrust. The upward force is called buoyant force.
What is buoyancy?The buoyancy as explained above is caused by the pressure exerted by the fluid in which the object is immersed. That pressure force is called an upthrust force or buoyant force.
According to Archimedes principle, the buoyant force is the upward force exerted by a fluid on an object placed in them. The magnitude of the buoyant force is equal to the weight of a fluid displaced by an object.
Due to the buoyant force, a body immersed wholly of partly in a fluid will to lose its weight. In other words, it appears to be lighter. This phenomenon makes it possible for fish, swimmers, ships, icebergs, and hot air balloons to stay afloat.
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Explain how the gradient of a force-extension graph would change for a wire of the same material but twice the diameter
There would be no change in the shape of the force extension graph.
How would the force extension graph change?We have to note that the Hooke's law states that, the force that is applied on an object would be proportional to the extension on the object. As long as the elastic limit is not exceeded.
In the case of the material, we have been told that the material would have twice its original diameter. We must note that the diameter of the object does not affect the force extension graph hence there is no change in the graph.
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How do you solve gravitational equations?.
Gravitational equation can be solved by knowing the values of universal gravitational constant, masses of both the object, and the distance between them.
According to Newton's law of gravitation, every object in the universe attracts every other object with a force called gravitational force. Gravitation equation defines the gravitational force exerted by two objects on each other. If they are kept apart at some distance.
F = GMm/R²
Where F is the gravitational force between the object, G is the universal gravitational constant, M & m are masses of both the object and R is the distance between the objects. Gravitational force is a vector quantity.
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What effects does ionizing radiation have on the atmosphere? select the two correct answers.
Ionizing radiation can have a variety of effects on the atmosphere. One of these is the production of ozone, which is a type of gas found in the stratosphere that absorbs harmful ultraviolet radiation from the sun.
What is the radiation ?Radiation is the emission or transmission of energy through a material medium or across space in the form of waves or particles. This energy may take the form of electromagnetic radiation, such as radio waves, microwaves, infrared, visible light, ultraviolet, x-rays, and gamma rays, or particles such as alpha particles, beta particles, and neutrons. Radiation can be both natural and man-made. Natural sources of radiation include the sun, stars and other celestial bodies, naturally occurring radioactive materials, and cosmic rays.
A. It increases the amount of ozone in the atmosphere.
B. It causes the formation of aerosols.
C. It reduces the amount of greenhouse gases in the atmosphere.
D. It increases the amount of water vapor in the atmosphere.
A. It increases the amount of ozone in the atmosphere.
B. It causes the formation of aerosols.
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What factors are necessary to generate a current?
Answer:
V=I*R So, I=V/R
Explanation:
based on ohm's law, we need a voltage (usually supplied by a battery) and resistance (this could be many many things, w.e is being powered is the resistance, light bulb is the typical example)
How much work is done when a 100 lb rock is lifted to a height of 3 ft?
the effort done is 300 joules when a 100 lb rock is raised to a height of 3 ft, according to the work done calculation.
How much work has been done?
It should be converted to energy in order to move an object. Energy can be transferred by the use of force. Work done refers to the amount of energy used by a force to move an object.
What exactly is a physics "work done"?
When an object is moved over a distance by an external force, at least a portion of that force must be applied in the direction of the displacement. This is known as work in physics.
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How is torque different from work even though the dimensional formula of is same as that of work?.
Torque and work have the same dimension formula but only work is expressed in the SI unit of Joule. Torque is a vector quantity and work is a scalar quantity.
Torque in angular motion is equivalent to what force is in linear motion. In other words torque cause the angular change in and makes the object to rotates in a circular path around its own axis of rotation. It is formulates as T = F ×R. Where F is the force, R is the radius of circular path. its dimension will be [MLT⁻²] × [L] = [ML²T⁻²].
On the other hand, work is the product of force vector(F) and displacement vector(d). Work is said to be done when the object gets displaced in the direction of the force applied. Its SI unit is Joule.
W = F × d × sinθ
Where θ is the direction of force with respect to the displacement.
Its dimension would be, T = [MLT⁻²] × [L] = [ML²T⁻²]
So the dimension formula for both will be the same.
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What is the dimensional formula of torque and kinetic energy?.
Dimension formula of torque is T = F × R, and that of the kinetic energy is 0.5mv². The dimension of both will be same as [ML²T⁻²].
Torque in angular motion is equivalent to what force is in linear motion. In other words torque cause the angular change in and makes the object to rotates in a circular path around its own axis of rotation. It is formulates as T = F ×R. Where F is the force, R is the radius of circular path.
Its dimension would be, T = [MLT⁻²] × [L] = [ML²T⁻²]
Kinetic energy is that which is possessed by an object by the virtue of its motion. It is formulated as 0.5mv². Its dimension would be,
[M] × [LT⁻¹]² = [ML²T⁻²]
So the dimension formula for both will be the same.
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Why is reducing latency important?.
Customers demand to communicate with technology in real time without any delays, hence low latency is essential. Users may stop interacting with a platform due to problems with high latency and time delays.
then switch permanently to a different programme.
One of the biggest causes of user service abandonment is poor latency. To put it clearly, excessive latency can result in enormous losses in revenue and a declining user base. One of the most crucial elements in the success of your application is eliminating latency.
Numerous physical obstacles, such as internet service, internet speed, or particular IP networks, might have an impact on latency. Businesses and IT specialists have consistently developed and implemented methods to enhance network speeds and the overall user experience. This has often taken the shape of data distribution, expanding the global data storage capacity, and enhancing network connectivity.
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Write the equation for work. Then insert the known quantities
Work can be calculated with the equation given as Work = Force × Distance
What is work?When a force acts on an object to cause a displacement, it was said that work was taking place. Three variables must be known in order to calculate the work when a force causes an object to be displaced.
Work = Force × Distance is the formula for calculating work. The joule (J), also known as the Newton meter (N m), is the SI unit for work. When an object is moved over a distance of 1 m with 1 N of force, one joule is equal to the amount of work that is accomplished.
To determine the amount of work, three quantities must be known. The force, the displacement, and the angle between the force and the displacement are the three variables.
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Can someone explain this for me. The answer is A btw
Let T be the duration of the wave, ie T = 1/f. So t = 1/4f means that at t = T/4 the marker moves 1/4 of a wavelength. So it will be in position C.
What is wavelength?Wavelength refers to the distance between identical points (adjacent peaks) in adjacent cycles of a waveform signal propagating in space/along a line. For wireless systems, this length is generally specified in meters (m), centimeters (cm), millimeters (mm). For infrared (IR), visible light, ultraviolet (UV), and gamma rays (γ), wavelengths are more commonly specified in nanometers (nm), with units of 10-9 m or Angstroms (Å). , which is in units of 10 to 10 m. Wavelength is inversely proportional to frequency, which represents the number of wave cycles per second. The higher the frequency of the signal, the shorter the wavelength.To learn more about wavelength from the given link:
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What is Coulomb's law write its formula?.
Answer: Coulomb’s Law provides one of the basic ideas about electricity in physics. This law takes a look at the forces which are created between two charged objects. As the distance increases then consequently there is a decrease in the forces and electric fields. The conversion of this simple idea took place into a relatively simple formula.
Coulomb’s Law is certainly an experimental law. This law quantifies the amount of force that exists between two stationary electrically charged particles. Moreover, electrostatic force or Coulomb force refers to the electric force which exists between charged bodies that are at rest. Coulomb’s Law describes the quantity of electrostatic force which is between the stationary charges.
Coulomb’s Law finds out the magnitude of the electrostatic force between the charges. The unit of the electrostatic force is Newton (N).
Electrostatic force = (Coulomb constant) absolute value of (charge 1) (charge 2)/ (distance between charges)2
F = k|q1q2|r^2
F = electrostatic force which exists between two point charges (N= kg.m/s2)
K = Coulomb constant k = 14πϵ0 ≅ 8.988×109N.m2/c2
q1 = charge of the first point charge(C)
q2 = charge of the second point charge(C)
r = refers to the distance between the charges (m)
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What is torque multiplied by?.
Torque adds to forces and distance. Due to the fact that it is a vector quantity, it has both a magnitude and a direction. Either the angular velocity of an item is changing, or its moment of inertia.
Depending on the topic, it may also be referred to as the moment, moment of force, rotational force, or turning effect. The concept initially appeared in Archimedes' study on the use of levers. Torque adds to forces and distance. Due to the fact that it is a vector quantity, it has both a magnitude and a direction. A torque is an angle-dependent rotation about an axis, much like how a linear force pushes or pulls an item. Torque is a force that may cause an item to revolve around an axis.
Torque is defined as the product of force and distance.
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Abullet of ma 0. 01kg i fired into andbag of ma 0. 49kg hanging from atree. The and bag,with the bullet embedded into it, wing at 10m/
A) the momentum after the colliion
B )the momentum before the colliion
C) the velocity of the bullet
The answer is the momentum after the colliion
m1v1i + m2v2i = m1∗v1f + m2*v2f
What is meant by colliion ?
A collision in physics is any situation in which two or more bodies quickly exert forces on one another. Despite the fact that the most common usage of the word "collision" refers to situations in which two or more objects clash violently, the scientific usage of the word makes no such assumptions.A collision is considered inelastic if most or all of the total kinetic energy is lost; this results in the objects colliding head-on and coming to a complete stop.This is by design; in the event of a collision, the car's structure will instead absorb the energy of the impact, protecting both the occupants and any onlookers.p = m∗v(mathematical definition of momentum)
p1i + p2i = p1f + p2f
(mathematical formula for conservation of momentum)→
m1v1i + m2v2i = m1 ∗ v1f + m2*v2f
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What does the variable G in the gravitational force equation represent fg gm1m2 r 2?.
The gravitational or universal (G) constant, which relates force to mass and distance, is a symbol for this proportionality (G).
The gravitational constant, G, whose value depends on the units employed and is a universal constant, is multiplied by the product of the masses (m1 and m2) and divided by the square of the distance R to represent the attractive force in symbols: F = G(m1m2)/r^2.
Between two objects with masses m1 and m2, where f is the force. d is the separation between two objects, and G is the gravitational constant. The gravitational constant is G. m = the object's mass, M = the earth's mass, and r = the earth's radius.
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difference between external resistor and internal resistor
Answer:
The resistance within a battery or other voltage source that causes a drop in source voltage when current is present is referred to as internal resistance. The resistance present in the external circuit, on the other hand, is referred to as external resistance.
A light-year is a unit generally used to express the distance that light travels in one year. Which of these can be expressed in light years?.
A light-year is a unit generally used to express the distance that light travels in one year, the distance between two stars can be expressed in light years.
What is the name of the length that light travels in a year?Light-years are units used to express the distance that light travels in a year. Light travels through interstellar space at a speed of 186,000 miles (300,000 kilometers) per second and 5.88 trillion miles (9.46 trillion kilometers) per year.
A light-year is a unit of measurement for distance rather than time (as the name might imply). A light-year is the distance a light beam travels in one Earth year, which is equivalent to roughly 6 trillion miles (9.7 trillion kilometers).
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Complete question is " A light-year is a unit generally used to express the distance that light travels in one year. Which of these can be expressed in the light years?
A] the age of a rock
B] the distance between two stars
C] the speed at which the earth revolves around the sun
D] the time earth takes to complete a revolution around the sun".
Is torque inversely proportional to the force and the lever arm?.
No , torque inversely proportional to the force and the lever arm
The distance that separates the force's line of action from its rotational axis is known as the lever arm.
What connection exists between force and torque?A force known as a torque is imparted to an item, causing it to rotate around an axis. A force is an action that modifies an object's motion.
For instance, the torque produced by a force of one newton applied six metres from the fulcrum is equal to that produced by a force of three newtons applied two metres from the fulcrum.
Torque is used by levers to help humans lift or move items. The cross product of a force and the distance of the force from a fulcrum is what is known as a torque.
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If a shopping cart is traveling at 7 m/s at time, t=1s, and then the same shopping cart is traveling
at 28 m/s at time, t=4s, what is the cart's acceleration?
Acceleration is the rate of change of velocity over time. To calculate the acceleration of the shopping cart, you would need to use the formula:
a = (v2 - v1) / (t2 - t1)
where a is the acceleration, v1 is the initial velocity, v2 is the final velocity, t1 is the initial time, and t2 is the final time.
In this case, the initial velocity is 7 m/s at time t = 1s and the final velocity is 28 m/s at time t = 4s. So,
a = (28 m/s - 7 m/s) / (4s - 1s) = 21 m/s^2
So the cart's acceleration is 21m/s^2
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Kepler was the first astronomer to look at the planet’s orbital __________. He discovered that these had a/an _________ shape.
------------------------------------------------------------------------------------------------
The heliocentric model is actually just a model for ___________, not our entire universe.
Kepler was the first astronomer to look at the planet’s orbital paths. He discovered that these had a/an elliptical shape.
The heliocentric model is actually just a model for the solar system, not our entire universe.
A crane lift a pallet of brick to the top of a 80 m building, requiring 400 kJ of energy. What wa the ma of the pallet?
A crane lift a pallet of brick to the top of a 80 m building, requiring 400 kJ of energy, Therefore, the mass of the pallet is 502 kg.
What is the mass ?Mass is a measure of the amount of matter in an object. It is usually expressed in kilograms (kg) or grams (g). Mass is an important physical property because it is related to a number of other physical properties, such as inertia, gravitational force, and momentum. In order for an object to have mass, it must have a certain amount of matter. Mass is distinct from weight, which is a measure of the force of gravity on an object.
The mass of the pallet can be calculated using the formula:
Mass (m) = Energy (E) / Work (W)
Where Work is calculated as:
Work (W) = Force (F) x Distance (d)
The force required to lift the pallet can be calculated from the height of the building:
Force (F) = Mass (m) x Acceleration due to Gravity (g)
Therefore, the mass of the pallet is:
m = E / (m x g x d)
m = 400 kJ / (9.81 m/s2 x 80 m)
m = 502 kg
Therefore, the mass of the pallet is 502 kg.
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an electrostatic force, f, exists between two charges. if the distance between the charges is doubled, what is the force between the charges?
The magnitude of the Electrostatic force is proportional to the square of the distance between the two charges. As a result, doubling the distance between the two charges reduces the attraction or repulsion to one-fourth of its original magnitude.
If the distance between objects is doubled, the force of attraction is 1/4.
If the distance between objects is doubled, the force between objects is quartered. If the distance between objects is tripled, the force between them is 9 times smaller. If the masses of both bodies double, the force between them quadruples.
Electrostatic force is a non-contact force. They pull and push things without touching them. When some materials rub against each other, something called a "charge" can move from one surface to another. Charged objects attract other uncharged objects and can push or pull other charged objects.
As the distance between two charges increases, the repulsive force between them decreases. For equal charges, the electrostatic force decreases as the distance between the two charges decreases.
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