What is the weight of a 1 kg mass on Earth g 9. 8 m s2 class 9?.

Answers

Answer 1

The weight of a 1 kg mass on Earth g 9.8 m/s² is 9.8 N.

What is weight?

Weight is the name for the gravitational force that pulls objects towards the centre of the Earth. Gravity plays a role in the subsequent force that draws a mass to the planet. Thus, this force only exists between Earth and a mass, as opposed to gravitational force, which exists between any two masses.

The gravitational pull exerted by two objects when they are close to one another is determined by their individual masses and the inverse square of their individual distances. When two objects are farther apart, the forces between larger objects are stronger and the attraction between smaller objects is weaker. Newton's single weight equation can explain the relationship.

We know that force

F = ma

F = force

m = mass of an object

a = acceleration

Here,

a = g = 9.8 m/s²

m = 1 kg

Then

Force, F = 1 × 9.8

= 9.8 N

Thus, the weight of a 1 kg mass on Earth g 9.8 m/s² is 9.8 N.

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Related Questions

PLEASE HELPPPP!!!! I NEED THIS DONE IN UNDER 3 DAYS!

Answers

Answer:

Question 7 is "Weight force down is greater than the air drag"

Question 8 is "600 N"

Explanation:

Question 7: When looking at the forces acting on the skydiver it's important to look at what force is larger, in this case, it's the weight. If two forces are acting in opposite directions, then the body will move in the direction of the force that has a larger value, 735 N.

Question 8: When the question tells you that the forces should be balanced, it means that they should turn out to equal zero if you were to subtract the forces, or you can think of it as trying to get the side that has a smaller number to be equal to the number that is greater. Since the question specifically says the parachute will ADD drag to the equation, you solve this one by asking yourself "What number + 135 will equal 735?" This ends up being 600 N.

Hope this helps!

The amount of power required to move an object can be increased without changing the amount of work required. How can this happen?.

Answers

Answer : Yes it is possible to increase the power with out changing the amount of work.

What is power ?

-- The power is defined by the amount of power divided by the time.

-- This time is the one needed to do the work.

-- We can understand this issue by analyzing an example with numeric values.

Work = 500 [J]

Time = 5 [s]

Power will be:

Now if we change the time to 2 seconds:

As we can see, the power was increased without the need to change the work.

What is Joule ?

- A unit of work or energy in the International System of Units (SI); it is equal to the work done by a force of one newton acting through one metre.

-- Named in honour of the English physicist James Prescott Boule, it equals 107 ergs, or approximately 0.7377 foot-pounds

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PLEASE HELP RN
A cannon is fired horizontally at 251 m/s off of a 91 meter tall, sheer vertical cliff. How many
seconds
will have elapsed before the cannonball strikes the ground?

Answers

When the cannonball finally touches the ground, it will have been 1.94 seconds.

How much time will the cannonball take to land?

We may disregard the answer t = -0.249 seconds since what we're interested in is what happens after the cannon is fired (i.e., when time t > 0). As a result, the cannonball reaches height h = 0 m and hits the earth at time t = 6.474 seconds.

Calculation:From the aforementioned query, the following information was discovered:

Initial speed (u) equals 251 m/s.

Cliff height (h) equals 91 meters.

(s) is the horizontal distance.

The time it takes the gun to reach the earth will then be determined. This is attainable as follows:

Cliff height (h) equals 91 meters.

Gravitational acceleration (g) equals 9.8 m/s2.

Time (t) =?

h = ½gt²

91 = ½ × 9.8 × t²

91 = 4.9 × t²

Divide both side by 4.9

t² = 91/4.9

Do both sides' square roots.

t = √(91/4.9)

t = 1.94 s

Finally, as indicated below, we will calculate the cannon ball's horizontal travel distance:

Initial velocity (u) =  251 m/s

Time (t) = 1.94 s

Horizontal distance (s) =?

s = ut

s = 251 × 1.94 s

s = 486.94m.

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60N going vertically down

Calculate the magnitude and direction of the resultant force

Answers

The magnitude and direction of the resultant force is 25 N upwards.

What is the magnitude of the resultant force?

The magnitude of the resultant force is the sum of all the forces acting at a point.

To obtain the magnitude of the resultant force, we will sum all the forces acting on the object and considering the signs of the forces as well.

The sum of all the forces acting on the object is calculated as follows;

F ( net ) = F₁ + F₂

where;

F₁ is the force acting upwardsF₂ is the force acting downwards

F (net) = 85 N - 60 N

F (net) = 25 N upwards

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The complete question is below:

85 N force going vertically upwards and 60N going vertically down

Calculate the magnitude and direction of the resultant force.

Why do we measure torque?.

Answers

Modern engines need to deliver improved mechanical performance, and torque measurement helps them do this by increasing their accuracy and speeding up its rotation speed for efficiency assessments, some examples are:

Optimize Fuel Efficiency (Marine Industry)Load ManagementHigh/Low Torque AlarmDiagnosticsPredictive Maintenance

Accuracy explanation: What is it?

The degree to which a measured value resembles a reference or well-known value is referred to as accuracy. For instance, if you measure a substance's weight in the lab and come up with a reading of 3.2 kg when the true or actual weight was 10 kg, your reading is inaccurate. Your measurement in this instance is quite far from the value that is already known.

What level of measurement precision is there?

The more traditional expression is "accuracy of measurement," which is defined as "... the degree to which the outcome of a measurement agrees with the true value" on an international scale.

How torque is useful?

Depending on the engine speed, both engine power and torque are indicators. Effective and energy-saving driving is made possible by high torque. Fast acceleration and a high top speed are made possible by an engine with high power.

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What does velocity depend on?.

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Velocity of an object depends on its displacement and its direction. Displacement is the minimum distance between the starting and the end point. Velocity is the  rate of change in displacement.

Velocity can be calculated by displacement/ change in time. Relative velocity will be either equal or less than the relative speed, because speed is either greater than or equal to displacement. Also it is a vector quantity, so it also depends on the direction of the movement.

The magnitude depends on the magnitude of the displacement. The direction will be the direction of the resultant vector quantity. It is usually as the same as the direction of movement.

So velocity depends on the magnitude and direction of displacement.

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Calculate the speed of the car at each checkpoint by dividing the distance between each checkpoint, in meters, by the change in time. Record your answers in table e of your student guide.

Answers

Speed is calculated as distance times speed. You need to be aware of the units for distance and time in order to calculate the units for speed. 1, 09, 1, 95, 2, 37, and 2, 80 m/s.

What is change in distance divided by change in time?Distance travelled divided by time equals rate of position change, often known as speed. By multiplying the distance travelled by the pace, you can find the time. For instance, Cole would have driven for 5 hours if he drove his automobile at a speed of 45 km/h and covered 225 km.The rate at which velocity changes is referred to as acceleration. As a vector, velocity has both a magnitude (a numerical value) and a direction.Acceleration is calculated by dividing the velocity change by the time required for the change to take place. The clock's speed, or how quickly a repeated cycle may be completed, is the only measure of the passage of time.

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How do you solve force in Coulomb's law?.

Answers

Coulomb's law calculates the magnitude of the force F between two point charges, q1 and q2, separated by a distance r. F=k|q1q2|r2.

How does a falling object's surface area affect calculations of terminal velocity? (
O The greater the object's surface area, the greater the air density.
O Surface area does not affect an object's terminal velocity.
O The greater the object's surface area, the greater its terminal velocity.
O The greater the object's surface area, the more air resistance it encounters.

Answers

Answer:

The greater the object's surface area, the more air resistance it encounters.

Explanation:

Terminal velocity is the point at which the force of air resistance is equal to the force of gravity acting on an object. An object with a greater surface area will encounter more air resistance and therefore have a lower terminal velocity.

The greater the object's surface area, the more air resistance it encounters. Hence, its velocity decreases with increasing surface area.

What is velocity ?

Velocity is a physical quantity that measure the distance covered by an object per unit time. Velocity is the rate of speed and it is a vector quantity. Velocity of an object is affected by its mass, physical state, surface area, temperature etc.

As the mass increases, the velocity of a a falling object will be greater because, the gravitational force towards the massive object is greater and it falls rapidly.

As the surface area of the object increases, the air resistance that it encounters also increases. This air resistance acts as an opposition and decreases its velocity.

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Is there mass in zero gravity?.

Answers

Yes, mass matters in zero gravity. Mass is the "amount of matter" that is constant regardless of the gravitational field in which the object exists.(even at 0g)

Mass is always the same, but weight can change depending on the amount of gravity acting on the object. Any two masses have a mutual attraction, and the greater the mass, the greater the attraction. Gravity holds everything together. If gravity suddenly becomes zero, all objects in the planet's gravitational field are lost in space. You will feel weightless. Whether measured on Earth or on the ISS, the mass does not change. Weight may change due to gravitational forces such as B. On the moon, the weight is reduced to one-sixth of what it is on Earth.

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What are the two ways ATP is produced during respiration?.

Answers

Cellular respiration is like a battery charger if ATP is like a battery. Substrate-level phosphorylation and oxidative phosphorylation are the two mechanisms used by our cells to produce ATP.

Plants possess three. They generate ATP when photosynthesis is taking place by using solar energy. During aerobic cellular respiration, glucose and oxygen combine to create ATP, which the cell can utilise. As byproducts, carbon dioxide and water are produced. The general equation for aerobic cellular respiration is: ATP is produced when glucose and oxygen combine in cellular respiration.

Glyceraldehyde-3-phosphate 1,3 diphosphoglycerate results in the first generation of ATP. Second, when phosphoenolpyruvate breaks down into pyruvate, ATP is created. For each of the two 3-phosphate molecules, these processes happen twice. Thus, during glycolysis, a total of 4 ATPs are created.

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A car changes its velocity from 45 km/h to 65 km/h in 3 s. Find the magnitude of its acceleration

Answers

Answer:Answer:

1.85m/s

Explanation:

initial velocity = 45km/h

final velocity = 65km/h

time = 3 minutes

we change that 45km/h is 12.5 m/s and 65km/h is 18.05 m/s

Formula:

acceleration = (final velocity - initial velocity)/time

Solution:

18.05-12.5=1.85m/s

pls help asap
Car 1 has a mass of 8.0 kg and is moving left at 3.75 m/s. Car 2 has a mass of 5.5 kg and is moving right at 2.00 m/s. They collide. Afterward, car 1 moves right at 1.00 m/s.
How fast is car 2 moving after the collision, and in what direction?

Answers

The speed of the car2 after the collision is 6 m/s . The direction is towards the right.

What is momentum?

We have to note that the momentum of the object would have to be the product of the mass and the velocity of the object. In the case of the cars that we have we have to recall that; Car 1 has a mass of 8.0 kg and is moving left at 3.75 m/s. Car 2 has a mass of 5.5 kg and is moving right at 2.00 m/s.

We already know that;

Momentum after collision = momentum before collision

(8 * 3.75) + (5.5 * 2) = (8 * 1) + (5.5 * v)

v = final speed of car 1

Then we have;

30 + 11 = 8 + 5.5v

v = 6 m/s

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What is 20 newton force?.

Answers

20 Newton force is the force which can cause 1 m/s² acceleration in a body of mass 20 kg.

By the second law of Newton, force is defined as the time rate of change of momentum in a body. In other words a force can accelerate a body having some mass.

F = (m₁v₁-m₂v₂)/Δt

Where F is the force, m₁ & v₁ are the initial mass and velocity of the object and m₂ & v₂ are the final mass and velocity of the object.

Or, F = mass × acceleration

The SI unit of force is kg-m/s²or Newton. We can say that a force of 20 Newton can produce an acceleration of 1 m/s² in a body of 20 kg. Or it can produce a 4 m/s² acceleration in a body of 5 kg mass.

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A liquid having mall depth but large volume is force by an applied pressure p above it escape with velocity v through a small hole below the velocity v is given by:v=cpxdy where c,x and y are dimensionless constants, determine x and y

Answers

Answer:

im not to sure about it

maybe check online

The center of mass of a pitched baseball of radius 4.66 cm moves at 38.7 m/s. The ball spins about an axis through its center of mass with an angular speed of 62.9 rad/s. Treat the baseball as if it is a solid sphere rotating about its center (I = [tex]\frac{2}{5}[/tex]MR²).
Calculate the ratio of the rotational energy to the translational kinetic energy.

Answers

The ratio of rotational energy to the translational kinetic energy is 1:435.

What is the  rotational energy of the ball?

The rotational energy of the ball is calculated as follows;

E = ¹/₂Iω²

where;

I is the moment of inertia of the ballω is the angular speed of the ball

I = ²/₅MR²

I = ²/₅ x (0.0466)²(M)

I = 8.69 x 10⁻⁴ M

E =  ¹/₂Iω²

E =  ¹/₂(8.69 x 10⁻⁴ M)(62.9)²

E = 1.72 M

The translational kinetic energy of the ball is calculated as follows;

E = ¹/₂Mv²

E = ¹/₂ (38.7)²M

E = 748.85 M

Ratio of rotational energy to the translational kinetic energy is calculated as;

R = ( 1.72 M ) / ( 748.85 )

R = 1 : 435

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What is ballistic stretching in your own words?.

Answers

By bouncing into (or out of) a stretched position while using the extended muscles as a spring to pull you out of the stretched position, you are stretching or "warming up."

For instance, repeatedly bouncing down to touch your toes. Stretching in this way is thought to be harmful and risky for injuries. In that it is movement-based, ballistic stretching is comparable to dynamic stretching. You strive to extend a bodily part's range of motion rather of extending it all the way to the limit.

Reaching over to touch your toes and bouncing to enhance range are two examples of ballistic stretching. Due to the risk of injury and lack of benefit compared to other, safer forms of stretching like PNF and dynamic stretches, this sort of stretching is rarely advised.

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What is work write its SI unit and formula and example?.

Answers

Work is a unit of energy that results from exerting a force on the body that causes it to move. The formula W = F s cosθ denotes work done, where F denotes force applied, s denotes displacement, and = Angle between force and displacement. Joule is the SI unit of work.

What is work?

Work in physics is the energy transferred to or from an object by applying force along a displacement. In its most basic form, work equals the product of force strength and distance traveled for a constant force aligned with the direction of motion. Work is the transfer of energy caused by a force acting on an object as it moves. The work done by a force on an object is calculated as the product of the magnitude of the force multiplied by the magnitude of the displacement multiplied by the cosine of the angle between them.

Here,

Work is a type of energy that is produced when a force is applied to the body, causing it to move. Work done is denoted by the formula W = F s cosθ , where F denotes force applied, s denotes displacement, and = Angle between force and displacement. The SI unit of work is the joule.

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Of the five zones to consider when discussing human fitness which do you believe is the most important and why do you believe this

Answers

I believe the most important zone is cardiovascular, as it is essential for maintaining a healthy heart and lungs.

why  human fitness important? Human fitness is important for several reasons. Firstly, it helps maintain good physical health. Regular physical activity helps to strengthen bones and muscles, reduce the risk of heart disease, maintain a healthy weight, and reduce the risk for other chronic diseases. Secondly, fitness can improve mental health. Exercise releases endorphins, which can reduce stress, improve mood, and increase self-confidence. Additionally, fitness can help improve cognitive functioning. Research has shown that physical activity can improve focus and concentration, and can lead to better academic performance. Lastly, regular physical activity can help improve sleep quality. Exercise can help people fall asleep faster and stay asleep longer, leading to increased energy and alertness during the day. In conclusion, human fitness is important for physical, mental, and cognitive health. Regular physical activity can lead to a healthier and happier lifestyle.

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Which of the following is NOT considered a moral value?
Ohonesty
O integrity
Orespect
Opriorities

Answers

Answer: Priorities

Explanation:

Having integrity means that you live in accordance to your deepest values, you're honest with everyone, Honesty is the quality of being truthful and transparent in all interactions, whether personal or professional. And Respect ties both honesty and integrity together making priorities not considered a moral value because a value is something outside influences can't change, while priorities can change.

An SUV with a surface area of 27 square meters travels at 35 meters per second. What is the drag if the car has a drag coefficient of 0.6 and the air density is 1.3 kilograms per cubic meter?
12,899 N
33,538 N
9,951 N
25,799 N

Answers

The drag force on the SUV is 12,899.25 N.

option A is the correct answer.

What is the drag force of the SUV?

The drag force if the car has a drag coefficient of 0.6 and the air density is 1.3 kilograms per cubic meter is calculated as;

F = ¹/₂ρv²CA

where;

ρ is density of airv is the velocityC is the drag coefficientA is the surface area

The drag force on the SUV is calculated as follows;

F = ¹/₂ x ( 1.3 kg / m³) x ( 35 m/s )² x ( 0.6 ) x ( 27 )

F = 12,899.25 N

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On the fahrenheit scale, water boils at ________ degrees.

Answers

On the fahrenheit scale, water boils at 212 degrees.

Boiling water is a process that occurs when water reaches its boiling point. Water begins to boil at 212 degrees Fahrenheit (100° C). The boiling point of water is a physical property of water that determines its temperature at which it turns from a liquid into a vapor and begins to escape as vapor through evaporation.Fahrenheit temperature scale, scale based on 32° for the freezing point of water and 212° for the boiling point of water, the interval between the two being divided into 180 equal parts.

Conversion of temperature from celcius to fahrenheit is done by given formula:

                                              F = (9/5 × C) + 32.

where, C = temperature in celcius

            F = temperature in fahrenheit

We know that water boils at 100° C. Putting this value in above equation, we get F = 212.

Thus, 212 degrees Fahrenheit is the boiling point of water. At this temperature, water will begin to boil and turn into steam.

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It takes a train going 50 mph approximately ____ to stop safely.
a. 100 feet
b. ½ mile (9 football fields)
c. 1 ½ miles (26 football fields)
d. 5 miles (88 football fields)

Answers

It takes a train going 50 mph approximately 1 ½ miles (26 football fields) to stop safely.

The total stopping distance is the distance traveled by the vehicle from the moment the driver detects danger and steps on the brake until the vehicle comes to a stop.

The easiest way to calculate total stopping distance is to use the 3 second rule. When safe and legal, a U-turn allows a driver to turn a vehicle in a lane, side street, alley, or driveway. A 3-point turn is a safer way to change direction than a 2-point turn.

Stopping distance is the distance from when your body decides to stop a moving vehicle to when it comes to a complete stop.

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What is the speed of a 0. 25 kg ball if its kinetic energy is 15 J?.

Answers

The speed of a 0.25 ball is 2√30 m/s. The result is obtained by using the formula for kinetic energy.

What is kinetic energy?

Kinetic energy is the energy of an object due to its motion. So, if an object is moving, it has kinetic energy.

The energy is equal to half mass of an object multiplied by the square of its velocity. The statement can be expressed as

KE = ½ mv²

Where

KE = kinetic energy (J)m = mass of object (kg)v = velocity of object (m/s)

We have a ball with

Mass, m = 0.25 kgKinetic energy, KE = 15 J.

Find the speed of the ball!

Using the formula for kinetic energy, the speed of the ball is

KE = ½ mv²

15 = ½ (0.25)v²

15 = 0.125v²

v² = 15/0.125

v² = 120

v = √(4×30)

v = 2√30 m/s

Hence, the speed of the ball is 2√30 m/s.

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What is gravity year 7?.

Answers

The force that draws things together is gravity. It is the force that attracts anything in the direction of the earth's center.

The mass of the items and the separation between them determine how strong gravity is. An object's gravitational pull is stronger the more mass it has.

The gravitational attraction between two items decreases with increasing distance. Because of this, an object drops to the ground when you drop it.

You are drawn into the middle of the planet by gravity. In addition, gravity plays a role in the development of galaxies as well as other huge formations in space, as well as maintaining planets as well as other heavenly bodies in orbit around the Sun.

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What is the equation which relates torque to force and lever arm?.

Answers

The lever arm is defined as the perpendicular distance between the axis of rotation and the force's line of action. torque τ = r × F

What's the connection between torque and force?

Torque is a form of force applied to an item that causes it to rotate around an axis. Force is an action that alters the motion of an item.

A three-newton force applied two metres from the fulcrum, for example, produces the same torque as a one-newton force applied six metres from the fulcrum.

Torque is used by levers to help humans lift or move items. Torque is defined as the product of a force and its distance from a fulcrum.

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What is the potential energy of an object that weighs 20 kg and is 8 m from the ground?.

Answers

Joules (1568) provide the potential energy.

Based on the force exerted on the two objects, the potential energy equation is determined. P.E. = mgh, where m is the mass in kilograms, g is the acceleration caused by gravity (9.8 m/s2 at the earth's surface), and h is the height in meters, is the formula for gravitational force.

As a result of an object's position in relation to a zero position, potential energy is, in essence, the energy that is contained in the object. An object has gravitational potential energy if it is positioned at a height above (or below) the zero height.

Here m=20 kg

height h=8m

g= 9.8

Potential energy (P.E) = mgh

Potential energy (P.E) =  20*8*9.8

Potential energy (P.E) = 1568 J

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when boating on federally controlled waters in an 18-foot boat, what equipment are you legally required to have on board?

Answers

When boating on federally controlled waters in an 18-foot boat, you are legally required to have certain safety equipment on board.

This includes a life jacket or personal flotation device (PFD) for each person on board, a throwable flotation device such as a ring buoy or cushion, and a fire extinguisher.

Along with that, sound-producing devices such as a horn or whistle, navigation lights for use during night time and restricted visibility conditions, and a visual distress signal such as a flare or flag.

Additionally, boats with a motor must also have a backfire flame control device and a ventilation system if the boat is equipped with an enclosed engine compartment.

It is also strongly recommended to have a first aid kit, a marine radio, and a signaling device such as a mirror or flashlight on board.

It's important to check with local authorities as well as the boating laws of the state you are in as they may have additional rules. Failure to have the required equipment on board can result in fines and penalties.

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How are torque the moment of inertia and Newton's second law for rotational motion related?.

Answers

Newton's second law for rotational motion tells us that angular acceleration is directly related to the net torque and inversely proportional to the moment of inertia.

Mathematically, it is given as, τ = I α

where, τ is torque, I is moment of inertia, α is angular acceleration

Moment of inertia is described as the resistance to the change in rotation. It is given by the formula, I = m r², where m is mass and r is radius

Torque is nothing but the force and lever arm that can cause an object's rotation. It is also called as moment of force. Its SI units are N.m.

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Is mass a force in physics?.

Answers

Mass is not a force in physics. The amount of matter that makes up an object is expressed by its mass, which is expressed in kilogrammes.

Even though the terms force, mass, and acceleration are usually employed incorrectly. Force is a physical phenomenon that, when applied to an item, causes it to accelerate in the direction from which the force was applied. The amount of matter that makes up an object is expressed by its mass, which is expressed in kilogrammes.

Acceleration is the rate at which an object's velocity alters while moving in the same direction as the unbalanced force. When the forces are in balance, there is no net force and hence no movement. The Newton's second law, which also concerns how an object moves, connects these three ideas.

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