A horizontal 779 N merry-go-round of radius
1.28 m is started from rest by a constant
horizontal force of 43.1 N applied tangentially
to the merry-go-round.
Find the kinetic energy of the merry-go round after 2.5 s. The acceleration of gravity
is 9.8 m/s². Assume the merry-go-round is a solid cylinder.
Answer in units of J.

Answers

Answer 1

The kinetic energy of the merry-go round after 2.5 s is 72.4 J.

What is the acceleration of the merry go round?

The acceleration of the merry go round is calculated from Newton's second law of motion.

F = ma

where;

m is the massa is acceleration

W = mg

m = W / g

where;

W is weight of the merry go round

m = ( 779 / 9.8 )

m = 79.5 kg

a = F / m

a = ( 43.1 N ) / ( 79.5 kg )

a = 0.54 m/s²

The velocity of the merry go round after 2.5 seconds is calculated as;

v = at

v = ( 0.54 x 2.5 s )

v = 1.35 m/s

The kinetic energy of the merry go round is calculated as;

K.E = ¹/₂ x 79.5 x 1.35²

K.E = 72.4 J

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Related Questions

Who is called Mother of physics?.

Answers

The name Margaret Curie is still used to refer to the founder of modern physics. She and her husband Pierre discovered radio and polonium in 1898, and in 1903,

She was awarded the first Physics Nobel Prize in recognition of their discoveries. We have to think that everyone of us has a unique gift that has to be developed. "Nothing in life has to be feared; merely understand," the saying goes. Like Nobel, I believe that humankind will gain more from scientific developments than it will lose.

She discovered polonium and radium, promoted the use of radiation in medicine, and radically altered our understanding of radioactivity despite a career of physically taxing and ultimately deadly labor. Born was Curie. Skowron, John

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Many modern rifles uses bullets that have less mass and reach higher speeds than bullets of older rifles. This makes the rifle more accurate over longer distances. The momentum of an older bullet, fired from an old rifle, is 8,25 kg.m.a north.
What is the momentum of a new bullet which has 3/4 the mass of the old bullets and is 3/2 of the speed of the old rifle

Answers

0.5kg is the momentum of a new bullet. Guns are able to cause such significant damage because of the momentum they provide their bullets.

What is the bullet momentum?Guns are able to cause such significant damage because of the momentum they provide their bullets. An object's momentum is calculated by dividing its mass by its speed. An object's mass or speed can be increased to enhance its momentum and, thus, its capacity for destruction.Long range performance will be greatly reduced since a bullet with a bigger diameter will have significantly more drag than a bullet with a smaller diameter and the same mass.An object's momentum is calculated by dividing its mass by its speed. An object's mass or speed can be increased to enhance its momentum and, thus, its capacity for destruction.

Explanation:

Object momentum: 3/4 divided by 3/2 = 0.75 / 1.5

                                                                 = 0.5kg.

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The thrown ball is a projectile, so its height, h, in feet, after t seconds can be modeled using the projectile motion formula. Complete the equation that models the ball's height. H = t2 + t +.

Answers

The equation that models the ball's height is: h = -16t2 + vt + h0, where h0 is the initial height of the ball and v is the initial velocity of the ball.

What is velocity?

Velocity is a measure of the rate of change of an object's position in a certain direction. It is a vector quantity, meaning that it has both magnitude and direction. Velocity is typically measured in meters per second (m/s) or kilometers per hour (km/h).

The equation that models the ball's height is: h = -16t2 + vt + h0, where h0 is the initial height of the ball and v is the initial velocity of the ball. This equation models the ball's height based on the principles of projectile motion, which states that the vertical motion of an object can be modeled using the equation h = -16t2 + vt + h0, where h0 is the initial height of the ball and v is the initial velocity of the ball. The negative sign indicates that the object is being affected by gravity, and the -16 represents the gravitational acceleration of 9.8 m/s2 divided by 2.

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Answer:

16 24  6

Explanation:

Why is latency so important?.

Answers

The performance of your network and your company might be significantly impacted by latency. This will grow more important as businesses depend more on cloud-based software and Internet of Things (IoT) services.

The latency of a data packet measures how long it actually takes to go from one location to another. The unit of measurement for the delay in milliseconds. Even a little amount of delay, such as 50 milliseconds, or less than one-tenth of a second, can have a severe effect on network and application performance.

Quick enjoyment is obtained from low latency through improving revenue, team involvement in video conferences, survey completion rates, and productivity.

Latency is influenced by a variety of factors. It can be impacted by the equipment's hardware, network and internet connections, physical distance, and geographic location.

Latency has an effect on everyday business activities, which makes any attempt at future-proofing difficult.

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In an experiment searching for the photoelectric effect, an incident beam of green light produced no ejected electrons from a metal. In order to eject electrons, the experimenter should?A. increase the brightness of the light.B. try blue light.C. try yellow light.D. give up on that particular metal.E. decrease the brightness of the light.

Answers

To emit electrons, the experimenter must try blue light.

Light emits electrons when electromagnetic radiation hits a material, such as the photoelectric effect. Photoelectron is a term used to describe electrons emitted in this manner. When light hits a metal, electrons are emitted from the metal's surface, known as the photoelectric effect. This process is also called photoemission, and the electrons emitted from the metal are called photoelectrons. To eject electrons, we need to try blue light, which has a shorter wavelength than the green light needed for light emission. To emit electrons, the experimenter must try blue light.

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Which of the earth’s spheres are involved in the melting of a glaciers?

Answers

The earth’s spheres which are involved in the melting of a glaciers include the following below:

cryospheregeosphereasthenospherehydrosphere

What is a Glacier?

This is referred to as a persistent body of dense ice that is constantly moving under its own weight.

The cryosphere is described as the portions on Earth where water appears in solid form such as glaciers while the hydrosphere is all the forms water on a planet including liquid water, ice etc and the geosphere which contains athenosphere provides the heat which is involved in the melting.

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The full question:

Which of the earth’s spheres are involved in the melting of a glaciers?

geosphere, troposphere, cryosphere atmosphere, geosphere, cryosphere atmosphere, asthenosphere, biosphere hydrosphere, asthenosphere, atmosphere

HELP PLS RN

A projectile is shot horizontally off a cliff at a speed of 44 m/s. It hits the ground 2 seconds
later.
How high is the cliff, in meters?

Answers

The projectile was 1724.8 meters high short horizontally. Any object sent into space with only gravity acting on it is considered a projectile.

What are some examples of a projectile?

A projectile is any object that is cast, fired, launched, heaved, hurled, pitched, tossed, or flung. Throwing a ball straight up, kicking a ball and imparting momentum at an angle to the horizontal, or simply letting something fall freely are examples of projectile motion.

Calculation:

Cliff at speed of 44m/s

given time is 2 second

H equals u 2 sin 2 2 g.

H = 44 × 2 × 1 × 2 × 9.8

H = 1724.8 meters.

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what is the molality of a solution that contains 0.625 g of argon dissolved in 150 g of water? report your answer in mol/kg and round to the third decimal place.

Answers

A solution of 0.625 g of argon dissolved in 150 g of water has a molality of 0.104 mol/kg.

The molality of a solution is defined as the number of moles of solute (in this case argon) per kilogram of solvent (in this case water).

To find the number of moles of argon in the solution, we need to first find the molar mass of argon, which is 39.948 g/mol.

0.625 g of argon / 39.948 g/mol = 0.0156 moles of argon

To find the number of kilograms of water in the solution.

150 g of water / 1000 g/kg = 0.15 kg of water

Now we can use the definition of molality to find the molality of the solution:

0.0156 moles of argon / 0.15 kg of water = 0.104 mol/kg

Rounded to the third decimal place, the molality of the solution is 0.104 mol/kg.

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What percentage of sperm would be normal if nondisjunction occurs in meiosis II of spermatogenesis?.

Answers

Sister chromatids fail to separate if nondisjunction occurs during meiosis II. In this case, 50% of the gametes produced are normal haploid gametes, 25% have an extra chromosome, and 25% lack a chromosome.

Nondisjunction and premature separation of sister chromatids appear to be the two main nondisjunction mechanisms in human spermatogenesis during the first meiotic division, and both mechanisms contribute equally to the emergence of aneuploidy. The elevated disomy frequencies detected in spermatocytes II are significantly higher than those previously described in human spermatozoa, implying the existence of a postmeiotic checkpoint monitoring numerical abnormalities.

At the onset of puberty, spermatogonia in males undergo constant mitotic proliferation, and these primordial germ cells differentiate, undergo meiosis without arrest, and eventually form mature spermatozoa.

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How do you solve for kinetic energy step by step?.

Answers

To solve kinetic energy value you have to:

find the velocity value of the objectfind the mass value of the that object you count in the first stepthen calculate the kinetic energy by multiply that mass and velocity then divide it by half

What is kinetic energy?

Kinetic energy is the energy the object has when it is moving or has a motion for example: energy in walking, moving car, singing, cycling, etc. The basic formula for kinetic energy is K.E. = 0.5 mv where m is a mass and v is velocity.

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What is called momentum in physics?.

Answers

The 'quantity of motion' is another name for momentum.

The result of mass and velocity is momentum.

Momentum = mass times of velocity

momentum =mv

Momentum is characterizes as the intensity of a body's which is in motion. As momentum depends both on velocity and the direction of the body's motion, it is quantified by "mass velocity."

The word "momentum" is frequently used in sports. A squad which is moving front and has momentum which is  difficult to stop. A team that is genuine moving forward and charging momentum will be challenging to stop. A physics phrase, momentum tells us the amount of motion that an item has.

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Which of the following is not an advantage of
a pneumatic system?
A. Cheap to build.
B. Its medium (air) is readily available.
C. Rigid and responsive.
D. Environmentally friendly.

Answers

All of the given except environment friendly are advantages of pneumatic systems. Sometimes these systems causes sound pollution and that's why it cannot be said as environment friendly.

What is pneumatic systems?

A pneumatic system is a group of linked parts that uses compressed air to operate automated machinery. Industrial production, a garage at home, or a dentist's office are a few examples.

The motion used to generate this job might be either linear or rotational. To safeguard the working cylinders, actuators, tools, and bladders, compressed air or pressured gas is often filtered and dried.

A lubrication device that provides an oil mist to the closed pressured system is necessary for some applications. The noise produced by pneumatic system greater compared to other systems. Hence , option D is correct.

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We now define a quantity_______, called the total mechanical energy of our system

Answers

We now define a quantity the sum of the potential energy and the kinetic energy is called the total mechanical energy of our system.

What is Total Mechanical energy?

The energy a body has as a result of movement or position is known as mechanical energy. The energy that is released by falling from a particular position is a good example. As the literal driving force of the world around us, whether it be natural or man-made, mechanical energy is one of the fundamentals studied in mechanical engineering. In joules, mechanical energy is measured.

The sum of a body's potential energy and kinetic energy is referred to as total mechanical energy. The total of the two forms of mechanical energy in a single occurrence is constant. The ball's kinetic and potential energies change quickly as it rises and falls, but their combined total remains constant.

E = K + U.

The ball starts to lose kinetic energy as it rises. The conversion of energy to potential energy, or heat, which is essentially a chaotic mixture of kinetic and potential energy, is the only way energy can actually be lost. The ball develops momentum as it falls back down, increasing its kinetic energy.This kinetic energy does not just appear. Instead, the ball's potential energy—which it accumulated while rising—is now being converted into kinetic energy.

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PLS HELP RN
A stone is thrown horizontally from the top of a 31.2 m tall cliff. The stone lands at a distance
of 21.4 m from the edge of the cliff. What is the initial horizontal velocity of the stone?

Answers

When a stone is hurled horizontally from the top of a 31.2 m tall cliff, its horizontal initial velocity is 39.25 m/s.

What is the initial horizontal velocity formula?

By measuring the ball's diameter d and dividing it by the time t it takes for it to cross the photogate, one can also calculate the ball's starting horizontal velocity. Therefore, Vo = d/t. The kinematics equations of motion can be used to calculate the horizontal velocity of a projectile motion made by a person or an item.

Calculation:

Height of cliff is 31.2 m

distance is 21.4

t = √2h/g

t = √2×31.4/9.8

t = √62.8/9.8

t = 0.80

The stone's first motion:

V = 31.4/0.08

V = 39.25 m/s.

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What’s the water vapor density if the maximum water vapor in air at this temperature is 20 grams/cubic meter? a device showing that at 22 degrees celsius the relative humidity is 58%.
a. 11.6%
b. 11.6 g/m3
c. 12.76%
d. 12.76 g/m3

Answers

The density of water vapor is 11.6 grams/cubic meter if the  water vapor density if the maximum water vapor in air at this temperature is 20 grams/cubic meter.

All the related temperature and dew point calculated for the specified hour are used to calculate relative humidity. It is expresses as %.

Given data in the question can be formulated as that the maximum water vapor in air at this temperature is 20 grams/cubic meter at 22°C, that is, density of vapor at 100% humidity can be expressed as 20g/  at 22°C.

The device shows that at 22 degrees Celsius the relative humidity is 58%.

The water vapor density at that moment can be calculated as = 20g/ × 58%

= 11.6 g/ .

= 11.6 grams/cubic meter.

As per the according to the measurement of device, the water vapor density is 11.6 grams/cubic meter.

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a change in the magnetic field surrounding the conductor induces a voltage in the conductor. this induced voltage is known as ___.

Answers

A change in the magnetic field surrounding the conductor induces a voltage in the conductor, this induced voltage is known as electromagnetic induction

What causes a voltage to be induced by a changing magnetic field?

A current will be produced in a coil of wire if it is subjected to a shifting magnetic field. Because of an electric field that has been generated, which induces the charges to move around the wire, current is moving. (The magnetic force can't be the cause because the charges aren't moving at first.)

Which physical principle dictates that a shifting magnetic field might cause a voltage to emerge in a circuit?

According to Faraday's law, the induced voltage in a circuit is proportional to the rate with which the magnetic flux through that circuit varies over time. In other words, the voltage in the circuit will be greater the faster the magnetic field changes.

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Who's going thru depression? My science teacher said that it's not good to hold that in but sometimes I don't feel like he get's me. What do I do?

Answers

really didn’t expect this question to be here but i used to suffer from severe depression at one point. i recommend spending much more time with family, friends, and less time on screens. it really helps a great amount. as well as venting to someone who is at a high level of trust. It works, believe me and you’ll get past it

A ball i dropped from the top of a building. After 2 econd, it velocity i meaured to be 19. 6 m/. Calculate the acceleration for the dropped ball

Answers

As per the problem statement the acceleration of the dropped ball is 9.8 m/s^2.

What is acceleration?

The pace at which a speed changes over time is called acceleration.It is the rate at which an object's speed, or velocity, changes. Depending on the direction of the change in velocity, acceleration can be either positive or negative. A positive acceleration indicates that the object is speeding up, while a negative acceleration indicates that the object is slowing down. Acceleration can be expressed using the equation a = (vf - vi) / t, where a is the acceleration, vf is the final velocity, vi is the initial velocity, and t is the time elapsed.

The acceleration of the dropped ball can be calculated using the equation a = (v-u)/t, where a is the acceleration, v is the final velocity, u is the initial velocity, and t is the time elapsed. In this case, u = 0 m/s (since the ball is dropped from rest), v = 19.6 m/s, and t = 2 seconds. Plugging these values into the equation, we get a = (19.6-0)/2 = 9.8 m/s^2, which is the acceleration of the dropped ball.

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The sum of the relative frequencies for all classes will always equal:
a. 1
b. the number of elements in a data set
c. the number of classes
d. a value between 0 to 1

Answers

The total of all classes' relative frequencies will always equal: (a) 1

What is frequencies ?

A frequency is a measurement of how frequently a certain value, occurrence, or feature takes place. It is employed in a wide range of disciplines, including science, engineering, mathematics, and statistics. Frequency is often expressed as a number, percentage, or ratio. For example, a frequency chart might show the number of times a particular product was purchased over a certain time period. Frequency can also refer to the number of times a particular wave pattern occurs in a given time period. In physics and engineering, frequency is used to measure the number of cycles per second of a wave or periodic phenomenon. For example, a wave with a frequency of 440 hertz (Hz) has 440 complete cycles per second.

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What is the law of conservation of linear momentum and its formula?.

Answers

The linear momentum formula is p = mv. The overall quantity of momentum never changes, and this phenomenon is known as momentum conservation.

What is the law of linear momentum conservation?

If the net external force acting on a system of bodies is zero, the momentum of the system remains constant, according to the conservation of linear momentum. We must remember that the momentum of the system, not the individual particles, is preserved.

For example, consider two bodies of mass M and m, one at rest and the other travelling with certain velocity towards it. If they collide and move together afterward.

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What can be considered as advantages of edge computing?.

Answers

Edge computing improves performance and provides a more pleasant user experience. It improves privacy and data security while also lowering operational costs.

What exactly is edge computing?

Edge computing is a computing model in which key processing tasks are performed within the framework or environment in which data was generated. It is a framework that enables the generation, storage, and processing of data in the location where it is generated, rather than relying on a data center or central data computing environment.

Edge computing also helps AI/ML applications because data is processed close to where it is generated, making AI/ML results easier and faster to obtain.

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A force of 250 N is used to keep a 65 kg crate sliding across the warehouse floor. What is the coefficient of sliding friction for the crate and the floor?

Answers

The crate moves with velocity vecv in the positive X-direction, as shown in the FBD above. Forces acting upon that crates are A 65 kilogramme crate is being kept from sliding to across warehouse floor by a force pf 250 N.

Writing equal forces in their component parts using Newton's second law

0 for Sigma F x.

0 Rightarrow F-F friction

----(1) \s\

0 for Sigma F y.

-mg=0 rightarrow

——(2)

Equation (1) yields F friction=F.

Rightarrow ___k=F ___k

Rightarrow mu _k=frac F N

Rightarrow mu k=frac fmg

——-from Equation (2)

Rightarrow _k=frac 250*65*9.8=0.39

fr = Fr/N

The resistive frictional force (Fr) divided more by normal of perpendicular energy (N) pushing adjacent objects together yields the friction coefficient (fr), which is a numerical value. Equation fr = Fr/N serves as a representation of it.

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The crate moves with velocity vecv in the positive X-direction, as shown in the FBD above. Forces acting upon that crates are A 65 kilogramme crate is being kept from sliding to across warehouse floor by a force pf 250 N.

Writing equal forces in their component parts using Newton's second law:

0 for Sigma F x.

0 Rightarrow F-F friction

----(1) \s\

0 for Sigma F y.

-mg=0 rightarrow

——(2)

Equation (1) yields F friction=F.

Rightarrow ___k=F ___k

Rightarrow mu _k=frac F N

Rightarrow mu k=frac fmg

——-from Equation (2)

Rightarrow _k=frac 250*65*9.8=0.39

fr = Fr/N

The resistive frictional force (Fr) divided more by normal of perpendicular energy (N) pushing adjacent objects together yields the friction coefficient (fr), which is a numerical value. Equation fr = Fr/N serves as a representation of it.

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PLEASE HELP I WILL GIVE 20 POINTS!!!! A 0.5 kg football is moving at a velocity of
20 ms where it hits a receiver's hands who stops the ball in 0.075 seconds. What force did the receiver put on the ball?

Answers

A 15 m/s throw of a 0.50 kilogramme football is made to the right. In 0.020 seconds, a motionless player receives the ball and pulls it to a stop.

What role does velocity have in football?

It is beneficial to be capable to kick the ball far or quickly in all football codes. The speed of the foot at the moment it makes contact with the ball is a crucial factor in determining ball speed or kick distance.

In football, what forces are employed?

The four forces are gravity, shear forces, contact pressure, and applied force. Football players continually use the force of gravity when they kick, throw, or leap into the air to dodge a tackle or receive the ball.

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A 15 m/s throw of a 0.50 kilogramme football is made to the right. In 0.020 seconds, a motionless player receives the ball and pulls it to a stop.

What role does velocity have in football?

It is beneficial to be capable to kick the ball far or quickly in all football codes. The speed of the foot at the moment it makes contact with the ball is a crucial factor in determining ball speed or kick distance.

In football, what forces are employed?

The four forces are gravity, shear forces, contact pressure, and applied force. Football players continually use the force of gravity when they kick, throw, or leap into the air to dodge a tackle or receive the ball.

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A highway curves to the left with radius of curvature of 26m and is banked at 17 degrees so that cars can take this curve at higher speeds. Consider a car of mass 1151 kg whose tires have a static friction coefficient 0.37 against the pavement. How fast can the car take this curve without skidding to the outside of the curve? The acceleration of gravity is 9.8 m/s^2. U (mu )= 0.37 theta = 17 degrees.

Answers

The car can take the curve at a speed of 35.89 m/s without skidding to the outside of the curve.

To calculate the maximum speed at which the car can take the curve, we need to first determine the maximum force of static friction that can act on the car. This can be calculated using the formula:

F_friction = friction coefficient * normal force

The normal force is equal to the weight of the car and can be calculated using the formula:

N = m * g (where m is the mass of the car and g is the acceleration of gravity)

So:

N = 1151 kg * 9.8 m/s^2 = 11,288.8 N

F_friction = 0.37 * 11,288.8 N = 4,162.96 N

Next, we need to determine the centripetal force required to keep the car moving in a circle of radius 26m. This can be calculated using the formula:

F_centripetal = m * a

Where a is the centripetal acceleration and can be calculated using the formula:

a = v^2 / r

So we have to find v:

v = sqrt(F_friction*r /m)

v = sqrt(4,162.96 N * 26 m / 1151 kg) = 35.89 m/s

So, the car can take the curve at a speed of 35.89 m/s without skidding to the outside of the curve.

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Why do we use perpendicular distance in torque?.

Answers

We use the perpendicular distance in the Torque equation because it represents the distance that the force is applied from the axis of rotation.

Torque is a measure of the twisting force applied to an object, often used in mechanical engineering. It is defined as the product of the force applied and the perpendicular distance from the axis of rotation to the point where the force is applied. This perpendicular distance is also known as the lever arm.

A larger lever arm means that the force is applied farther from the axis of rotation, resulting in a torque of greater magnitude.

Additionally, using the perpendicular distance in the torque equation allows for the quantification of the torque generated by a force regardless of the direction of force. The torque would be the same if the force is applied in the opposite direction, as long as the lever arm is the same.

In summary, the use of the perpendicular distance in the torque equation allows us to quantify the twisting force applied to an object, considering force and distance from rotation axis. This information can be used to design and analyze mechanical systems, such as engines and gears, and predict how they will perform under different loads and conditions.

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a 15 N force acts for 10 seconds on a 1 kg ball that is initially at rest what is the balls change in momentum

Answers

The change in momentum is a measure of how much an object's motion has changed. When a force acts on an object, it can make the object move faster or slower, or change the direction of its motion. The amount of this change is called the change in momentum.

In this case, a 15 N force acted on a 1 kg ball for 10 seconds, which means that the force was pushing or pulling on the ball for 10 seconds. This force caused the ball to change its motion and its momentum.

To find out how much the ball's momentum changed, we multiply the force by the time it acted on the ball. So in this case, 15 N (the force) x 10 s (the time) = 150 Ns (change in momentum).

It's important to note that the unit of impulse is Ns.

So, this ball's change in momentum is 150 Ns, it means that the ball's motion changed by 150 Ns due to the force that acted on it for 10 seconds.

Δp = F * t = 15 N * 10 s = 150 Ns

So, the ball's change in momentum is 150 Ns. This is also known as impulse, which is the product of force and time.

What is the formula for magnitude and direction?.

Answers

The formula for magnitude is ' |v| =√(x^2 + y^2) ' and the formula for direction is ' θ = arctan(y/x) '.

In Physics, the term magnitude answers 'how much? and the term direction answers 'which way?'. For instance, North is a direction and 5 meters is a magnitude. '5 meters' north is a vector quantity with both magnitude and direction.

Thus, for vector quantities, the formula to determine the magnitude to be used is |v| =√(x^2 + y^2), while to determine the direction the formula θ = arctan(y/x) is used.

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What is Newton's 3rd law commonly called?.

Answers

Newton's third law is also known as the law of complementary effects and the law of action-response.

Newton's third law, the law of interaction and the law of action and reaction, states that all actions have equal and opposite reactions.

This shows that when one object exerts a force on another, the mirror image exerts an equal and opposite reaction on the first object. “For every action, there is an equal and opposite reaction” is a popular saying.

This principle can be observed in a variety of real-world situations, such as when someone pushes a wall and the wall is pushed back with the same and opposite force.

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3. Sound travels through cold air at about
1,190 kilometers per hour. That means
that a sound can travel the length of three
football fields in about a second. Some
machines, such as jet planes, can travel
faster than sound. The world's fastest
train can travel 574.8 kilometers per
hour. How much faster would it have to
go to match the speed of sound in air?

Answers

It would need to go 685.2 km/h quicker to equal the sound speed in air.

briefly:-

speed of sound at 0°= 331.5 m/s

Sound travels through cold air = 1,190 kilometers per hour

world's fastest train can travel= 574.8 kilometers per hour

match the speed of sound in air= 1,190*331.5/574.8.

                                                    =  685.2 km/h

A vacuum makes what kind of noise?

Sound does not move in space at all. In the void of space, there is rarely any air. There is no sound in space because there is no air there, and sound is nothing more than air vibrating. If you were inside one, you wouldn't hear an explosion from another spacecraft.

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A pacehip traveling in pace at a contant velocity of 800m-1 launche a probe tomand a ditant
planet. If the probe i launched with a velocity relative to the pacehip. Of
600 m-1 in a direction at right angle to
the
Flight path of the pacehip,Calculate the reultant velocity of the probe

Answers

The overall equation in this case is v (final) - at + v (initial), where v denotes velocity, a denotes acceleration, and t is time.

How do you calculate resultant velocity?The total of an object's individual vector velocities is known as the resultant velocity. The scalar product of an object's mass and acceleration vector equals the total of its vector forces, which are measured in terms of a force vector.R = A + B. Equation 2 To create the resultant vector, opposing vectors are subtracted from one another. R is the resultant vector in this case, and the vector B is directed in the opposite direction to the vector A.By dividing the entire distance travelled by the time it took the object to go a certain distance, you may calculate the object's initial velocity. V, d, and t are the three variables that make up the equation V = d/t.

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