Jack runs up the stairs, elevating his 71.7 kg body a vertical distance of 2.86 meters in a time of 2.19 seconds. Determine the power (in Watts) done by the stairs on Jack's body.

Answers

Answer 1

Jack runs up the stairs, elevating his 71.7 kg body a vertical distance of 2.86 meters in a time of 2.19 seconds. The power (in Watts) done by the stairs on Jack's body is 780.5 watts.

To determine the power done by the stairs on Jack's body, we can use the formula:

= Power

= Work / Time

where Work is the amount of energy exerted on the object and Time is the duration of the work.

First, we need to calculate the work done on Jack's body by the stairs. We can use the formula:

= Work

= Force x Distance

where Force is the force exerted on the object and Distance is the distance over which the force is exerted. Since the force exerted on Jack's body is equal to his weight, which is the force of gravity acting on him, we can calculate the work done on him as follows:

= Work

= (71.7 kg) (9.8 m/s^2) (2.86 m)

Next, we can divide the work by the time to find the power:

Power = Work / Time

Power = (71.7 kg) (9.8 m/s^2) (2.86 m) / 2.19 seconds

Power = 2.86 * 9.8 * 71.7 / 2.19

Power = 1709.5 / 2.19

Power = 780.5 watts

So the power done by the stairs on Jack's body is approximately 780.5 watts.

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Related Questions

A bicycle tire is spinning clockwise at 3.40 rad/s. During a time period Δt = 2.50 s, the tire is stopped and spun in the opposite (counterclockwise) direction, also at 3.40 rad/s. Calculate the change in the tire's angular velocity Δω and the tire's average angular acceleration αav. (Indicate the direction with the signs of your answers.)

Answers

a) The change in the angular velocity is - 3.40 rad/s.

b) The angular acceleration is -1.36rad/s^2.

What is the change in the angular velocity?

We have to note that the change in the angular velocity would be obtain as the difference between the initial and the final angular velocity of the bicycle tire.

Then we would have that;

Change in the angular velocity = 0 rad/s - 3.40 rad/s = - 3.40 rad/s

We know that the angular acceleration = Change in the angular velocity/Time

= - 3.40 rad/s/2.5 s

= -1.36rad/s^2

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In the absence of air friction, an object dropped near the surface of the Earth experiences a constant acceleration
of about 9.8 m/s2
(A) speed of the object increases 9.8 m/s during each second
(B) speed of the object as it falls is 9.8 m/s
. This means that the
(C) object falls 9.8 meters during each second
(D) object falls 9.8 meters during the first second only
(E) rate of change of the displacement with respect to time for the object

Answers

In the absence of air friction, an object dropped near the surface of the Earth experiences a constant acceleration of about 9.8 m/s2, so the speed of the object increases 9.8 m/s during each second.

The speed of the object increases 9.8 m/s during each second the acceleration means the change in velocity per second.

Gravity can be explained as a force such that controls the movement of the planets such as Earth around the Sun, hold stars grouped in galaxies together, and galaxies grouped in clusters.  

The gravity which is generally near the Earth's surface makes it possible for all physical objects to possess weight and experience a free fall.

Generally, the acceleration due to gravity for an object experiencing a free fall near the Earth's surface is 9.8 m/s2.

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A soft-drink bottle resonates as air is blown across its top. what happens to the resonant frequency as the level of fluid in the bottle decreases?

Answers

Because a system's resonant frequency is related to its mass, the resonant frequency of a system falls as the level of fluid in the system drops.

What exactly is the distinction between frequency and resonant frequency?

Natural frequency, as it is commonly understood, is the usual supply source frequency, which is often 50 or 60 hertz. The resonant frequency is 1/2pi multiplied by 1/LC.

Depending on where you reside, the natural frequency is either 50Hz or 60Hz. Resonance can happen at any multiple of the fundamental frequency (natural).

A larger amplitude of sound waves signifies a higher sound pressure and hence a bigger volume in acoustics. In general, resonant frequencies are unfavourable for loudspeakers.

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Consider the periodic waveform of Fig. 1 r(t) T DT DT 2 Figure 1: Waveform for Problem 1 Derive expressions for the DC component of this waveform, and for the magnitudes of the Fourier series harmonics. Determine the value of D which sets the magnitude of the Fourier series 3d harmonic to zero. Finally, derive an expression for the RMS value of this waveform

Answers

A wave-shaped signal is represented graphically by a waveform. Depending on the kind of wave generating input, it might be either square or sinusoidal. The characteristics that determine the wave's size and shape determine the waveform.

The required details for waveform in given paragraph

The waveform in Figure 1 is a square wave with a period T. The DC component of this waveform is the average value of the waveform over one period. It can be found by integrating the waveform over one period and dividing by the period T:

DC component =  from 0 to T

The magnitude of the Fourier series harmonics can be found by using the formula for the Fourier series coefficients:

Ak = (from 0 to T)

Bk =  (from 0 to T)

where k is the harmonic number, f is the fundamental frequency (1/T), and A and B are the Fourier series coefficients.

For a square wave, the odd harmonics are non-zero and the even harmonics are zero. For the 3rd harmonic, the magnitude is:

Ak =  (from 0 to T)

=  (from 0 to T)

= (from 0 to T)

To set the magnitude of the Fourier series 3rd harmonic to zero,

D = 0

Finally, the RMS value of the waveform can be found by using the formula:

RMS =  (from 0 to T)

=  (from 0 to T)

= It's important to notice that the solution and expressions given here are only valid for square waveform with a period T and amplitude D.

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If the mass of the box is 3.6 kg and it is accelerating with 4.2 m/s^2, What is the net force exerted on the box?

Answers

Explanation:

Force= mass × acceleration

= 3.6 × 4.2

= 15.12N

If the mass of the box is 3.6 kg and it is accelerating with 4.2 m/s², then the force exerted on the box is 15.12 N.

what is force?

The definition of force is: The push or pull on a massed object changes its velocity. An external force is an agent that has the power to alter the resting or moving condition of a body. Every time two items interact, a force is exerted on each of the objects. The force is no longer felt by the two objects when the interaction ends. Only when there is interaction do forces actually exist.

The strong force, weak force, electromagnetic force, and gravitational force are the four fundamental forces operating in the universe. The formula of force is  Force = mass × acceleration.

Hence, if the mass of the box is 3.6 kg and it is accelerating with 4.2 m/s², then the force exerted on the box is 15.12 N.

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according to kinetic/collision energy, when are reactants more lielky to have sufficient energy to undergo a reaction

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According to collision theory, the quantity of reactant molecule collisions determines how quickly a chemical reaction proceeds. The pace of reaction increases with the frequency of reactant-molecule collisions.

Under what situations will greater energy collisions between the reactants be more likely?

The average pace of particles increases with temperature, which increases the rate of particle collisions. The average kinetic power of collisions increases with temperature, increasing the proportion of collisions that require the least amount of energy to react.

Which of the following conditions must be met for a reaction to occur when two reactant particles collide?

Reactant particles need to have a certain minimum energy in order to make an efficient collision. The activation energy is the energy that starts the reaction.

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a box slides down a frictionless ramp. it begins at rest. the ramp has an incline of 40.0 degrees, find how long it takes to reach 1.00m/s.'

Answers

A box slides down a frictionless ramp, then it takes approximately 0.87 seconds for the box to reach 1.00 m/s.

What is meant by friction?

The force resisting relative motion of solid surfaces, fluid layers, and material elements sliding against each other is called friction.

As, v^2 = u^2 + 2as

Given, v = final velocity = 1.00 m/s ; u = initial velocity = 0 m/s (since the box is at rest) ; a = acceleration due to gravity = 9.8 m/s^2 and s = distance covered = 1.00 m

So, s = 1.00 m = x x sin(40.0 degrees)

x = 1.00 m / sin(40.0 degrees)

(1.00 m/s)^2 = 0^2 + 2(9.8 m/s^2) (1.00 m / sin(40.0 degrees))

t = √((1.00 m/s)^2 - 2(9.8 m/s^2) (1.00 m / sin(40.0 degrees)) )/ (2(9.8 m/s^2))

Hence, t ≈ 0.87 sec

It takes approximately 0.87 seconds for the box to reach 1.00 m/s.

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from the following statements about mechanical waves, identify those that are true for transverse mechanical waves only, those that are true for longitudinal mechanical waves only, and those that are true for both types of waves. drag each item to the appropriate bin.

Answers

When a wave travels through a medium, the particles in that medium vibrate in a direction perpendicular to the direction the wave travels it is a transverse mechanical waves only.

When a wave travels through a medium, the particles in that medium vibrate in a direction parallel to the direction the wave travels it is a longitudinal mechanical waves only .

Then a wave travels through a medium, the wave speed will depend on an inertial property of that medium it is for both transverse and  longitudinal mechanical waves .

A transverse wave is a type of wave in which the motion of the wave's motion is perpendicular to the position of the medium's particles at any given time. Move one end of a Slinky (whose other end is fixed) to the left and right of the Slinky rather than back and forth to view an example. Example - waves on surface of waterA mechanical wave is a wave in physics that involves the oscillation of matter and transmits energy across a medium. While waves can travel great distances, the transmission medium—the material—can only move so far. Example - Sound waves

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two stationary point charges of unknown magnitude and sign are isolated from all other charges. if the electric field strength is zero at the midpoint of the line joining them, which of the following can be concluded about the charges?

Answers

Two stationary point charges of unknown magnitude and sign are isolated from other charges. If electric field strength is zero at midpoint of  line joining them, following can be concluded about charges : They are equal in magnitude but opposite in sign.

What is meant by electric field?

The electric field is a vector field that describes the force experienced by a test charge placed in the field. The direction of the electric field is given by the direction of the force experienced by the test charge and its magnitude is given by the force experienced per unit charge.

Electric field at the point due to point charge ;

E = k * (q/r^2) * r_unit

where k is Coulomb's constant, q is the charge, r is the distance from the point charge, and r_unit is the unit vector pointing from the point charge to the point where the electric field is being calculated.

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Note: The question given on the portal is incomplete. Here is the complete question.

Question: Two stationary point charges of unknown magnitude and sign are isolated from all other charges. if the electric field strength is zero at the midpoint of the line joining them, which of the following can be concluded about the charges?

They are equal in magnitude but opposite in sign.

They are equal in magnitude and sign.

They are not equal in magnitude and opposite in sign

They are not equal in magnitude but same sign.

after newton's proverbial apple fell from the tree, which hypothesis statement below would have been appropriate to test?

Answers

According to legend, young Isaac Newton came up with first law of gravity after getting hit on the head by a piece of fruit that had fallen from an apple tree while he was sitting underneath it.

What rules govern gravity?

Newton's gravitational law states that every piece of matter in the universe is drawn to every other piece with a force than varies directly with the mass-to-mass ratio and inversely with the distance between them.

Which three gravitational laws are there?

The product of the masses of two objects multiplied by two is the gravitational force between them. The gravitational pull here between objects will also triple if one of them triples in mass. When two objects' masses double, for example, the gravitational force between them is multiplied by two, and so on.

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1 mol of an ideal gas is placed in a sealed container. Which of the following would NOT cause the pressure to double? a. decreasing the volume by a factor of 2 b. adding another mol of gas c. increasing the temperature from 100oC to 200oC

Answers

In this situation, the pressure will change in direct proportion to the temperature. Double both the pressure and the temperature.

What happens when Boyle's law doubles the pressure?

When the temperature is held constant, pressure decreases as volume increases and vice versa. As a result, when the volume is cut in half, the pressure is also cut in half, and vice versa.

What does Boyle's law increase?

According to Boyle's Law, pressure and volume have an inverse relationship. The volume reduces as the pressure rises, and the volume rises as the pressure falls.

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13. ssm The middle C string on a piano is under a tension of 944 N. The period and wavelength of a wave on this string are 3.82 ms and 1.26 m, respectively. Find the linear density of the string.

Answers

The linear density of the string is 2.86 x 10^-5 kg/m.

What is linear density?

Linear density, also known as linear mass density, is a measure of the mass of a material per unit length. It is typically used to describe the properties of thin, elongated objects such as strings, wires, and fibers. The unit of measurement for linear density is typically kilograms per meter (kg/m) or grams per centimeter (g/cm). It is calculated by dividing the mass of the material by its length.

To find the linear density of the string, we need to use the relationship between the tension, linear density, and wave properties, which is given by the equation:

Tension = (linear density) * (wave speed)^2

where wave speed is the product of the frequency and wavelength of the wave.

Given the tension, period and wavelength, we can find the linear density using the following steps:

Find the frequency of the wave using the period:

frequency = 1 / period = 1 / 3.82 x 10^-3 s = 261.9 Hz

Find the wave speed using the wavelength and frequency:

wave speed = wavelength * frequency = 1.26 m * 261.9 Hz = 331.9 m/s

Substitute the values into the equation:

Tension = (linear density) * (wave speed)^2

944 N = (linear density) * (331.9 m/s)^2

Solve for linear density:

linear density = Tension / (wave speed)^2 = 944 N / (331.9 m/s)^2 = 2.86 x 10^-5 kg/m

Therefore, the linear density of the string is 2.86 x 10^-5 kg/m.

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A small air compressor operates on a 2.9 hp (horsepower) electric motor for 4.9 hours a day. If electricity costs 22 cents per kilowatt-hour, how much does it cost to run the compressor each day?
Answer in units of cents

Answers

The amount it take to run the compressor if the electricity cost 22 cents per kilowatt-hour is 233.21 cents.

What is kilowatt-hour?

A kilowatt-hour is a unit of energy: one kilowatt of power for one hour. In terms of SI derived units with special names, it equals 3.6 megajoules (MJ).

To calculate the the amount it takes to run the compressor daily, we use the formula below.

Formula:

A = PtC/1000............ Equation 1

Where:

A = Amount it takes the run the compressor dailyP = Power of the compressor = 2.9 hp = 2.9×746 = 2163.4 Wt = Time = 4.9 hours C = Electricity cost = 22 cents per kilowatt-hour

Substitute these values into equation 1

A = 2163.4×4.9×22/1000A = 233.21 cents

Hence, the amount is 233.21 cents.

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a technician needs to replace a failed power supply on a server. the server in question only has one power supply. the server contains two processors that need 100w, five hard drives that need 9w, and a gpu that uses 200w. which of the following power supplies should the technician use? A. 375w
B. 425w
C. 325w
D. 500w

Answers

The power supply that technician should use 500 W.

A power supply is a component that transforms the output of an ac power line into one or more constant dc outputs. A smooth voltage is created by filtering the ac voltage after it has first been rectified to create a pulsing dc. In spite of fluctuations in the ac line voltage or circuit loads, the voltage is finally regulated to produce a consistent output level.

The power use of the server as whole is,

100 W+ 5×9 W + 200 W

Power use=445 W.

So, the power should be more than the 445 W in order that there should not be any short circuit.

and from all the given options the power supply that is feasible is 500 W.

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500 W of power should be used by the technician.

One or more consistent dc outputs are produced from an ac power line's output by a component known as a power supply. After rectifying the ac voltage to produce a pulse dc, a smooth voltage is produced by filtering the result. Despite changes in the ac line voltage or circuit loads, the voltage is eventually controlled to create a constant output level.

The entire server's energy consumption is,

100 W+ 5×9 W + 200 W

Using 445 W of power.

Therefore, the power must be more than 445 W to prevent short circuits.

Choose the power supply that is practical from the possibilities presented

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Use the given values of n and p to find the minimum usual value and the maximum usual value μ

2
σ
. Round your answer to the nearest hundredth unless otherwise noted.
n = 248, p = ?
Question options:
a) Minimum: 75.64; maximum: 48.36
b) Minimum: 52.36; maximum: 71.64
c) Minimum: 55.18; maximum: 68.82
d) Minimum: 48.36; maximum: 75.64

Answers

Minimum: 75.64; maximum: 48.36 is the nearest hundredth unless otherwise noted.

What is p?

The given values of n and p to find the minimum usual value and the maximum usual value μ

−2σ

n = 248, p = Detailed explanation:

Considering the characteristics of the binomial distribution

n = 248, p = 4/5

To determine the necessary values, we must determine the mean and the standard deviation.

The steps are listed below.

Identify the mean.

μ = n·p = 248*(4/5) = 570.4

Find the variation in 2.

σ² = np(1 - p) = 248*(4/5)*(1 - 4/5) =

Discover the standard deviation in 3.

Minimum: 75.64; maximum: 48.36

Minimum: 75.64; maximum: 48.36 the nearest hundredth unless otherwise noted.

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A block of mass 3.60 kg is placed against a horizontal spring of constant k = 795 N/m and pushed so the spring compresses by 0.0450 m. (a) What is the elastic potential energy of the block-spring system (in J)? (b) If the block is now released and the surface is frictionless, calculate the block's speed (in m/s) after leaving the spring

Answers

The initial elastic potential energy of the block-spring system is 17.88 joules. The final speed of the block is approximately 3.15 meters per second.

What is elastic potential energy?

Elastic potential energy is energy stored in an object as a result of application of a force to deform an elastic object. The energy is stored until the force is removed and the object springs back to its original shape and size, doing work in the process.

By applying Hooke's law and definition of work, we define the elastic potential energy (Ug), measured in joules, by the following formula:

Ug = 1/2 × k × x²

where, k = Spring constant, measured in newtons per meter

x = Deformation of the spring, measured in meters

If we know that k = 795 N/m and x = 0.045m, then the elastic potential energy is:

Ug = 1/2 × 795 × 0.045

Ug = 17.88 Joules

The initial elastic potential energy of the block-spring system is 17.88 joules.

b) According to the Principle of Energy Conservation, the initial elastic potential energy of the block-spring system becomes into translational kinetic energy, that is:

Ug = 1/2 × m × v²

where, m = Mass measured in kilograms,

v = Final speed, measured in meters per second.

Then, the final speed is cleared:

v = [tex]\sqrt{2Ug/m}[/tex]

If we know that Ug = 17.88 Joules and m = 3.60kg, then the final speed of the block is:

v = √(2 × 17.88J)/ 3.60kg

v = 3.15m/s.

The final speed of the block is approximately 3.15 meters per second.

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According to the Declaration of Independence, from where does government get its power?

from God
from a written constitution
from elected representatives
from the consent of the governed

Answers

The government derive its power according to the Declaration of Independence is the document that declare the freedom of the people. The document was approved by the Continental Congress on July 4, 1776.

Below are the main messages of the declaration of independence.

(1) God made all men equal and gave them the rights of life, liberty, and the pursuit of happiness.

(2) The main business of government is to protect these rights.

(3) If a government tries to withhold these rights, the people are free to revolt and to set up another government.

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Imagine, if you can, that you are traveling toward a black hole. When is time dilation likely to occur?

when you approach the event horizon


when you cross the wormhole


when you land in the singularity


when you pass the quasar

Answers

Imagine, if you are traveling toward a black hole. The time that time dilation is likely to occur is option A: when you approach the event horizon.

What is the  black hole about?

The event horizon is the boundary around a black hole beyond which nothing, including light, can escape. As an object approaches the event horizon, the gravitational pull becomes stronger. This causes time to slow down for the object, a phenomenon known as time dilation.

The effect becomes more pronounced as the object gets closer to the singularity, the central point of the black hole where the gravitational pull becomes infinitely strong.

Crossing a wormhole, which is a hypothetical passage through space-time connecting distant points, would also experience time dilation, but it is different than the one that occurs near a black hole.

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a solid object of mass m is suspended vertically from a spring balance. the spring balance reads w when the object is in air. when the object is submerged in water while still attached to the balance, the reading on the balance is

Answers

The Archimedes principle states that when an object is submerged in a fluid, it seems to lose weight that is equal to the weight of the fluid that was displaced.

What transpires when something is immersed in water? The Archimedes principle states that when an object is submerged in a fluid, it seems to lose weight that is equal to the weight of the fluid that was displaced.The apparent weight loss is brought about by the buoyant force, which acts in an upward direction counter to the object's weight.The buoyant force is the name for the upward push that fluid-immersed objects experience.The buoyant force.A submerged item experiences fluid pressure on all sides.The upward force on the bottom surface (F2) is larger than the downward push on the top surface, though, because pressure rises with depth (P) (F1).As a result, there is constantly an upward pull from buoyancy. '

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calculate mechanical advantage of a machine whoch needs an effort of 5n to lift a load of 55n​

Answers

Answer:

11

Explanation:

MA = Fout / Fin = 55 N / 5 N = 11

State the reason why the magnitude of the Sun’s gravitational force on Pluto is greater than the magnitude of the Sun’s gravitational force on Charon.

Answers

Pluto masses 1.3e22 kg, and its average distance from the sun is about 6e15 km. The sun’s mass is 2e30 kg. G is 6.7e−11 m^3 / kg⋅s^2.

What is meant by mass?

A body's mass is an inherent quality. Prior to the discovery of the atom and particle physics, it was widely considered to be tied to the amount of matter in a physical body.It was discovered that, despite having the same amount of matter in theory, different atoms and elementary particles have varied masses.There are various conceptions of mass in contemporary physics that are theoretically different but physically equivalent.The resistance of the body to acceleration (change of velocity) in the presence of a net force can be measured experimentally as mass.The gravitational pull an object has on other bodies is also influenced by its mass.

So the force of gravity is

f = G M1 M2 / d^2

= 6.7e-11 x 1.3e22 x 2e30 / 5e15^2

= .7e11 N = 70 billion newtons.

One might say, not insignificant.

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can electricity be conducted safely underwater and how? ​

Answers

Answer:

Yes

Explanation:

By adding salt.

The carbón dioxide is matter that is made up of

Answers

Through the decomposition of organic matter, CO₂ is released into the atmosphere as part of this natural process.

Is carbon dioxide a state of matter?

One carbon atom is covalently doubly bound to two oxygen atoms in each of the molecules that make up carbon dioxide, which has the chemical formula CO 2.

At room temperature, it exists as a gas. In the atmosphere, carbon dioxide serves as a greenhouse gas because it absorbs infrared radiation despite being transparent to visible light. It has increased from pre-industrial levels of 280 ppm to a trace gas in the Earth's atmosphere at 421 parts per million (ppm), or roughly 0.04% by volume (as of May 2022).

The fundamental driver of both these elevated CO2 concentrations and climate change is the burning of fossil fuels. Groundwater, lakes, ice caps, and ocean all contain dissolved carbon dioxide. 

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You pull your t-shirt out of the washing machine and note that 1596 particles have become attached, each of which could be either an electron or a proton. Your t-shirt has a net charge of − 3.14 X 10 ^-17 C. How many electrons are attached to your t-shirt? What is the mass of the particles attached to your t-shirt?

Answers

(a) The number of electrons on the T-shirt is 700 electrons.

(b) The mass of the particle attached to your T-shirt is 1.5 x 10⁻²⁴ kg.

What is the number of electrons on the T-shirt?

The number of electrons on the T-shirt is calculated as follows;

Let the number of electrons = e

Let the number of protons = p

p + e = 1596 ------ (1)

p = 1596 - e ------ (2)

qp - qe = -3.14 x 10⁻¹⁷ ------- (3 )

The equation (3) can be simplified as;

q ( p - e ) = -3.14 x 10⁻¹⁷ -------- (4)

Now substitute the value of p into (4)

q (1596 - e - e) = -3.14 x 10⁻¹⁷

q (1596 - 2e) = -3.14 x 10⁻¹⁷

1596 - 2e = ( -3.14 x 10⁻¹⁷ ) / ( q )

1596 - 2e = ( -3.14 x 10⁻¹⁷ ) / ( 1.6 x 10⁻¹⁹ )

1596 - 2e = 196.25

2e = 1596 - 196.25

2e = 1399.75

e = 1399.75 / 2

e = 700 electrons

The mass of the particle attached to your T-shirt is calculated as follows;

m = (700 x me ) + ( 896 x mp)

m = ( 700 x 9.1 x 10⁻³¹ ) + ( 896 x 1.67 x 10⁻²⁷ )

m = 1.5 x 10⁻²⁴ kg

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An amusement park ride consists of a rotating circular platform 10.1 m in diameter from which 10 kg seats are suspended at the end of 3.6 m massless chains. When the system ro-tates, the chains make an angle of 15.9° with the vertical.
The acceleration of gravity is 9.8 m/s?
Your re
What is the speed of each seat?
Answer in units of m/s.

Answers

The speed of each seat is 3.2 m/s.

What is the speed of each seat?

The speed of each seat is calculated by applying Newton's second law of motion as shown below.

T cos (θ)  = mg

T sin (θ) = mv² / r

where;

v is the speed of each seatT is the tension in the ropem is the mass of each seatg is acceleration due to gravity

T  = mg / cos(θ)

T = ( 10 x 9.8 ) / ( cos 15.9 )

T = 101.9 N

The speed of each seat is calculated as;

v² = (Tr sin(θ) ) / m

v = √ [ (Tr sin(θ) ) / m ]

v = √ [ (101.9 x 3.6 x  sin(15.9) ) / 10 ]

v = 3.2 m/s

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When a 1.00-kg mass is suspended from a spring, the spring stretches by .050 m. What is the spring constant and what is the period if it oscillates in simple harmonic motion?

Answers

The period if it oscillates on simple harmonic motion is determined by the value to be 0.1256 seconds.

What does harmonic motion entail?

Harmonic motion is the motion that an oscillating mass undergoes when the restoring force is proportionate to the displacement but acting in the opposite direction. A sine wave with a constant magnitude and frequency can be used to illustrate harmonic motion because it is periodic. A weight bouncing on a spring is an illustration of this.

Why do harmonics exist?

Harmonics are the outcome of nonlinear loads converting AC voltage level to DC. Because of nonlinear electrically controlled components like computer power supply, energy-efficient lighting, and variable-frequency drives (VFDs), harmonics enter the electrical system.

According to the given information:

The force constant of the spring,

So,

K =  f/x

   = (1 x 10)/0.2

    = 50 N/m

Now, if the mass of 1 kg is suspended by the spring, then the period of oscillation,

T = 2π√(m/k)

T = 2π√(1/50)

T = 2π * 0.02

T = 0.1256s

the value to be 0.1256 seconds.

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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:

576 joules

Hope this helped :)

the diameter of the wheel is 0.58 m. determine the value of the horizontal component of the force of the road on the wheel.

Answers

The road force on the wheel weigh is 690.

Which force moves the car on road?

Your automobile advances under the influence of static friction. The power to turn the tires is provided by the engine, which pushes the vehicle rearward against the road.

Example:

The axle of the wheel that is in touch with the road receives a 200 mN torque from a car's engine.

The vehicle moves rightward at a steady speed:

The automobile wheel measures 0.58 meters in diameter. What does the horizontal component of the road force on the wheel weigh?

Radius: 0.29 m

When formula is used, we obtain

Force = Torque / Radius = 200/0.29

=690.

It is the necessary response as a result.

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how many coulombs of charge are on the electrons in a nickel coin? follow this method to find the answer.

Answers

A nickel coin contains 5.2 x 10^22 Ni atoms as coulombs of charge.

What is coulombs of charge?

In the International System of Units, the unit of electric charge is the coulomb. It is equivalent to the electrical charge delivered by a 1 ampere constant current in 1 second in the current version of the SI. The amount of charge carried by a current of one amp for one second is measured in coulombs, which is the unit of measurement used in the SI for electric charge. It may also be a property of a substance that causes electrical and magnetic effects to occur. The symbol for it is C. According to math, 1 Coulomb equals 1 Ampere x 1/sec.

Here,

The mass of a nickel coin is 5 g.

1 mol of Ni weighs 58 g.

1 mol=6.022 x 10²³ atoms of Ni.

in 58 g,  

=6.022 x 10²³ atoms of Ni

then in 5 g the number of Ni atoms = - 6.022 x 10²³ /58 x 5

= 5.2 x 10²² Ni atoms,

Therefore number of Ni atoms as coulombs of charge are 5.2 x 10²² atoms in a nickel coin.

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Estimate the mass of air inside the passenger area of a CATA bus. A)100 kg B)10 kg C)1000 kg D)0.1 kg

Answers

The Correct option is D which is 0.1kg .

It can be challenging to calculate the air mass in a CATA bus's passenger compartment. It will most likely just weigh a few tenths of a kilogramme or perhaps less, which is exceedingly little.

This is because, in relation to the size of the bus itself, the volume of air inside the passenger compartment of a bus is rather low. Additionally, even a small volume of air will have a comparatively modest mass since the density of air at normal atmospheric pressure is extremely low.

The frequent interchange of air through open doors and windows would be another element that might contribute to the small mass of air inside a bus.This would mean that the air inside the bus is not stagnant and is constantly being replaced by the air outside which would lead to a decrease in mass. The answer would be D)0.1 kg

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