a particle has a mass of 4.00 x 10-27 kg and has a kinetic energy of 7.60 mev. what is the speed of this particle?

Answers

Answer 1

The speed of this particle v = 1.16 x 106 m/s

what is speed?

Speed is a measure of how quickly an object is moving. It is usually measured in units of distance traveled per unit of time, such as miles per hour (mph) or kilometers per hour (kph).

Given:

Mass (m) = 4.00 x 10-27 kg

Kinetic Energy (Ek) = 7.60 meV

Solution:

Mass-Energy Equivalence:

Ek = (1/2)mv2

Substituting the given values:

7.60 meV = (1/2)(4.00 x 10-27 kg)v2

Rearranging to isolate the variable:

v2 = (7.60 meV)(2/4.00 x 10-27 kg)

Taking the square root:

v = (√(7.60 meV)(2/4.00 x 10-27 kg))  

v = 1.16 x 106 m/s

Therefore, The speed of this particle v = 1.16 x 106 m/s

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Related Questions

a machine-gun is attached to a 120,000 kg railroad car. if the muzzle velocity of the machine-gun is 300 m/s, then how many 0.020 kg bullets would have to be fired to make the railroad car move with a velocity of 1 m/s?

Answers

20,000 bullets would have to be fired to make the railroad car move with a velocity of 1 m/s.

What is velocity?

The rate and direction of motion are measured by a vector known as velocity.

We need to calculate the total impulse of the bullets and compare it to the force required to accelerate the railroad car to that velocity.

The impulse (change in momentum) of a bullet is equal to its mass times its velocity. So, for a 0.020 kg bullet with a velocity of 300 m/s, the impulse is:

0.020 kg * 300 m/s = 6 Ns

To calculate the force required to accelerate the railroad car, we use the equation:

force = mass * acceleration

Calculate the acceleration required to reach that velocity.

acceleration = (1-0) m/s^2 / 1 s = 1 m/s^2

force = mass * acceleration = 120,000 kg * 1 m/s^2 = 120,000 N

impulse = force * time = 120,000 N * 1 s = 120,000 Ns

To determine how many bullets are needed:

number of bullets = impulse / (mass * velocity) = 120,000 Ns / (0.020 kg * 300 m/s)

number of bullets = 120,000 Ns / 6 Ns = 20,000 bullets

So, 20,000 bullets would have to be fired to make the railroad car move with a velocity of 1 m/s.

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Using conservation of energy, find the maximum height hmax to which the object will rise.Express your answer in terms of v and the magnitude of the acceleration of gravity g .

Answers

Using conservation of energy, find the maximum height hmax to which the object will rise hmax = (v^2)/(2*g)

What is energy?

Energy is the ability to do work, or the capacity to produce a desired effect. It is the ability to be used or transferred from one form to another. Energy exists in many forms, including thermal, chemical, electrical, mechanical, and electromagnetic.

It is an essential resource for powering the world, enabling modern life and economic development. Energy can be converted from one form to another, and harnessed to do work. Examples include the conversion of sunlight into electrical energy, the conversion of coal into heat energy, and the conversion of wind into mechanical energy.

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Find out the distance, traveled by the body from A to B

Answers

From the given picture we can calculate distance traveled by the body from A to B.

Formula of velocity=[tex]\frac{displacement }{time\\}[/tex]

Observe the x-axis

From the graph we say time taken by the body from A to B = 30-20 =10 sec

Observe y-axis velocity=40m/s

Displacement= velocity * time

D=40*10

D=400 meters

Distance means total path covered by the body.

Displacement means shortest path between starting and end point.

The distance traveled by the body from A to B is 400meters

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Part B

Rank these throws based on the amount of time it takes the ball to hit the ground.

Rank from largest to smallest. To rank items as equivalent, overlap them.

10 m/s 60 degree angle

15 m/s 45 degree angle

20 m/ s 0 degree

10 m/s 90 degree angle

15 m/s 30 degree angle

15 m/s 60 degree angle

Answers

The rank of the given throws based on the amount of time it takes the ball to hit the ground will be - 1) 10 m/s 90-degree angle 2) 15 m/s 60-degree angle 3) 20 m/s 0 degrees 4) 15 m/s 30-degree angle 5) 15 m/s 45-degree angle 6) 10 m/s 60-degree angle

What happens to a ball when it is thrown?

As you throw a ball up in the air, its velocity rises into the air, but actually, it is decreasing. On its way up, its speed lowers, until it stops at the very top of the ball's motion. Its acceleration is -9.8 m/s^2 at the top.

What law of motion is followed by throwing the ball?

When a ball is thrown, the resulting motion of the ball is determined by Newton's laws of motion. From Newton's first law, the moving ball will stay in motion in a straight line unless external forces act on it.

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approximately where does the particle achieve its greatest positive acceleration on the interval [0,b]

Answers

The greatest positive acceleration occurs at the midpoint of the interval, when the particle is changing velocity most rapidly.

What is velocity?

Velocity is a measure of the rate of change of an object's position over a period of time. It is a vector quantity, which means it has both magnitude (or size) and direction. Velocity is usually expressed in terms of distance traveled per unit of time, such as meters per second (m/s). Velocity can be determined by dividing the distance traveled by the time taken. For example, if an object travels 20 meters in 5 seconds, its velocity would be 4 m/s. Velocity can also be calculated by taking the derivative of the object's position with respect to time.

The particle will achieve its greatest positive acceleration at the midpoint of the interval, at t = b/2.
This is because the acceleration is greatest when the velocity is changing most rapidly.
At the beginning of the interval, the particle has zero velocity, so it has no acceleration.
At the end of the interval, the particle has reached its maximum velocity, and the rate of change of velocity is zero, so it has no acceleration. Therefore, the greatest positive acceleration occurs at the midpoint of the interval, when the particle is changing velocity most rapidly.

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Rank the crystal lattice structures in order of decreasing efficiency of space in the structure?

(a) Face centered cubic

(b) Body centered cubic

(c) Simple cubic

(d) Hexagonal close packing

Answers

According to the decreasing efficiency of space in the structure, crystal lattice structures are in the order of Hexagonal close packing, Face centered cubic, Body centered cubic and simple cubic.

A unit cell of crystalline structure can be defined as the simplest repeating unit. All the classification of crystalline structure are based on these unit cells.

In simple cubic, the layers are arranged one above the other, while we examine the basic cubic structure, the atoms are present only on corners of the cube. It has a packing efficiency of 54% .

For body centered cubic, the packaging is more efficient, 68%. The atoms in a layer do not touch each other, but touches 4 atoms from above and 4 from below layers.

For Face centered cubic, packing efficiency is 74%. The second layer is packed in the indentation of the first layer, and third on indentation of second. Here atoms are packed as closely as possible.

For hexagonal close packing layers are packed such that the spheres overlay spheres of the previous layer. It also have a packing efficiency of 74%.

So the decreasing order is Hexagonal close packing > Face centered cubic > body centered cubic > simple cubic.

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Two basketballs are sitting 1 m apart and are not moving. Which best explains why the gravitational force does not cause the to move?

A. No gravitational force exists between the two objects Because they are not touching.

B. The gravitational force between the two objects is weak because they are 1 m apart.

C. No gravitational force exists between the two objects because their masses are small.

D. The gravitational force between the two objects is weak because their masses are small.

Answers

The gravitational force between the two objects is weak because their masses are small. The correct option to this question is D.

What is gravitational force

When the mass of either object doubles, the gravitational force between them doubles. If the mass of either object triples, the gravitational force between them triples. If the masses of both objects double, the gravitational force between them quadruples. etc

The gravitational force between two bodies of mass 1 kg at a distance of 1 m is:6.67N

As the two masses move, the value of G in Newton's law of universal gravitation is constant and does not change. Bringing two masses closer together increases the gravitational force between them, but never changes the value of G.

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two ships are docked next to each other. their centers of gravity are 40.0 meters apart. one ship weighs 9.8 x 107 n and the other weighs 1.96 x 108 n. what gravitational force exists between them?

Answers

The gravitational force between them is 8.34 Newtons, if the weight of one ships is 9.8 × 10⁷ N and the other ship is 1.96 × 10⁸ N.

The weight of first ship = 9.8 × 10⁷ N

Mass of the first ship, m₁ = (9.8 × 10⁷)/9.81 = 1 × 10⁷ kg

Similarly the mass of the second ship, m₂ = (1.96 × 10⁸)/9.81 = 2 × 10⁷

Distance between ships, d = 40 m

Universal Gravitational constant, G = 6.67 × 10⁻¹¹ Nm²/kg²

Gravitational force, F = Gm₁m₂/d²

F = (6.67 × 10⁻¹¹ × 1 × 10⁷ × 2 × 10⁷)/40²

F = 8.34 N

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true or false: it is acceptable to increase the speed of your vehicle over the legal speed limit to merge onto a highway

Answers

False, as going faster than the posted speed limit in order to merge onto a highway is not permissible.

When merging into the motorway, drive at or near the speed of the other vehicles. It's fine if you move a bit slower, but the goal is to prevent disturbing traffic flow. Use your time on the ramp or in the merging lane to gain speed until you can smoothly merge into traffic.

When entering the on ramp, a vehicle must strive to accelerate in order to safely merge into the highway. While accelerating, the motorist should engage their turn signal so that oncoming traffic may notice their intentions. This may give a car on the highway enough time to move lanes to let you pass.

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explain in terms of momentum and newton's laws how a car's air resistance is due in part of the fact that it pushes air in its direction of motion

Answers

In terms of momentum and Newton's laws, the resistance of the car is increased by the fact that it will push air in the direction of its travel. Since the car is encountering air resistance.

An imbalanced force will be present. You will use some energy working on the car, equal to the work the air resistance does. The relationship between two forces is illustrated here. According to Newton's third rule, the action and reaction forces are equal. As a result, the system is subject to no net force. According to Newton's Second Law, which states that: f = dP/dT, therefore F12 = -F21 , F12 + F21 = 0, the momentum will be retained because there is no net force.

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Part B Now consider the children's linear accelerations Which of the following statements are correct? Check all that apply: View Available Hint(s) The last child in the line has the greatest tangential acceleration The last child in the line has the greatest radial acceleration.
AIl the children have the same tangential acceleration; All the children have the same radial acceleration Submit

Answers

The last child in the line has greatest radial acceleration.

Tangential acceleration is a term used to describe how the tangential velocity of a point with a particular radius changes over time. The same linear and tangential accelerations, but in the tangential direction, result in the circular motion. Tangential acceleration is the rate of change in the matter's tangential velocity in a circular path.

We have linear acceleration and angular acceleration are proportional for something in motion. If there is a circular motion, the tangential and radial components will be parallel to one another. We will always accelerate in parallel to one another. The tangential and radio accelerations are connected to the linear acceleration of a point on a spinning object. It will be our decision (b).

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a car is accelerating from 55 km/h to 70 km/h as it rounds a curve of constant radius. draw the vectors starting at the black dot. the location and orientation of the vectors will be graded. the length of the vectors will not be graded.

Answers

The acceleration is directed radially toward the center of the circle.

The centripetal acceleration a(centripetal) has a magnitude equal to the square of the body's speed(v) along the wind divided by the distance(r) from the center of the circle to the moving body; that is,

a(centripetal) = v ²/r.

The tangential acceleration formula is a(tangential) = r α, where(α) is the angular acceleration, and(r) is the compass of the circle. It's derived from the fact that bow length is the compass of the circle multiplied by the angle in radians.

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an electric current is produced using a bar magnet and a solenoid. which changes will cause a decrease in the electric current produced? check all that apply.

Answers

The correct answers are B) using fewer wire loops in the solenoid, and C) using a stronger magnet moving the solenoid instead of the magnet moving the magnet more slowly.

This is because, when a bar magnet is moved through a solenoid, it produces a changing magnetic field which induces an electric current in the solenoid. The strength of the electric current produced is determined by the number of wire loops in the solenoid and the speed of the magnet moving through the solenoid.

Therefore, decreasing the number of wire loops in the solenoid and increasing the strength of the magnet moving through the solenoid will cause a decrease in the electric current produced.

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TRUE OR FALSE : If car A and car B have the same acceleration, but car B has three times the mass of car A, what must be true about car A and car B

Answers

True. If car A and car B have the same acceleration, but car B has three times the mass of car A, car B will require three times the force to achieve the same acceleration as car A. This is because acceleration is directly proportional to the net force acting on an object and inversely proportional to the mass of the object. The equation that relates force, mass, and acceleration is F = ma, where F is the force, m is the mass and a is the acceleration.

Therefore, if car A and car B have the same acceleration, the force required to accelerate car B will be 3 times greater than the force required to accelerate car A due to its three times greater mass.

It's worth noting that the relationship between force, mass, and acceleration is a fundamental concept in physics, and it's described by Newton's second law of motion.

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after the string is cut and the two carts move apart, the magnitude of which quantity is the same for both carts?

Answers

after the string is cut and the two carts move apart, The kinetic energy of the carts.

What is the energy ?

Energy is the ability to do work or cause change. It can take many different forms, including thermal, electrical, chemical, nuclear, and mechanical forms. All matter contains energy, which can be harnessed and used to perform various tasks. Energy is essential to life, allowing us to do work, heat our homes, and power our vehicles. It is also necessary to generate electricity, which powers many of the technologies we use every day. Energy is constantly being converted from one form to another, and can never be created or destroyed. By using energy in an efficient and responsible manner, we can help protect the environment and ensure a sustainable future.

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what is the wavelength of the line corresponding to n=4 in the balmer series?

Answers

Expression for the Balmer series to find the wavelength of the spectral line is as follows:   [tex]\frac{1}{\pi } = R ( \frac{1}{2^{2} } - \frac{1}{n^{2} } )[/tex]

Substitute   [tex]1.097 * 10^{7} m^{-1}[/tex]

for R and 4 for n in the above equation

       [tex]\frac{1}{\pi } = (1.097 * 10^{7} m^{-1} ) ( \frac{1}{2^{2} } - \frac{1}{4^{2} } )\\ = 0.20568 * 10^{7} m^{-1} \\\pi = 4.86 * 10^{7} m[/tex]

Balmer series is the series of lines of the atomic hydrogen in the visible and the ultraviolet spectrum. The wavelength of the photon emitted in this series corresponds to the electronic transition at the energy level 4 is in visible range of wavelengths.

How to calculate the wavelength using balmer series?

First, calculate the wavelength using the formula for the Balmer series of the spectral line for different values of n. After that, calculate the smallest wavelength in the Balmer’s series by using the formula for Balmer series. Later, calculate the largest wavelength in the Balmer’s series by using the formula for Balmer series. Later, calculate the smallest value of n, which is the lower limit for wavelength in the visible spectrum by using the formula for Balmer series. Finally, calculate the range for the wavelengths for the corresponding values of m by using the generalized formula for Balmer series.

Therefore, [tex]4.86 * 10^{7} m[/tex] is the answer.

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At what point does the ball have the most energy? Ignore air resistance.
a. Just before it hits the ground.
b. When the ball is halfway to the highest point of its path.
c. When it is first thrown.
d. At the highest point of its path.
e. Everywhere; the energy of the ball is the same at all of these points.

Answers

D. At the highest point of its path. at what point does the ball have the most energy.

What is path?

Path is a route or a way between two points. It is usually a line or a sequence of steps that one can take to get from one location to another. Paths can be physical, Path is a sequence of steps or actions that lead to a desired result or outcome. It is a plan or set of instructions that someone can follow to achieve a goal. Paths can be mental, physical, or spiritual in nature, and often involve making decisions and taking risks.

such as a path in a park or a street; they can also be abstract, such as a path of thoughts or a path to success. Paths can also refer to a journey or a route taken to reach a particular destination.

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imagine that spacex has created a spacecraft that allows travels to visit black holes safely. which part of a black hole would you expect to see first on your itinerary

Answers

When I look outside the black hole things will look warped.

What is a black hole?

A black hole is a region of spacetime where gravity is so strong that nothing, including light or other electromagnetic waves, has enough energy to escape the event horizon.General relativity predicts that sufficiently compact matter can warp space-time and create a black hole.The escape boundary is called the event horizon. Although it has a great influence on the fate and circumstances of the object that crosses it, it has no locally detectable features according to general relativity.In many ways, a black hole behaves like an ideal black body because it does not reflect any light.Additionally, quantum field theory in curved spacetime predicts that event horizons emit Hawking radiation with the same spectrum as a blackbody with a temperature inversely proportional to its mass.

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Answer:

Event Horizon

Explanation:

a) a yo-yo is made of two solid cylindrical disks, each of mass 0.050 kg and diameter 0.075 m, joined by a (concentric) thin solid cylindrical hub of mass 0.0050 kg and diameter 0.013 m. use conservation of energy to calculate the linear speed of the yo-yo just before it reaches the end of its 1.0-m-long string, if it is released from rest. (b) what fraction of its kinetic energy is rotational?

Answers

(a) The linear speed of the yo-yo just before it reaches the end of its 1.0m-long string can be calculated using conservation of energy. The initial potential energy of the yo-yo is equal to its kinetic energy just before the end of the string:PE = KE ,mgh = 1/2 mv^2,where m is the mass of the yo-yo, g is the acceleration due to gravity, h is the height of the yo-yo above the ground, and v is the linear speed of the yo-yo.Substituting in the given values, we have:(0.050 + 0.0050) * 9.8 * 1.0 = 0.5 * (0.050 + 0.0050) * v^2,Solving for v, we find that the linear speed of the yo-yo just before it reaches the end of its 1.0-m-long string is:v = 2.44 m/s(b) The fraction of kinetic energy that is rotational can be calculated using the following equation:KE_rotational / KE_total = I_

What is the kinetic ?

The energy that an object in motion possesses is known as kinetic energy. It is the energy of movement, which is released when the object stops moving. This energy comes from the object's mass and velocity. Kinetic energy can be found in an object's rotation, vibration, or translation. Kinetic energy is a form of potential energy that can be converted into other forms of energy, such as thermal, electrical, or chemical energy. Kinetic energy is useful in many everyday situations, such as the motion of a car or the motion of a roller coaster. It can also be used to generate electricity, power mechanical devices, and even propel rockets into space.

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a 78-kg skydiver has a speed of 62 m/s at an altitude of 870 m above the ground. determine the total mechanical energy possessed by the skydiver-earth system.

Answers

The total mechanical energy possessed by the skydiver-earth system is 707,672 J.

What is the Gravitational?

Gravitational force is a physical force that attracts objects with mass to each other. This force of attraction is caused by the gravitational field which is generated by the mass of an object. The gravitational force between two objects is inversely proportional to the square of the distance between them.

The strength of the gravitational force between two objects is determined by the product of their masses and the distance between them. On Earth, the gravitational force of the planet is what keeps us and objects on the ground. Gravity also plays an important role in the motion of planets and other bodies in the Solar System.

Total mechanical energy = kinetic energy + gravitational potential energy

Kinetic energy = 0.5 x 78 kg × (62 m/s)2 = 24,912 J

Gravitational potential energy = 78 kg × 9.8 m/s2 × 870 m = 682760 J

Total mechanical energy = 24912 + 682760 = 707672 J.

Thus, The total mechanical energy possessed by the skydiver-earth system is 707,672 J.

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a small ball with a mass of 0.6 kg and a velocity of 12 m/s hits another ball with the same mass. the first ball stops moving, and the second ball then moves forward and hits a third ball with a mass of 0.2 kg. if the system is closed, what is the velocity of the third ball? brainly

Answers

A little ball that has a mass de 0.6 kg and travels at a speed of 12 m/s collides with another ball that has the same mass. When the first ball ceases moving, the second one advances and collides with a third ball that weighs 0.2 kg. The third ball travels at 36 m/s speed if the mechanism is closed.

What is the straightforward definition of velocity?

The displacement an object / particle experiences with regard to time is expressed vectorially as velocity. The meter per second (m/s) is the accepted unit of velocity magnitude, sometimes referred to as speed.

What is a good illustration of velocity?

Simply said, velocity is the rate of movement in a specific direction. like the speed of the a car driving north on the a highway or the pace at which a rocket takes off.

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Select the correct answer. If the coefficient of static friction is 0.35 and the normal force is 80 newtons, what is the maximum frictional force of the surface acting on the object

Answers

The maximum frictional force of the surface acting on the object is greater than or equal to 28 N.

Given that,

Coefficient of static friction = 0.35

It is represented by μ.

Normal force = 80 N

Let us calculate the maximum frictional force of the surface exerted on the object.

The surface's frictional force is equal to the product of the static friction coefficient and the normal reaction.

Mathematically, f = μ N = 0.35 × 80 = 28 N

The answer is 28 N if the static friction coefficient mentioned in the question is equivalent to limiting friction.

The maximum frictional force exceeds 28 N if it is less than the coefficient of limiting friction.

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find the point or points in the region we are interested in where the magnitude of the pressure gradient is the smallest.

Answers

The point or points in the region where the magnitude of the pressure gradient is the smallest is at the point where the pressure is the highest, or at the peak of the pressure gradient.

What is pressure?

Pressure is a physical quantity that measures the force applied on a surface per unit of area. It is a measure of how much force is being exerted on a particular area and is typically expressed in pascals (Pa). Pressure is often used to describe the forces that are experienced in liquids, gases, and solids. In general, pressure is the result of a force being applied over a given area and can be calculated by dividing the force by the area. Pressure is an important measurement in many fields of science, engineering, and medicine, and can be used to measure the amount of stress and strain experienced by materials.

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Pan A What is the rms speed of a molecule in Mars's atmosphere? Assume R = 8.315 J/mol. K Express your answer with the appropriate units. UftIu Value Units Submit RequesL Answer

Answers

The rms speed of a molecule in Mars's atmosphere is calculated to be 345 m/s.

Mars' atmosphere, which has an average temperature of -63 °C, is almost entirely made up of carbon dioxide.

We are aware that a molecule's rms speed is represented by,

Vrms = √(3RT/M)

Where, R = 8.315 J/mol. K

T = temperature = -63 °C = 210 K

M=molar mass (in kg/mol)

Here, Carbon dioxide is present, so M = 44× 10⁻³ kg/mol

After putting the supplied values into the equation above, we obtain,

Vrms =  √(3 × 8.315 × 210)/(44× 10⁻³) = 345 m/s

Hence, the required rms speed of a molecule in Mars's atmosphere is 345 m/s.

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Can you Help please!!

Answers

Answer:

If the lamps are in parallel then 6.0 V is the voltage accross each lamp:

R = V / I     Ohm's Law

R1 = 6 V / .1 A = 60 ohms

R2 = 6 V / .2 A = 30 ohms

1 / R = 1 / R1 + 1 / R2       resistance of parallel resistors

R = R1 R2 / (R1 + R2) = 30 * 60 / (30 + 60) = 1800 / 90 = 20 ohms

A capacitor consists of two 7.0-cm-diameter circular plates separated by 1.0 mm. The plates are charged to 160 V , then the battery is removed.

1) How much energy is stored in the capacitor?

2) How much work must be done to pull the plates apart to where the distance between them is 2.0 mm?

Answers

a) The energy is stored in the capacitor is 2.40825x10⁻⁷J

b) The required work must be done to pull the plates apart to a distance of 2.0 mm is 2.41 x 10⁻⁷J.

What is the principle of a capacitor?

When an earthed conductor is brought close to a conductor, its capacitance increases noticeably. This is how a capacitor operates. A capacitor therefore consists of two plates with equal and opposite charges that are spaced apart.

(a) d = diameter = 6.4cm = 0.064m

A = Area of each plate of the capacitor = (0.25) \πd² = (0.25) (3.14)(0.064)² = 0.00322 m²

d = the plates being separated = 1 mm = 1 x 10⁻³ m

The capacitor's capacitance is given as

C = ε₀ A/d

C = (8.85 x 10⁻¹²)(0.00322)/(1 x 10⁻³)

C = 2.85 x 10⁻¹¹ F

V  = potential difference = 130 Volts

The capacitor's energy is described as

U = (0.5) CV²

U = (0.5) (2.85 x 10⁻¹¹)(130)²

U = 2.40825 x 10⁻⁷J

b) Q = C V

Q = (2.85 x 10⁻¹¹)(130)

Q = 3.705 x 10⁻⁹ C

d' = new distance = 2 mm = 0.002 m

The capacitor's new capacitance is given as

C' = ε₀A/d'

C' = (8.85 x 10⁻¹²)(0.00322)/(2 x 10⁻³)

C' = 1.42485 x 10⁻¹¹ F

The new capacitor's energy storage capacity is given as

U' = (0.5) Q₂/C'

U' = (0.5) (3.705 x 10⁻⁹)²/(1.42485 x 10⁻¹¹)

U' = 4.82x 10⁻⁷J

The energy stored in the capacitor before and after the plates are pulled apart produces the same amount of work.

W = U' - U

W = (4.82 x 10⁻⁷) - (2.40825 x 10⁻⁷)

W' = 2.41 x 10⁻⁷J.

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a small motor runs a lift that raises a load of bricks weighing 916 n to a height of 12.2 m in 24.2 s .assuming that the bricks are lifted with constant speed, what is the minimum power the motor must produce?

Answers

It is referred to as moving at a constant speed when an object's speed remains constant and neither increases nor decreases.

An endless motion is what?

A number that remains constant during motion is known as a constant of motion in mechanics, because it effectively places restrictions on motion. However, it is a mathematical limitation rather than a physical one, resulting naturally from the equations of motion (which would require extra constraint forces).

How quickly does night fall?

Darkness moves at the same rate as light. More correctly, darkness is simply the absence of light and not a separate physical entity that exists on its own. whenever you partially or completely obstruct the light, such as by cupping your hands,

      W=F×d          

      P=W/t

      W= 816 N × 13.2 m=10771.2

      P= 10771.2 J /  28.2 s

      P=381.96 watts

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what are the magnitude and direction of the electric field e at location if there is a negative point charge of at location. include units

Answers

If there is a negative point charge of -q at location (r), the magnitude of the electric field at that location would be: E = k * |-q| / r^2 and the direction would be away from the point charge.

What is magnitude ?

 Magnitude is "distance or quantity." In a kinematic sense, it displays the absolute or relative direction or magnitude of movement of an object.  Size is related to both quantity and distance.

The magnitude of the electric field (E) at a point in space due to a negative point charge (q) is given by Coulomb's Law: E = k * q / r^2, where k is the Coulomb constant (approximately 8.99 x 10^9 N * m^2/C^2) and r is the distance from the point charge to the location where the electric field is being calculated. The direction of the electric field is away from the point charge.

So, if there is a negative point charge of -q at location (r), the magnitude of the electric field at that location would be: E = k * -q / r^2 and the direction would be away from the point charge.

The units of Electric field E is N/C (Newton per Coulomb) and the units of distance r is meters.

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A student is given a sample of gas that is at room temperature and is sealed in a container by a movable piston. Which of the following adjustments would allow the student to increase the pressure of the gas? SELECT TWO ANSWERS O Put the container in a tank of hot water and hold the piston in place. O Put the container in a tank of room temperature water and pull the piston outward. O Put the container in a tank of cold water and hold the piston in place. O Put the container in a tank of room temperature water and push the piston inward.

Answers

The adjustments that would allow the student to increase the pressure of the gas are putting the container in a tank of room-temperature water and pushing the piston inward and putting the container in a tank of hot water and hold the piston in place.

As the gas is sealed in a container by a movable piston, the pressure of the gas can be increased by decreasing the volume of the container. This can be done by pushing the piston inward, which will decrease the volume of the container and thus increase the pressure of the gas.

Putting the container in a tank of hot water will increase the temperature of the gas and thus increase the pressure according to Gay-Lussac's law, which states that the pressure of a gas is directly proportional to its temperature.

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a gymnast is performing a floor routine. in a tumbling run she spins through the air, increasing her angular velocity from 3.00 to 5.00 rev/s while rotating through one-half of a revolution. how much time does this maneuver take?

Answers

The time this maneuver takes 1/10 seconds for the gymnast to complete this maneuver.

What is maneuver?

Maneuver is a military term used to describe a movement or series of movements that are employed to gain an advantage or tactical advantage over an opponent. It is often used to describe a series of tactical moves that are used in a battle or war. Maneuvering can involve a number of different strategies, including outflanking, encirclement, diversionary tactics, and other forms of strategic movement. Maneuvering can also include tactical decisions such as selecting a site or location for a battle to take place or selecting a group of troops to attack or defend a particular area.

The time this maneuver takes can be determined using the equation:

Time = (Angular Displacement) / (Angular Velocity)  

In this case, the angular displacement is one-half of a revolution, or π radians. The angular velocity is 5.00 rev/s, which is equivalent to 5.00 x 2π = 10π rad/s.

Time = (π) / (10π)

Time = 1/10 seconds

Therefore, it takes 1/10 seconds for the gymnast to complete this maneuver.

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