an aluminum wire having a cross-sectional area equal to 6.00 10-6 m2 carries a current of 6.50 a. the density of aluminum is 2.70 g/cm3. assume each aluminum atom supplies one conduction electron per atom. find the drift speed of the electrons in the wire.

Answers

Answer 1

The drift speed of the electrons in the aluminum wire is 9.32 x 10¹⁹ meters per second.

The drift speed of electrons in a wire can be calculated using the equation:

drift speed = current / (charge density x cross-sectional area)

where charge density is the number of charges per unit volume and is given by:

charge density = current / (number of electrons per atom x drift speed x cross-sectional area)

Since each aluminum atom supplies one conduction electron per atom, the number of electrons per atom is equal to Avogadro's number (NA) and can be calculated as follows:

number of electrons per atom = NA = 6.022 x 10²³ atoms/mol

The number of moles of aluminum in the wire can be calculated using the density and the cross-sectional area:

number of moles = mass / (density x molar mass)

where mass = volume x density and volume = cross-sectional area x length

mass = cross-sectional area x length x density

number of moles = cross-sectional area x length x density / (density x molar mass)

= cross-sectional area x length / molar mass

Finally, the charge density can be calculated:

charge density = current / (number of electrons per atom x drift speed x cross-sectional area)

= current / (NA x drift speed x cross-sectional area)

Substituting this into the equation for drift speed:

drift speed = current / (charge density x cross-sectional area)

= current / (current / (NA x drift speed x cross-sectional area) x cross-sectional area)

= NA x drift speed / current

So, we have a simple equation:

drift speed = NA / current = 6.022 x 10²³ atoms/mol / 6.50 A

drift speed = 9.32 x 10¹⁹ m/s

So, the drift speed of the electrons in the aluminum wire is 9.32 x 10¹⁹ meters per second.

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Related Questions

What is the momentum of a 0.01 kg toy car moving at 5.0 m/s?

500 kgm/s
50 kgm/s
0.5 kgm/s
O
0.05 kgm/s

Answers

Answer:

0.05 kgm/s

Explanation:

A 5 kg object traveling 40 m/s strikes a stationary 4 kg object in an inelastic collision. After the collision, the two objects come to a stop in 55 m. What was the coefficient of kinetic friction between the blocks and surface?

Answers

AnswerAnswerAnswer:.

Explanation:

.

a distant star is moving away from the earth at 1/3 of the speed of light. standing on the star, the light will travel towards the earth at the speed of light. how fast will light be moving as measured on the earth?

Answers

Whenever a distant star is traveling away from the planet at a pace of 1/3 the speed of light, then speed of light will be moving as it is observed on Earth. The light will reach globe at the faster than light if it were on a star.

Does light imply it isn't heavy?

Something that is light as an adjective is not heavy, onerous, or depressing. A discussion subject or a musical piece may both be light, just like a backpack. For instance, The weight is small, but the path is lengthy.

Who made light possible?

Using a bank of battery and two charcoal rods, Humphry Davy showed the first blazing light to the National Institute in Great Britain. Arc lamps were used in the first electric streetlights in several places.

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According to Ohm's law, determine the experimental
current for these values in Table A.
voltage = 5 V, resistance = 20 Q: f
voltage = 20 V, resistance = 20 N:
A
voltage = 50 V, resistance = 20 Q:
A
x A
A

Answers

Explanation:

using Ohm's law which is defined as V=IR

where V is the voltage, I is the current and R the resistance

According to Ohm's law, determine the experimentalcurrent for these values in Table A.voltage = 5 V,

Discuss the relationship between electric and magnetic fields.

Answers

Answer:

Found this on google, "Together, magnetic fields and electric current make waves called electromagnetic radiation. ... When an electric current weakens it generates a magnetic field. As the magnetic field weakens it generates an electric field. Visible light, radio waves and X-rays are examples of electromagnetic radiation."

Answer:

Electricity and magnetism are two related phenomena produced by the electromagnetic force. Together, they form electromagnetism. A moving electric charge generates a magnetic field. A magnetic field induces electric charge movement, producing an electric current

Explanation:

This armed
rover weighs 1900 N
and has a mass of
340 kg. What is the
acceleration due to gravity
on its current planet?
Please help

Answers

Answer:

5.59 m/s2

Explanation:

F = 1900 N

m = 340 kg

F = ma

Therefore, a = 1900/340 = 5.59

a cylinder weighs 29.2 grams what is its density? and will it float in water?

Answers

In order to determine the density of a cylinder, we need to know its mass and volume. The mass of the cylinder is given as 29.2 grams, but the volume is not provided. Without the volume, it is impossible to calculate the density of the cylinder.

As for whether or not the cylinder will float in water, that also depends on its density. If the density of the cylinder is less than the density of water (1), then it will float. However, without knowing the density of the cylinder, it is impossible to determine whether or not it will float in water.

What does the mass defect represent?
A. The mass lost when an alpha particle is emitted from a nucleus
B. The uncertainty in nuclear mass resulting from quark
rearrangement
C. The amount of mass used up in holding a nucleus together
D. The difference between actual mass of the nucleus and average
isotope mass

Answers

Answer:

c

Explanation:

The amount of mass used up in holding a nucleus together the mass defect represent.

Thus, The term "mass defect" refers to the discrepancy between the actual atomic mass and the expected mass obtained by multiplying the mass of the protons and neutrons in the nucleus by a constant factor.

The anticipated mass obtained by combining the masses of the nucleons is less than the actual atomic mass. The binding energy that is produced when a nucleus forms accounts for this extra mass.

The mass defect is a result of some of the mass being converted to energy during the formation of a nucleus. The real mass of an atomic nucleus is therefore less than the mass of the constituent particles.

Thus,  The amount of mass used up in holding a nucleus together the mass defect represent.

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Explain why this statement is incorrect: “If I find something on the Internet, that means it is for public use, and I can do anything I want with it.” I give braininess

Answers

Answer:

A personal idea is an idea or concept that is unique to the individual who created it. Reference credit must be given when the idea is used by any person who did not create the concept.

Explanation:

I took the assignment already.

A personal concept is a concept or idea this is unique to the man or woman who created it. Reference credit scores have to receive when the idea is utilized by any individual who did not create the idea.

What is the internet?

The net is a big network that connects computers all over the world. through the net, people can percentage information and talk from anywhere with a web connection.

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Shunt generator will build up its voltage when .
o Its field resistance higher than critical value .
o Its field resistance is less than critical value
ارسال الاجابة ترك السؤال

A dc motor has a linear mechanical :characteristics when
o Series connected
o Shunt connected
o Compound connected
ارسال الاجابة ترك السؤال The

terminal voltage of dc generator decrease by
armature reaction effect .
and armature resistance voltage drop

o True
o False

ارسال الاجابة ترك السؤال

Answers

The statement that the terminal voltage of a DC generator decreases due to armature reaction effect and armature resistance voltage drop is true.

A shunt generator will build up its voltage when its field resistance is less than the critical value. When the field resistance is lower, it allows more field current to flow, resulting in a stronger magnetic field and increased generator voltage output.

A DC motor has a linear mechanical characteristic when it is shunt connected. In a shunt connection, the field winding is connected in parallel with the armature winding. This configuration allows for independent control of the field current, resulting in a more stable and linear mechanical response of the motor to varying loads.

The terminal voltage of a DC generator decreases due to the combined effects of armature reaction and armature resistance voltage drop. Armature reaction refers to the distortion of the magnetic field caused by the current flowing through the armature windings, which leads to a reduction in the generated voltage. Additionally, the resistance of the armature windings causes a voltage drop, further decreasing the terminal voltage of the generator.

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Why is it important to assess flexibility both before and during a workout regimen? a. to assess flexibility progress b. to keep muscles warm c. to establish flexibility baselines d. none of the above please select the best answer from the choices provided. a b c d

Answers

It important to assess flexibility both before and during a workout regimen because to assess flexibility progress.

What is a flexibility exercise?

Flexibility exercises, as the name implies, help to increase the stretch of the muscles, improving the range of motion. More flexibility is also important to help prevent possible post-workout soreness.

In this case we have that the reason to continue doing stretching before and during the exercises is about  to assess flexibility progress.

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Answer:

A

Explanation:

when two waves with equal and opposite amplitude interfere what will the resulting amplitude measure

Answers

When two waves with equal and opposite amplitudes interfere, the resulting amplitude will be zero.

This is because the waves will cancel each other out completely when they combine, leading to no net displacement at any point. This phenomenon is known as destructive interference and can occur when two waves have the same frequency and are in phase opposition, meaning that they have opposite phases at any given point in time. The resulting amplitude of the combined waves can be determined by using the principle of superposition, which states that the displacement of a medium at any point is the sum of the individual displacements of all waves present at that point.

To explain this, consider two waves with the same frequency and wavelength, but with equal and opposite amplitudes. When these waves overlap, the crest of one wave aligns with the trough of the other wave. The positive amplitude of the crest cancels out the negative amplitude of the trough, resulting in a net amplitude of zero. This destructive interference leads to the cancellation of the two waves, and no observable wave remains in their place.

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Free fall is a form of accelerated motion. what does this mean for a falling object?

Answers

Free fall is a type of accelerated motion, which means that a falling object experiences a continuously increasing velocity. In free fall, the object is subject only to the force of gravity, resulting in a constant acceleration downward.

When an object is in free fall, it is not subject to any forces other than gravity. The force of gravity causes the object to accelerate downward at a constant rate. This acceleration is approximately 9.8 m/s^2 on Earth and is represented by the symbol 'g'.

As the object falls, its velocity increases at a steady rate. This means that for each unit of time that passes, the object's speed increases by the same amount. For example, in the first second of free fall, the velocity of the object increases by 9.8 m/s. In the second second, it increases by an additional 9.8 m/s, and so on.

The concept of free fall is fundamental to understanding the motion of objects under the influence of gravity. It allows us to calculate the position, velocity, and acceleration of falling objects and is crucial in fields such as physics, engineering, and astronomy.

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Convection is the transfer of heat energy by:

A Molecular contact
B Electromagnetic waves
C Density Differences
D Movement through a vacuum

Answers

the answer is a molecular contact I am pretty sure

A solid right circular cylinder of a substance has a radius 10.0 cm and a height 12.0 cm. the mass of the cylinder is 4.00 kg. what is the density of the substance?

Answers

The density of solid right circular cylinder will be \(1.06\) x \(10^{-2}\) \(kg/ m^{3}\).

Radius r = 10 cm = 10 x \(10^{-2} m\)

Height h = 12 CM = 12 x \(10^{-2} m\)

Volume = π \(r^{2} h\)

mass m = 4 Kg

Density ρ = m/v = m/ π \(r^{2} h\)

= \(\frac{4}{3.14 . (10 x 10^{-2} ) (12 x 10^{-2} ) }\)  = \(1061 kg /m^{3}\)

Density = \(1.06\) x \(10^{-2}\) \(kg/ m^{3}\).

Thus density of  a solid right circular cylinder of a substance has a radius 10.0 cm and a height 12.0 cm. the mass of the cylinder is 4.00 kg is  \(1.06\) x \(10^{-2}\) \(kg/ m^{3}\).

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Calculate the acceleration of a turtle going from 0.3 m/s to 0.7 m/s in 30 seconds.

Answers

Acceleration = velocity/ time
Acceleration = 0.7-0.3 /30= 0.01 m/s^2
Notice that velocity is calculated the final speed minus the initial !

How does a sound wave transfer energy to your ears ?

Answers

Answer:

A. Particles in air move in circles as the wave moves forward.

B. Particles in air move forward but not backward as the wave moves

forward.

C. Particles in air move up and down as the wave moves forward.

✔ D. Particles in air move forward and backward as the wave moves

forward.

Explanation:

The waves transfer energy from the source of the sound, e.g. a drum, to its surroundings. Your ear detects sound waves when vibrating air particles cause your ear drum to vibrate. The bigger the vibrations the louder the sound.

Answer:

Sound waves travel at 342 m/s through the air and faster through liquids and solids. The waves transfer energy from the source of the sound, e.g. a drum, to its surroundings. your ear detects sound waves when vibrating air particles cause your eardrum to vibrate. The bigger vibrations the louder the sound.

Explanation:

A car travels in 300 km in 3 hours. What can be determined?

Answers

Answer: If a car travels 300 km in 3 hours, then it’s speed will will be 100 km/hr. But in practical it depends upon type of car, condition of car, car's maximum speed and also the path in which car is travelling.. Because car can't travel in constant speed of 100 km/hr. So, if car have 120 km/hr as maximum speed than it's minimum speed will be 85–95 km/hr. And so the car travel 300 km in around 5 or 5 and half hours.

which use of a hose stream would protect firefighters and property from heat caused by the fire? quizlt

Answers

The use of a hose stream in firefighting can protect firefighters and property from heat caused by the fire by providing a cooling effect and reducing the temperature of the surrounding area.

When firefighters use a hose stream, the water from the hose absorbs the heat from the fire and evaporates, which helps to cool down the immediate environment. This reduces the radiant heat that can cause burns and helps protect firefighters as they approach the fire.

Additionally, the water from the hose can also suppress the fire, preventing it from spreading and causing further damage to the property. Overall, the use of a hose stream is an effective method for protecting both firefighters and property from the heat of a fire.

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Please help!!
An archer uses an average force of 50.0 N to draw the
string of his bow through a distance of 0.412 m. Then,
he fires a 297 g arrow straight up into the air.
What is the maximum speed of the arrow at the instant it leaves the bow?
And
What is the maximum height reached by the arrow in its flight into the air?

Answers

Explaination

the maximum hight is reached by the arrow is 4.40m

HOPE IT HELPS YOU #ITZADMIRER

From Newton's second law and third equation of motion, the maximum speed of the arrow at the instant it leaves the bow is 11.8 m/s and the maximum height reached by the arrow in its flight into the air is 7.08 m

MOMENTUM

According to Newton's second law: The rate of change in momentum is directly proportional to the force applied. That is,

F = ma

Given that an archer uses an average force of 50.0 N to draw the string of his bow through a distance of 0.412 m. Then, he fires a 297 g arrow straight up into the air.

The parameters given are;

Force F = 50 NDistance S = 0.412 mMass M = 297g = 0.297

The maximum speed of the arrow at the instant it leaves the bow can be calculated by first calculating the acceleration.

F = ma

Substitute all the necessary parameters

50 = 0.297a

a = 50 / 0.297

a = 168.4 m/\(s^{2}\)

by using third equation of motion

\(V^{2}\) = \(U^{2}\) + 2as

Since it is starting from rest, U = 0

\(V^{2}\) = 2 x 168.4 x 0.412

\(V^{2}\) = 138.72

V = \(\sqrt{138.72}\)

V = 11.8 m/s

The maximum height reached by the arrow in its flight into the air will be calculated by the same formula where acceleration a = g

\(V^{2}\) = \(U^{2}\) - 2gH

At maximum height, final velocity V = 0

0 = \(11.8^{2}\) - 2 x 9.8 H

138.7 = 19.6H

H = 138.7 / 19.6

H = 7.08 m

Therefore, the maximum speed of the arrow at the instant it leaves the bow is 11.8 m/s and the maximum height reached by the arrow in its flight into the air is 7.08 m

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A 2.99 x 10-6 C charge is moving in a
direction 10.0° from the Earth's
magnetic field (5.00 x 10-5 T). If the
force on it is 2.14 x 10-8 N, how fast is
it moving?
[?] m/s

No links please

Answers

another answer for acellus is 143 m/s it worked for me

The speed of the charge is approximately 2.857 m/s.

To find the speed of the charge, we can use the formula for the magnetic force on a charged particle moving through a magnetic field:

Force (F) = q * v * B * sin(θ)

Where:

F is the force on the charge (given as 2.14 x \(10^-8\)  N),

q is the charge of the particle (given as 2.99  x \(10^-6\)C),

v is the speed of the charge (what we want to find),

B is the magnitude of the magnetic field (given as 5.00 x \(10^-5\) T),

θ is the angle between the direction of motion and the magnetic field (given as 10.0°).

First, we need to convert the angle from degrees to radians:

θ (in radians) = 10.0° * (π / 180°) ≈ 0.174532925 radians

Now, we can rearrange the formula to solve for the speed (v):

v = F / (q * B * sin(θ))

Substitute the given values into the equation:

v = 2.14 x \(10^-8\) N / (2.99 x \(10^-6\) C * 5.00  x \(10^-5\)  T * sin(0.174532925))

v ≈ 2.857143 m/s

Therefore, the speed of the charge is approximately 2.857 m/s.

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Suggest why when wire is wounded into a coil to form an electromagnet, the wire is insulated with a layer of plastic or paint around the outside ​

Answers

The wire is insulated with a layer of plastic or paint around the outside when wound into a coil to form an electromagnet to prevent the wire from shorting out against itself or other conductive materials.

Why are such wire insulated with a layer of plastic or paint outside?

When an electric current flows through a wire, it generates a magnetic field around the wire. By coiling the wire, the magnetic field is strengthened, creating a more powerful electromagnet.

However, if the wire is not insulated, the coils can touch each other, creating a short circuit that can damage the wire or the power source. Insulating the wire with a layer of plastic or paint prevents this from happening by creating a barrier between the wire and other conductive materials.

This allows the electric current to flow through the wire and generate the magnetic field, while also protecting the wire and ensuring that the electromagnet works properly.

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How much momentum does a stationary 5500 kg mass have?

Answers

Answer:0

Explanation:

All stationary objects have no momentum they do not have any motion to have momentum you need mass and motion

What is the affect of landing rollout performance if approach speed is 10% higher (i.e., 110 KIAS versus 100 KIAS). Assume braking action is the same.
a. Landing distance is 10% greater
b. Landing distance is 21 % greater
c. Landing distance is 5% greater
d. Landing distance is the same

Answers

When the approach speed is increased by 10% (110 KIAS versus 100 KIAS), the effect on landing rollout performance can be assessed. The exact impact depends on various factors.

When the approach speed is higher, the aircraft carries more kinetic energy during landing. This increased energy needs to be dissipated to bring the aircraft to a stop, resulting in a longer landing distance.

The additional energy is transferred into the braking system, which works to slow down the aircraft. However, the braking effectiveness remains constant as specified in the question. Therefore, the higher approach speed requires a longer rollout distance to safely decelerate the aircraft to a stop.

Although the exact increase in landing distance can vary depending on factors such as aircraft design and runway conditions, a reasonable estimate is a 5% increase in landing distance when the approach speed is 10% higher.

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What concept of arcology in the lesson appealed to you the most? How would you incorporate an arcology concept into your community design?​

Answers

Arcology is the fusion of architecture with ecology, a comprehensive urban perspective. In nature, as organisms evolve, they increase in complexity and become a more compact system. A city should similarly evolve, functioning as a living system.

What is arcology ?

Arcology's major goal is to stop urban sprawl, which can be accomplished by building self-sufficient, remote settlements and structures that are (ideally, gigantic).

While it is theoretically conceivable to construct an arcology, at least structurally, it would take creative engineering to ensure the essential energy generation, food production, and waste reclamation systems are sustainable.

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Answer:

The concept of arcology that appealed to me the most is the fusion of architecture with ecology. If I were to incorporate an arcology concept into my community design, I would focus on creating a pedestrian environment where pedestrians move efficiently and freely.

Explanation:

what statement on convection is wrong? select an answer and submit. for keyboard navigation, use the up/down arrow keys to select an answer. a cooler, denser, heavier air sinks downward. b ascending warm air expands, cooling until it becomes denser than surrounding air and sinks back to the ground. c cooler air, now in contact with the ground, is warmer and rises, having been displayed by cooler, dense air. d warm air usually goes down and cooler air goes up.

Answers

The statement that is wrong is option d: "warm air usually goes down and cooler air goes up.

What is Convection?

Convection is the process of heat transfer that occurs in fluids such as gases and liquids. This process involves the transfer of heat by the movement of fluids from one place to another.

In this process, hot air rises while cooler air sinks. This movement of air is due to the differences in air density caused by temperature changes. A cooler, denser, heavier air sinks downward because it is denser than the surrounding air. As it sinks, it displaces the warmer air, which rises to the top.

This movement of air creates convection currents that transfer heat from one place to another. Ascending warm air expands, cooling until it becomes denser than the surrounding air and sinks back to the ground.

Therefore, statement (d) is incorrect.

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course: Electricity and magnetism
6.1B A current of 10 amp flows through a wire of 1 mm² cross section. If the density of charge carriers in the wire is 1027/m³, find the average drift velocity of the electrons.

Answers

The average drift velocity of the electrons is  is approximately 6.25 x 10^6 m/s.

To find find the average drift velocity of the electrons, we have to make use of the drift velocity formula. The drift velocity formula is used to relate the average drift velocity of charge carriers in a conductor to the applied electric field. It is used to understand the motion of electrons when an electric current is flowing.

The drift velocity formula is:

\(I = nAvq\)

Where:

I is the current (in Amperes),

n is the density of charge carriers,

A is the cross-sectional area of the wire,

v is the average drift velocity of electrons,

q is the charge of an electron.

In this case, we have been given current as 10A, cross-sectional area of the wire is 1mm². The density of charge carriers in the wire is 1027/m³. So, by substituting all the given identities in the equation and rearranging the equation to find out "v", we get:

\(v = I / (nAq)\)

\(v = (10 A) / ((10^{27} /m^{3} ) * (1 * 10^{-6} m^{2}) * (1.6 * 10^{-19} C))\)

\(v = (10 A) / (1.6 * 10^{-12} A * m^{2} * C * 10^{27} /m^{3} )\)

\(v = 6.25 * 10^{6} m/s\)

Therefore, the average drift velocity of electrons in the wire is approximately 6.25 x 10^6 m/s.

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Answer:

Average drift velocity of the electrons is Approx. 6.25*10^6 m/s.

Given, Current= 10A

Cross sectional area = 1mm^2

Density of charge= 1027/m^3

Formula to find velocity= I/(nAq)

= 10/(1027*1*10^-6*1.6*10^-19)

=6.25*10^6m/s

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milligram is larger than a centigram.

Answers

Answer:

These measurement units are part of the metric system. Unlike the U.S. customary system of measurement, the metric system is based on 10s. For example, a liter is 10 times larger than a deciliter, and a centigram is 10 times larger than a milligram.

Answer: Unlike the U.S. customary system of measurement, the metric system is based on s. For example, a liter is times larger than a deciliter, and a centigram is times larger than a milligram

scientific notation expresses a value as the product of a number between 1 and 10 and_____

Answers

Answer:

and the power to which the number should be raised:

1.50E2 = 1500

4.167E4 = 41,760

4.167E-4 = .0004176

Mass of the earth = 5.98 * 10^24 kg = 5.98E24 kg

Some examples of scientific notation

Answer:

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I'm B.T.S Army

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Use the motion map to answer the question, describe the position and velocity of the object based moo the motion map?

Answers

Do you have an image?


answer:
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