find the energy in electron volts for a particle with this wavelength if the particle is an electron.

Answers

Answer 1

A) The energy in electron volts for a particle with this wavelength if the particle is a photon is; .E = 4969.5 eV or 4.9695 Kev

B) B) If a particle with this wavelength is an electron, its energy in electron volts is E = 23.58 eV.

C) E = 0.003306 eV

How to Find the energy in electron volts for a particle with this wavelength if the particle is a photon.?

A) The formula for the energy here is;

E = hc/λ

where;

h is Planck's constant

= 6.626 × 10⁻³⁴ J.s

c is speed of light

= 3 × 10⁸ m/s

wavelength is equal to 0.25 nm (0.25 x 109 m).

Thus;

E = (6.626 × 10⁻³⁴ × 3 × 10⁸)/(0.25 x 10⁻⁹)

79.512 × 10⁻¹⁷ J

converting to eV gives;

E = (79.512 × 10⁻¹⁷)/(1.6 × 10⁻¹⁹)

E = 4969.5 eV or 4.9695 keV

B) Formula for the energy if the particle is an electron is;

E = h²/(2mλ²)

where m = 9.31 × 10⁻³¹ kg

E = (6.626 × 10⁻³⁴)²/(2 × 9.31 × 10⁻³¹ × (0.25 x 10⁻⁹)²)

E = 37.726 × 10⁻¹⁹ J

Converting to eV gives;

E = (37.726 × 10⁻¹⁹)/(1.6 × 10⁻¹⁹)

E = 23.58 eV

C) Mass of alpha particle is; m = 6.64 × 10⁻²⁷ kg

E = h²/(2mλ²)

where m = 6.64 × 10⁻²⁷ kg

E = (6.626 × 10⁻³⁴)²/(2 × 6.64 × 10⁻²⁷ × (0.25 x 10⁻⁹)²)

E = 52.896 × 10⁻²³ J

Converting to eV gives;

E = (52.896 × 10⁻²³)/(1.6 × 10⁻¹⁹)

E = 0.003306 eV

The complete question is : For crystal diffraction experiments, wavelengths on the order of 0.25 nm are often appropriate.

A) Find the energy in electron volts for a particle with this wavelength if the particle is a photon.

B) Find the energy in electron volts for a particle with this wavelength if the particle is an electron.

C) Find the energy in electron volts for a particle with this wavelength if the particle is an alpha particle (m=6.64×10−27kg).

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Related Questions

Suppose a paper rocket has a mass of .023 kg. The rocket travels at a velocity of 6.6 m/s and then hits the ground sliding to a stop. If the rocket travels 15 m in coming to a rest what is the work done by friction?

Answers

Answer:

.5 J

Explanation:

KInetic Energy of the rocket  = 1/2 mv^2   = 1/2 .023 * 6.6 = .5 J

the work of friction has to equal this   .5 J

During a protostar's T Tauri phase, it
a. begins a period of reduced activity.
b. expands dramatically.
c. may develop very strong winds.
d. changes its spin direction.
e. lies on the main sequence.
c

Answers

During a protostar's T Tauri phase it may develop strong winds.

Adolescence typically consists of four stages for a rising star. First, it starts as a protostar still shrouded in its natal molecular cloud. A very young star still gaining mass from its parent molecular cloud is known as a protostar.

The proto-stellar phase is the earliest stage of stellar evolution. As it accretes new material and a protoplanetary disc forms. The third stage, when the surrounding envelope has cleared, is called the T-Tauri phase. This is due to the gradual removal of the surrounding shell of gas and dust by stellar winds and radiation. T-Tauri stars are relatively young, less than ten million years old (the class is named after the first star of this type to be identified).

The correct option is c.

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A laser with wavelength d/8 is shining light on a double slit with slit separation 0.400mm . This results in an interference pattern on a screen a distance L away from the slits. We wish to shine a second laser, with a different wavelength, through the same slits.
Part A: What is the wavelength ?2 of the second laser that would place its second maximum at the same location as the fourth minimum of the first laser, if d = 0.400mm ? Express your answer in millimeters.

Answers

The wavelength of the second laser is 0.170mm.

What is wavelength?
The distance over which a periodic wave's shape repeats is known as the wavelength in physics. It is a property of both travelling waves as well as standing waves in addition to other spatial wave patterns. It is the distance between two consecutive intersection point of the same phase just on wave, such as two adjoining crests, troughs, as well as zero crossings. The spatial frequency is the reciprocal of wavelength. The Greek letter lambda () is frequently used to represent wavelength. The term wavelength also is occasionally used to refer to modulated waves, their sinusoidal envelopes, or waves created by the interference of multiple sinusoids.

The distance between the successive maxima and minima of the interference pattern is given by the equation
d/λ = L sin θ

where θ is the angle between the slits and the screen. Since the second laser must produce a maximum at the same location as the fourth minimum of the first laser, the angle θ is equal to 4 times the angle between the first laser and the screen. Thus, the wavelength of the second laser is given by the equation

λ2 = (d/L) sin(4θ)
Substituting in the given values, we have
λ2 = (0.400mm/L) sin(4θ)
where θ is the angle between the first laser and the screen. The value of θ can be found using the equation
d/λ1 = L sin θ|
where λ1 is the wavelength of the first laser. Substituting in the given values, we have
θ = sin-1(d/λ1L)
Substituting this into the equation for λ2, we get
λ2 = (0.400mm/L) sin(4sin-1(d/λ1L))
Therefore, the wavelength of the second laser is given by
λ2 = (0.400mm/L) sin(4sin-1(d/0.400mm/8))
= 0.400mm sin(4sin-1(1/8))
= 0.400mm x 0.425
= 0.170mm
Therefore, the wavelength of the second laser is 0.170mm.

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Wind resistance created by opening windows while driving results in a fuel penalty as great or greater than is incurred by using air conditioning.
(A) as great or greater than is incurred by using air conditioning
(B) that is as great or greater than is incurred using air conditioning
(C) as great as or greater than that of using air conditioning
(D) at least as great as air conditioning's
(E) at least as great as that incurred by using air conditioning

Answers

As much redundancy as possible. A,B,C->out. D=inaccurate comparison A fuel penalty "as big as" that caused by using air conditioning is encountered when windows are opened while driving.

How much does the car resist?

The set of forces that act to prevent your vehicle from moving forward is known as rolling resistance. The degree of friction between the tires and the road, gravity, inertia, air drag, and the weight of the vehicle are all factors.

How much overall driving resistance is there?

Total resistance refers to the entire amount of force preventing a vehicle from moving, including frictional forces inside the drivetrain.

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While marching, a drum major tosses a baton into the air and catches it. The height h (in feet) of the baton after t seconds can be modeled by h =—16t2+32t+6. How long is the baton in the air?

Answers

A drum major tosses a baton into the air and catches it and how long is the baton in the air is 22 feet

The heightis h of  a baton function of time is  t

h=−16t²+32t+6

dh/dt=d/dt(−16t²+32t+6)

=−32t+32

d²h/dt²=−32<0

For maximum height h, we have

dh/dt=0

−32t+32=0

t=1

Setting t=1 in the function of height, the maximum height of baton will be obtained at time t=1 sec

h(1)=−16(1)2+32(1)+6

=22 feet

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If the sun mysteriously gets twice as massive as it is right now, what effect will it have on its pull on mars?.

Answers

This can be determined by using Newton's law of gravitation. As the gravitational force between Mars and sun can be matched snd hence the sun's effect on Mars can be determined.

How to determine the gravitational force between sun and Mars?

We know, gravitational force is

F=GMmr²

The variables M and m here represent the masses of the Sun and Mars. From this relationship, we can tell that each mass is directly proportional to the force;

F ∝ MF ∝ m

Therefore, any factor that gets multiplied to either mass directly affects the force in the same way. If the sun were twice as massive, then its pull on Mars should thus also twice as much.

This, we are assuming when factors like the mass of Mars and the distance between the Sun and Mars is unchanged.

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listed following are several stars found in the disk and halo of the milky way galaxy. assume that both the blue and yellow disk stars are members of the same open cluster. rank the stars based on the abundance of elements heavier than carbon that you would expect to find in each of the stars, from highest to lowest. if you expect two (or more) stars to have approximately the same abundance, rank them as equal by dragging one on top of the other(s).
a) hot, blue mains sequence star in open cluster in disk.
b) red main sequence star in globular cluster M13
c) yellow main sequence star in open cluster in disk.
d) red giant in globular cluster M13.
I just put (heaviest abundance - lowest abundance) at
c - a - (c and d)

Answers

Highest Abundance: Yellow main-sequence star in open cluster in disk AND hot, blue main-sequence star in disk.

Lowest Abundance: red giant in globular cluster M13 AND red main-sequence star in globular cluster M13.

What is abundance?

Astronomers refer to all chemical elements heavier than hydrogen or helium as metals, including elements such as carbon and oxygen that are not normally considered metals. The metallicity of a star is therefore given as the proportion of these "metallics" in the stellar mass. About 2% for the Sun.

However, this definition cannot fully define the chemical composition of stars. Because you can achieve the same amount of metal in an almost infinite number of ways. For example, a star with a particular metallicity may have all of its metals iron, and another star with the same total metals content may have all of its metals oxygen. In the world, the entire periodic table of elements is present in every star, but the relative abundance of each element varies from star to star.

To quantify the relative abundance of individual elements in a star, astronomers define the "abundance ratio" as the logarithm of the ratio of the star's two metallic elements to the ratio of the Sun.

Therefore,

Highest Abundance: Yellow main-sequence star in open cluster in disk AND hot, blue main-sequence star in disk.

Lowest Abundance: red giant in globular cluster M13 AND red main-sequence star in globular cluster M13.

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Kamal's family is leaving for merry mountain resort once his parents get home from work on friday. Their house is 627 miles from the resort. They plan to stop and spend the night at a hotel after 4 hours of driving, then complete the rest of the trip on the second day. Their average speed is 60 miles per hour. Which equation can you use to find how long, x, they will drive on the second day?.

Answers

The time taken by Kamal's family to drive on the second day is 6.45 hours.

What is speed?

Speed is defined as the ratio of the time it takes for a body to cross a distance to the time it takes.

The time is calculated as:-

For 4 hours of driving at an average speed of 60 miles per hour, the distance covered is,

d = 60 x 4 = 240miles

Miles remaining for the second day is,

627 - 240 = 387 miles

Time taken to cover 387 miles second day is,

T = 387 / 60 = 6.45 hours

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write the y(x,t) equation for a wave travelling in the positive x-direction with a wavelength of 50.0 cm, speed of 4.00 m/s, and amplitude of 5.00 cm. be sure to include units where appropriate.

Answers

The y(x,t) equation of wave travelling in the positive x-direction is y = 0.05 cos ( π (16t - 4x)).

Wavelength of the wave = λ = 50.0 cm = 0.5 m

Speed of the wave = s = 4 m/s

Amplitude of the wave = A = 5 cm = 0.05 m

The y(x,t) equation of the wave is =

= Using sine wave equation

= y = A cos (ωt - kx)

Here, (ωt - kx) means that the wave is travelling in positive x-direction.

Now, ω = 2πf

= 16π rad/s

Thus, Frequency of the wave = f =

= speed / wavelength

= s / λ

= 4 / 0.5

= 8 Hz

Now, value of k  =

= k = 2π/λ

= k = 4π

Substituting these values in the sine wave equation,

= y = A cos (ωt - kx)

= y = 0.05 cos ( 16πt - 4πx)

= y = 0.05 cos ( π (16t - 4x))

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a wave with wavelength of 3 m long oscillates 1.5 times each second. what's the speed of the wave? (in m/s)

Answers

A wave of 3 m in length oscillates 1.5 times every second. The wave moves at a pace of 4.5 m/s.

What use does wavelength serve?

The length of such a wave is expressed by its wavelength. The wavelength is the distance between one wave's crest and the following wave's crest. The wavelength can also be determined by measuring from "groove" (bottom) of one pulse to the "trough" of the following wave.

Briefing:

Given:

Number of oscillation per seconds = 1.5

Wavelength; λ = 3m

Speed of the wave; ν = ?

The number of instances of a repeating phenomena per unit of time is what we meant by frequency.

Given that the pulse oscillates 1.5 times per second, its frequency is 1.5 Hz.

Speed = ν*f

ν = 3m * 1.5Hz

ν = 3m * 1.5s⁻¹

ν = 4.5ms⁻¹

ν =4.5 m/s

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n 85-kg jogger is heading due east at a speed of 2.0 m/s. a 55-kg jogger is heading 32° north of east at a speed of 3.0 m/s. find the magnitude and direction of the sum of the momenta of the two joggers.

Answers

The angle's sum of moments has a magnitude and direction of 21.87 degrees north of east.

P1=mvi

P1=85x2.0i

P1=170.0i

P2=m2v2i+m2v2j

p=p1+p2

How would you define magnitude?

Dimension is basically "quantity or volume" in the viewpoint of mechanics. In terms of motion, it shows the absolute or relative size, direction, or movement of an item. It is used to describe something's size or scope. Magnitude in physics often refers to a size or amount.

What scale does magnitude use?

The most typical way to gauge an earthquake's size is by its magnitude. No matter where you are or how violent the shaking is, it is the same number since it represents the size of the earthquake's source.

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a car can just make it around a curve without slipping at 27 m/s when the coefficient of friction is 0.7. find the radius of the curve.

Answers

The radius of curvature of a car to turn without slipping is 106.27 m.

When a car travels around a curve without slipping, it means all forces in balanced. Two forces are working in the car

Centripetal force
[tex]F_c \:=\: m \frac{v^2}{R}[/tex]
The mass of the object = m
v = the velocity of the object = 27 m/s
R = the radius of the curve
Fc = centripetal forceFriction force
f = μN
The normal force is equal to the weight force because the car in the flat curve.
f = μw
f = μmg
g = the acceleration due to gravity = 9.8 m/s²
N = the normal force
w = the weight force
μ = the coefficient of friction = 0.7
f = the friction force

According to Newton's first law

∑F = 0

Fc - f = 0

Fc = f

[tex]m \frac{v^2}{R} = \mu m g[/tex]

v² = μgR

27² = 0.7 × 9.8 × R

729 = 6.86 × R

R = 729 ÷ 6.86

R = 106.27 m

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which objects should be included in the system for an analysis based on energy? select all that apply.

Answers

The energy can be described when we involve The spring and the block.

What is energy?

We know that energy is the ability to do work. From the first law of thermodynamics, the energy that is possessed by a body could be transformed from one form to another. As such, energy can not be created nor destroyed in a system.

The system as described in the question is involved in some kind of energy conversion. In this case, a compressed spring launches a block up an incline. We can see that the spring potential energy of the block is being transformed to the kinetic energy of the block that is in motion as has been designated in the description of the question here.

This is the kinetic energy that launches the block forward as it moves up the ramp.

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Missing parts

A compressed spring launches a block up an incline.

Which objects should be included within the system in order to make an energy analysis as easy as possible?

Check all that apply.

Spring

Ramp

Air

Block

Earth

under normal conditions, when is the only time that an oil film does not keep engine parts separated?

Answers

An oil film does not keep engine parts separated when:

The oil level is too low.The oil is too dirty.The oil is too old.

The Importance of a Good Oil Level in Engines

The proper functioning of engines depends on many factors, but one of the most important is the level of oil. Oil lubricates and protects the internal parts of the engine, keeping them apart.

This helps prevent wear and friction between moving parts, ensuring optimum performance. If the oil level is too low, the engine parts will not be adequately lubricated and separated, which can result in serious problems.

Therefore, it is essential to maintain the oil level at an adequate level. To do this, it is recommended to check the oil level regularly.

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What happens to the gravitation force between two objects that are 15 m apart, when one of them moves 3 m closer? (1 point).

Answers

Answer: The gravitation force between two objects that are 15 m apart, when one of them moves 3 m closer then it increases by a factor of 1 9/16.

Reason:

Mathematically it can be represented as, F = Gm1m2/r2 Where, F is the Gravitational force between two objects measured in Newton (N). G is the Universal Gravitational Constant with a value of 6.674 × 10-11 Nm2kg-2.

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which property of an object will not be changed by moving it from one place on the earth to another?

Answers

By shifting an object from one location on the planet to another, its mass will remain unchanged.

What is an object in a sentence?

To refer to the item or person that is the target of an action, we typically use the word "object." Alternatively, the recipient. In a sentence, a verb's action is transferred to a noun or pronoun as a direct object. It typically responds to the what- or whom-questions regarding the verb.

What is a picture or an object?

Icons, cursors, buttons, sprites, and other complicated artworks can be made from a collection of simple visual pieces called image objects. Without having to sketch a single pixel, Image Objects let you express creativity.

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a satellite is orbiting the earth a distance re above its surface. what is the acceleration due to gravity in this orbit?

Answers

the acceleration due to gravity in this orbit where a satellite is orbiting the earth a distance re above its surface is 2.45 m/s2

What is gravity ?

The force that pulls items toward the centre of a planet or other entity is called gravity. All of the planets are kept in orbit around the sun by gravity

From the given infromation-

Gravitational constant = G

Mass of Earth = M

Radius of Earth = [tex]R_{e}[/tex]

Gravitational acceleration at the surface of Earth = g = 9.8 m/s2

[tex]g = \frac{GM}{R_{e} ^{2} }[/tex]

Altitude at which the satellite orbits Earth = H = [tex]R_{e\\}[/tex]

Orbital radius of the satellite = R

R = [tex]R_{e}[/tex]+ H

R = [tex]R_{e}[/tex]+ [tex]R_{e}[/tex]

R = 2 [tex]R_{e}[/tex]

Acceleration due to gravity in this orbit = [tex]g_{o}[/tex]

[tex]g_{o} = \frac{GM}{R_{e}^{2} }[/tex]

[tex]g_{o} = \frac{GM}{2 ( R_{e}^{2} ) }[/tex]

[tex]g_{o} = \frac{g}{4}[/tex]

[tex]g_{o} = \frac{9.8}{4}[/tex]

[tex]g_{o}[/tex] = 2.45 m/s2

Acceleration due to gravity in this orbit = 2.45 m/s2

Hence the acceleration due to gravity in this orbit where a satellite is orbiting the earth a distance re above its surface is 2.45 m/s2

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why do we say that force is a vector quantity? it has magnitude only because forces can be unbalanced it has direction only it has magnitude and direction because forces can be balanced next

Answers

The fact that force has both a magnitude and a direction makes it a vector quantity.

Explanation

A force has a direction and a magnitude.

Force in Balance and Disproportion A force is a vector quantity since it has both magnitude and direction. The strength of a force can be expressed mathematically as its magnitude. The force's direction is the direction in which it pushes or pulls something. Two forces that are the same in size but acting in opposite directions are not equal. The newton (N), which bears Sir Isaac Newton's name, is the SI unit of force. Due to Earth's gravity, weight is also a form of force; as a result, the SI unit for weight is also a newton.

The fact that force has both a magnitude and a direction makes it a vector quantity.

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humans can produce an output power as great as 20 w/kg during extreme exercise. sloths are not so energetic. at its maximum speed, a 4.0 kg sloth can climb a height of 6.0 m in 2.0 min.

Answers

Specific Power S.P=0.49 W/kg

The power when an amount of energy ΔE is transferred in a time interval Δt is given by:

P= Δt/ΔE.........(1)

​The gravitational potential energy of an object of mass m at height y (assuming [tex]U_g = 0[/tex] at y = 0) is given by:

[tex]U_g[/tex] = mgy.........(2)

​The specific power of a person (or animal, machine, or device) of mass m doing the transformation or the work is given by:

specific power=  mass of agent causing the transformation of transfer /power of a transformation or a transfer

The mass of the sloth is m= 4 kg and it climbs a height of h = 6 m in Δt=20 min 120 s.

Let its initial height be the zero gravitational potential energy level y=0; So its final height is yf = h

So, from equation (2), the change in the sloth's gravitational potential energy is:

ΔE=Uf−Ui =mg(h−0)=mgh

Now, we plug our values for m and h, so we get:

ΔE=(4.0 kg)×(9.8 m/[tex]s^2[/tex])×(6.0 m)

=235 J

Then, we plug our values for ΔE and Δt into equation (1), so we get the output power of the sloth:

P= 120 s/235 J

=1.96 W

Finally, we plug our values for P and m into equation (3), so we get the specific power of the sloth for this climb:

S.P= 4.0 kg/1.96 W

​=0.49 W/kg

∴ S.P=0.49 W/kg

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two blocks are stacked on top of each other on the floor of an elevator as shown. the mass of block 2 (bottom) is 3.0 kg and the mass of block 1 (upper) is 2.0 kg. the elevator is accelerating upwards at a constant rate of 1.6 m/s2.

Answers

The magnitude of force that block 2 exerts on the floor of the elevator is 57 N.

Mass of block 1 = m = 2Kg

Mass of block 2 = M = 3Kg

Acceleration of the elevator = 1.6 m/s

The magnitude of force exerted by block 2 = N =

= Using Newton's second law of motion

= N - w = (m + M) X a

= N - (m + M) X g = (m + M) X a

And we know that total force = m X a

= N = (m + M) X (g + a)

= N = (3+2) X (9.8 + 1.6)

= N = 5 X 11.4

= N = 57 N

Thus, the force exerted by block 2 on the elevator floor is 57 Newtons.

The complete question:

two blocks are stacked on top of each other on the floor of an elevator as shown. the mass of block 2 (bottom) is 3.0 kg and the mass of block 1 (upper) is 2.0 kg. the elevator is accelerating upwards at a constant rate of 1.6 m/s2. What is the force exerted by block 2 on the floor of the elevator?

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A proton and an electron are placed in an electric field. Which undergoes the lesser acceleration?.

Answers

Putting a proton or an electron in an electric field causes the proton to accelerate less.

Describe the electric field.

The electric force on such a charge at a given point in space is equal to that point's electric field times the quantity of charge present there. The electric field is the amount much electric force per charge. Recapitulating, electric charges produce an electric field.

what is An example of an electric field i?

The area of space around like an electrically charged molecule or object that exerts force on the charge body is known as the electric field. Examples include the creation of electric fields by charges and their arrangements, such as in capacitors and battery cells.

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calculate the average kinetic energy of the ch4 molecules in a sample of ch4 gas at 273 k and at 585 k. 273 k webassign will check your answer for the correct number of significant figures. j/mol 585 k webassign will check your answer for the correct number of significant figures. j/mol

Answers

The average kinetic energy of the methane CH₄ molecule at 273K and 585K is  565 x 10⁻²¹ J and 1.21 x 10⁻²⁰ J. respectively.

The average kinetic energy of a gas molecule is given by the formula,

K = 3/2K'T

Where,

K is the average kinetic energy,

K' is the Boltzmann constant,

T is the temperature.

So, putting values, to find the average kinetic energy of CH₄ molecule, first for 272K

K = 3/2 x 1.38 x 10⁻²³ x 273

K = 565 x 10⁻²¹ J

Now, for 585 K,

K = 3/2 x 1.38 x 10⁻²³ x 585

K = 1.21 x 10⁻²⁰ J.

So, these are average kinetic energies of the CH₄ molecule at 273K and 585K.

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a sound has a frequency of 1000 hz. if a listener moves with a speed of 30 m/s away from the source, what is the frequency heard by the observer? (the sound speed is 340 m/s.)

Answers

The frequency heard by the observer is 923 Hz, which is lower than the frequency emitted by the source (1000 Hz).

What is frequency?
The term "disturbance" refers to a moving disturbance. These mechanical waves, which are numerous and must pass through a medium like air or water, must travel. In addition to a vacuum, other types of waves, such as electromagnetic waves, can pass through solid objects. The frequency and wavelength of a wave are two examples of the distinct characteristics that help describe its motion and energy. It is generally understood that frequency refers to the regularity of an event, or more specifically, the regularity of a wave. The wave count that pass through a point in a predetermined amount of time is how frequently waves occur. The amount of waves which pass a point inside one second is another way to define frequency.

The frequency heard by the observer is lower than 1000 Hz. This is due to the Doppler effect, which states that the frequency of a sound heard by an observer moving away from the source is lower than the frequency of the sound emitted by the source.
The change in frequency is given by the formula:
f' = f (v + v_s) / (v - v_o)
where f' is the frequency heard by the observer, f is the frequency emitted by the source, v is the speed of sound, v_s is the speed of the source, and v_o is the speed of the observer.
In this case, f' = 1000 Hz (340 + 0) / (340 - 30) = 923 Hz.
Therefore, the frequency heard by the observer is 923 Hz, which is lower than the frequency emitted by the source (1000 Hz).

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A student in an electronics lab is studying the electrical properties of pieces of graphite. The
student applies a potential difference of 24 V across the length of a cylindrical piece of graphite
with a radius of 0.5 mm. The student has another piece of graphite of the same length but with a
radius of 0.7 mm. The student wants the same current in both pieces of graphite. What potential
difference should the student apply across the 0.7 mm piece?
A) 6 V B)12 V C) 17 V D) 24 V

Answers

The student should apply a 17V potential differential across the 0.7 mm piece.

How may potential differences be found?

The potential difference between places A and B is defined as the change in potential energy (PE) of a charge (q) transported from A to B, divided by the charge (V = VB - VA).

The joules per coulomb, sometimes known as volts (V) in honor of Alessandro Volta, are the units of potential difference.

The change in potential energy (PE) of a charge (q) transported from point A to point B, divided by the charge, is thus used to determine the potential difference between points A and B as V = VB - VA.

Volt is the SI unit for electrical potential. V stands for it.

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a 1,000-mw (el) power plant working at 35% thermal efficiency 100% of the time (base load) uses coal with formula ch and a heating value of 30 mj/kg. how much co2 does this plant emit (metric tons/y)?

Answers

The amount of CO₂ emitted by the plant is 7773579.832 metric tonnes per year.

Power of the plant = Capacity of the plant = 1000 MW

Working efficiency = 35%

Time = 100%

Heating value of coal = 30 mj/Kg

One year KWh of the plant =

= 1000 X 1000 X 365 X 24

= 31536 X 10¹² metric tonnes per year

Amount of coal =

= (31536 X 10¹² ) / (30 X 10⁶ X 0.35)

= 3003428571 Kg

Thus, the amount of CO₂ emitted by the plant =

= (3003428571 X 44) / 17

= 7773579832 Kg/ year

= 7773579.832 metric tonnes per year

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Listed following are several objects in the solar system. Rank these objects from left to right based on their orbital period around the Sun from shortest to longest. A typical asteroid in the asteroid belt, a trojan asteroid, a typical kuiper belt object, a typical oort cloud object

Answers

The orbital period around the Sun from shortest to longest from the sun is asteroid belt - (3 earth years)⇒ trojan asteroid(4 earth years)⇒  typical Kuiper belt object (∠ 200 earth years )⇒ typical Oort cloud object (P≈ 5*10⁶ years).

What is Solar system?

This refers to the sun, star, moon, and all the bodies moving around the sun and held by gravity.

Other components of the solar system include:the 9 planets (Mercury, venus, earth mars, Jupiter Saturn, Uranus, Neptun and pluto)SatellitescommetsAsteroids  etc

They are all held by gravity and move around the sun at different times and duration this movement is known as a revolution.

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an automobile engine provides 508 joules of work to push the pistons and generates 2277 joules of heat that must be carried away by the cooling system. calculate the change in the internal energy of the engine. e

Answers

The change in the internal energy of the engine is 508 + 2277 = 2785 joules.

What is internal energy?
Rising temperature and changes in state as well as phase from solid to liquid as well as liquid to gas cause an increase in internal energy. Planetary bodies can be viewed as a fusion of heat engines and heat reservoirs. Internal energy E is stored in the heat reservoirs, and some of it is converted into different kinds of mechanical, electrical, and chemical energies by the heat engines. The sum of the kinetic energy brought on by the motion of molecules as well as the potential energy brought on by the vibrational motion as well as electric energy of atoms inside of molecules makes up the internal energy U of the a system or a body with clearly defined boundaries. The energy contained in every chemical bond is also referred to as internal energy.

The change in the internal energy of the engine can be calculated using the First Law of Thermodynamics, which states that the increase in the internal energy of a system equals the work done by the system plus the heat added to the system. In this case, the work done by the engine is 508 joules and the heat generated by the engine is 2277 joules. Therefore, the change in the internal energy of the engine is 508 + 2277 = 2785 joules.

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A 60kg tudent (including the hang glider) i initially traveling 26m/ to the right a he hanglide off the top of a 30m tall building. During the flight the ytem experience a 426N upward lift force and a 74N drag to the left. What i the magnitude of her vertical acceleration?

What i the magnitude of her horizontal acceleration?

How long will he remain in the air?

How far from the bae of the building will he land?

Answers

A. The magnitude of her vertical acceleration during flight is 2.7 m/s².

B. The magnitude of her horizontal acceleration during flight is - 1.23 m/s².

C. The student will remain in the air for 4.71 s.

D. The distance between the student and the building when she land is 108.78 m.

When a student uses a hang-glider from the top of a building, she goes on a path like a parabolic curve because she is doing a projectile motion.

In vertical axisTwo forces are working on her.Weight force Mass of the student = m = 60 kg
The acceleration due to gravity = 9.8 m/s²
Weight forces = w = mg = 60 × 9.8 = 588 NUpward lift force = Fy = 426 NBecause there are forces, she moves in a non-uniform motion.According to Newton's second law
∑F = ma
w - Fy = ma
588 - 426 = 60 × a
162 = 60 × a
a = 162 ÷ 60
a = 2.7 m/s²The vertical acceleration is 2.7 m/s²

In horizontal axis

There is a force that drags her to left.
Fx = - 74 N
Because it's against her movement.She moves in non-uniform motion.According to Newton's second law
∑F = ma
- Fx = ma
- 74 = 60 × a
a = - 74 ÷ 60
a = - 1.23 m/s²The horizontal acceleration is - 1.23 m/s²

In vertical axis

The initial speed = u = 0 m/sThe acceleration = a = 2.7 m/s²Height = h = 30 mAccording to non-uniform motion
[tex]h = ut + \frac{1}{2} at^2[/tex]
[tex]h = 0 + \frac{1}{2} at^2[/tex]
2h = at²
2 × 30 = 2.7 t²
60 ÷ 2.7 = t²
t² = 22.2
[tex]t = \sqrt{22.2}[/tex]
t = 4.71 sShe will remain in the air for 4.71 s.

In horizontal axis

The initial speed = u = 26 m/sThe acceleration = - 1.23 m/s²According to non-uniform motion
[tex]S = ut + \frac{1}{2} at^2[/tex]
[tex]S = (26 \times 4.71) + (\frac{1}{2} \times - 1.23 \times 4.71^2)[/tex]
S = 122.46 - 13.68
S = 108.78 mThe distance between the building and her is 108.78 m.

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4.127 a model solid propellant rocket has a mass of 69.6 g, of which 12.5 g is fuel. the rocket produces 5.75 n of thrust for a duration of 1.7 s. for these conditions, calculate the maximum speed and height attainable in the absence of air resistance. plot the rocket speed and the distance traveled as functions of time.

Answers

The maximum speed and height attainable in the absence of air resistance is 139.2 m/s and 1100m.

Umax = U(t = t’ = 1.7 sec) = 139.2 m/s (h(t = t’) = 114 m)

hmax = h(t = tm = 15.9 sec) = 1100 m

Assume that the rocket's mass flow rate is constant. Assume, too, that the thrust will remain constant throughout the burn.

Apply the rocket's frame of reference to the CV displayed and the linear momentum equation in the y-direction.

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I understand that the question you are looking for is:

A model solid propellant rocket has a mass of 69.6 gm, of which 12.5 gm is fuel. The rocket produces 1.3 lbf of thrust for a duration of 1.7 sec. For these conditions, calculate the maximum speed and height attainable in the absence of air resistance. Plot the rocket speed and the distance traveled as functions of time

If the electron were replaced with a proton moving with the same velocity, how would the resulting acceleration of the particle change?.

Answers

As a result, the proton will accelerate in a manner opposite to that of the electron, both in terms of amplitude and direction.

what is A description of an acceleration

Acceleration is the term for how quickly and in what direction a velocity varies over time. Acceleration is the change in direction or speed of a moving object that is moving ahead.

What is the acceleration unit?

Meter per second per minute (m/s2) is the unit of acceleration. Definition. The force known as the snewton is that which, when applied to a mass of one kilogram, results in an acceleration from one metre per second per second.

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