A hydrogen atom in the ground state absorbs a 12.75 eV photon. Immediately after the absorption, the atom undergoes a quantum jump to the next-lowest energy level.
What is the wavelength of the photon emitted in this quantum jump?
Express your answer using four significant figures.
I've seen this question before, but I'm looking the wavelength, not the energy, or n. Thanks!

Answers

Answer 1

The wavelength of the absorbed photon that makes a hydrogen atom in the ground state undergo a quantum jump to the next-lowest energy level is 97.32 nm.

When an electron jumps to a higher energy level, it absorbs energy. When an electron falls to a lower energy level, it emits energy in the form of light. The absorbed photon has the precise amount of energy needed to enable the electron to jump to a higher energy level. Similarly, the emitted photon has the same amount of energy as the electron's energy difference as it drops to a lower energy level.

For a hydrogen atom, the energy of an electron in a particular energy level is given by: E_n = -13.6/n^2 electron volts where n is an integer representing the energy level. When the atom absorbs a 12.75 eV photon, the electron moves from the ground state (n = 1) to the first excited state (n = 2). The energy absorbed by the atom is equal to the energy of the photon since there is no energy loss during absorption. The change in energy is ΔE = E_2 - E_1 = -3.40 eV. Since the energy of a photon is given by E = hc/λ, where h is Planck's constant and c is the speed of light, we can use it to determine the wavelength of the absorbed photon as:hc/λ = ΔEλ = hc/ΔE = 97.32 nm (four significant figures).

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Related Questions

over the course of an 8 hour day, 3.8x104 c of charge pass through a typical computer (presuming it is in use the entire time). determine the current for such a computer.

Answers

1.32A is  the current for such a computer if over the course of an 8 hour day, 3.8x104 c of charge pass through a typical computer

What do you mean by current?

A flow of charged particles, such as electrons or ions, through an electrical conductor or a vacuum is known as an electric current. The net rate of electric charge flow through a surface is how it is described.

Although current and electron flow in the opposing directions, current is the flow of electrons. While electrons move from negative to positive, current moves from positive to negative. The number of electrons that flow across a conductor's cross section in a second determines current.

q 3.8x10^4 C i.e. 34000C

t 8 hour i.e. 8×60×60 = 28800 s

i q/t ⇒ 34000/28800 i.e. 1.32A

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a plane monochromatic electromagnetic wave with wavelength λ = 2.8 cm, propagates through a vacuum. its magnetic field is described by
uploaded image
where Bx = 3.1 X 10-6 T, By = 3.4 X 10-6 T, and i-hat and j-hat are the unit vectors in the +x and +y directions, respectively. .
1) What is f, the frequency of this wave?
2) What is I, the intensity of this wave?
3) What is Sz, the z-component of the Poynting vector at (x = 0, y = 0, z = 0) at t = 0?
4) What is Ex, the x-component of the electric field at (x = 0, y = 0, z = 0) at t = 0?

Answers

Sz, the z-component of the Poynting vector at (x = 0, y = 0, z = 0) at t = 0 is 0.

A monochromatic electromagnetic wave with wavelength λ = 2.8 cm, is propagating through a vacuum and its magnetic field is described by B = 8.4 sin(2π(1.0 × 10^9)t - 2π(1.0 × 10^4)x) µT.

The Poynting vector can be used to explain this in more detail. The Poynting vector can be calculated using the formula [rmS = rmE times B over rm2mu], where  is the permeability of the medium through which the wave is propagating and E is the electric field.

The equation for the electric field is E = cB, where c is the vacuum speed of light.

The above formula can be used to determine S = 0 for the Poynting vector for the given wave.

The Poynting vector has a z-component of 0 at (x = 0, y = 0, z = 0) and t = 0.

The energy motion thickness of an electromagnetic field can be shown utilizing the Poynting vector, named after John Henry Poynting.

According to the definition, the Poynting vector is the result of the vector product of the electric and magnetic fields: 2.22) S → = E → × H →

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Which of the following is an example of improving communication skills?

Answers

The question is incomplete as it does not provide options to choose from or any context. instead of this, I will explain how to improve communication skills. improving communication skills takes practice, self-awareness, and a willingness to learn and grow. By focusing on these key areas, you can improve your ability to communicate effectively with others in a variety of settings.

What is communication skill?

Communication skills refer to the ability to convey information effectively and efficiently to others, both verbally and non-verbally. Effective communication involves active listening, clarity of expression, and an understanding of the message being conveyed.

There are several ways to improve communication skills, including:

Practice: Communication skills can be improved through regular practice. Look for opportunities to communicate with others, and take the time to reflect on your communication style and how you can improve.

Active listening: Effective communication requires active listening skills. Pay attention to what others are saying and ask questions to clarify your understanding.

Nonverbal communication: Nonverbal cues such as body language, eye contact, and facial expressions can convey important messages. Practice being aware of and controlling your own nonverbal cues to enhance your communication skills.

Clarity of expression: Clearly expressing your ideas and thoughts is essential for effective communication. Practice organizing your thoughts and speaking clearly and concisely.

Empathy: Being able to put yourself in someone else's shoes and understand their perspective is an essential communication skill. Practice showing empathy by actively listening and acknowledging the other person's feelings.

Feedback: Seek feedback from others on your communication skills. This can help you identify areas for improvement and refine your communication style.

Therefore, It takes time, effort, self-awareness, and a commitment to learn and develop new abilities to improve communication. You can enhance your capacity to interact successfully with others in a range of circumstances by concentrating on five important areas.

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A wire is carrying current vertically downward. What is the direction of the force on this wire due to Earth's magnetic field?
Please answer in relation to the Right-hand rule.

Answers

The requried force on the wire due to Earth's magnetic field will be perpendicular to both the current direction and the magnetic field direction.

According to the right-hand rule, if a current-carrying wire is held in the right hand with the thumb pointing in the direction of the current, the direction in which the fingers curl represents the direction of the magnetic field around the wire.

In this case, the wire is carrying the current vertically downward. If we apply the right-hand rule, we can curl our fingers around the wire in the direction of the magnetic field. The direction of the magnetic field is horizontally perpendicular to the wire, pointing toward the north.

Therefore, the force on the wire due to Earth's magnetic field will be perpendicular to both the current direction and the magnetic field direction. Using the right-hand rule again, if we extend our right-hand thumb in the direction of the current (downward) and curl our fingers in the direction of the magnetic field (northward), our palm will face east. This indicates that the force on the wire will be directed eastward.

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Can anyone help me with this question please
I’ll mark you as a brainliest.
No links.

Answers

Answer:

Answer is B

Explanation:

Answer:

B. Frequency

Explanation:

What is the full meaning of ROYGBIV?​

Answers

Answer:

Red, orange, yellow, green, blue, indigo and violet.

Explanation:

Hope I helped! cute copy and paste ☏ ♡ ☆⋆◦★◦⋆°*•°

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⭐ Hii ⭐

➡️ Abbreviation for shades of colors often described as creating rainbows: red, orange, yellow, green, blue, indigo, and violet. Its beginning is sometimes called VIBGYOR in reverse order.

Byy...

answer the following questions about the anions of second-row elements, which are commonly used in substitution and proton transfer reactions.

Answers

An atom acquires one or more electrons, which results in the formation of an ion with a negative charge known as an anion. Anions of elements in the second row are frequently utilised in chemical processes involving proton transfer and substitution.

Tetrahedral structures are seen by the oxyanions of second-row elements in their group oxidation states. Olivine minerals, also known as (Mg,Fe)₂SiO₄, contain tetrahedral SiO₄ units; nevertheless, the anion does not have a separate existence inside the mineral since the oxygen atoms in the solid state are surrounded tetrahedrally by cations.

Ate anions are extremely resistant to the loss of CH 3 because they have ionic connections between the core atom and the ligands, which are generated by elements that belong to the first three primary groups. Hypervalent anions, which are obtained from the other second-row elements, have predominantly covalent X-C bonding, which gives them (sometimes marginal) resistance to the effects of ligand loss. Hypervalent anions are obtained from the other second-row elements.

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a 1118-kg car and a 2000-kg pickup truck approach a curve on the expressway that has a radius of 264 m .
As the car and truck round the curve at 61.1 mi/h , find the normal force on the truck to the highway surface.

Answers

The normal force on the truck to the highway surface is 20,534 N. This force is necessary to balance the weight of the truck and provide the centripetal force required for it to move in a circular path around the curve.

To find the normal force on the truck, we need to consider the forces acting on it while rounding the curve.

The two significant forces involved are the gravitational force (weight) and the centripetal force.

1. Gravitational Force (Weight):

The weight of an object is given by the equation:

Weight = mass × acceleration due to gravity

For the truck:

Mass of the truck (m) = 2000 kg

Acceleration due to gravity (g) = 9.8 m/s²

Weight of the truck (W_truck) = m × g

                       = 2000 kg × 9.8 m/s²

       W_truck   = 19,600 N

2. Centripetal Force:

The centripetal force required to keep an object moving in a circular path is given by the equation:

Centripetal Force = (mass × velocity²) / radius

For the truck:

Mass of the truck (m) = 2000 kg

Velocity (v) = 61.1 mi/h = 27.28 m/s (converted to meters per second)

Radius of the curve (r) = 264 m

Centripetal Force (F_c) = (m × v²) / r

                                       = (2000 kg × (27.28 m/s)²) / 264 m

                                 F_c = 20,534 N

The normal force on the truck to the highway surface is 20,534 N.

This force is necessary to balance the weight of the truck and provide the centripetal force required for it to move in a circular path around the curve.

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If one asteroid has an orbital radius of 2AU and another an orbital radius of 4 AU, the orbital period of the farther asteroid will be ____ the orbital period of the closer one.
1- impossible to tell
2- more than twice
3- twice
4- less than twice

Answers

The orbital period of the farther asteroid will be less than twice the orbital period of the closer one.

The orbital period of an object around the Sun depends on its distance from the Sun. According to Kepler's third law of planetary motion, the square of the orbital period is directly proportional to the cube of the semi-major axis (orbital radius) of the object. Since the two asteroids have different orbital radii, their orbital periods will differ.

However, the relationship between orbital radius and orbital period is not linear but follows a power law. In this case, the ratio of the orbital periods can be calculated by taking the cube root of the ratio of the orbital radii. By applying this formula, we find that the ratio of the orbital periods is approximately 1.5874. Therefore, the orbital period of the farther asteroid will be less than twice the orbital period of the closer one, making option 4 the correct answer.

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the dances created and performed collectively by the ordinary people.

Answers

Answer:

Folk dance

Explanation:

hope i helped :)

Transform plate tectonic boundaries slide/move past each other, rubbing along the edges cause what types of damage?

Question 3 options:

tornadoes, flooding, destruction


hurricanes, flooding, wave surge


earthquakes, tsunami, landslides


blizzards, freezing conditions, snow drifts

Answers

The answer is c is because when tectonic plates are rubbing against each other that’s how an earthquake is formed another reason the answer is C is because when the tectonic plates are moving together it can cause the land to slide the last reason the answer is C is because when the tectonic plates in the ocean move it can cause a tsunami

Transform plate tectonic boundaries slide/move past each other, rubbing along the edges causing earthquakes, tsunami, landslides

What is earthquake?

An earthquake is the shaking of the surface of the Earth resulting from a sudden release of energy in the Earth's lithosphere that creates seismic waves.

The answer is c is because when tectonic plates are rubbing against each other that’s how an earthquake is formed.

another reason the answer is C is because when the tectonic plates are moving together it can cause the land to slide.

the last reason the answer is C is because when the tectonic plates in the ocean move it can cause a tsunami.

Hence transform plate tectonic boundaries slide/move past each other, rubbing along the edges causing earthquakes, tsunami, landslides

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*Materials that regulate the flow of current through them *
1)Conductors
2)Insulators
3)Resistors
4)Electromagnets​

Answers

Answer:

electromagnet

Explanation:

mark me as brainlest

please help me !!!! i really need it

Answers

Answer:

Prefer Soil more than sand

Explanation:

A 6 kilogram concrete block is dropped from the top of a tall building. The block has fallen a distance of 55 meters and has a speed of 30 meters per second when it hits the ground.

a. At the instant the block was released, what was its gravitational potential energy?

b. Calculate the kinetic energy of the block at the point of impact.

c. How much mechanical energy was "lost" by the block as it fell?

d. Explain what happened to the mechanical energy that was "lost" by the block

Answers

a) At the point the block is released, the initial velocity is zero, so the initial kinetic energy of the block is zero. The block is at a height of 55 meters from the ground, so its gravitational potential energy can be calculated using the formula;

PE = mghwhere m = 6 kg (mass of the block), g = 9.8 m/s² (acceleration due to gravity), and h = 55 m (height of the block from the ground)PE = mgh = (6 kg) (9.8 m/s²) (55 m) = 3,234 JTherefore, the gravitational potential energy of the block when it was released was 3,234 Joules (J).b) The kinetic energy of the block at the point of impact can be calculated using the formula; KE = ½mv²where m = 6 kg (mass of the block), and v = 30 m/s (velocity of the block)KE = ½mv² = ½ (6 kg) (30 m/s)² = 2,700 J.

Therefore, the kinetic energy of the block at the point of impact was 2,700 Joules (J).c) The law of conservation of energy states that energy cannot be created or destroyed, it can only be transformed from one form to another. At the point of impact, the block loses its kinetic energy. The mechanical energy "lost" by the block can be calculated as the difference between the initial potential energy and the final kinetic energy.

ΔE = PE - KE= (3,234 J) - (2,700 J) = 534 J

When the block hit the ground, it created a loud sound, generated heat, and also caused the ground to shake. Therefore, the mechanical energy that was "lost" by the block was transformed into sound energy, heat energy, and seismic energy.

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What happens, if anything, when you change the mass of the planet? Why do you think the mass of the planet does, or does not, affect the orbit of the planet?

Answers

Answer:

We know that the gravitational force between two objects of mass M1 and M2 that are at a distance R, is given by:

F = G*(M1*M2)/R^2

Where G is a constant.

If you reduce one of the masses, then the gravitational force between the objects will change.

So if we take un account the Earth and the Sun, when you reduce the mass of Earth, the force between Earth and the Sun will decrease, and this will change the orbit of the Earth around the Sun.

(The orbit also depends on the gravitational force between the Earth and the other planets in the system, and all those forces also change, which also has an impact in the orbit change)

the transfer of thermal energy between particles of matter that are in contact with each other is called thermal _________.​

Answers

Answer:

Hello There!!

Explanation:

The answer is=>Conduction.

hope this helps,have a great day!!

~Pinky~

[tex]\huge{\textbf{\textsf{{\color{pink}{An}}{\red{sw}}{\orange{er}} {\color{yellow}{:}}}}}[/tex]

Conduction.

thanksHope it helps.

PLSSS HELPP

If humans are evolving, who is having the biggest effect on humanities gene pool? Rich vs poor? Educated vs uneducated? Certain countries over others? Etc.? And how will this affect our evolution in the future?

Answers

Answer:

Well, if you look up countries with the highest birth rates, also those countries poverty rates and what class the majority of the people are in then you should have a better understanding. Also, education is not passed through genes it is learned through expirience and being taught. Also being rich vs being poor probably doesn't have that big of an effect either. It is the living conditions.

Explanation:

The forces shaping the short-term future of man, perhaps to the turn of this century, are apparent, and the events are in train. The shape of the world in the year 2000 and man's place therein will be determined by the manner in which organized humanity confronts several major challenges. If sufficiently successful, and mankind escapes the dark abysses of its own making, then truly will the future belong to man, the only product of biological evolution capable of controlling its own further destiny.

please mark in brain list

am i right? please help!

Answers

Yes you are right! Well done!

results: is the sum of the square of the maximum voltages across r and l, vr2 vl2, equal to the square of voltage across both elements, vrl2 in accordance with eq.2?

Answers

In general, the sum of the squares of the voltages across individual components may not necessarily be equal to the square of the voltage across both elements combined. It would depend on the nature of the circuit and the relationship between the voltage across the components.

It would depend on the nature of the circuit and the relationship between the voltage across the components. To determine if the sum of the square of the maximum voltages across resistor (R) and inductor (L), Vr^2 and Vl^2 respectively, is equal to the square of the voltage across both elements, Vrl^2, in accordance with equation (2), we need to have more context and information about the specific equation and circuit being referred to. The relationship between Vr^2, Vl^2, and Vrl^2 would depend on the specific circuit configuration and the equations governing its behavior.

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A scientist proposed a hypothesis that burning coal at higher altitudes would release less pollution. The data the scientist collected did not support the hypothesis. In what way is the hypothesis still valuable?

Answers

Answer: i really don't know bu i recomened you watch josie b asmr she is the best

Explanation:

Why can water dissolve some ionic compounds, like NH4Cl, as well as some nonionic compounds, like methanol?

Answers

I think that’s the answer u r looking for

Answer:

Water is polar molecule. ... The ionic compounds are dissolved as these ions attract the hydrogen( negative charge attraacts them) and oxygen (positive charge attracts them) whereas methanol is a polar molecule and forms hydrogen bond with water molecules and hence dissolves.

Explanation:

.Verify that y(x)=Ax^n*e^(-mwx^2/2h)
where n is an integer, is an approximate solution to the differential equation
-h^2/2m*d^2*y/dx^2+1/2(mw^2*x^2*y= E*y

Answers

The [tex]$y(x) = Ax^n e^{-\frac{mwx^2}{2h}}$[/tex]  is an approximate solution to the given differential equation.

The given Differential equation is:

[tex]\[-\left(\frac{h^2}{2m}\right) \frac{d^2y}{dx^2} + \frac{1}{2}mw^2x^2y = Ey\][/tex]

Let us calculate the derivatives of [tex]$y(x)$[/tex] with respect to [tex]{x}[/tex]

First derivatives:

[tex]\[\frac{dy}{dx} = Anx^{n-1} e^{-\frac{mwx^2}{2h}} - mwx Ax^n e^{-\frac{mwx^2}{2h}}\][/tex]

Second derivatives:

[tex]\[\frac{d^2y}{dx^2} = An(n-1)x^{n-2} e^{-\frac{mwx^2}{2h}} - 2mwx Anx^{n-1} e^{-\frac{mwx^2}{2h}} - (mwx)^2 Ax^n e^{-\frac{mwx^2}{2h}}\][/tex]

Now, substitute [tex]$y(x)$[/tex] and its derivatives into differential equations:

[tex]\[-\left(\frac{h^2}{2m}\right) \left[ An(n-1)x^{n-2} e^{-\frac{mwx^2}{2h}} - 2mwx Anx^{n-1} e^{-\frac{mwx^2}{2h}} - (mwx)^2 Ax^n e^{-\frac{mwx^2}{2h}} \right] + \frac{1}{2}mw^2x^2 Ax^n e^{-\frac{mwx^2}{2h}} = Ey\][/tex]

Simplifying the equations we get:

[tex]\[e^{-\frac{mwx^2}{2h}} \left[ An(n-1)hx^{n-2} - 2mwx Anhx^{n-1} - (mwx)^2Ax^n + \frac{mw^2}{2}x^2 Ax^n \right] = Ey\][/tex]

Since, [tex]$y(x) = Ax^n e^{-\frac{mwx^2}{2h}}$[/tex] satisfies the differential equation after simplification, we can conclude that it is an approximate solution to the given differential equation.

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select three parts of a circular saw

spindle

trigger

base

handle

key

chuck

Answers

Answer:

handle, trigger, spindle

PLZZZZZ HELP MEHH ASAP!!!

Answers

Answer:

C

Explanation:

Copper is a conductor because its valence electrons can move freely from atom to atom.

C but i don’t really understand? Is their a article for this or something?

Monochromatic light passes through two slits separated by a distance of 0.0340mm.
If the angle to the third maximum above the central fringe is 3.21 degrees, what is the wavelength of the light in nanometers?

Answers

The wavelength of the light in nanometers is 321 nm.

The angular position of the nth bright fringe above the central fringe is,

θ = (nλ)/d

where,

θ = angle to the nth bright fringe

λ = wavelength of the monochromatic light

d = distance between the two slits

n = order of the bright fringe

The given values,

θ = 3.21°

n = 3

d = 0.0340mm = 3.4 × 10⁻⁵m

Substituting these values in the above equation,

3.21° = (3λ)/(3.4 × 10⁻⁵m)

λ = (3.21 × 3.4 × 10⁻⁵m)/3

λ = 3.21 × 10⁻⁵m

  = 3.21 × 10⁻⁷m

  = 321 nm

Therefore, the wavelength of the light in nanometers is 321 nm.

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les
Answer the question below using Active Thinking,
Learning
. Read the question carefully to determine what is being asked, Circle and/or underline key information in each question.
• Read all the answer choices.
• Do not just pick the correct answer. Briefly explain why you did NOT choose the other three choices and then explain why ya
did choose your correct answer choice.
Plants compete for many different resources, including sunlight and water. Which of the following adaptations of a plant is most
likely to help the plant be successful in competing for water?
A. a broad, deep root system
B. a tall stem or trunk
C. the ability to produce fruit with seeds
D. colorful flowers

Answers

Explanation:

I'm corona positive and isolated feeling depressed just logged in to talk someone but people ignoring me thanks for this behaviour got disappointed bye everyone logging out had a great time

a certain satellite travels in an approximately circular orbit of radius 2.1 × 106 m with a period of 7 h 38 min. calculate the mass of its planet from this information.

Answers

To calculate the mass of the planet, we can use the formula for the period of a satellite in circular orbit:

T = 2π√(r³/GM)

T is the period of the satellite (in seconds)

r is the radius of the orbit (in meters)

G is the gravitational constant (approximately 6.67430 × 10^(-11) m³/kg/s²)

M is the mass of the planet (in kilograms)

First, let's convert the period of the satellite into seconds. 7 hours and 38 minutes is equal to 7 × 60 × 60 seconds + 38 × 60 seconds, which gives us a total of 27,480 seconds.

Plugging the given values into the formula, we have:

27,480 = 2π√((2.1 × 10^6)³/(6.67430 × 10^(-11) × M))

To solve for M, we can rearrange the equation:

M = ((2.1 × 10^6)³ × 6.67430 × 10^(-11))/(2π)² × (27,480)²

M ≈ 6.042 × 10^24 kg

Therefore, the mass of the planet is approximately 6.042 × 10^24 kg.

From the given information about the satellite's radius (2.1 × 10^6 m) and period (7 hours 38 minutes), we calculated the mass of the planet to be approximately 6.042 × 10^24 kg using the formula for the period of a satellite in circular orbit.

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A transverse wave on a rope is given by y(x,t)= (0.750cm)cos(π[(0.400cm−1)x+(250s−1)t]).
Part A Find the amplitude.
Part B Find the period
Part C Find the frequency
Part D Find the wavelength
Part E Find the speed of propagation.
Part F Is the wave traveling in the +x- or − x-direction?

Answers

The amplitude of the wave is 0.750 cm, the period is 0.004 s, the frequency is 250 Hz, the wavelength is 15.7 cm, the speed of propagation is 3925 cm/s, and the wave is traveling in the +x-direction.

Part A: The amplitude of a wave represents the maximum displacement of the wave from its equilibrium position. In this case, the amplitude is given by the coefficient of the cosine function, which is 0.750 cm. Therefore, the amplitude of the wave is 0.750 cm.

Part B: The period of a wave is the time it takes for one complete cycle of the wave to pass a given point. The period (T) is the reciprocal of the angular frequency (ω), which is the coefficient of t in the argument of the cosine function. In this case, the angular frequency is 250 s^(-1), so the period is T = 1/ω = 1/(250 s^(-1)) = 0.004 s.

Part C: The frequency of a wave is the number of complete cycles passing a given point per unit time. The frequency (f) is the reciprocal of the period (T). In this case, the frequency is f = 1/T = 1/0.004 s = 250 Hz.

Part D: The wavelength of a wave is the distance between two adjacent points in the wave that are in phase. For a transverse wave, the wavelength (λ) is related to the angular wave number (k) by the equation λ = 2π/k. The angular wave number is the coefficient of x in the argument of the cosine function. In this case, the angular wave number is 0.400 cm^(-1), so the wavelength is λ = 2π/(0.400 cm^(-1)) = 15.7 cm.

Part E: The speed of propagation (v) of a wave is related to its frequency (f) and wavelength (λ) by the equation v = fλ. In this case, the speed of propagation is v = (250 Hz)(15.7 cm) = 3925 cm/s.

Part F: To determine the direction of wave propagation, we look at the coefficient of x in the argument of the cosine function. In this case, the coefficient is positive (0.400 cm^(-1)), indicating that the wave is traveling in the +x-direction.

In conclusion, the amplitude of the wave is 0.750 cm, the period is 0.004 s, the frequency is 250 Hz, the wavelength is 15.7 cm, the speed of propagation is 3925 cm/s, and the wave is traveling in the +x-direction.

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U can choose any scenario just answer please :)))

Answers

Answer:

A roller coaster:

The first law states that an object either remains at rest or continues to move at a constant velocity, unless it is acted upon by an external force.

Hope this helps!

Answer:

This

Explanation:

First Law: Newtons first law of motion explains what happens in a car crash because it basically states that the passenger will continue to travel at the same velocity until an unbalanced force acts on he or she. The force that will act upon he or she would be the window, so you should always wear a seat belt!

Second Law: In other words, it states that the force that is applied in the crash is proportional to mass of impacting cars. This means that the bigger the force of impacting cars, the bigger the force applied, which implies a greater destruction.

Third law: Newton's Laws Applied to Collisions. Newton's third law of motion is naturally applied to collisions between two objects. In a collision between two objects, both objects experience forces that are equal in magnitude and opposite in direction.

how to spot homogeneous and heterogeneous mixtures​

Answers

A homogeneous mixture has the same uniform appearance and composition throughout. Many homogeneous mixtures are commonly referred to as solutions. A heterogeneous mixture consists of visibly different substances or phases. The three phases or states of matter are gas, liquid, and solid.
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