what properties of semiconductors make them useful in electronic devices

Answers

Answer 1
The property of semiconductors that makes them most useful for constructing electronic devices is that their conductivity are very often permanently modified by introducing impurities, adding such controlled impurities to the semiconductors is the process known as doping.

Related Questions

The larger the push, the larger the change in velocity. This is an example of Newton's Second Law of Motion which states that the acceleration an object experiences is _____ .

Answers

According to Newton, an object will only accelerate if there is a net or unbalanced forceacting upon it. The presence of an unbalanced force will accelerate an object - changing its speed, its direction, or both its speed and direction.

Newton's Second Law of Motion which states that the acceleration an object experiences is directly proportional to the force applied to it

HELP NEEDED FOR ASSIGNMENT PLZ HELP NOW Describe an environment in which the sound of a ringing cell phone could not be transmitted, and explain why the ringing wouldn't be heard. Justify your reasoning using complete sentences and key vocabulary.

Answers

The answer would be in space because there is no matter and if there isn't matter the sound of a ringing cell phone could not be transmitted.

Answer:

I did my best to research to help you

Explanation:

The answer would be in space because there is no matter and if there isn't matter the sound of a ringing cell phone could not be transmitted.

In a two planet system, does an increase in planet velocity result in a decreased period?

Answers

In order to maintain orbit, aplanet with a faster velocity would have to have a shorter orbit radius. 

Answer:

d.

No, if velocity becomes too great, the planet can escape the Sun's gravitational pull.

Explanation:

It is correct on Edge 22

What evidence supports the law of conservation of energy?

Answers

Light energy is converted to chemical energy during photosynthesis. 

Answer:

Light energy is absorbed by plants and converted to chemical energy.

Explanation:

what is the name given to the force exerted by the first object on a second object

Answers

soppose the 1 object is A and 2 is B then the force exerted by A on B is FAB and the force exerted on body B on A is -FAB.

The force exerted by the first object on a second object is known as the action force, a part of Newton's Third Law of Motion, which states that equal and opposite forces are exerted on both objects involved in an interaction.

The name given to the force exerted by the first object on a second object is generally referred to as the "action" force. This is a part of Newton's Third Law of Motion, which states that for every action, there is an equal and opposite reaction. This law means that whenever one body exerts a force on a second body, the second body simultaneously exerts a force that is equal in strength and opposite in direction to that of the first body.

This concept is significant because it underlines the symmetry of forces in nature. When object A exerts a force on object B, object B exerts a force back on object A. These forces are equal in magnitude but opposite in direction, reflecting Newton's Third Law which is often informally referred to as the law of action and reaction.

A woman falls to the ground while wearing a parachute. The air resistance on the parachute is 500N. If the woman falls at a constant rate of 5 m/s, then the gravitational force on her is

Answers

Then the gravitational force on her should be equal to the air resistance, i.e. 500 N.
In fact, the woman is falling at constant velocity, 5 m/s. This means there is no acceleration on her. But Netwon's second law states that the resultant of the forces acting on the body is equal to the product between the mass and the accleration:
[tex]\sum F =ma[/tex]
But the acceleration is zero, so the resultant of the forces acting on the woman must be zero. Since only two forces are acting (the air resistance, upward, and the gravity, downward) and they are in opposite direction, they must have equal intensity in order to produce a net acceleration of zero, so they both have intensity of 500 N.

HELP ASAP PLEASEEEEEEEEEEEE

Answers

it's the second graph!
it's the only one with a negative gradient.
so the temperature of the ball will fall in water as it looses its heat.

activate windows,:-P

a 45kg boy is holding a 12kg pumpkin while standing on ice skates on a smooth frozen pond. the boy tosses the pumpkin with a horizontal speed of 2.8 m/s to the right towards a 37 kg girl who catches it. the girl is also on ice skates. what are the final speeds of the boy and the girl?

Answers

Let's split the problem into two parts, and let's solve it by using conservation of momentum.

1) Let's analyze the moment when the boy tosses the pumpkin. Before this moment, the boy is standing with the pumpkin, so with speed v=0 and therefore the total momentum of the system (boy+pumpkin) is zero.
After he tosses the pumpkin, the boy will start to move with speed [tex]v_b[/tex] and the pumpkin starts to move with speed [tex]v_p=2.8 m/s[/tex]. The momentum of the boy is [tex]m_b v_b[/tex] (with [tex]m_b =45 kg[/tex] being the mass of the boy), while the momentum of the pumpkin is [tex]m_p v_p[/tex] (where [tex]m_p=12 kg[/tex] is the mass of the pumpkin). Since the total momentum must be equal to zero (because the total momentum cannot change), then we can write
[tex]m_b v_b + m_p v_p =0[/tex]
From which we find
[tex]v_b = - \frac{m_p v_p}{m_b}=- \frac{(12 kg)(2.8 m/s)}{45 kg} =-0.75 m/s [/tex]
and this is the speed of the boy, and the negative sign means he's moving in the opposite direction of the pumpkin.

2) Now let's focus on the entire system (boy+pumpkin+girl). Initially, the total momentum of this system is zero, because both the boy (holding the pumpkin) and the girl are still. So, the total momentum after the girl catches the pumpkin must be still zero.
After this moment, the boy has a momentum of [tex]m_b v_b[/tex], while the girl has momentum [tex](m_g+m_p)v_g[/tex] where [tex]m_g=37 kg[/tex] is the girl mass [tex]v_g[/tex] is the girl speed. Here we use [tex]m_g+m_p[/tex] because the girl is holding the pumpkin now. Therefore, the conservation of momentum becomes
[tex]m_bv_b + (m_g+m_p)v_g =0[/tex]
and so
[tex]v_g = - \frac{m_b v_b}{m_g+m_p} =- \frac{(45 kg)(-0.75 m/s)}{37 kg+12 kg} =0.69 m/s[/tex]
and this is the girl's speed, with positive sign so with same direction of the pumpkin initial direction.

Final answer:

Using the conservation of momentum, the final speed of the boy after throwing the pumpkin is 0.7467 m/s to the left, and the final speed of the girl after catching the pumpkin is 0.6857 m/s to the right.

Explanation:

The problem you're trying to solve involves the conservation of momentum, because momentum is conserved when objects interact in a closed system without external forces, such as the scene described with skaters on ice. To find the final speeds of the boy and the girl, we'll use the principle of conservation of linear momentum. Since initially they are both at rest and the boy throws the pumpkin, the final momentum of the system must be zero.

Using the equation for conservation of momentum: momentum before the throw = momentum after the throw. Initially, both the boy and the pumpkin are stationary, so their initial combined momentum is 0. After the boy throws the pumpkin, he will move in the opposite direction to conserve momentum.

Momentum of the boy after the throw: m_boy × v_boy = 0 - (mass of pumpkin × velocity of pumpkin)
Momentum of the girl after catching the pumpkin: m_girl + mass of pumpkin × v_girl = mass of pumpkin × velocity of pumpkin

m_boy = 45kg (mass of the boy)
m_pumpkin = 12kg (mass of the pumpkin)
v_pumpkin_initial = 2.8 m/s (speed of the pumpkin)

Let's calculate the speed of the boy after he throws the pumpkin:

45kg × v_boy = 0 - (12kg × 2.8 m/s)
v_boy = (-33.6 kg×m/s) / 45kg
v_boy = -0.7467 m/s

The negative sign indicates that the boy is moving in the opposite direction to the pumpkin's initial movement. Now, let's find the speed of the girl after catching the pumpkin:

(37kg + 12kg) × v_girl = 12kg × 2.8 m/s
49kg × v_girl = 33.6 kg×m/s
v_girl = 0.6857 m/s

The boy's final speed is 0.7467 m/s to the left, and the girl's final speed is 0.6857 m/s to the right.

According to the scientific definition of work, which of these best shows that work is being done

Answers

The best statement that represents the work is being done is A car being towed down a street.

What is work?

The meaning of the work in terms of physics should represent the measurement of the energy transfer that arises at the time when the object should be moved over the distance via the external force also it should be applied at the displacement direction.

Therefore, The best statement that represents the work is being done is A car being towed down a street.

This question is incomplete. Please find the options below.

f A lamp hanging from a ceiling

g A rocket drifting through space

h A man pushing against a concrete wall

j A car being towed down a street

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Final answer:

Scientific work requires a force to cause an object's displacement in the direction of the force, and is calculated by the equation W = Fd cos θ. No work is done if there is no displacement or the force is perpendicular to the direction of displacement.

Explanation:

The scientific definition of work differs from everyday use. In physics, work requires that a force causes a displacement of an object, and the force must have a component in the direction of the displacement. This process implies a transfer of energy. To calculate work done (W) scientifically, you use the equation W = Fd cos θ, where F is the magnitude of the force applied, d is the displacement of the object, and θ is the angle between the force vector and the displacement vector. When there's no displacement or the force is perpendicular to the displacement, no work is done according to science.

For example, pushing against a wall would not be considered work in the scientific sense because the wall does not move—there's no displacement. However, lifting an object off the ground does constitute work as the direction of the force (upwards) is the same as the direction of the movement (also upwards), and the object is displaced from its initial position.

As ocean waves get closer to the shore they slow down. This slowing causes them to bend and come in close to parallel with the shore. This is because shallow water and deep water can be thought of as two different media. This bending of a wave is the wave interaction known as
A) diffraction
B) interference
C) reflection
D) refraction

Answers

The correct answer is D) refraction! Hope this helps!

Answer:

i think it is D, hope this helps

What type of barometric readings would you expect if you brought your barometer to the top of a mountain?
Please help!

Answers

A barometer measures the atmospheric pressure.
The value of the atmospheric pressure  depends on many things, but mainly on the altitude. In fact, the value of the atmospheric pressure at a given location depends on the weight of the column of air above the location. As we go higher in altitude, the weight of this column of air decreases, and so the atmospheric pressure decreases. 
Therefore, at the top of a mountain the barometer will read a value for the atmospheric pressure lower than the value measured at sea level.

what SD can friction do to moving objects

Answers

Friction can slow objects doing in a certain direction. This friction can affect speed, acceleration, and turning.

When are tides highest? a. during the moon’s first quarter phase b. when the sun, Earth, and the moon are nearly in a line c. during the moon’s third quarter phase d. when the moon is at a right angle to the sun

Answers

Ocean tides are highest when the sun, Earth, and the moon
are nearly in a line.  That means at the times of New Moon
and Full Moon.

Answer:

b. when the sun, Earth, and the moon are nearly in a line

Explanation:

Due to gravitational pull of sun and moon, the level of water in seas and oceans rises above its normal level. This is known as tides. Highest tides occur when the sun, the moon and the Earth align in a straight line i.e. during New moon and Full moon. This is because in this alignment, there is maximum effect of gravity. Tide occurrence during this phase are also referred as spring tides.

How much force is needed to lift a 25-kg mass?

Answers

The force needed to lift the object must be (at least) equal to the weight of the object itself. In fact, the weight W of the object pushes downward, while the force we apply, F, pushes upward. The weight of the object is
where [tex]m=25 kg[/tex] is the mass and [tex]g=9.81 m/s^2[/tex] is the gravitational acceleration. Substituting, we have
[tex]W=mg=(25 kg)(9.81 m/s^2)=245.3 N[/tex]
And therefore, the force F we have to apply must be at least equal to this value, in order to lift the object.

what is the speed of a wave that has a frequency of 8,500 Hz and a wavelength of 1.5 m?

Answers

V = velocity , ?
F = frequency, 8500 Hz
√ = wavelength, 1.5m

V = F√
V= 8500 * 1.5m
V= 12750m/s
Final answer:

The speed of a wave with a frequency of 8,500 Hz and a wavelength of 1.5 m is calculated as 12,750 m/s by multiplying the frequency and wavelength together.

Explanation:

To calculate the speed of a wave, we can use the formula v = f × λ, where v is the speed of the wave, f is the frequency, and λ (lambda) is the wavelength. Given that the frequency, f, is 8,500 Hz and the wavelength, λ, is 1.5 m, you can plug these values into the equation to determine the wave's speed.

Speed of the wave v = 8,500 Hz × 1.5 m = 12,750 m/s

So, the speed of the wave with a frequency of 8,500 Hz and a wavelength of 1.5 m is 12,750 meters per second (m/s).

what laws of motion are demonstrated by a hammer pounding a nail into a board?

Answers

A hammer pounding a nail into a board is an example of Newton’s Third law.

Newton’s third law states that for every action there is an equal and opposite reaction. Meaning, when you hit the hammer on the board the same amount of energy that is going into the board, is going into the hammer. Causing the hammer to bounce off the board.

Hope this helps!

The hammer pounding a nail demonstrates Newton's First Law, as the hammer's horizontal motion stops due to the opposing force of the nail and board, and Newton's Third Law, with the nail applying an equal and opposite force to the hammer.

The phenomenon of a hammer pounding a nail into a board can be analyzed using Newton's laws of motion. Specifically, two of these laws are demonstrated:

Newton's First Law (also known as the law of inertia). This law suggests that if an object is in motion, it will not change its velocity unless a force acts upon it. For example, a hammer in motion strikes a nail and is brought to rest because the nail and board apply a force opposing the hammer's motion.

Newton's Third Law states that for every action, there is an equal and opposite reaction. Therefore, as the hammer applies a force to drive the nail into the board, the nail applies an equal and opposite force to the hammer, causing it to stop.

When a hammer hits a nail, the horizontal momentum of the hammer is reduced to zero as the nail stops the hammer—illustrating Newton's First Law. Simultaneously, the force with which the hammer strikes the nail and the nail’s force on the hammer (which is responsible for stopping the hammer) is an example of Newton's Third Law in action.

The illustration shows a light ray striking an object.
In the illustration, the light ray striking the object is-

A.refracted

B.stopped

C.absorbed

D.reflected

Answers

The image shows that the object is REFLECTED

The illustration represents that the light ray striking the object is reflected. Hence, option (D) is correct.

The given problem is clear explanation for the reflection of light rays. The phenomena by which the rays of light strikes a surface bounce back exactly from the surface by making some angle with respect to normal, is known as reflection of light ray.

In the given figure, we can clearly observe that the light ray is striking the vertical surface somewhere from the bottom, which is known as incident ray. When this ray strikes the surface it bounce back from the surface and we can observe the upward arrow to represent the reflected ray of light.

Thus, we can conclude that the illustration represents that the light ray striking the object is reflected. Hence, option (D) is correct.

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1. What is weather?

2. What are 3 important things that our atmosphere does that allows for life on Earth?

3. The local news mentions that we will have a warm front coming through NH this week.  What might we experience for weather before, during and after this front passes?
4. Is it possible that humans and dinosaurs have drank the same water?  Formulate an argument to this question using your knowledge of the water cycle.

Answers

Hi there!

1. Weather is the condition in a day describing humidity, temperature, and rain or sun conditions. It also includes different features, including hail, snow, and storms.

2. Our atmosphere provides the air we need to breath. It also protects us from harmful UV rays from the sun, and it traps heat to ensure that the planet doesn't freeze.

3. We might have storms such as thunderstorms, or gusts of warm air coming our way. This is caused by the warm front.

4. Yes, it is possible that humans and dinosaurs drank the same water. Because of the water cycle and that water on earth never leaves the atmosphere since it is always cycled or recycled, it is possible that the same water, just in different states, have been in the mouth of a dinosuar.

Hope this helps!

Match these items
. 1. first nuclear reactor Fermi 2. atomic mass 3. splitting of nuclei into lighter elements neutron 4. number of neutrons and protons Becquerel 5. builds heavier elements fission 6. discovered radioactivity curie 7. unit of radiation fusion

Answers

Becquerel discovered radioactivity
Atomic mass is number of neutrons and protons
Fermi is first nuclear reactor
Fission involves splitting of nuclei into lighter elements
Fusion builds heavier elements
Curie is a unit of radiation

Answer:

Answer:

1. Fermi

2. Neutron

3. Fission

4. Atomic mass

5. Fusion

6. Becquerel

7. Curie

Explanation:

A very small red laser pointer is pointed on the wall across the room. When inspecting the reddish light on the wall, you notice that it is _______________ because it has been diffracted.


A) bent

B) brighter

C) spread out

D) bounced back

Answers

I believe it is B Hope this helps

the answer is c) spread out

What determines the atomic number of an element? Question 2 options: A.protons
B.neutrons
C.electrons

Answers

Protons is what determines the atomic number of an element.

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could you create a way to exert a continuous push on the ball? How would the ball respond to this continuous push?

Answers

It would respond like your using gravity by pushing and throwing!
You can create a way to exert a continuous push on a ball by getting rid of any fluid, static, sliding, and rolling friction. This way there would be no friction to slow the ball down. The ball would continue to move at a continuous pace until acted upon by an unbalanced force. Newton's First Law states that an object in motion will stay in motion until acted on by an unbalanced force.

Sort the processes based on the type of energy transfer they involve.??

Answers

the 1st one goes two added sodoes the second one then the third goes to removed then the fourth goes to added and the rest go to removed

Explanation:

Thermal energy is defined as the kinetic energy present within the particles of a substance.

A process in which energy is absorbed by the molecules of a substance is known as endothermic process. On the other hand, a process in which energy is released by the molecules of a substance is known as exothermic process.

Condensation : A process in which vapors change into liquid as bonds are formed and energy is released.

Freezing : A process in which liquid changes into solid as bonds are formed and energy is released.

Deposition : A process in which particles of a substance come closer to each other resulting in bond formation and release of energy.

Sublimation : A process in which solid state directly changes into gaseous state without undergoing liquid state is known as sublimation. In this process, bonds break and energy is absorbed by the solid particles.

Evaporation : A process in which liquid changes into gas as energy is absorbed leading to breakage bond.

Melting : A process in which solid changes into liquid as energy is absorbed leading to breakage bond.

Thus, we can conclude that given processes are sorted as follows.

Thermal energy added : Sublimation, evaporation, and melting.Thermal energy released : condensation, freezing and deposition.

which statement best compares potential and kinetic energy

Answers

potential energy is what something has energy of staying still. if a car was the the top of a hill that’s where it has the most potential. kinetic energy is energy in motion. as that car on the hill starts to roll down, the potential of it lowers as the kinetic raises

Answer:

Potential energy is the energy possessed by a body at rest while kinetic energy is the energy possessed by a body in motion.

Explanation:

Potential energy is the energy possessed by a body by virtue of its position while kinetic energy is the energy possessed by a body by virtue of its motion. Potential energy is the energy acting on a body at rest(not moving) while kinetic energy is the energy acting on moving object(motion).

Example of potential energy is the energy possessed by a parked car. The parked car is not moving i.e the car is in a state of rest

Example of kinetic energy is the energy possessed by an accelerating car. The car is in motion (moving).

Newton's Three Laws - Complete the sentences.

Newton's FIRST Law of Motion

An object at ___ stays at ___ or an object that is ___ at a ___ in a straight ___ keeps moving at that ___ unless another ___ acts on it.

Newton's SECOND Law of Motion

The amount of ___ needed to make an object change its ___ depends on the ___ of the object and the ___ required.

Newton's THIRD Law of Motion

For every ____ (or force), there is a(n) ___ and ___ action (or force).

Answers

1. The answer is An object won't move by itself, and once in motion, it won't stop unless some force acts upon it.
2. The rate of change of momentum is directly related to the force pressed upon it. In other words, when an object is pushed with more force, it will move faster and further away.
3. To every action, there is equal and opposite reaction. 
Final answer:

The FIRST law states that an object at rest stays at rest, or if it's moving it continues at a consistent speed and direction unless acted on by another force. The SECOND law implies that the force needed to change an object's motion depends on its mass and the required acceleration. The THIRD law states that every force (action) has an equal and opposite force (reaction).

Explanation:Newton's Laws of Motion

Newton's FIRST Law of Motion

An object at rest stays at rest, or an object that is moving at a consistent speed in a straight line keeps moving at that speed unless another force acts on it.

Newton's SECOND Law of Motion

The amount of force needed to make an object change its motion depends on the mass of the object and the acceleration required.

Newton's THIRD Law of Motion

For every action (or force), there is a(n) equal and opposite reaction (or force).

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How much power is required to lift a 25 kg box to the top of a 4 meter flight of stairs in 3.5 seconds?

Answers

I believe it is 28.57. 
Around 28 I believe, excuse me if I’m wrong

How can you separate a mixture of 10 grams of salt and 10 grams of sand?

Answers

Step 1.) Put both contents into a small cup or bowl.

Step 2.) Pour water into the cup or bowl.

Step 3.) Stir the contents.

10 grams of salt and 10 grams of sand can be separated by adding water into the mixture. Once you stir the mixture, the salt will dissolve into the water.


We have that we use dissolving, filtration and distillation to separate sand from salt

Dissolving,Filtration Distillation

Sand can be separated adding water to the mixture upon dissolving we filter to get the salt solution out of the sand

Then we distill by boil salt solutions at vaporization temperature of water to get salt back the water and salt solution to get salt back

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how could you make a sound wave sound louder

Answers

If you clap your hands, the shock causes the air around your hands to begin vibrating. When air particles vibrate, they bump into other particles near them. Then these particles begin to vibrate and bump into even more air particles. When the air particles begin vibrating the air inside your ear, you hear a sound.
Final answer:

The loudness of a sound can be increased by increasing the amplitude of the sound wave. This can be achieved by adjusting the volume on a speaker or by using devices designed to amplify sound, like a vuvuzela. Also, sounds with higher amplitude and intensity, such as those from a loud car stereo, are naturally louder.

Explanation:

The loudness or volume of a sound wave can be increased by increasing its amplitude. The amplitude of a sound wave determines how much energy it carries, which directly affects its loudness. An example of this is how a speaker produces louder sounds: as you increase the volume on a speaker, it causes the table or surface it is on to vibrate more vigorously. This is because the speaker is moving more air (higher amplitude), which translates to a louder sound.

Another example is using a vuvuzela. The size and construction of the vuvuzela are designed to amplify the sound produced by the person blowing into it, making it louder. The amplified sound has a higher amplitude and therefore a louder volume.

Finally, in a real-life scenario, consider two sounds: one from a passing car's stereo and the other from the person next to you. The sound from the car's stereo is amplified due to its higher intensity and amplitude, making it louder and causing it to dominate over the sound coming from the person next to you.

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two important influences of dissolving a solute in a solution are temperature and ______.

Answers

xixigzizlgdkgchhcf0uxoyggdvigvoy cocgixt8
Density...
Maybe.. please let me know if this is right

compare and contrast sound waves and light waves . include the physical properties and various behaviors each wave exhibits including those are similar and different

Answers

sound waves are things you can hear but you cant see. light waves on the other hand you can see when something gets to hot these are called heat waves. on the other hand they both are the same because they both are waves of something.

sound waves and light waves are both types of waves that exhibit similar behaviors such as reflection, refraction, and interference. However, they differ in their physical properties such as the medium they travel through, their speed, and their frequency.

What is the difference between a sound wave and a light wave?

Sound waves and light waves are both types of waves that propagate through a medium, but they have several differences in their physical properties and behaviors.

Physical Properties:

1. Medium: Sound waves require a medium to travel through, such as air, water, or solids. Light waves, on the other hand, can travel through a vacuum and do not require a medium.

2. Speed: Sound waves travel at a slower speed than light waves. The speed of sound waves depends on the density and compressibility of the medium through which they are traveling. In contrast, the speed of light waves is constant in a vacuum and is one of the fundamental constants of nature.

3. Frequency: Sound waves have lower frequencies than light waves. The frequency of a sound wave is the number of cycles per second, measured in hertz (Hz). Light waves have much higher frequencies, typically measured in terahertz (THz).

Behaviors:

1. Reflection: Both sound waves and light waves can reflect off surfaces. When a sound wave reflects off a surface, it changes direction, and the angle of incidence is equal to the angle of reflection. When a light wave reflects off a surface, it undergoes a change in direction and can be either specular (like a mirror) or diffuse (like a matte surface).

2. Refraction: Both sound waves and light waves can be refracted or bent when they pass through a medium with a different density. When a sound wave is refracted, it changes direction and speed, while when a light wave is refracted, it can change direction, speed, and wavelength.

3. Interference: Both sound waves and light waves can exhibit interference when two or more waves combine to form a resultant wave. In sound waves, interference can be constructive, where the amplitudes of the waves add together, or destructive, where the amplitudes cancel each other out. In light waves, interference can be either constructive, where the waves add together to create bright fringes, or destructive, where the waves cancel each other out to create dark fringes.

Therefore, sound waves and light waves are both types of waves that exhibit similar behaviors such as reflection, refraction, and interference. However, they differ in their physical properties such as the medium they travel through, their speed, and their frequency.

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Canada is the king of the doughnut world, as it has more doughnut shops per capita than any other country in the world. Tim Hortons, the most popular doughnut joint in Canada, had 3660 locations in Canada in 2015. If the population of Canada was approximately 35.75 million citizens in 2015, what was the number of Tim Hortons stores per capita in Canada in 2015? Express your answer in scientific notation rounded correctly to three decimal places. wht type of bacteria carry out the conversion of gaseous nutrigen to an biologically usefulform of nitrogen I dont know what todo someone help me What do the climb of Mount Everest and the voyage to the moon represent for Kennedy? They provide the possibility that America is taking on too much risk in setting unreasonable goals. They provide an opportunity for nations to come together to share scientific advances. They provide a chance to demonstrate force to take control of the resources of others. They provide the potential for America to surpass its former accomplishments. How is the expression (3 + y) 7 described by its factors and terms?A: It has two factors and the factor (3 + y) has one term.B: It has three factors and the factor (3 + y) has one term.C: It has two factors and the factor (3 + y) has two terms.D: It has three factors and the factor (3 + y) has two terms. i will give you brainiest if right. How does the music of the Renaissance differ from music today? (Think about the elements of music like tone color, rhythm, melody and so on). The Silver Town people went to a fancy restaurant after the big event. Grammy gave the server a $15 tip. If the tip was 20% of the cost of dinner, how much was dinner? Choose Answer:A.$60 B.$45 C.$75 D.$50 Can ideals survive catastrophe? Carloss credit card has an APR of 14.78% and a grace period of 18 days, and Carlos pays his balance in full every month. If his last billing cycle ended on March 28, 2010, and he made his payment on April 13, 2010, Did he owe any interest on his last statements balance? A Punnett square is used to _______. predict the genotypic and phenotypic probabilities of possible offspring determine if a trait runs in a family track inherited traits through many generations identify organisms that are carriers of a specific trait Why is a financial system necessary for business? Which of the following represents the belief used to justify westward expansion of America's borders in the 1800s? (5 points) Monroe Doctrine Manifest Destiny Adams-Onis Treaty Missouri Compromise The Zulus were located primarily inCrimeaSouth Africa India Sudan What was the most important effect of the hundred years' war? What is 27006 42??? Can someone please factor this out for me and explain how you do it? 9x^2+30xy+25y^2 With the growth of the Executive Office of the President, the importance of the Cabinet has _____. Multiple ChoiceYou can model the population of a certain city between 1945-2000 by the radical function P(x)=55,000 sqrt x-1945. Using this model, in which year was the population of that city 165,000?A)1948B)1951C)1954D)1957, What passage in Beowulf contains a biblical allusions marta ha comprado una bicicleta que costaba 280 pero le han hecho una rebaja del 15/ cuanto ha pagado