The closer the particles are together, the ______ sound is able to move.

Answers

Answer 1

Answer:

Faster

Explanation:

The closer the particles are together, the faster sound is able to move.

Sound travels the slowest through the air because gas particles are more spread apart than liquids or solids.

Sound will travel the fastest through solids because the particles in solids are densely packed together.

Answer 2

Final answer:

Sound travels faster in mediums where particles are closer together due to increased density. Solids, being more dense, allow for quicker sound transmission compared to liquids and gases. Temperature and movement of the medium also play a role in the speed of sound.

Explanation:

The closer the particles are together, the faster sound is able to move. This principle is due to the increased density of the medium, which allows sound waves to be transmitted more efficiently between particles. Sound travels faster in solids than in liquids, and faster in liquids than in gases because the particles in solids are much closer together, making solid mediums the most dense.

Furthermore, temperature affects the speed of sound; warmer mediums increase particle movement leading to faster sound transmission. Additionally, the speed of sound is influenced by the medium's movement, such as the impact of wind helping or hindering the travel of sound waves depending on the direction of the sound relative to the wind.


Related Questions

What do cars, power plants and furnaces have in common?
(brainpop)

Answers

Answer:

They all burn fossil fuel is the correct answer.

Explanation:

Cars, power plants, and furnaces all burn fossil fuels such as coal, natural gas, heavy oils, petroleum, oil.

Burning of these fossil fuels results in a release of a huge amount of carbon dioxide and sulfur dioxide gas, into the surrounding that causes air pollution, global warming, acid rain, and these gases present in the environment are highly corrosives and makes suffocating in the environment.

Final answer:

Cars, power plants, and furnaces all run on the process of combustion where chemical energy is transformed into heat and mechanical energy, often using fossil fuels.

Explanation:

Cars, power plants and furnaces all share a common mechanism - they convert chemical energy into heat and mechanical energy. This process is known as combustion. Fossil fuels such as coal, oil, or natural gas are commonly used in these devices. During combustion, chemical reactions occur that release energy in the form of heat. The heat produced can be used directly, as in a furnace, or to do work, like turning the wheels of a car or generating electricity in a power plant.

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Determine the Net Force acting on the object (represented by the solid circle) in this diagram.

Answers

Answer:

200 N to the left

Explanation:

If we say left is negative and right is positive, then the net force is:

∑F = -300 N + 100 N

∑F = -200 N

The net force is 200 N to the left.

A light bulb has a power rating of 60 W. What is the current running into it if it is plugged into a 120 V outlet?

Answers

Answer:

The electric current running into the light bulb is 0.5 A.

Explanation:

We have,

Power rating on a light bulb is 60 W

It is required to find the current running into it if it is plugged into a 120 V outlet. Let I is the electric current. The mathematical definition of power is given by :

[tex]P=VI[/tex]

I is electric current

[tex]I=\dfrac{P}{V}\\\\I=\dfrac{60}{120}\\\\I=0.5\ A[/tex]

So, the electric current running into the light bulb is 0.5 A.

Thick rubber gloves prevent electric shock because​

Answers

Answer:

Rubber is an insulator.

Explanation:

Rubber is an insulator. Electricity will always travel "the path of least resistance." Rubber has a very high resistance, so electricity will go somewhere else to find ground.

Rubber is a thick item

A large rock (representing Earth’s land) and a container of water (representing Earth’s water). What will MOST LIKELY happen when the rock and the water receive the same amount of heat energy from the sun?


The temperature of the water will rise faster.

The water will transfer heat to the rock.

The temperature of the rock will rise faster.

The rock will transfer heat to the water.

Answers

When a rock and water are heated by the sun, the rock's temperature rises faster due to its lower specific heat capacity compared to water, which requires more energy to increase in temperature. Additionally, energy is also used for water evaporation, and higher thermal conductivity in water distributes the heat over a larger area.

When a large rock and a container of water receive the same amount of heat energy from the sun, the temperature of the rock will rise faster than that of the water. This is because rock (or sand) and water have different specific heat capacities. The specific heat capacity is the amount of heat per unit mass required to raise the temperature by one degree Celsius. Sand and rocks have a lower specific heat capacity compared to water, meaning they need less energy to increase in temperature. Conversely, water, with a higher specific heat capacity, requires more energy to raise its temperature, so it heats up more slowly.

Additionally, when sunlight hits the Earth's surface, the energy is not just used for heating. In the case of water, some energy is used for evaporation, further reducing the amount of energy that goes into heating the water compared to rock. Lastly, the thermal conductivity of water is higher, which allows the energy absorbed to be transferred throughout the water, distributing the heat over a larger area and therefore taking longer for the temperature to rise.

Therefore, when both a rock and water are exposed to the same amount of sunlight, the temperature of the rock will likely increase more rapidly than that of water. This phenomenon explains why land areas heat up more quickly during the day compared to bodies of water.

How many times louder is the intensity of
sound at a rock concert in comparison with
that of a whisper, if the two intensity levels
are 130 dB and 2 dB, respectively?

Answers

Answer: the intensity of sound at a rock concert will be 6.31 × 10^12 time louder than that of a whisper.

Explanation: Given that sound at a rock concert power is 130 dB of intensity l2

a whisper power is 2 dB of intensity l1

Using the formula

130dB - 2dB = 10Log(I2/I1)

128/10 = logI2/I1

12.8 = log (I2/I1)

I2/I1 = 6.31 × 10^12

Therefore, the intensity of sound at a rock concert will be 6.31 × 10^12 time louder than that of a whisper.

Final answer:

The sound at a rock concert is approximately 630,957,344 times louder than a whisper, as decibels (dB) are a logarithmic unit of sound intensity.

Explanation:

To compare the loudness of two sounds, we first need to understand that decibels (dB) are a logarithmic measure of sound intensity. A difference of 10 dB signifies a 10-fold increase in sound intensity. Therefore, the difference between the two sound intensities in this case - the rock concert's 130 dB and the whisper's 2 dB - is 128 dB. To convert this into times louder, we would divide the difference by 10[tex](128/10 = 12.8)[/tex] and then use that result (12.8) as a power of 10. Hence, the amplitude of the sound at a rock concert is approximately 630,957,344 times louder than that of a whisper.

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A chemical reaction occurs when 2 white solids are stirred together. They turn into a slushy, white solid and the glass jar feels really cold. Energy is being _________ by the solids, which means this is an _______ reaction.

A) Released, exothermic
B) Absorbed, endothermic
C) Released, endothermic
D) Absorbed, exothermic

Answers

Answer:d

Explanation:

A chemical reaction occurs when 2 white solids are stirred together. They turn into a slushy, white solid and the glass jar feels really cold. Energy is being Absorbed by the solids, which means this is an Endothermic reaction. Hence option B is correct.

What is Endothermic and exothermic reaction ?

Endothermic reaction is a reaction in which energy is absorbed from the surrounding in the form of heat. for example an ice cube takes energy from the surrounding and it melts to form liquid. In this melting of Ice energy is absorbed in the form of heat. In this process the phenomenon is going from high order(solid) to lower order(liquid), hence entropy is increasing in this case. Entropy is nothing but randomness of molecule.

Because of absorption of energy, change in enthalpy is negative.

Exothermic reaction is a reaction in which energy is released in the surrounding in the form of heat.  for example bursting of firecracker gives sound and heat energy and its temperature is greater than surrounding. In this process Energy is released in the surrounding. In this case entropy decreases( solidifying of water into ice is also example of endothermic reaction).

Because of release of energy, change in enthalpy is positive.

Hence option B is correct.

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What is the relationship between frequency, wavelength, and speed of a wave?

Answers

“Wave speed is the distance a wave travels in a given amount of time, such as the number of meters it travels per second. Wave speed is related to wavelength and wave frequency by the equation: Speed = Wavelength x Frequency. This equation can be used to calculate wave speed when wavelength and frequency are known.”

The relationship between the frequency, wavelength & wave speed should be explained below.

Relationship between frequency, wavelength, and speed of a wave:

Here the wave speed represents the distance where the wave should be traveled in the given value of time like the no of meters it travels per second. Also, the speed of the wave should be related to the length of the wave. Also, the equation of the wave frequency should be  Speed = Wavelength * Frequency. In this, all three things should be interlinked with each other.

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A hair dryer is a pump for air. Do a battery and a Genecon act like pumps for charge?

Yes
No

Answers

Answer:

Yes

Explanation:

Genecon is hand operated power generator. So, it can be use to charge a battery.

Final answer:

Yes, both a battery and a Genecon act like pumps for charge.

Explanation:

A hair dryer is a pump for air, and yes, a battery and a Genecon act like pumps for charge. In a battery, an external electrical current is provided to pump the electron flow in the uphill direction, recharging the battery. Similarly, in a Genecon, mechanical energy is converted into electrical energy by rotating a coil inside a magnetic field, acting as a pump for charge.

When it comes to devices that use AC (alternating current), such as hair dryers, the AC potential from the power grid pushes charges back and forth in the circuit of the device, creating an alternating current.

Which phenomenon occurs when a wave encounters a non–transmitting barrier?

A.
refraction of the wave with a different wave speed
B.
reflection of the wave with a different wavelength
C.
reflection of the wave with the same wave speed
D.
refraction of the wave with a different wavelength

Answers

Answer:

C. Reflection of the wave with the same wave speed

Explanation:

Reflection occurs when waves bounce back from a surface they cannot pass through.

Reflection can happen with any type of waves, not just sound waves. For example, light waves can also be reflected. In fact, that’s how we see most objects. Light from a light source, such as the sun or a light bulb, shines on the object and some of the light is reflected. When the reflected light enters our eyes, we can see the object.

Reflected waves have the same speed and frequency as the original waves before they were reflected. However, the direction of the reflected waves is different. When waves strike an obstacle head on, the reflected waves bounce straight back in the direction they came from. When waves strike an obstacle at any other angle, they bounce back at the same angle but in a different direction.

Final answer:

When a wave encounters a non-transmitting barrier, it undergoes C. reflection with the same wave speed.

Explanation:

Reflection is the process by which light, sound, or other waves bounce back when they encounter a boundary or obstacle. It's a fundamental phenomenon in physics and optics, used in mirrors, echo formation, and various technologies like radar and sonar for detection and imaging.

When a wave encounters a non-transmitting barrier, the phenomenon that occurs is a reflection of the wave with the same wave speed. This means that the wave bounces back off the barrier and continues moving at the same speed. The direction of the reflected wave depends on the angle at which the original wave hits the barrier, following the law of reflection.

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describe the minimum requirements for any electric circuit

Answers

Answer:

A power supply, wiring as a conductor.  A switch controls current flow into a circuit.

Explanation:

please give brainliest

Match each word to its definition. (Picture should be included)

Answers

Answer:

flow of electric charges - current

opposition to the flow of an electric current - resistence

stored potential energy at the source of a circuit - voltag

An external force of 5N is applied to a go-kart that is opposite it’s direction of travel for 5 seconds. What is the resulting momentum of the go-kart?

Options:

A: 25 kg m/s

B: 100 kg m/s

C: 975 kg m/s

Answers

Answer:

25N.s=25kgm/s

Explanation:

The resulting momentum in this case is equal to the impulse created by the force 5N during 5 seconds

ΔP=Force.time=F.t

    = 5x5=25kgm/s

Dark clothing feels warmer than white clothing on a sunny day. Which interaction causes the dark clothing to feel warm?

Answers

Explanation:

The darker the object, the better it emits heat, because it's a better absorber of light. On the other hand, a white object appears white because it reflects all the different wavelengths and absorbs little to no light.

Answer: Absorption

Explanation: Because the darker clothing absorbs the heat more than the lighter clothing beacuse of contrast i guess . A P E X

what word can be used to describe the compression of a longitudal wave

Answers

Answer:

Mechanical longitudinal waves are also called compressional or compression waves, because they produce compression and rarefaction when traveling through a medium, and pressure waves, because they produce increases and decreases in pressure.

Explanation:

Mechanical wave used to describe the compression of a longitudal wave.

What are mechanical waves?

Mechanical waves are longitudinal waves that generate compressions along the medium they are travelling and transmit energy from one medium to another location of medium.

Therefore, Mechanical wave used to describe the compression of a longitudal wave.

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Radio waves travel at a speed of 300,000,000 m/s. WFNX broadcasts radio waves at a

frequency of 101,700,000 Hertz. What is the wavelength of WFNX’s radio waves?

Answers

Answer:

Wavelength, [tex]\lambda=2.94\ m[/tex]

Explanation:

It is given that,

Speed of radio waves is [tex]v=3\times 10^8\ m/s[/tex]

Frequency of radio waves is f = 101,700,000 Hz

We need to find the wavelength of WFNX’s radio waves. The relation between wavelength, frequency and speed of a wave is given by :

[tex]v=f\lambda[/tex]

[tex]\lambda[/tex] is wavelength

[tex]\lambda=\dfrac{v}{f}\\\\\lambda=\dfrac{3\times 10^8}{101,700,000}\\\\\lambda=2.94\ m[/tex]

So, the wavelength of WFNX’s radio waves is 2.94 m.

The wavelength of WFNX’s radio waves with the given speed and frequency is 2.95m.

Given data in the question;

Speed of wave; [tex]c = 3 * 10^8m/s[/tex]Frequency of wave; [tex]f = 1.017 * 10^8 Hz = 1.017 * 10^8 s^{-1}[/tex]

wavelength; [tex]\lambda =\ ?[/tex]

To determine the wavelength of the radio wave, we use the expression for the relations between wavelength, frequency and speed.

[tex]\lambda = \frac{c}{f}[/tex]

Where [tex]\lambda[/tex] is wavelength, f is frequency and c is the speed.

We substitute our given values into the equation

[tex]\lambda = \frac{3*10^8m/s}{1.017*10^8s^{-1}}\\\\\lambda = 2.95m[/tex]

Therefore, the wavelength of WFNX’s radio waves with the given speed and frequency is 2.95m.

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A rock falls from the top of a cliff. What will happen to the rock's kinetic energy when it strikes the ground below?
A. It will transform into other forms of energy.
B. It will create an equal amount of potential energy.
C. It will increase the total kinetic energy of the universe.
D. It will be destroyed.

Answers

Answer:

A. It will transform into other forms of energy.

Explanation:

According to the law of conservation of energy, energy is never created or destroyed. Only changed from one form into another.

Moon phases are named after the shape the moon resembles during that time. What is is called when the shape of the moon is between a half circle and a full circle. crescent semi-full three-fourths gibbous

Answers

It would be a gibbous.

A large animal, such as a lion is made of
A.one large cell
B. b. ten or fewer cells
c. c. trillions of cells
D. d. No one can know the correct answer without looking closely at the individual
animal

Answers

Answer:

c. trillions of cells

Explanation:

Every animal has trillions of cells to function

The majority of animals have millions of cells, while various species have varying quantities. For example, there are more than 40 trillion cells in an adult human. Thus option C is correct.

What are the different cells are present in organism?

The animal body contains a variety of cell kinds. Skin cells, muscle cells, blood cells, fat cells, nerve cells, sex cells, and stem cells are a few examples of common animal cell types.

Skin or epithelial tissue is composed of skin cells. The cells that make up muscular tissue are referred to as  muscle cells.

All animals have numerous cells that work together to build the entire organism because they are multicellular. These cells in more complex species, like humans, may be highly specialized to carry out various tasks.

The lion, like all mammals and other creatures, is formed of eukaryotic cells, which contain DNA, ribosomes, and cytoplasm in addition to many other organelles.

Therefore, A large animal, such as a lion is made of trillions of cells.

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The neutrons within the nucleus of an atom have what charge?​

Answers

Answer:

they don't have a charge

Explanation:

the neutrons are neutral :)

Neutrons in an atom's nucleus are electrically neutral and have no charge, contrasted with positively charged protons; both contribute equally to the atomic mass.

The neutrons within the nucleus of an atom have no charge. Neutrons are one of the two types of particles found in the nucleus, the other being protons. While protons carry a positive charge, neutrons are electrically neutral. In other words, they do not possess any charge, neither positive nor negative.

This unique property of neutrons allows them to add to the mass of an atom without affecting its charge. Furthermore, the mass of both protons and neutrons is represented as 1 atomic mass unit (amu), making them essential for the atomic mass. However, in terms of electrical contribution, neutrons play no role in the charge of the atom.

Can someone please help me ASAP?

Answers

Answer:

B

Explanation:

Answer:

Reduce the time required for work

Explanation:

Electrical current is a measure of the amount of electrical charge transferred per unit of time.

True

False

Answers

Answer:

True

Explanation:

It represents the flow of electrons through a conductive material, such as a metal wire. It is measured in amperes. The SI unit of electrical current is the ampere, defined as 1 coulomb/second.

Answer:

True

Explanation:

Which cells in the immune system identify pathogens and distinguish one pathogen from another?

T cells

phagocytes

B cells

red blood cells

Answers

Answer:

T cell

Explanation:

the answer is now bbzbdbxjxjxbd

Which device is similar to a sandwich that has layers of semiconductors?
O A. A capacitor
O B. A battery
O c. A transistor
O D. A resistor

Answers

Answer:

C. A transistor

Explanation:

A device that is similar to a sandwich that has layers of semiconductor is known as the transistor. Hence, option C is correct.

What is a Transistor?

A transistor is a semiconductor signal-generating, regulating, and amplifying device. Integrated circuits, or "microchips," which frequently have billions of these tiny components etched onto their glossy surfaces, use transistors as their active parts.

Transistors, which are present in practically every electronic component, have evolved into the brain cells of the age of information.

The emitter, collector, and base—or, in more recent electrical applications, the source, drain, and gate—are the three electrical leads that commonly make up a transistor.

The ability of the semiconductor material to conduct electric charge, which in most applications moves here between emitter (or sources) and collector (or drain), is influenced by an electrical signal supplied to the bases (or gate).

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why is important the electromagnetism, diff usages, and how will be our World without it

Answers

Answer:

Electromagnetism has important scientific and technological applications. It is used in many electrical appliances to generate desired magnetic fields. It is even used in a electric generator to produce magnetic fields for electromagnetic induction to occur. It has many more technological applications including MRI scanning (magnetic resonance imaging) and electric bells.

Explanation:

Electromagnets are widely used as components of other electrical devices, such as motors, generators, electromechanical solenoids, relays, loudspeakers, hard disks, MRI machines, scientific instruments, and magnetic separation equipment.

Which two elements will most likely form an ionic bond? (Click on the periodic table icon to view these elements)
-krypton and lithium
-magnesium and silicon
-calcium and potassium
-iodine and chlorine

Answers

Answer:

-magnesium and silicon

Explanation:

The two elements that will most likely form an ionic bond are magnesium and silicon. The correct option is b.

What are ionic bonds?

Ionic bonds are defined as those that are created when all of an atom's electrons completely transfer to another atom. Ionic compounds are those that contain ionic bonding.

The atom losing electrons in this bond formation is referred to as an electromotive atom, while the atom acquiring electrons is referred to as an electronegative atom.

In these compounds, ions with opposing charges are drawn to one another and combine to form a compound. Magnesium and silicon form a crystalline compound that is black, and these elements can form ionic bonds. The formula of magnesium and silicon is MgO₃Si

Therefore, the correct option is b, magnesium, and silicon.

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Question 8
Handividual was rotating a cork on a string around his or her head, and suddenly released the string the cork would fly off in a straight line in one direction. This is an example of which of the following
A Newton's first law of motion
B
Newton's second law of motion
C
Newton's third law of motion
D
Newton's fourth law of motion

Answers

Answer:

A hope this helps

Explanation:

Final answer:

The cork flying off in a straight line after being released exemplifies Newton's first law of motion, which states that an object will continue at a constant velocity unless acted upon by an external force.

Explanation:

The scenario described where a cork flies off in a straight line after being released from circular motion is an example of Newton's first law of motion. This law, also known as the law of inertia, states that an object will remain at rest or in uniform motion in a straight line unless acted upon by an external force. In the case of the cork, once it is no longer constrained by the tension of the string (which provides the centripetal force necessary for circular motion), it continues in a straight line (the tangent to the circle at the point of release) because there's no other force acting on it to change its state of motion.

In contrast, Newton's second law focuses on how the acceleration of an object is related to the forces acting on it and its mass. Newton's third law deals with action-reaction force pairs, stating that for every action there is an equal and opposite reaction. The concept of a fourth law of motion does not exist in Newtonian physics, which includes only three laws of motion.

please answer i need help asap!!!

Answers

The time to distance ratio is 2.1:1 , making the first time 5 seconds, the first distance 18.9 m, and the second time 15 seconds. I hope this helps!

A sound wave produced by a loudspeaker can travel through water, but not through a vacuum. In comparison, a red light wave produced by a laser can
travel through
A. both water and a vacuum
B. a vacuum, but not through water
C. neither water nor a vacuum
D. water, but not through a vacuum
Please help

Answers

Answer:

A. Light can travel trough air and space.

Explanation:

A vacuum is space that has no air inside of it. Since light is able to go through 'nothing' and matter, your answer must be A.

Answer:

A) Both water and a vacuum

Explanation:

Sound is a mechanical wave that requires a medium such as air or water to travel through. A laser on the other hand can travel through some mediums and vacuum.  

Use the drop-down menus to complete each statement.

A cluster of atoms whose magnetic fields are aligned in the same d

The end of a magnet where the force is the strongest is the

The region where a magnetic force is exerted is the

A substance that is easily magnetized is a

Answers

Answer:

Magnetic Domain, Magnetic Pole, Magnetic Field, and Ferromagnetic Material

Explanation: I just got 100 in my assigment

A cluster of atoms whose magnetic fields are aligned in the same direction is Magnetic Domain.

The end of a magnet where the force is the strongest is the Magnetic Pole.

The region where a magnetic force is exerted is the Magnetic Field.

A substance that is easily magnetized is a Ferromagnetic Material.

What is Magnetic field?

The magnetic field is the region of space where a charged object experiences magnetic force when it is moving.

When the atoms of an object having magnetic field in same direction is called magnetic domain.

When a charged object moves in the magnetic field of other object, the magnetic force is experienced.

The pole is the point where the magnetic force is maximum. Bar magnets has two poles.

A substance which is easily magnetized is the ferromagnetic material.

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