How does reverberation explain why your voice sounds different in a gym than it does in your living room

Answers

Answer 1
Sound can reach the inner ear by way of two separate paths, and those paths in turn affect what we perceive. Air-conducted sound is transmitted from the surrounding environment through the external auditory canal, eardrum and middle ear to the cochlea, the fluid-filled spiral in the inner ear. Bone-conducted sound reaches the cochlea directly through the tissues of the head.
When you speak, sound energy spreads in the air around you and reaches your cochlea through your external ear by air conduction. Sound also travels from your vocal cords and other structures directly to the cochlea, but the mechanical properties of your head enhance its deeper, lower-frequency vibrations. The voice you hear when you speak is the combination of sound carried along both paths. When you listen to a recording of yourself speaking, the bone-conducted pathway that you consider part of your “normal” voice is eliminated, and you hear only the air-conducted component in unfamiliar isolation. You can experience the reverse effect by putting in earplugs so you hear only bone-conducted vibrations.
Some people have abnormalities of the inner ear that enhance their sensitivity to this component so much that the sound of their own breathing becomes overwhelming, and they may even hear their eyeballs moving in their sockets.
Answer 2

Reverberation is why your voice sounds different in a gym compared to a living room; hard surfaces in a gym increase reverberation time, creating echoes that can make sound seem mushy, while softer surfaces in a living room shorten it, providing clearer sound quality.

Reverberation explains why your voice sounds different in a gym compared to your living room due to the unique acoustic properties of different environments. In a gymnasium, the hard surfaces result in a longer reverberation time as sound waves bounce off and overlap each other, creating what is known as the comb effect. This often leads to mushy or muddled musical sounds and makes speech more difficult to understand due to the multiple echoes. Conversely, a living room typically has softer surfaces and objects that absorb sound, resulting in shorter reverberation times and a clearer, more intimate sound quality.

Reverberation provides us with clues about the size of a space and its material composition, affecting our perception of sound. For instance, large concert halls are designed with optimal reverberation times to enhance music, while spaces intended for speech, like lecture halls, aim for shorter reverberation to maintain speech clarity. Adjusting the level of reverberation can also add fullness to recorded voices or create the illusion of a different performance space.


Related Questions

To increase the brightness of a desk lamp, a student replaces a 60-watt light bulb with a 100-watt bulb.  Compared to the 60-watt bulb, the 100-watt bulb has


1.less resistance and draws more current


2.less resistance and draws less current


3.more resistance and draws more current


4.more resistance and draws less current

Answers

Answer:

3. more resistance and draws more current

Explanation:

According to a derivation from Ohm's law, the power, P, generated by the bulb is directly proportional to square of the current, I, passing through it. i.e

P ∝ I²

P = I²R         -------------------- (i)

Where;

R = constant of proportionality called resistance

From equation (i), it can thus be deduced that the power, P, is also directly proportional to the resistance, R.

Thus;

(i) When power increases, resistance increases

(ii) When power increases, current also increases.

So for the 100-watt bulb, compared to the 60-watt bulb, there will be more resistance and more current will be drawn.

Answer:

Option 1. Less resistance and draws more current

Explanation:

To better understand this concept, let us determine the resistance and current of each bulb assuming a 240V supply.

Recall:

Power = current (I) x voltage (V)

P = IV

Power = square voltage/ resistance

P = V^2 /R

For the 60watt bulb:

Power (P) = 60watts

Voltage = 240V

Current (I) =?

Resistance =?

A. P= IV

60 = I x 240

Divide both side by 240

I = 60/240

I = 0.25A

B. P = V^2 /R

60 = (240)^2 / R

Cross multiply to express in linear form

60 x R = (240)^2

Divide both side by 60

R = (240)^2 / 60

R = 960 ohms

For 100watts bulb:

Power (P) = 100watts

Voltage = 240V

Current (I) =?

Resistance =?

A. P= IV

100 = I x 240

Divide both side by 240

I = 100/240

I = 0.42A

B. P = V^2 /R

100 = (240)^2 / R

Cross multiply to express in linear form

100 x R = (240)^2

Divide both side by 100

R = (240)^2 / 100

R = 576 ohms

Summary:

60watts bulb has a current of 0.25A and a resistance of 960 ohms

100watts bulb has a current of 0.42A and a resistance of 576 ohms.

Comparing the resistance and current of the 60watts and 100watts bulb under the same supply of 240V,

the 100watts bulb has lesser resistance than the 60watts bulb and draws more current than the 60watts bulb.

What are Mid-Ocean Ridges caused by?

Answers

Answer:

occurs when convection currents rise in the mantle beneath the oceanic crust and create magma where two tectonic plates meet at a divergent boundary.

Explanation:

Divergent boundaries

What is the job of chlorophyll in photosynthesis?

A) absorbs the sun’s energy
B) Makes CO2 for the plant
C) Reflects the 02
D) it give the plant energy

Answers

Answer:

A

Explanation:

A
Green substance in producers that traps light energy from the sun, which is then used to combine carbon dioxide and water into sugars in the process of photosynthesis. Chlorophyll is vital for photosynthesis, which helps plants get energy from light

1. Define friction. Name and describe two kinds of friction.

Answers

Answer:

Friction is a force that holds back the movement of a sliding object.

Explanation:

The two types of friction: Static friction and Kinetic friction.  Static friction operates between two surfaces that aren't moving relative to each other, while kinetic friction acts between objects in motion.

Final answer:

Friction is a force that resists motion between two contacting surfaces, indispensable yet challenging. There are two primary types: static friction, which acts on objects at rest, and kinetic friction, which occurs once motion has begun. Understanding and calculating these forces are crucial in physics to solve related problems.

Explanation:

Defining Friction

Friction is a force that opposes motion between two surfaces that are in contact. It is an essential force in everyday life, allowing us to walk and drive vehicles without slipping but also poses a challenge as it causes wear and tear on moving parts of machines.

Types of Friction

Static Friction

Static friction occurs between two surfaces that are not moving relative to each other. It needs to be overcome for motion to start. An example of static friction is pushing a stationary car; it takes considerable force to get the car moving.

Kinetic Friction

Kinetic friction, also known as dynamic friction, acts between two surfaces that are in motion relative to one another. An example of kinetic friction is the force you feel when sliding a book across a table.

Calculating Friction

The magnitude of static and kinetic friction can be calculated using formulas that take into account the coefficient of friction between the two surfaces and the normal force exerted between them. These calculations are critical in solving problems involving Newton's laws of motion.

FREE BRANLIEST COMMENT AND LIKE SOMEEBODY HELP ME I BEEN WORKING ON THIS FOR TWO DAYS AND IM SLOWY DYING. A puck moves 2.35 m/s in a -22 degree direction. A hockey stick pushes it for 0.215 s, changing its velocity to 6.42 m/s in a 50 degree direction. What is the magnitude of the displacement and Direction of displacement

Answers

Answer:

0.805 m at 32.6°

Explanation:

Given in the x direction:

v₀ₓ = 2.35 m/s cos -22° = 2.179 m/s

vₓ = 6.42 m/s cos 50° = 4.127 m/s

t = 0.215 s

Find: Δx

Δx = ½ (v + v₀) t

Δx = ½ (4.127 m/s + 2.179 m/s) (0.215 s)

Δx = 0.678 m

Given in the y direction:

v₀ᵧ = 2.35 m/s sin -22° = -0.880 m/s

vᵧ = 6.42 m/s sin 50° = 4.918 m/s

t = 0.215 s

Find: Δy

Δy = ½ (v + v₀) t

Δy = ½ (4.918 m/s + -0.880 m/s) (0.215 s)

Δy = 0.434 m

The magnitude of the displacement is:

d² = Δx² + Δy²

d² = (0.678 m)² + (0.434 m)²

d = 0.805 m

The direction of the displacement is:

θ = tan⁻¹(Δy/Δx)

θ = tan⁻¹(0.434 m / 0.678 m)

θ = 32.6°

2. A 60 N net force is applied to a 12 kg box.
What is the acceleration of the box?

Answers

Answer:

A = 5 meters/s^2

Explanation:

Force = mass x acceleration

A = Force/mass

A = 60/12

A = 5 meters/s^2

A runner travels 2.5 laps around a circular track in a time of 75 sec. The diameter of the track is 50 m and its circumference is 120 m. Find (a) the average speed of the runner and (b) the magnitude of the runner's average velocity. Average speed depends on the total distance traveled, whereas average velocity depends on the displacement at the end of the particular journey.

Answers

Answer:

2.67m/s

0.67m/s

Explanation:

Given parameters:

Number of laps run = 2.5laps

time taken  = 75 sec

Diameter of track  = 50m

Circumference  = 120m

Unknown:

Average speed of runner  = ?

Average velocity of runner  = ?

Solution:

Average speed depends on the total distance traveled,  it is the rate of change of distance with time. It covers the full extent of the path;

       Average speed  = [tex]\frac{distance}{time}[/tex]

                           distance = circumference

     Average speed  = [tex]\frac{200}{75}[/tex]   = 2.67m/s

Average velocity depends on the displacement at the end of the particular journey. The displacement deals with the length of path from start to finish in a specific direction.

The diameter is the same as displacement here.

   Average velocity  = [tex]\frac{displacement}{time}[/tex]   = [tex]\frac{50}{75}[/tex]    = 0.67m/s

a 7.3kg gallon paint can is lifted 1.78 meters vertically to a shelf. what is the change potential energy of the paint can

Answers

Answer:

127.5 J

Explanation:

Potential energy is given as the product of mass of an object, the height moved and acceleration due to gravity. Therefore, PE=mgh

The change in potential energy is given by mg(hf-hi) where hf-hi is change in height got by subtracting initial height from final height. In this case, the initial height is zero while final height is 1.78 m.

Substituting 9.81 m/s2 for g, 7.3 kg for m and h with 1.78 then the change in potential energy will be

7.3*9.81*(1.78-0)=127.47114 J

Rounded off as 127.5 J

Is glucose and oxygen products reactants of cellular respiration

Answers

Answer:

Glucose and oxygen are products of photosynthesis.

Explanation:

Energy, carbon dioxide and water are products of cellular respiration. Glucose and oxygen are reactants in cellular respiration. Energy, water and carbon dioxide are reactants of photosynthesis.

Answer: Reactants

Explanation: A cell will need to break glucose to create energy. Oxygen will turn into carbon dioxide, which is what us humans breathe out.


When the forces acting on an object are _____, the net force must be zero.

Answers

Answer:

According to Newton's first law, when the net force acting on an object is zero, the object must __have a velocity of zero___.

Explanation:

When the net force is zero, the acceleration is zero, so the velocity must be constant. Note that zero velocity is simply a special case of constant velocity.

Hope THIS HELPS

MARK BRAINLIEST!

Answer:

D) positive and negative

Explanation:

Where do you find electromagnetic waves on earth? what are some everyday uses?

Answers

Answer:

Radio waves are used for communications and radar. Microwaves are used to cook your food. Infrared waves are used in remote controls and are emitted from all warm objects, allowing them to be used to create heat-sensitive cameras.

Explanation:

Basically electromagnetic waves can be found in your everyday life.

Answer: You can find Electromagnetic waves thru (Radio waves)

Explanation:

Which is used for radar's and communication links Infrared waves can be used as remote control's Fun fact- can be used as a heated camera! You can use the radio waves for microwaves which is to heat up/cook any kind of food aint that something!

Which of the following is a high wave that crashes down onto the
ocean floor?
a. breaker
b. tide
c. upwelling
d. deflection

Answers

A breaker is a high wave that crashes onto the ocean floor.
A breaker should be the wave that you’re looking for.

Which is likely to produce the brightest spectra?
A. Holographic gratings
B. Reflection gratings on plastic
C. Transmission gratings on glass
D. Replica transmission gratings on plastic

Answers

Hi the answer it will be A the correct one
Final answer:

Holographic gratings are likely to produce the brightest spectra.

Explanation:

The correct answer is A. Holographic gratings are likely to produce the brightest spectra. Holographic gratings are created using interference patterns produced by laser light, resulting in highly precise and bright spectra. Reflection gratings on plastic (option B), transmission gratings on glass (option C), and replica transmission gratings on plastic (option D) can also produce spectra, but holographic gratings are known to have superior brightness and quality.

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A student is building a simple circuit with a battery, light bulb, and copper wires. When she connects the wires to the battery terminals, the light bulb does not light up. Which of the following could explain why the bulb does not light?

A. The is no energy source.

B. The circuit is open.

C. This circuit is too simple to light up a light bulb.

D. Copper wires do not conduct electric current.

Answers

It’s will be B because the circuit had a open or close so if that doesn’t work than it’s because it’s open

Option B represents the correct answer.

The Bulb does not light up because the circuit is an open circuit.

Open and Closed Circuit

An electrical circuit where the energy is not flowing through the circuit is called the open circuit. In the open circuit, the continuity is broken so that the current does not flow through the circuit.

An electrical circuit where the energy is allowed to flow through the circuit by turning it on is called the closed circuit. A circuit is made closed if the electricity is flowing from an energy source to the desired endpoint of the circuit.

Given that a simple circuit is built up by a student. The circuit is made with a battery, light bulb, and copper wires. The light bulb does not light up when the copper wires are connected to the battery terminals because there is no energy flow through the circuit. It means that the circuit is an open circuit.

Hence we can conclude that the light bulb does not light up due to the no energy flow in the circuit. Option B is the correct answer.

To know more about the open and closed circuit, follow the link given below.

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What kind of reaction is it when heat is RELEASED in a chemical reaction, causing temperature to increase?
A)Exothermic Reaction
B)Endothermic Reaction

Answers

Answer:

A

Explanation:

EXothermic mean to release heat hit the EX almost like exit

A 24.8 cm tall object is placed in
front of a lens, which creates a
-3.09 cm tall image. If the object is
37.5 cm from the lens, what is the
image distance?

Answers

Answer:

Image distance, v = 4.67 cm

Explanation:

We have,

Height of the object, h = 24.8 cm

Height of the formed image, h' = -3.09 cm

Object distance, u - -37.5 cm

It is required to find the image distance. Lens formula is :

[tex]\dfrac{1}{v}-\dfrac{1}{u}=\dfrac{1}{f}[/tex]

Using formula of magnification,

[tex]m=\dfrac{v}{u}=\dfrac{h'}{h}[/tex]

v is image distance

[tex]v=\dfrac{uh'}{h}\\\\v=\dfrac{-37.5\times (-3.09)}{24.8}\\\\v=4.67\ cm[/tex]

So, the image distance is 4.67 cm.

Question 6 of 15
2 Points
_ friction occurs when two solid surfaces rub against each other.
Answer here
SUBMIT

Answers

Answer: sliding

Explanation:

Answer:

horizontal friction is the correct answer

A skydiver has a mass of 140 kg. At what speed will she have a momentum
of 10,000 kg•m/s?

Answers

Answer:

71.4 m/s

Explanation:

The molecules of a substance become more closely packed and move more quickly.
What is happening to the substance?

The animal derives energy from its food to maintain its body temperature.
State the energy change that takes place

Answers

The substance is likely experiencing a phase change due to increased kinetic energy from heating. For the animal, chemical energy from food is converted into thermal energy to maintain body temperature.

When the molecules of a substance become more closely packed and move more quickly, the substance is undergoing a phase change, likely from a solid to a liquid or a liquid to a gas. This change is the result of increased kinetic energy due to heating, which causes the molecules to vibrate or translate more vigorously. As for the animal, when it derives energy from its food to maintain body temperature, the energy change taking place is the conversion of chemical energy from the food into thermal energy (heat) within the body.

Why is it important to understand the behavior of light when designing and building any type of structure, such as a house, school, store, hospital or office building?

Answers

It is important to understand the behavior of light when designing and building any type of structure because it is necessary for the better illumination of the interior space.

What is meant by optics ?

Optics is the branch of science, that deals with study of light and the behaviour and properties of light.

Here,

It is important to understand the behavior of light when designing and building any type of structure, such as a house, school, store, hospital or office building.

This is because, interior space and its arrangements are the important aspects in building any structure. So that, the designing of interior space became more important and it must be more accurate since, the adjustments of the effects of heat and light became the major needs for every architecture.

These buildings are built for people to use them or live in them, in the most comfortable way. So that, the arrangements of the windows and doors primarily depends on the distribution of light at that positions.

The present living system demands more use of electrical energy for various purposes in our everyday life. So, the availability of daylight can help us to reduce the over consumption of electrical energy in the day time.

Hence,

It is important to understand the behavior of light when designing and building any type of structure because it is necessary for the better illumination of the interior space.

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Final answer:

Understanding the behavior of light is vital in architecture due to its impact on mood, aesthetics, functionality, and energy efficiency. It informs decisions on lighting design, fixture selection, and the overall architectural design to create spaces that are functional, safe, and evoke desired emotional responses.

Explanation:

Understanding the behavior of light is crucial in the design and construction of any structure, such as houses, schools, stores, hospitals, or office buildings, due to its significant impact on both the functionality and aesthetics of a space. Light can influence mood, perception, and even the well-being of occupants.

For example, natural light can enhance productivity and happiness in offices and schools, while soft, warm lighting can make homes feel more welcoming and comforting. Furthermore, the understanding of light's properties, such as reflection, refraction, and shadow creation, plays an essential role in achieving energy efficiency, enhancing visibility, and ensuring the safety of the occupants.

Considering the architecture of a space is vital as it directly influences lighting design, necessitating a thoughtful selection of lighting fixtures and techniques that complement the structural elements and intended use of each area. Thus, integrating light-related considerations into the architectural design process facilitates the creation of functional, aesthetically pleasing, and emotionally resonant environments.

PLS HELP I NEED IT
Which objects allow humans to access groundwater? Select three options.


A. a spring

B. a well drilled into an aquifer

C. a well drilled below the water table

D. an aquifer capped by thick granite

E. layers of soil and rock above the water table

Answers

Answer:

A. a spring & B. a well dried into an aquifer.

a- A Spring

B-A well drilled into an aquifer

E-layers of soil and rock above the water table

velocity is described by __ and time

Answers

Answer:

distance

Explanation:

John pushes forward on a car with a force of 125n while bob pushes backward on the car with a force of 225n. what is the net force on the car

Answers

The net force on the car is -100 N, and it acts in the direction of Bob's force. This means the car experiences a net force of 100 N directed backward.

To find the net force on the car, we need to consider the vector sum of the forces applied by John and Bob. Since they are acting in opposite directions, we'll use the following formula:

Net Force = Force_John + Force_Bob

Now, substitute the given values:

Net Force = 125 N + (-225 N)

Net Force = 125 N - 225 N

Net Force = -100 N

The negative sign indicates the direction of the net force, which is in the direction of the greater force (towards Bob, the direction of the 225 N force).

FREE BRANLIEST❗️❗️ for anyone who answers this correctly

Answers

Answer:

1.29x10^5 m

Explanation:

Step 1:

Data obtained from the question.

Mass of uranus (M1) = 8.68x10^25Kg

Mass of miranda (M2) = 6.59x10^19Kg

Force (F) = 2.28x10^19N.

Gravitational constant (G) = 6.674×10^−11 m3/kgs2

Distance apart (r) =?

Step 2:

Determination of the distance apart.

Using the Newton's law of universal gravitation equation, the distance apart of uranus and the moon miranda can be obtained as follow:

F = GM1M2/r2

r2 = GM1M2/F

r2= (6.674×10^−11x8.68x10^25x6.59x10^19)/2.28x10^19

r2 = 1.67x10^16

Take the square root of both side.

r = √(1.67x10^16)

r = 1.29x10^5 m

Therefore, the distance apart is 1.29x10^5 m

Answer:

1.29x10^5 m

Explanation:

Step 1:

Data obtained from the question.

Mass of uranus (M1) = 8.68x10^25Kg

Mass of miranda (M2) = 6.59x10^19Kg

Force (F) = 2.28x10^19N.

Gravitational constant (G) = 6.674×10^−11 m3/kgs2

Distance apart (r) =?

Step 2:

Determination of the distance apart.

Using the Newton's law of universal gravitation equation, the distance apart of uranus and the moon miranda can be obtained as follow:

F = GM1M2/r2

r2 = GM1M2/F

r2= (6.674×10^−11x8.68x10^25x6.59x10^19)/2.28x10^19

r2 = 1.67x10^16

Take the square root of both side.

r = √(1.67x10^16)

r = 1.29x10^5 m

Therefore, the distance apart is 1.29x10^5 m

Which term defines the amount of mechanical work an engine can do per unit of heat energy it uses? A. specific heat B. conductivity C. thermal expansion D. efficiency

Answers

Answer:

Efficiency

Explanation:

The amount of mechanical work an engine can do per unit of heat energy it uses is called its efficiency. It is also defined as the output divided by the total electrical power consumed.In terms of heat, efficiency of engine is given by :

[tex]\eta=1-\dfrac{Q_o}{Q_i}[/tex]

[tex]Q_o\ and\ Q_i[/tex] are output heat and input heat respectively.

Hence, the correct option is (d) "efficiency"

Final answer:

Efficiency is the key factor defining the mechanical work output of a heat engine in relation to the heat energy input.

Explanation:

Efficiency is the term that defines the amount of mechanical work an engine can do per unit of heat energy it uses. It is calculated as the ratio of the useful work extracted to the energy input needed to heat the hot reservoir. In the context of a heat engine, efficiency plays a crucial role in determining how well the engine converts heat energy into mechanical work.

What is the total amount of energy stored in a 12-V, 75 A*h car battery when it is fully charged?

Answers

Explanation:

Power is current times voltage.  Power is also energy per time.

P = IV = E/t

Solving for energy:

E = V It

E = (12 V) (75 Ah) (3600 s / h)

E = 3,240,000 J

E = 3240 kJ

The total amount of energy stored in a fully charged 12-volt, 75 A*h car battery is 900 watt-hours.

What is the total amount of energy stored?

The total amount of energy stored in a battery can be calculated using the formula:

Energy (in watt-hours) = Voltage (in volts) × Current (in amperes) × Time (in hours)

In this case, you have a 12-volt car battery with a capacity of 75 ampere-hours (A*h). When the battery is fully charged, it means it can provide 75 amperes of current for one hour.

Plugging in the values:

Energy = 12 V × 75 A*h

Calculating:

Energy = 900 watt-hours (Wh)

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A submarine send out a pulse of ultrasound to check how close it is to the seabed the reflected waves are detected 0.2 seconds later work out the total distance travelled by the detected wave is the speed of ultrasound is in water is 1500 M/S

Answers

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300m

1500 m/s x 0.2 secs = 300m

Which situation will have the highest resistance?
A.long wire and high temperature
B. short wire and high temperature
C. long wire and cold temperature
D.short wire and low temperature​

Answers

Answer:

i think it is C

Explanation:

Answer: A. Long wire and high temperature

Explanation:

Select the correct answer from each drop-down menu.
The standard wave format for any wave is
wave. When depicting
wave in standard wave
format, the direction of motion must be rotated by 90 degrees. Only one of two waves is shown at a time when placing
wave in standard wave format.
Reset
Next

Answers

Answer:

a transverse (sort of a plot of a sine or cosine graph, basically)

b longitudinal

c Electromagnetic (an electric wave and a magnetic wave travelling together at right angles to each other)

Explanation:

Waves are able to cause a disturbance along a medium thereby transferring energy.

What is a wave?

The image and the details of the question are missing but I will try  to help you the much I can. A wave is defined as a disturbance along a medium which transfers energy.

A wave can be classified as;

Transverse waveLongitudinal wave

Or as;

Mechanical waves andElectromagnetic waves

Hence, waves are able to cause a disturbance along a medium thereby transferring energy.

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You are an astronaut in space far away from any gravitational field, and you throw a rock as hard as you can. The rock will:

slowly slow down and stop

continue at the same speed forever

continue to accelerate at the rate it was when it left your hand


PLZ HELP QUICKLY!

Answers

Answer:

the rock will continue at the same speed unless it is affected by another force such as gravity and so if you threw it it will continue to move unless affected by a force

Explanation:

this is because Newton's first law states that every object will remain at rest or in uniform motion in a straight line unless compelled to change its state by the action of an external force.

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