when a dentist takes x-rays, they must be careful to correctly interpret the results. in one study, it was found that dental students and new dentists were much more likely than experienced dentists to think the x-ray below showed a fracture in the tooth (pointed by the black arrow). but there is not really a fracture present. what illusion makes the 'fracture line' look darker and more serious to the less experienced dentists than it really is?

Answers

Answer 1

In a case whereby a dentist takes x-rays, they must be careful to correctly interpret the results. in one study, it was found that dental students and new dentists were much more likely than experienced the illusion that makes the 'fracture line' look darker and more serious to the less experienced dentists than it really is Mach bands.

What is Mach bands?

Mach bands  can be described as the illusory dark as well as the bright bars seen at the foot and knee of a luminance trapezoid this wa explained by Ernst Mach in the latter part of the 19th century however the  Mach bands  can be regarded as the test bed not only for models of brightness illusions but of spatial vision in general.

Therefore, in the bcase above the illusion that makes the 'fracture line' look darker  as wwell as serious to the less experienced dentists than it really is Mach bands.

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Related Questions

A student is tasked with using a force table to balance a small ring in the center of a pin, as shown in Figure 1. For each of the four strings shown, one end is attached to the small ring, and the other end is attached to a hanger that can hold masses. Each string is wrapped around a pulley so that the hanger and masses are at rest. The location of each pulley may be changed. Figure 2 shows a top-down view of the free-body diagram of the forces exerted on the pin at a particular moment in time. From a top-down perspective, in what direction will the pin accelerate?

A-Up and to the right
B-Up and to the left
C-Down and to the right
D-Down and to the left

Answers

The pin will accelerate up and to the left.

The net force is in upward direction and to the left direction. So, pin will have acceleration up and left.

In vertical direction,

upward force = 3 N,

Downward force = 1 N

So, net upward force is = 3-1 N = 2 N

In horizontal direction,

force to the right is = 5 N

Force to the left is = 8 N

So, net force to the left is = 8-5 N = 3 N.

Net force is an unbalanced force in the direction of the greater force if the two forces are acting on an object in the opposite direction.

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Which is the general differential equation of wave motion is Mcq?

Answers

The general differential equation of wave motion is ∂t∂y=v2∂x∂y.

What is the fundamental wave equation?

All of the quantities in the wave equation, which is provided by y = 0.002 sin 2(5t - x/12), are given in SI units. After 0.2 seconds, determine the particle's displacement at a distance of 5 m from the origin.

Applying F=ma to a string of infinitesimal length dx yields the wave equation (see the diagram below). We imagine the basic harmonic motion of our tiny length of string bobbing up and down.

Since the fundamental wave equation is a linear differential equation, the superposition principle will be respected. This means that the displacements that would have been created by each wave individually are added to create the net displacement that is caused by two or more waves.

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find the volume of the given solid. bounded by the planes z = x, y = x, x + y = 9 and z = 0

Answers

The volume of the given  solid is:

V = ∭(D) dx dy dz = (1/2) * 9/2 * 9/2 = 81/8

What is the method to find the volume?

To find the volume of the solid, we can use the triple integral. Since the solid is bounded by the planes z = x, y = x, x + y = 9, and z = 0, we can write the integral as:

V = ∭(D) dV = ∭(D) dx dy dz

where D is the region bounded by the given planes.

To set up the triple integral, we need to determine the bounds for the variables x, y, and z. Since the solid is bounded by the planes z = x, x + y = 9, and y = x, we can express z in terms of x and y. We have:

z = x

Since x + y = 9, we can also express y in terms of x:

y = 9 - x

Substituting this expression for y into the equation for z, we get:

z = x = x

Therefore, the bounds for x are 0 ≤ x ≤ 9/2. The bounds for y are 0 ≤ y ≤ 9 - x, and the bounds for z are 0 ≤ z ≤ x.

Using these bounds, we can set up the triple integral as follows:

V = ∭(D) dx dy dz = ∫x=0 to x=9/2 ∫y=0 to y=9-x ∫z=0 to z=x 1 dz dy dx

Evaluating this integral, we find that the volume of the solid is:

V = ∭(D) dx dy dz = (1/2) * 9/2 * 9/2 = 81/8

Therefore, the volume of the solid is 81/8.

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What is the relation between the amplitude of a wave and its speed Mcq?

Answers

The relation between the amplitude of a wave and its speed is an important multiple choice question (MCQ) in physics and other related sciences.

What is amplitude?

Amplitude is a measure of the magnitude of a wave or signal. It is the maximum absolute value of the wave or signal over a given period of time and is usually measured in decibels (dB). Amplitude also refers to the maximum displacement of a point on a wave from its rest position. In sound, amplitude is often referred to as “volume” or “loudness”.
The amplitude of a wave is the maximum displacement of a particle from its equilibrium position and is measured in meters (m). The speed of a wave is the distance it travels in a given amount of time and is measured in meters per second (m/s).
As the amplitude of a wave increases, its speed remains constant. This is due to the fact that the speed of a wave is determined by the medium in which it is traveling, not its amplitude. For example, the speed of sound in air is the same regardless of how loud it is. The speed of light in a vacuum is also constant regardless of the intensity of the light. This means that the amplitude of a wave does not affect its speed.
However, the amplitude of a wave does affect its energy. The higher the amplitude of a wave, the more energy it carries. This is because the amplitude of a wave is directly related to the amount of energy it contains. This is why it is important to remember that the amplitude of a wave does not affect its speed, but it does affect its energy.
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a round flat metal coil has 180 turns and negligible resistance. it is connected in a series circuit with a resistor, with nothing else in the circuit. you measure that a current flows through the resistor when a magnetic field through the coil, perpendicular to its area, is changing at what is the radius of the coil?

Answers

0.25 m is the radius of the coil. when a round flat metal coil has 180 turns and negligible resistance.

What does the term "resistance" mean?

the action of defending oneself from an aggressor or refusing to accept something.

We must take the Faraday law into account in order to explain this issue.

When the magnetic field changes due to the induced emf, as indicated by the equation d/dt, the voltage equals I*R=17*6=102 V.

After a coil, the magnetic flux is as follows:

If N is equal to N*A*B, then d is equal to N*A*dB/dt, where A and N are the coil's area and number of turns.

A=*R2, where R is the coil's radius.

Finally, there is;

dФ/dt= N*π*R^2*dB/dt then

R= [dФ/dt/(N*π*dB/dt)]^1/2= [102/(180*π*3)]1/2=245.2*10^-3=≅0.25m

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What is a sliding force called?

Answers

The absence of actual relative sliding action between two surfaces is referred to as kinetic friction, also known as sliding resistance. Let's start by looking into friction force utilizing a straightforward concept.

What is the kinetic friction force?

Since it increases to a certain point before beginning to decline when greater power is applied to a object, this is obviously best considered as the biggest benefit: Calculating the kinematic friction force on a flat surface is easy; however, a sloped surface poses some extra difficulties.

What is friction, why is it important?

Friction is simply the force that prevents something from slipping. Every object experiences kinetic friction, which prevents many objects from moving at once. the force

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A motorbike is travelling at 3m/s, and accerlates over 3.5s to reach a speed of 10m/s What was the acceleration of the bike

Answers

Answer:
2 m/s^2


Explanation:

We are given
Initial Velocity = 3 m/s
Final Velocity = 10 m/s
Time = 3.5 s

Equation for acceleration:
a = Vf - Vo / t

Let’s solve for a.

a = 10 - 3 / 3.5
a = 7 / 3.5
a = 2

65% Wed 11:13 PM MyMassasoit Login a In a downhill ski race, surprisingly, little advantage is gained by getting a running start. (This small hills.) To demonstrate this, find the final speed in m/s and the time taken in seconds for a skier who skies 67.0 m along a 25° slope neglecting friction for the following two cases. (En speeds to at least one decimal place Your s is because the initial kinetic energy is small compared with the gain in gravitational potential energy even on (a) starting from rest final speed the final m/s time takern (b) starting with an initial speed of 3,40 m/s final speed m/s time taken (c) Does the answer surprise you? Discuss why it is still advantageous to get a running start in very competitive events. Reading

Answers

Find the ski race's end speed in m/s and the time it took to show that, shockingly, obtaining a running start offers very little advantage.

Find the ultimate speed and the time required for a skier to travel 60.0 metres over a 25-degree slope to illustrate this. Two times 70 divided by 2.5 metres per second for the initial speed plus 26.3106 metres per second for the end speed is the formula we used to solve for t. The entire amount of time required to descend the slope is 4.86 seconds. advantage Skis slide because the tiny layer of snow beneath them melts as a result of friction converting your kinetic energy (skiing) into thermal energy (heat). In downhill skiing, for instance, when the athlete is propelled down

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A student is studying the Periodic Table. The student has been asked to place all of the nonmetals on the same side of
the chart. The student notices that the arrangement of the Periodic Table already has the nonmetals grouped together,
except one. In order to put all of the nonmetals on the same side, the student should relocate one element on the Periodic
Table. Which element should be relocated and in which direction?
4x A Helium should be moved to the left on the Periodic Table,
4x B
4x
Hydrogen should be moved to the right on the Periodic Table,
C Hydrogen should be moved down its family on the Periodic Table,
D
Helium should be moved down its family on the Periodic Table.
Next

Answers

Answer:

A is the right answer

Explanation:

mark me as a

Answer: B) Hydrogen should be moved to the right on the Periodic Table.

during a very quick stop, a car decelerates at 6.6 m/s2. assume the forward motion of the car corresponds to a positive direction for the rotation of the tires (and that they do not slip on the pavement). what is the angular acceleration of its tires in rad/s2, assuming they have a radius of 0.275 m and do not slip on the pavement?

Answers

The temporal rate at which angular velocity changes is known as angular acceleration. The standard unit of measurement is radians per second per second.

Calculation:a) A constant deceleration means a constant linear deceleration. The angular acceleration experimented by the tires is:

α = -6.6 rad/s²/0.275

α = -20.74rad/s²/0.275

b) The period of time required to decelerate the car is derive from the following expression:

t = ω - ω°/α

t = 0rad/s - 93rad/s/ -20.74rad/s

t = 4.48s

The angular position at given time is:

θ = (93rad/s).(4.48s) + 1/2× -(20.74rad/s) × (4.48s)

θ = 416.64 - 45.46

θ = 371.18 rad

The number of revolutions are:

n = θ/2π

n = 371.18 × 7 /22

n = 118.09

c) The time needed to decelerate the car is:

t = 4.48s

d) The initial speed experimented by the car is:

v° = 93rad/s × 0.275 m

v° = 25.575 m/s

The distance done by the car during its deceleration is:

s = (25.575m/s) × (4.48s) +1/2 × (-6.67m/s) × (4.48s)

s = 114.57 + 14.94

s = 129.51m

e) The initial speed of the car is:

v° = 25.575 m/s

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Is equal to the product of wavelength and its frequency v ΛF?

Answers

Yes, the relationship between wavelength (Λ) and frequency (F) is given by the equation v = ΛF, where v is the wave speed (in m/s).
What is wavelentgh?
Wavelength is the distance between two successive peaks or troughs of a wave, such as light, sound, or other forms of energy. It is measured in meters or nanometers and is related to the frequency of the wave, as the frequency is inversely proportional to the wavelength. Wavelength can also be used to describe the physical size of an object, such as a particle or cell.
This equation states that the product of wavelength and its frequency is equal to the wave speed. The equation is also known as the wave equation and is applicable to all types of waves, including electromagnetic, sound, and seismic waves.
The equation is derived from the fact that the wave's speed is the product of its wavelength and its frequency. Wavelength is the distance between two successive wave peaks and frequency is the number of wave peaks that pass a certain point per second. Therefore, if the wavelength is shorter and the frequency is higher, the wave's speed is higher.
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All of the following are examples of heat conduction except
a pressing a shirt with a hot iron.
b warming your hands over a campfire.
warming your hands by holding a cup of hot
chocolate.
C
d heating soup in a pan on a stovetop.

Answers

Answer:

b warming your hands over a campfire.

Explanation:

This is thermal radiation, not heat conduction

Does it require more force to start an object sliding or to keep it sliding?

Answers

interesting to note that more effort is needed to start an object moving than to keep it moving since the static coefficients of sliding friction is higher than the kinetic coefficient.

Why does starting to move an object require more force?

You've probably noticed that moving heavier objects requires more force or a push. The inertia of heavier items is greater. Greater inertia makes it more difficult for an object to start moving, stay in the same place, or change directions.

How come sliding is quicker than rolling?

The sliding object travels to a bottom of track quicker because it has a higher linear velocity than the rolling object because it has no rotational velocity

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How does dramatic irony create suspense?

Answers

When the audience is aware of plot developments before the characters do, they are forced to anticipate, fear, and wish the characters would learn the truth sooner.

How does theatrical irony increase suspense?

Dramatic irony works well for building tension and suspense. The viewer always has an advantage over the characters. As a result, there is inescapable tension as the audience eagerly awaits a catastrophe or conflict that they know is about to happen.

What effect does dramatic irony have on the reader?

Dramatic irony is a technique used by authors to capture and hold the interest of their readers. Curiosity is sparked by it. Additionally, it raises tension by making the spectator fear the moment when characters discover the information they already know.

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What are two examples of genetic factors?

Answers

One child has blonde hair like their mother, and their sibling has brown hair like their father; this is due to genetics. A baby's gender and the reasons why some diseases run in families are also influenced by DNA.

Two illustrations of genes:

Many of your characteristics, like your skin and hair colors, are determined by genes that are passed down to you. Perhaps Emma's mother carries both the brown and red hair genes, and she gave Emma the red hair gene.

An alteration to just one copy of the gene results in the autosomal dominant inheritance pattern. Mutations in both copies of the gene pair create the autosomal recessive inheritance pattern.

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What are the 3 types of irony in the crucible?

Answers

The three types of irony in the crucible are:

Verbal ironyDramatic ironySituational irony

Irony is when there’s a contradiction between expectation and reality. It is a commonly used literary device.

Verbal irony:

Verbal irony is generally found in plays, speeches, and literature when someone says something that is extremely different from the reality of the situation. Verbal irony is used intentionally by the speaker or the character.

Dramatic irony:

We can find  dramatic irony in plays, TV shows, movies. It occurs when we know something that the actor does not.

Situational irony:

Situational irony describes a complete difference between what is expected to happen and  what actually happen.

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a gas has a density of 2.09 g/l at 100 oc and 1 atm. what is the molar mass of the gas?

Answers

The molar mass of the gas with specified density and pressure at certain temperature is calculated to be 64.02 mol⁻¹.

Given,

ρ = 2.09 g/l

T = 100° C

P = 1 atm

Molar mass (Mm) can be written as the ratio of given mass of the gas (m) and number of moles (n) it contains.

Mm = m / n ---(1)

Density can be written as the ratio of mass and volume.

ρ = m / V ---(2)

Placing (1) and (2) in ideal gas law equation, we have

P V = n R T

"P V = m / Mm × R T"

Making Mm as subject, we have,

Mm = m / V × R T/P

Convert the temperature of the gas from degrees Celsius to Kelvin then substituting the values,

Mm = m / V × R T/P

Mm = 2.09 g/l × 0.0821 atm L/mol K× (100 + 273.15)K × 1/ 1 atm = 64.02 mol⁻¹

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In an experiment to copper plate a coin a current of 100mA is passed through a solution of copper. If 30C of charge must pass before the coin has enough copper deposited on it for how long must you leave the current switched on?​

Answers

To calculate how long the current must be switched on in order to copper plate the coin, we need to use the formula for the time required to deliver a certain amount of electric charge:

t = Q / I

where t is the time, Q is the electric charge, and I is the current.

In this case, the electric charge is 30 C, and the current is 100 mA. Plugging these values into the formula, we get:

t = 30 C / 100 mA

= 0.3 seconds

Therefore, you would need to leave the current switched on for 0.3 seconds in order to copper plate the coin.

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Is there an inverse relationship between wavelength and frequency?

Answers

Wavelength and frequency are inversely proportional to one another.The wavelength of a wave that has a high frequency is also its shortest.

Does the link between wavelength and frequency have an opposite? Wavelength and frequency have an inverse relationship.The wavelength of the wave with the highest frequency is the smallest.Half the wavelength is equivalent to twice the frequency.Because of this, the wavelength ratio is the opposite of the frequency ratio.Frequency and wavelength are inversely related to one another, as shown by the equation v = f.The link between a wavelength and its frequency is inverse because when one changes, the other does too, which changes the wave's total energy.Frequency, or the quantity of wave cycles per second, and wavelength have an inverse relationship.The wavelength of the signal decreases with increasing frequency.

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What is the maximum speed of the ejected electrons?

Answers

The kineticE=(1/2)mv² equation can be used to determine the velocity of the expelled electron. You then enter the expelled electron's energy, which was provided to you in section a, and set it to equal 1/2 the electron's mass times v².

The discovery of the "photon," or the link between light's energy and frequency, was made possible in large part by the photoelectric effect. The photoelectric effect is simply the phenomenon whereby electrons can occasionally be expelled from a metal when light is shone onto it. We looked over a number of important facts in class.

1. No electrons are emitted unless appropriate frequency of light is employed. In other words, there is a point below which, regardless of how powerful the light source is, no electrons escape the metal.

2. If you are employing light with a high enough frequency, the quantity of electrons ejected grows as the light source's intensity (brightness) rises.

3. The velocity of the expelled electrons increases as the frequency is raised above the threshold.

This leads us to the conclusion that energy and frequency are proportionate, with Planck's constant serving as the proportionality constant.

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a string that is stretched between fixed supports separated by 75.0 cm has resonant frequencies of 420 and 315 hz, with no intermediate resonant frequencies.what are (a) the lowest resonant frequency and (b) the wave speed?

Answers

To get the resonant frequencies of a single cohesive wave, just use formula v = f.The wave velocity is denoted by the letter "v," while the wave's distance is denoted by the symbol "."

The length of the string:

L=75.0 cm=0.75 m

The two resonant frequencies:

450 Hz Λ 308 Hz

a) f1=142 Hzf1​=142 Hz

b)v=213 msv=213 sm​

What has the lowest frequency and lowest magnitude among the following?

Gamma rays often have the greatest frequency, while radio waves typically have the lowest.

Is the lowest frequency the first harmonic?

The fundamental frequency is the lowest frequency that can be produced by a certain instrument.A first harmonic of a instrument is another name for the fundamental frequency.

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what is the ratio of the kinetic energy of a 2000 kg mass to the kinetic energy of a 500 kg mass traveling at the same speed?

Answers

The ratio of the kinetic energy of a 2000 kg mass to the kinetic energy of a 500 kg mass traveling at the same speed is 4.

The ratio of the kinetic energy of a 2000 kg mass to the kinetic energy of a 500 kg mass traveling at the same speed can be calculated using the formula for kinetic energy:

KE = 0.5 * m * v^2

where KE is the kinetic energy, m is the mass of the object, and v is the velocity of the object.

If we let KE1 be the kinetic energy of the 2000 kg mass and KE2 be the kinetic energy of the 500 kg mass, we can write:

KE1/KE2 = (0.5 * 2000 kg * v^2) / (0.5 * 500 kg * v^2)

             = (2000 kg) / (500 kg)

             = 4

Therefore, the ratio of the kinetic energy of the 2000 kg mass to the kinetic energy of the 500 kg mass is 4. This means that the 2000 kg mass has four times as much kinetic energy as the 500 kg mass, assuming they are traveling at the same speed.

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Can somebody answer this

Answers

Answer:

The answer is probably D

Explanation:

None others make sense

What is the relationship between solar energy and wind energy?

Answers

Solar energy known as wind is created as air moves in relation to the Earth's surface. This type of energy is produced by the uneven heating of the Earth's surface by the Sun and is influenced by the rotation of the planet and the topography of its surface.

What are the similarities between wind and solar energy?

In the field of renewable energy, wind and solar energy are major actors. They are free energy sources, limitless, and most of all, they reduce carbon emissions from fossil fuels.

What is the connection between electricity and wind?

By turning the kinetic energy of moving air into electrical, wind is used to generate power. Wind drives the rotor blades of contemporary wind turbines, which transform kinetic energy into rotational energy.

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What happens when a ball collides with a stationary ball?

Answers

When a ball collides with a stationary ball it will cause an elastic collision.

An elastic collision is the one in which there will be no net loss of kinetic energy in the system as a result of the collision. In a head-on collision with a stationary object of the same mass, the projectile stops and the target leaves at the same velocity as if a cue ball were shot head-on at a pool table. When a moving object collides with a stationary object of the same mass, the stationary object experiences a greater change in momentum. A moving object which collides with a stationary object. A stationary object has a significantly smaller mass. Objects at rest experience greater impact forces.

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a 900 kg van is traveling at a constant speed of 1.51 m/s due north. what is the total force (in n) on the vehicle? (assume north is the positive direction. indicate the direction with the sign of your answer.)

Answers

The vehicle is being acted upon by a total force of 0 N when a 900 kg van is traveling at a constant speed of 1.51 m/s due north.

Due to that,

SUV weighs 900 kg.

1.51 m/s is the speed.

SUV is moving northward at a constant pace of 1.51 m/s.

We must compute the force acting on the vehicle.

F = ma

according to Newton's second law (I)

We are aware that the acceleration is the particle's velocity's first derivative.

a = dv / dt

Now, alter equation (I) F = m*dv / dt to reflect the value of a.

Since the SUV is moving at a constant pace, there is no acceleration.

Thus, there will be no force.

As a result, there is no net force exerting on the vehicle.

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a lion is running at constant speed toward a gazelle that is standing still, as shown in the top figure above. after several seconds, the gazelle notices the lion and accelerates directly toward him, hoping to pass the lion and force him to reverse direction. as the gazelle accelerates toward and past the lion, the lion changes direction and accelerates in pursuit of the gazelle. the lion and the gazelle eventually each reach constant but different speeds. which of the following sets of graphs shows a reasonable representation of the velocities of the lion and the gazelle as functions of time?

Answers

The graph shown in the first option nicely plots the lion's and gazelle's velocities as a function of time, so option A is the correct answer.

Velocity is the rate of change of displacement over time.

It has SI units as m/s.The total amount of movement of an object per unit time is also called velocity. It depends on both the size and direction of the moving object.Velocity can also be called as speed when distance is taken into consideration instead of displacement.

As mentioned in the problem of running at a constant speed towards a gazelle with a standing lion as shown above.

So option A is correct.

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a person standing a certain distance from twelve identical loudspeakers is hearing a sound level intensity of 120db. what sound level intensity would this person hear if six are turned off?

Answers

The sound level intensity would this person hear is  116.98 dB

How is loudness of a sound measured?

The formula D = 10 log (I/I₀),  determines the decibel level of a sound. , I is its intensity in watts per square metre and I₀  is the intensity of threshold sound,

In the first case, sound is produced by 12 identical speakers

∴Intensity, I₁ = 12 I

where I is the intensity of one speaker

Decibel level in this case, D =  120dB

⇒  120 = 10× log (12I/i₀)                                 ----- eqn(1)

In second case number of speakers is reduced to 6

∴Intensity, I₂ = 6 I

Decibel level in this case, D = 10× log (6I/i₀)    ----eqn(2)

eqn(1)- eqn(2)⇒

120 - D =  10× log (12I/i₀)  - 10× log (6I/i₀)

120 - D =  10× log (12I/i₀ ÷  6I/i₀)

120 - D =  10× log(12 I/6 I)

120 - D =  10× log(2)

120 - D =  3.010

D = 116.98 dB

Therefore the sound level intensity would this person hear is  116.98 dB

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When a current of 3 amperes is run through the coiled heating element of a stove, the resistance of the element is 80 ohms. what is the voltage of the stove?

Answers

The voltage of the stove with a current of 3 amperes, which run through the coiled heating element of a stove and the resistance of the element is 80 ohms, is 360 volts.


How to calculate the voltage of the stove?

Voltage, also known as electric pressure, is the difference in electric potential between two points. In a static electric field, it corresponds to the work needed per unit of charge to move a test charge between the two points.

From the question given

resistance (R) = 80 ohms

Current (I) = 3 amperes

from Ohm's law we will use this equation

V = I * R

= 3 * 80

= 240volts.

Therefore, the voltage of the stove is 240 volts.

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Is frequency and wavelength the same?

Answers

Answer: No

Explanation:

Frequency is how often each wave passes

Wavelength is the physical measure of the length of each wave

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