Radio station klbj broadcasts at a frequency of 93.7 mhz. determine the length of the waves that corresponds to this frequency.

Answers

Answer 1
The wavelength (in m) of a periodic wave is equal to the velocity of the wave (in m/s) divided by the frequency (in Hz). When talking about radio waves (electromagnetic radiation) that velocity is the speed of light, or 299792458 meters per second. Given a frequency of 93.7 MHz, or 93700000 Hz, the wave length is 299792458/93700000, or 3.1994926m.
Answer 2

The Answer in significant figures is 3.20 meters. The full Answer is 3.201707577*10^0 meters

Explanation:

You must first convert 93.7Mhz to hz: 93.7mhz * 10^6hz/1Mhz = 9.37*10^7.

Next, since all EM waves' frequency and wavelength = the speed of light(c)(3.00*10^8m/s), insert the new frequency (hertz) into the formula below and solve for Wavelength (lambda)

c=(lambda)(hertz), manipulate the equation to solve for wavelength (lambda)

(lambda)=(C) / (hertz) ; Hertz = hz = s^-1 or 1/s

lambda = 3.00*10^8m/s / 9.37*10^7hz (^^remember hz = 1/s)

Since hz = 1/s, both of the factors have 1/s in the variables' place, so the 1/s cancels and your left with m (meters)

= 3.201707577 meters


Related Questions

You throw a basketball by exerting a force of 14 newtons. according to newton's third law, there is another 14 newton force created in the opposite direction. if there are two equal forces in opposite directions, how does the ball accelerate?

Answers

Newton’s Third Law describes two different bodies acting on each other.
now you've considered the action and reactions based on d ball, but have u considered the force the athlete exacts on the ground which is external to the athlete-ball system, now the ground in which the athlete stands exert a force back on the athelete-ball system which causes the ball to accelerate

An endothermic reaction is one that uses which form of energy?

A) Electrical Energy

B) Sound Energy

C) Chemical Energy

D) Nuclear Fusion

Answers

C( Chemical Energy because the process includes chemical energy turning into thermal energy

An endothermic reaction is the one that makes use of chemical energy.

What is endothermic reaction?

An endothermic reaction is defined as a chemical reaction which is a thermodynamic process  accompanied by an increase in enthalpy  of the system.In this process, a system absorbs energy from the surroundings  which is mainly thermal energy.

Thus an endothermic reaction leads to an increase in the temperature of the system with a decrease in the temperature of the surroundings.Endothermic reactions usually involve the formation of bonds which requires input of energy.In endothermic reactions, entropy of the surrounding decreases.

Many endothermic processes involve the physical changes rather the chemical changes.In an endothermic reaction ,the potential energy of products is greater than that of reactants.

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PSYCHOLOGY : Why can Freud’s conception of consciousness be compared to an iceberg?

Answers

In Freud’s conception, consciousness can be broken up into three distinct bands: the conscious level, the preconscious level, and the unconscious level.  The conscious level, where we process our perceptions and thoughts, is like the part of the iceberg that is above the water.  We are aware of our conscious level, just as we are aware of the top layer of an iceberg. The next level of consciousness, the preconscious level, is just below the surface of our consciousness and can be accessed when it is needed to recall memories and facts. This is similar to the level of the iceberg directly under the water: you can perceive it if you look carefully and are close enough. The last level of consciousness is the unconscious level, which a person has no active knowledge of.  Like the vast underwater portion of an iceberg, the unconscious level is unseen but can be very influential.  The unconscious mind has many urges, instincts, and desires, which it is constantly demanding be met. The unconscious mind can influence the behavior of an individual, sometimes in the disastrous ways an iceberg can threaten a ship.

Final answer:

Freud compared the mind to an iceberg to represent the conscious and unconscious aspects of our mind. The small, visible part of an iceberg represents the small portion of our mind that is conscious. The vast, hidden part represents our larger unconscious mind. Unconscious desires or urges may inadvertently reveal themselves, such as in a Freudian slip.

Explanation:

Sigmund Freud's conception of consciousness compared to an iceberg represents a recognition that much of our mental process occurs outside our conscious awareness. Only about one-tenth of our mind - comparable to the visible tip of the iceberg - is conscious, while the rest is hidden in the unconscious. The unconscious mind contains mental activity that we are unaware of and cannot readily access. It harbors our unacceptable urges and desires that are repressed or suppressed from our conscious thought. These contents could sometimes unintentionally reveal themselves, as in the case of a Freudian slip.

A Freudian slip is an error in speech or action that is interpreted as occurring due to the interference of an unconscious subdued wish, conflict, or train of thought. This concept is part of Freud's psychoanalytic theory and is used as evidence of the unconscious mind. For example, making unintended slips, like substituting another word for the one we meant to say, are seen as unconscious desires or urges accidentally slipping out.

Freud also proposed three components of our personality: the id, ego, and superego. The id and superego reside in the unconscious, while the ego mediates between them and our conscious understanding. The complex interaction between these components influences our behavior and personality.

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If earth were twice as far from the sun, the force of gravity attracing earth to the sun would be

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The gravitational force between two objects of mass m₁ and m₂ if
[tex]F = G \frac{m_{1} m_{2}}{d^{2}} [/tex]
where d =  distance between the objects
G = gravitational constant

We could consider the earth and the sun as the two masses.
If the earth were twice as far from the sun, then the distance would be 2d.
Therefore the force of attraction would be
[tex]G \frac{m_{1} m_{2}}{(2d)^{2}} =G \frac{m_{1} m_{2}}{4d^{2}}= \frac{F}{4} [/tex]

Answer:
The force of gravity will decrease by a factor of 4.

The velocity of a car changes from 60. meters per second north to 45 meters per second north in 5.0 seconds. the magnitude of the car's acceleration is

Answers

The answer to the problem is 3.0 m/s2.

While driving north at 25 m/s during a rainstorm you notice that the rain makes an angle of 38° with the vertical. while driving back home moments later at the same speed but in the opposite direction, you see that the rain is falling straight down. from these observations, determine the speed and angle of the raindrops relative to the ground?

Answers

Answer:

[tex]v = 68.7 m/s[/tex]

angle made with the vertical

[tex]\theta = 21.3 degree[/tex]

Explanation:

Velocity of rain with respect to the car with vertical direction makes 38 degree angle

so let say rain velocity is

[tex]v_r = v_x\hat i + v_y \hat j[/tex]

[tex]v_{rc} = v_r - v_c[/tex]

[tex]v_{rc} = (v_x + 25)\hat i + v_y[/tex]

now we have

[tex]tan38 = \frac{v_x + 25}{v_y}[/tex]

while return to home

[tex]v_{rc} = (v_x - 25)\hat i + v_y[/tex]

now the angle with vertical is zero

so we have

[tex]v_x = 25[/tex]

now we have

[tex]tan38 = \frac{50}{v_y}[/tex]

[tex]v_y = 64 m/s[/tex]

so we have

[tex]v_r = 25 \hat i + 64 \hat j[/tex]

now magnitude of the speed is

[tex]v = \sqrt{25^2 + 64^2}[/tex]

[tex]v = 68.7 m/s[/tex]

angle made with the vertical

[tex]\theta = tan^{-1}\frac{25}{64}[/tex]

[tex]\theta = 21.3 degree[/tex]

What type of radiation is at just shorter wavelengths than visible light? just longer wavelengths than visible light?

Answers

Infrared Rays fits in between

Answer:ultraviolet radiation

Explanation:answer for A P E X

A slingshot launches a stone vertically with an initial velocity of 400 ft/s from an initial height of 10 ft. find the average velocity over time interval [3, 8]. (assume g = 32 ft/s2) ft/s

Answers

We want to study the vertical motion of a stone, to do it, we will find the motion equations of the stone.

We will find that the average velocity in the given interval is 224 ft/s.

-----------------------------

First, we need to find the acceleration of the stone.

The only force acting on the stone (ignoring air resistance) will be the gravitational force, then the acceleration of the stone will be equal to the gravitational acceleration.

[tex]a(t) = -32ft/s^2[/tex]

To get the velocity equation we need to integrate over time, such that the constant of integration will be equal to the initial velocity, which we know is equal to 400ft/s

Then we get:

[tex]v(t) = (-32 ft/s^2)*t + 400ft/s[/tex]

To get the position equation we integrate again, this time the constant of integration will be the initial position, 10 ft.

[tex]p(t) = (-16ft/s^2)*t^2 + (400ft/s)*t + 10ft[/tex]

Now the average velocity is defined as the quotient between the displacement and the time it took to do that displacement, then the average velocity will be:

[tex]av = \frac{p(8s) - p(3s)}{8s - 3s} \\\\av = \frac{( (-16ft/s^2)*(8s)^2 + (400ft/s)*8s + 10ft) - ((-16ft/s^2)*(3s)^2 + (400ft/s)*3s + 10ft)}{5s} = 224 ft/s[/tex]

Thus the average velocity in that interval is 224 ft/s

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Final answer:

To find the average velocity of a stone launched from a slingshot between 3 and 8 seconds, calculate the positions at both times using the given formula and then divide the change in position by the time interval. The average velocity is found to be 224 ft/s.

Explanation:

The question involves calculating the average velocity of a stone launched from a slingshot over a given time interval. Using the formula for the position of an object moving under constant acceleration, s(t) = s0 + v0t - 1/2gt², where s0 is the initial position, v0 is the initial velocity, g is the acceleration due to gravity (32 ft/s²), and t is the time in seconds, we can find the position of the stone at 3 seconds and 8 seconds. Substituting the given values into the formula, we get:

Position at 3 seconds: s(3) = 10 + 400(3) - 1/2(32)(3²) = 10 + 1200 - 144 = 1066 ft.

Position at 8 seconds: s(8) = 10 + 400(8) - 1/2(32)(8²) = 10 + 3200 - 1024 = 2186 ft.

The average velocity over the interval [3, 8] is calculated as the change in position divided by the change in time, which is (2186 - 1066)/(8 - 3) = 1120/5 = 224 ft/s.

SOMEONE HELP ASAP!!!
How might a synapse be changed to be more efficient in transmissions?

Of what advantage is it to use a relatively small neurotransmitter molecule such as glutamate?

Answers

A smaller molecule will diffuse faster than a larger molecule.

A train that travel 100 kilometer in 4hours is traveling at what speed?

Answers

Speed = Distance/Time = 100 km / 4 hours = 100/4 km per hour = 25 kph

Calculate the amount of heat liberated (in kj) from 411 g of mercury when it cools from 88.0°c to 12.0°c.

Answers

You should note that the melting point of mercury is -38.83°C, while the boiling point is at 356.7°C. Then, that means that there is no latent heat involved here. We only compute for the sensible heat.

ΔH = mCpΔT
The Cp of mercury is 0.14 J/g·°C
Thus,
ΔH = (411 g)(0.14 J/g·°C)(88 - 12°C)
ΔH = 4,373.04 J

Why should you not erase construction lines?

Answers

Construction lines are essential for maintaining the accuracy and integrity of designs in fields like engineering, architecture, and mapping. Erasing such lines can lead to misunderstandings and inaccurate representations, potentially causing disastrous outcomes in the physical construction or interpretation of structures and mappings.

Construction lines should not be erased because they serve as foundational elements for a design, representing the initial guidelines that contribute to the final drawing or structure. For example, in topographic map interpretation, contour lines are crucial as they indicate the elevation and shape of the terrain, and erasing them would eliminate critical information required for understanding landform shapes and gradients. Similarly, when engaging in geological mapping, one must ensure that a geologic trace does not cross a topographic contour except where the structural and topographic contours intersect, preserving the accuracy of geological interpretations.

Moreover, the principles of geometry are deeply rooted in the correct understanding and depiction of lines and spaces. As in engineering and architecture, where accurate measurements and representations are foundational to the construction process, any disruption or erasing of essential lines can lead to disastrous outcomes, undermining the integrity of the structures being designed or built. Thus, construction lines must be preserved to maintain a clear and accurate representation of designs, allowing for their proper understanding, interpretation, and implementation.

A skater increases her speed uniformly from 2.0 meters per second to 7.0 meters per second over a distance of 12 meters. the magnitude of her acceleration as she travels this 12 meters is

Answers

The magnitude of her acceleration as she travels this 12 meters is 1.875m/s^2

A skater moves with an initial velocity of 2 m/s, and a final velocity of 7 m/s by which he covers 12 meters, so the acceleration will be 1.875 m/s².

What is Velocity?

A vector measurement of the direction and speed of the motion is what is meant by the term "velocity" in physics. In more detail, the rate of change in an object's position relative to a frame of reference and time can also be described as the object's velocity.

Velocity, which is defined as the rate of motion of an object in a specific direction, tells us how quickly an object is traveling. The speed at which anything is traveling is determined by this.

Given information according to the question,

Initial velocity, u = 2 m/s

Final velocity, v= 7 m/s

Distance, d = 12 m

Use the equation of motion to find the acceleration of the skater,

v² - u² = 2as

7² - 2² = 24a

a = 45/24

a = 1.875 m/s².

Therefore, the acceleration of the skater is 1.875 m/s².

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What happens to the free energy released as electrons are passed from photosystem II to photosystem I through a series of electron carriers?

Answers

It is used to establish and maintain a proton gradient.

The energy of motion best describes which of the following?

A) The energy of fusion

B) The energy ofan electrical charge.

C) Kinetic energy

D) Potential energy

Answers

your answer is C. Kinetic Energy

According to law of conservation of energy, energy of motion is described by kinetic energy as the kinetic energy is displayed only when the object is in motion as per how much energy is stored in the object which are equal.

What is law of conservation of energy?

According to law of conservation of energy, it is evident that energy is neither created nor destroyed rather it is restored at the end of a chemical reaction .

Law of conservation of mass and energy are related as mass and energy are directly proportional which is indicated by the equation E=mc².Concept of conservation of energy is widely used in field of chemistry, fluid dynamics.

Law needs to be modified in accordance with laws of quantum mechanics under the principle of mass and energy equivalence.This law was proposed by Julius Robert Mayer in the year 1842.

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A blue car with mass mc = 468 kg is moving east with a speed of vc = 21 m/s and collides with a purple truck with mass mt = 1264 kg that is moving south with a speed of vt = 12 m/s . the two collide and lock together after the collision. 1) what is the magnitude of the initial momentum of the car

Answers

To calculate the magnitude of the initial momentum of the car in this situation you have to multiple the mass of the blue car times the speed. The mass, 468kg, times the speed, 21 m/s, equals 9828. This means the magnitude of the initial momentum of the blue car in the situation is 9828kg per m/s. In this case, and in simple terminology, the magnitude measures how big something is. So the magnitude of the momentum is just the measurement of how big the initial moment of the car is.

A 0.300 kg ball is thrown vertically upward with an initial speed of 17.0 m/s . part a what is the maximum height reached by the ball?

Answers

1/2 mv^2 = mgh, all of the initial kinetic energy is converted to potential energy

So (since you can see how 'm' divides out):
(0.5)v^2 = gh, g= acceleration of gravity
(0.5)(20.0)^2 = (9.8)h
200 = 9.8h
h=20.4 m

The maximum height reached by the ball is 14.45 meter.

What is velocity?

Velocity is the direction at which an object is moving and serves as a measure of the rate at which its position is changing as seen from a specific point of view and as measured by a specific unit of time. In kinematics, the area of classical mechanics that deals with the motion of bodies, velocity is a fundamental idea.

Given parameters:

Initial velocity of the ball in upward direction= 17.0 m/s.

Final speed of the ball at maximum height = 0.

Mass of the ball = 0.30 kg.

We know that acceleration due to gravity: g = 10.0 m/s²

From principle of energy conservation:

Initial kinetic energy = final potential energy

1/2 × mv² = mgH

H = v²/2g

= 17.0²/(2×10)

= 14.45 meter.

Hence, the maximum height reached by the ball is 14.45 meter.

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Maria throws an apple vertically upward from a height of 1.4 m with an initial velocity of +3.1 m/s. Will the apple reach a friend in a tree house 4.2 m above the ground? The acceleration due to gravity is 9.81 m/s 2 .

Answers

According to the problem, you are trying to find a height. If the height a the top of the path is greater than or equal to 4.2m, then the apple will reach Maria's friend. If the height is less than 4.2m, the apple will not reach maria's friend. You are given the known quantities: initial velocity, acceleration, and you can set final velocity = 0. This means you can use the kinematic equation:
[tex]v_f^2 = v_i^2 + 2a\Delta x[/tex]

Explanation:

It is given that,

Initial position of the Apple, [tex]h_o=1.4\ m[/tex]

Initial velocity, u = 3.1 m/s

Position of friend, Y = 4.2 m

Using second equation of motion as :

[tex]Y=ut-\dfrac{1}{2}gt^2+h_o[/tex]

[tex]4.2=3.1t-\dfrac{1}{2}\times 9.8t^2+1.4[/tex]    

[tex]3.1t-4.9t^2-2.8=0[/tex]..............(1)

On solving the above quadratic equation we get t = 2.02 seconds

Since, the value of t is real. So, the apple will reach a friend in a tree house. Hence, this is the required solution.                                    

The Kentucky derby was won in 2000 by fusaichi Pegasus in 121 s. If the race is 2011 m , what was his speed?

Answers

To find the rate of speed, simply divide the length of the race by the length of time it took for the horse to run the race. In this case, 2011 m / 121 sec = 16.619 m/sec. Converting this from m/sec to mph, the value becomes approximately 37.1778, or 37.18 mph.

A stubborn 130 kg pig sits down and refuses to move. to drag the pig to the barn, the exasperated farmer ties a rope around the pig and pulls with his maximum force of 800 n. the coefficients of friction between the pig and the ground are μs=0.80 and μk=0.50. part a calculate the force which farmer needs to apply to budge the pig.

Answers

Final answer:

To calculate the force needed to budge the stubborn pig, we need to consider the frictional forces acting on it. Given the given values of μs and the weight of the pig, the force required to budge the pig can be found by subtracting the force of friction from the maximum force the farmer can exert.

Explanation:

To calculate the force needed to budge the stubborn pig, we need to consider the frictional forces acting on it. The friction force can be calculated using the formula F_friction = μs ×F_normal, where F_normal is the normal force acting on the pig. The normal force is equal to the weight of the pig, which is given by F_weight = m × g, where m is the mass of the pig and g is the acceleration due to gravity.

Using the given values of μs and the weight of the pig, we can calculate the force of friction. Given that the maximum force the farmer can exert is 800 N, the force required to budge the pig can be found by subtracting the force of friction from the maximum force.

Let's calculate the force:

Calculate the weight of the pig using the formula F_weight = m × g, where m is the mass of the pig (130 kg) and g is the acceleration due to gravity (9.8 m/s^2).Calculate the force of friction using the formula F_friction = μs × F_normal, where μs is the static coefficient of friction (0.80) and F_normal is the normal force (weight of the pig).Subtract the force of friction from the maximum force the farmer can exert to find the force required to budge the pig.

The force required to budge the pig is approximately 520 N.

A 6 kilogram cat is resting on top of a bookshelf that is 2 meters high. What is the cat’s gravitational potential energy relative to the floor?

Answers

The formula for the potential energy, EP is given by

EP = m × g × h

where:
m is the mass in kilograms
g is the gravity (9.8 m/s²)
h is the height in meters

EP = 6 × 9.8 × 2 = 117.6 kg-m²/s²

Answer:6x9.8m/sx2=117.6

Explanation:

A swimmer can swim in still water at a speed of 9.50 m/s. he intends to swim directly across a river that has a downstream current of 3.75 m/s. 46.
a. what must the swimmer’s direction be?
b. what is his velocity relative to the bank?

Answers

send more info please what area are u on

What is the difference between the initial position and the final position of an object?

Answers

The initial is where you are starting and the final postion is where the object ends up

Can anyone help me with this problem? It is -2.1??

Answers

Question not clear or read-able

What are the primary components in earth's continental crust?

Answers

The most is by oxygen, followed by silicon and aluminium.

Explain why identical objects at the same height would have different gravitational potential energies on different planets

Answers

To calculate the the gravitational potential energy for an object, we use the equation: PE = mgh In this equation, PE is potential energy, m is the mass of the object, g is the acceleration due to gravity, and h is the height. Since different planets have different values for g, the potential energy for identical objects at the same height could be different, because the value of g is different for different planets.

If a ball is thrown vertically upward from the ground with a velocity of 96 ft/s, then its height after t seconds is s = 96t − 16t2. what is the maximum height reached by the ball?

Answers

The maximum height is reached by the ball: the height is 96(3) - 16(9) = 144 ft.

The maximum height achieved by the ball thrown vertically upwards is 243.9 ft.

What is a time - varying function?

A time varying function is a function whose final value varies with time.

Example - f(t) = 2t + 5

Given is a ball which is thrown vertically upward from the ground with a velocity of 96 ft/s, then its height after [t] seconds is S = 96t − 16t².

We can write -

S = 96t − 16t²

Differentiating with respect to 't', we get -

dS/dt = 96 - 2 x 16 x t

dS/dt = 96 - 32t

Now, for maximum height -

dS/dt = 0

96 - 32t = 0

32t = 96

t = 96/32

t = 3 seconds

At t = 3 seconds, the height will be maximum. Now, it is given that -

[u] = 96 ft/sec

[v] = 0  (at maximum height)

[g] = - 9.8 m/s²

Using the second equation of motion, we get -

S = ut + 1/2 gt²

S [max] = 96 x 3 - 0.5 x 9.8 x 3 x 3

S [max] = 288 - 44.1

S [max] = 243.9 ft

Therefore, the maximum height achieved by the ball thrown vertically upwards is 243.9 ft.

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How many elements are in the lanthanide series?

Answers

The lanthanide series consists of the 14 elements, with atomic numbers 58 through 71, that follow lanthanum on the periodic table of elements.
there are 14 elements in the lanthanide series with the atomic numbers of 58 thru 71.

during which phase of a four-stroke engine are waste gases removed?

Answers

Exhaust stroke. Hope this helps!
exhaust stroke hope this helps you!!!

How to find speed with acceleration and distance?

Answers

its a very syplel thing devipe it by distance and boom u shude have it

Final answer:

To find the final speed with given acceleration and distance, use the equation v^2 = u^2 + 2as. If the initial speed is zero, it simplifies to v^2 = 2as. Then, solve for v by taking the square root.

Explanation:

How to Find Speed with Acceleration and Distance:

To determine the final speed of an object when you are given its acceleration and the distance it has traveled, you can use one of the equations of motion that relate these variables. However, the exact method will depend on whether the initial speed is zero or a known value different from zero.

If Initial Speed is Zero:

You can use the equation v^2 = u^2 + 2as, where v is the final speed, u is the initial speed (zero in this case), a is the acceleration, and s is the distance traveled. Since u is zero, the equation simplifies to v^2 = 2as. You then solve for v by taking the square root of the product of the acceleration and twice the distance.

If Initial Speed is Known:

If you have a known initial speed, use the full equation v^2 = u^2 + 2as without simplifying it. Input the known values and solve for v as previously described.

Remember to work with S.I. units (metres per second squared for acceleration and metres for distance) for consistency and to get the speed in metres per second.

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