a resistor and inductor are connected to a 9.0 v battery by a switch as shown. the moment the switch is closed, current flows through the circuit. the resistor has a resistance of r

Answers

Answer 1

The resistance of the resistor r so maximum current is 40.9 mA.

A Resistor and inductor are connected to a 9.0 v battery by a switch as shown. the moment the switch is closed, current flows through the circuit. the resistor has a resistance of r.

Calculation:-

Maximum current imax = V/R

= 9/220

= 40.9 mA.

Resistors are used for many purposes. a few examples consist of restricting electric powered cutting-edge, voltage division, warmth generation, matching and loading circuits, benefit manage, and setting time constants. they may be commercially available with resistance values over various extra than nine orders of magnitude.

A circuit is a entire circular direction that energy flows via. A easy circuit includes a modern supply, conductors and a load. The time period circuit may be utilized in a preferred sense to consult any fixed route that energy, records or a sign can travel via.

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Related Questions

isolated in an otherwise quiet country field is a single sound source. when you stand 100 m from this source, the sound level from it is 35 db. what average power is being emitted by the source?

Answers

The average power being emitted by the source is 12.56* 10⁻⁴°⁵ W.

Given that,

Sound level L = 35 db

Distance d = 100 m

We know the formula for L as, ( take I₀ as 10⁻¹²)

L = 10 log(I / I₀) = 35

log(I / I₀) = 3.5

log(10¹²×I ) = 3.5

12 + log I =3.5

log I = 3.5 - 12 = -8.5

I = 10⁻⁸°⁵ W/m²

We know the formula for intensity of sound as I = P/(4πd²)

I = P/(4πd²)

To find out power, make P as the subject,

P = I * 4πd² =  10⁻⁸°⁵ * 4* 3.14* (100)² = 10⁻⁸°⁵ * 10⁴ * 12.56 = 12.56* 10⁻⁴°⁵ W

Thus, the average power being emitted by the source is 12.56* 10⁻⁴°⁵ W.

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what is the concentration of a chemical in an oil spill in ppb if 0.060 mg of it is found in 4600 kg of soil?

Answers

The concentration of an chemical in an oil spill in ppb is 0.013 ppb (approx).

What is concentration?

concentration is the abundance of a constituent divided by the total volume to the  mixture. Several by the  types of mathematical description can be the  distinguished: mass of the  concentration, molar concentration, number and  concentration, and volume concentration.

Calculate the concentration in ppb by multiplying to the  ratio of the mass of solute to  mass of solution by 1 billion or 10 ^9

So here the answer can be calculated by

(10^ 9)(6×10 ^-8)/4600

(Here 0.060 mg = 6 × 10 ^-8 kh)

=  6/460

= 0.013 ppb (approx)

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light can travel from air into water. some possible paths for the light ray in the water are shown. which path will the light most likely follow?

Answers

The light ray will bend downwards.

What is light ray?
A ray, in the field of optics, is a geometrical model of idealised light that is chosen to be perpendicular to a wavefronts of the real light and to point in the direction of energy flow. By segmenting the actual light field into discrete rays that are computationally perpetuated through the system using ray tracing techniques, rays are employed to model this same propagation of light thru an optical system. As a result, even extremely complex optical systems can be mathematically or computationally analysed. For as long as light ray travel through and around objects for whom the dimensions are significantly larger than the light's wavelength, approximate remedies to Maxwell's equations are appropriate for use in ray tracing.

The light will most likely follow the path that curves downward. This is because light rays bend towards the normal when entering a denser medium, such as water from air. The normal is an imaginary line perpendicular to the surface of the water. Therefore, the light ray will bend downwards.

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A lemming running 2.87 m/s runs off a horizontal cliff. It lands in the water 5.32 m from the base of the cliff. What is the lemming's change in height when it reaches the water?
(Unit = m)

Answers

16.77m is the lemming's change in height when it reaches the water.

An example of a projectile

A thing is said to be in projectile motion when it has been fired into the air. After the initial force that launches the object, it only experiences the force of gravity. It is what it is—a projectile—and the path it took to get there is what it was.

You can tell from the situation that this projectile is a Type 1 projectile, or a horizontal projectile. Before you can resolve this issue, you will need a few things.

You must first examine the information you were given:

Vix = 2.87 m/s

dx = 5.32m

Your height or vertical distance are what you need. The following is the usual formula for projectile displacement:

d = Vit +1/2gt²

Specifically, you only need to enter the y-components to obtain the vertical distance. Now keep in mind that a horizontal projectile initially moves only forward and not vertically. Your vi = om/s, leaving you with the following equation:

dy = Viyt + 1/2 gt²

dy = (0m/s)t + 1/2 gt²

dy = 1/2 gt²

However, if you examine your issue, you will discover that no time has been allotted. You can resolve it using the information provided by deriving it from the x component formula:

dx = Vixt

Plug in your knowledge and find a solution for your ignorance.

dx = Vixt

5.32m = (2.87m/s)t

5.32/2.87= t

t = 1.85s

You can solve for your vertical distance/displacement now that you know the time:

dy = 1/2 gt²

dy = 1/2 (9.8 × 1.85²)

dy = 16.77m.

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Answer:

the answer is -16.8

Explanation:

it’s negative because your going down and you have to round off to match the significant digits.

After pyruvate oxidation, the potential energy of pyruvate is now in the potential energy of.

Answers

After pyruvate oxidation, the potential energy of pyruvate is now in the potential energy of acetyl-CoA.

What is potential energy ?

Potential energy. Stored energy that depends on the relative positions of the various parts of the system. When a spring is compressed or may be stretched, its potential energy increases simultaneously. A steel ball will have more potential energy lifted across the ground than after it hits the ground.

After pyruvate is oxidized to acetyl-CoA, most of the potential energy found during cellular respiration prior to the citric acid cycle resides in NADH molecules produced in glycolysis, which convert pyruvate to acetyl-CoA.

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For a star like the Sun, the gravitational collapse of the interstellar cloud lasted for about ______________ and stopped with the ignition of the fusion reaction.
50–100 billion years
5–10 billion years
1 billion years
100 million years
1–10 million years

Answers

1- 10 million years

The definition of gravitational collapse

A fundamental mechanism for the emergence of structures in the cosmos, gravitational collapse is the contraction of an astronomical object as a result of the pull of its own gravity, which tends to pull matter inward toward the center of gravity.

The birth of stars and gravitational collapse

Star formation is the process through which dense areas within molecular clouds in interstellar space collapse and produce stars. These areas are frequently referred to as "stellar nurseries" or "star-forming regions."

A diffuse interstellar medium (ISM) containing gas and dust, stars, and stellar remnants. The average mass of the interstellar medium is 104 to 106 particles per cm3, with the majority of the leftover gas being made up of about 70% hydrogen.

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write voltage drops across the resistor, capacitor, and inductor and the source voltage as a function of time.

Answers

As the charge, ( Q ) is equal and constant, the voltage drop across the capacitor is determined by the value of the capacitor only as V = Q ÷ C.

What is charge?

Charged material experiences a force when it is exposed to an electromagnetic field due to the physical characteristic of electric charge. You might have a positive or negative electric charge. Unlike charges attract one another while like charges repel one another.

As the charge, ( Q ) is equal and constant, the voltage drop across the capacitor is determined by the value of the capacitor only as V = Q ÷ C. A small capacitance value will result in a larger voltage while a large value of capacitance will result in a smaller voltage drop.

While the voltage drop across a resistor is proportional to the current and there is a current at the beginning, the voltage drop across a capacitor is related to its charge and is uncharged at the beginning. However, when charge on the capacitor begins to accumulate, some voltage is now lost across the capacitor.

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A mass is attached to a rope of length L. Initially held horizontally, it is then released. At what angle will the mass again come to a stop? 1) Solve using n-t coordinates. (Note: Do NOT use energy methods to solve.) Please draw FBDs too

Answers

in y axis the the mass again come to a stop.

what is mass?

mass is a very large amount od number or something.

Will be n, - l, cos of theta applying the derivation of energy, hello, ikinetic, energy potential energy as

t kinetic energy potential energy, kinetic energy will be half m square potential. Energy kinetic energy at 0, and it is m g h, so velocity at will get root. 2 g h and b have calculated so 2 g l, 1 minus cos of theta sufficient of force along y axis must be 0, so t minus mg equal to m b square by l, so t will be m into g plus 2 g l substituting the Value of veracity, here 1 minus cos theta upon l. So finally, it could be written as n j into 3 minus 2 cos. Cetothis is the answer of part. A now part b with the decrease flit tension will remain constant because it is not depending on length of stringks for watching.

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how does greek mythology •how does it describe what is seen in the night sky (stars, meteors, comets, etc.)?

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The appearance of comets, meteors, and meteor showers was seen by the Greeks and Romans as portentous. They indicated either positive or negative events that had occurred or were about to occur.

Define greek mythology

Greek mythology is a significant area of classical mythology and a category of Ancient Greek folklore. It is a collection of myths that were first narrated by the Ancient Greeks. These tales discuss the beginning and nature of the world, the lives and exploits of gods, heroes, and other mythical beings, as well as the genesis and import of the ancient Greeks' own cult and ritual traditions.

Around the world and throughout time, comets have caused dread, anxiety, and awe in a variety of cultures and societies. They have been dubbed "the Menace of the Universe" and "the Harbinger of Doom," among other names.

A meteor sighting implied that heaven had bestowed a gift. It frequently symbolized a mystery originating from the cosmos, a phenomenal force far greater than ourselves. A meteor stood for knowledge of understanding that there is more to life than what we currently know. Many believe it to be a soul or spirit.

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sixteen-year-old michael begins growing a marijuana plant in a corner of his family's garden. his father asks him to remove it because it is illegal. in kohlberg's terms, michael's father is demonstrating reasoning.

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In Kohlberg's terms, Michael's father is demonstrating Conventional reasoning.

According to Kohlberg's Structural Theory of Moral Development, conventional moral reasoning is the second of three levels of moral reasoning. At this level, people have internalized the moral standards and expectations of those closest to them and typically base their moral decisions on these standards and expectations.

In the given question, Michael is unaware that marijuana is prohibited, but his grandfather has instructed him to take it out because it is forbidden. It is unlawful, according to his father. It demonstrates that his father is aware of the laws. He believes that they must follow it since it is their responsibility, or else his son would be punished for breaking the law.

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A force is applied to stop a moving shopping cart. explain how increasing the time of impact would change the force required to stop the cart. enter your answer in the space provided.

Answers

By increasing the time of impact a smaller amount of force would be required to stop the cart. The force of the impact decreases as the impact of time increases. Therefore, the force on the body decreases as time increases with a constant change in momentum.

What is force?

The push or pull on a massed object changes its velocity is defined as force. An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude.

Force = Mass × Acceleration

How is force related to change in time?

The change in momentum over time is measured by force. In real life, when a force is applied to an object, it accelerates and rises in velocity, which increases the momentum of the object.

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what will the frequency be if 0.160 kg are subtracted from the original mass? try to solve this problem without finding the force constant of the spring.

Answers

Frequencies in both cases are [tex]& f_2=1.225 \mathrm{H}_z[/tex] and [tex]}} \\& f_2=1.522 \mathrm{H}_z[/tex]

What is frequency ?

The frequency of a repeated event is its number of instances per unit of time. It differs from angular frequency and is sometimes referred to as temporal frequency for clarification. One event occurs per second when measuring frequency in hertz.

The quantity of waves that pass a set location in a predetermined period of time is known as frequency. Therefore, if a wave passes through in half a second, the frequency is 2 per second. The frequency is 100 times per hour if it takes 1/100 of an hour.

According to the given information

We got to know

A) the frequency of two spring

[tex]f=\frac{1}{2 \pi} \sqrt{\frac{k}{m}}[/tex]

for Same spring

[tex]f \propto \frac{1}{\sqrt{m}}[/tex]

So

[tex]& \frac{f_2}{f_1}=\sqrt{\frac{m_1}{m_2}} \Rightarrow f_2=f_1 \sqrt{\frac{m_1}{m_2}} \\[/tex]

[tex]& f_2=1.35 \times \sqrt{\frac{0.75}{(0.16+0.75)}} 2=222=1 \frac{1}{2} \\[/tex]

[tex]& f_2=1.225 \mathrm{H}_z[/tex]

B)

[tex]& f_2=f_1 \sqrt{\frac{m_1}{m_2}} \\& f_2=1.35 \times \sqrt{\frac{0.75}{(0.75-0.16)}} \\& f_2=1.522 \mathrm{H}_z[/tex]

Frequencies in both cases are [tex]& f_2=1.225 \mathrm{H}_z[/tex] and [tex]}} \\& f_2=1.522 \mathrm{H}_z[/tex]

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A diatomic element has six bonding electrons, six non-bonding electrons, and 2 anti-bonding electrons. What is the bond order?.

Answers

Bond order for the diatomic element is 2

A bond order is something that pairs two atoms with their atoms.

It is an atomic-level phenomenon in which elements share their electrons to fill their valence shell. It can also bind two or more substances together in a compound.

According to molecular orbital theory, the bond order is half the difference between the bonding and antibonding electrons.

Mathematically, Bond Order = 0.5 (No of bonding electrons - No of anti-bonding electrons)

Bonding electrons of the element = 6

Anti-bonding electrons of the element = 2

Difference = bonding electrons - anti-bonding electrons

= 6 - 2

= 4

Bond order = (0.5)*(difference)

Bond order = (0.5)*(4)
Bond order = 2

Bond order for the diatomic element has six bonding electrons, six non-bonding electrons, and 2 anti-bonding electrons is 2.

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light from a helium-neon laser with a wavelength of 633 nm is incident upon a 0.200-mm wide slit. what is the total width of the central maximum 2.00 m from the slit? question 5 options:

Answers

The total width of the central maximum be 1.266 cm.

What is diffraction of light?

The act of bending light around corners such that it spreads out and illuminates regions where a shadow is anticipated is known as diffraction of light.

In general, since both occur simultaneously, it is challenging to distinguish between diffraction and interference. The diffraction of light is what causes the silver lining we see in the sky. A silver lining appears in the sky when the sunlight penetrates or strikes the cloud.

Given that:

wavelength of light = 633 nm

wide of the slit = 0.200 mm.

distance of the central maximum = 2.00 m

So,  the total width of the central maximum = 2λD/a

= ( 2 × 633 nm × 2.00 m)/ 0.200 mm.

= 0.01266 m = 1.266 cm.

Hence,   the total width of the central maximum be  1.266 cm.

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a physics lab is demonstrating the principles of simple harmonic motion (shm) by using a spring affixed to a horizontal support. the student is asked to find the spring constant, ???? . after suspending a mass of 355.0 g from the spring, the student notices the spring is displaced 41.5 cm from its previous equilibrium. with this information, calculate the spring constant. spring constant: n/m when the spring, with the attached 355.0 g mass, is displaced from its new equilibrium position, it undergoes shm. calculate the period of oscillation, T , neglecting the mass of the spring itself. T

Answers

Vibration period T ignoring the mass of the spring itself:

k = mg/x = 0.315*9.8/0.275 = 11.23 N/m

Period T = 2π√(m/k) = 1.053 s

Displacement = 27.5 cm

where velocity is 0

potential energy = 0.5 kx^2 = 0.5*11.23*0.275^2 = 0.425

displacement = 15, 5 cm 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 √(A^2-x^2) = 1.36m/s

A = 0.275mx = 0

155 m

ω = √(k/m) = 5.97

Velocity = 5.97*√(0.275^2 -0.155^2) = 1.36 m/s

Total energy = 0, 5kx^2 = 0.3 .5*11.2 *0.275^2 = 0.424J

Kinetic energy = 0.5mv^2 = 0.5*0.315*1.36^2 = 0

Mass can best be understood as the amount of matter present in an object or body. Everything around us has mass. For example, tables, chairs, beds, soccer balls, glasses, and even air have mass.

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an 8.0-newton wooden block slides across a horizontal wooden floor at constant velocity. what is the magnitude of the force of kinetic friction between the block and the floor?

Answers

The magnitude of the force of kinetic friction between the block and the floor is 2.4 N.

Kinetic friction is defined as the force that acts between moving surfaces.

A body moving on a surface is acted upon by a force in the opposite direction to its motion. The magnitude of the force will depend on the coefficient of kinetic friction μ between the two materials.Formula for kinetic friction is F_k =  μ × N

Block weight = 8 Newton

Velocity of the block = Constant velocity

Assuming the kinetic friction for wood,  μ = 0.3, we have;

Normal reaction of the block on horizontal ground, N = Weight of the block = 8 N

Kinetic friction force between, F_k =  μ × N

Therefore, we must;

The kinetic frictional force between the block and the floor, F_k = 0.3 × 8  F_k = 2.4 N.

The magnitude of the force of kinetic friction between the block and the floor is 2.4 N.

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An airplane flying horizontally with a speed of 500 km/h at a height of 850 m fires a projectile horizontally in its direction of motion at a speed of 290 m/s relative to the plane. (Calculate the following answers relative to the ground.) (a) How far in front of the release point does the projectile hit the ground (in m)? (b) What is its speed when it hits the ground (in m/s)?

Answers

The projectile hit the ground 3,992.97 m in front of the release point.  The projectile speed when it hits the ground is 438.5 m/s

When an airplane flying horizontally fires a projectile horizontally in its direction of motion it means

v₁ = speed of an airplane = 500 km/h
v₁ = [tex]500 \times \frac{1,000 \: km}{3,600 \: s}[/tex] = 138.89 m/sv₂ = speed of a projectile relative to the plane = 290 m/sv = speed of a projectile relative to the ground
v = v₁ + v₂ = 428.89 m/s

The projectile moves in horizontally but it has projectile motion that move horizontally and vertically according to the parabolic curve.

In vertical, the projectile moves in a non-uniform motion.

uy = the initial speed in vertically = 0 m/sh = the height = 850 m g = acceleration due to gravity = 9.8 m/s²[tex]h = \frac{1}{2} gt^2[/tex]
2h = gt²
2 × 850 = 9.8 × t²
[tex]t = \sqrt{1,700}{9.8}[/tex]
t = 9.31 s

Horizontal, the projectile moves in uniform motion.

Distance
d = vt
d = 428.89 × 9.31
d = 3,992.97 m

When the projectile almost hits the ground

In vertical
Final speed
vy = gt = 9.8 × 9.31 = 91.24 m/sIn horizontal
vx = v = 428.89 m/s

Final speed for the projectile

v² = vx² + vy²

v² = 428.89² + 91.24²

v² = 183,946.63 + 8,324.37

v² = 192,271.004

[tex]v = \sqrt{192,271.004}[/tex]

v = 438.5 m/s

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if quasars are at the distances most astronomers believe they are, then (for the most luminous ones) their luminosities must be:

Answers

Like the combined luminosity of a hundred trillion (1014) Suns.

What is the luminosity of the most powerful quasars?

A new quasar with a 12 billion solar mass central black hole and 430 trillion solar luminosity was found by the Peking University Department of Astronomy at a distance of 12.8 billion light years from the Earth.

This quasar, driven by the most massive black hole then known to exist, is the most brilliant one to be found in the early Universe.

The finding of this quasar, designated SDSS J0100+2802, represents a significant advancement in our understanding of the evolution of quasars, the most potent cosmic phenomena, from their inception nine hundred million years after the Big Bang.

On February 26, 2015, the leading scientific publication Nature reported on this discovery.

Therefore, if quasars are at the distances most astronomers believe they are, then (for the most luminous ones) their luminosities must be 430 trillion light years.

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Without his glasses, Isaac can see objects clearly only if they
are less than 4.2 m from his eyes.
What focal length glasses worn 2.1 cm from his eyes
will allow Isaac to see distant objects clearly?
Express your answer using two significant figures.

Answers

Generally speaking, the object distance indicates that the light rays emanating from the object are parallel to one another, resulting in f=-4.221.

What kind of thing is a light ray like?

A ray is defined as a small, usually straight-traveling beam of light. The laser or laser pointer's light beam is an illustration of a ray. According to the ray model of light, a ray moves in a straight line until it encounters an object, such as a mirror or the boundary between two materials.

image distance is v = 4.7 + (2.1 * 10-2) = -4.721 m the negative

means image is formed behind the lens

Generally the object distance is u = ∞ this mean the light ray coming from the object are parallel to each other.

So from lens equation

=-고=수

=> f = -4.721 m

What is a light ray, exactly?

As an electromagnetic wave, light travels in straight lines along narrow beams of light, which are referred to as rays. Despite the fact that reflection or refraction can alter its direction, light always moves in a straight line.

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A resistor and an inductor are connected in parallel. If the voltage across the resistor is 120 volts, the voltage across the inductor is 120 volts.
True

Answers

Yes, It's True.

Voltage is the pressure from an electrical circuit's source that pushes charged electrons (current) through a conducting loop, enabling them to do work such as illuminating light.

Voltage is the essential parameter in the circuit for the flow of current. If there is no voltage, no current flow. Voltage is broadly classified into two basic types: direct voltage and alternating voltage. In an electrical or electronic circuit, we can measure the voltage by using either a voltmeter or a multimeter.

The electric generators move magnets near coils of wires to create the voltages on the electrical grid.

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When a metal car is struck by lightning, the resulting electric field inside the car is.

Answers

There is no charge present inside the car's body when lightning strikes the surface of the vehicle; instead, the charge runs over the vehicle's exterior. As a result, the electromagnetic current inside of the car is zero.

Explanation of the electric field

The electric field is the sum of the electric force on each charge, and the electric force on a charge at a given place in space is equal to the sum of the charge times the electric field there. In summary, electric charges produce electric fields.

What does an electric field example mean?

The area of space surrounding a charged particle or object that exerts force on it can be referred to as the electric field. Examples: -Charges and their arrangements, such capacitors and battery cells, generate electric fields.

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the earth's axis is tilted by about 23.5º, which explains why the earth has seasons. how does this occur? choose one or more: the hemisphere tilted toward the sun receives more solar radiation than the hemisphere tilted away from the sun. the tilt of earth on its axis determines the number of hours of daylight that each hemisphere receives. earth's tilt controls the degree to which light interacts with air particles by changing the distance it travels through the atmosphere. earth's tilt changes the angle at which sunlight arrives on earth, changing the area that is affected by that light. the tilt of earth's axis changes the distance from the earth to the sun, thus changing the amount of energy received.

Answers

We have seasons primarily because of how tilted the Earth is on its axis.

SUMMER: The Earth revolves around the sun, and the hemisphere that is tilted toward the sun receives the most sunlight. This is summer, when there is more sunlight.

WINTER: Because of the tilt of the earth's axis, days are shorter and less bright in the hemisphere that faces away from the sun. Winter is the result of the weather getting colder.

24-HOUR DARKNESS: Due to the tilt of the Earth, it is possible for darkness to last 24 hours a day at the North Pole of earth.

It is more frequently exposed to sunlight near the equator. Because of this, it is always much hotter at the equator. There is less variation between seasons because it is hotter for longer periods of time.

Direct sunlight strikes the Earth at the equator. In contrast, the sun's rays barely reach the poles where it is located.

More specifically, it's not because the equator is nearer the sun. But the reason is that the equator is being directly illuminated by the sun.

Because of this, the equator is home to some of the planet's warmest ecosystems, including tropical rainforests and deserts.

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the maximum speed of a child on a swing is 4.9 m/s. the child's height above the ground is 0.70 m at the lowest point in his motion. how high above the ground is he at his highest point

Answers

The Maximum Height attained by speed of child is 1.2005m.

A child on a swing can go no faster than 4.9 m/s.At the lowest point of his motion, the child is 0 m above the ground.Concept : Using the law of conservation of energy the child's kinetic energy at the lowest point was converted to potential energy at the highest point.

let's calculate the distance between the child's motion's lowest and highest points.

Acceleration due to gravity will be taken as 10 approximately.

[tex]H=h+ℎ\\\\ℎ=0.70 m\\\\h=\frac{V^2}{2g} \\\\h=\frac{4.9^2}{20} \\\\h=1.2005m[/tex]

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A man whose mass is 74.7 kg runs up a flight of stairs and has a vertical gain of 19.9 m in a time of 12.5 s.
a. What power, in watts, is supplied by the force pushing up on the man? (Ignore gains or losses in kinetic energy.)
b. Suppose the man’s body is 41.2% efficient, so that just 41.2% of the energy supplied by his body is converted into mechanical power. How much total power is expended by his body, in watts? (P=___W)

Answers

What amount of power, measured in watts, is provided by the force pushing up on the man? (Ignore gains or losses in kinetic energy). His body uses up a total of 2828.74 W h of energy.

An object's kinetic energy is the energy it has as a result of motion. Is called as kinetic energy.  Applying force is necessary if we wish to accelerate an object. We have to put forth work to apply a force. An influence that can alter an object's motion is called a force. A force can cause an object with mass to change its velocity, or accelerate (for example, moving from a condition of rest).

Power P is the product of work done (W) and time spent (t), or (74.7)(9.8)(19.9)/12.5) = 1165.44 W

Let his body's power consumption be P' We have (0.412)

P' = P

P' = P/0.412 = (1165.44/0.412) = 2828.74 W

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A thin film of polystyrene is used as an antireflective coating for fabulite (known as the substrate). The index of refraction of the polystyrene is 1.49, and the index of refraction of the fabulite is 2.409. (Figure 1) What is the minimum thickness of film required? Assume that the wavelength of the light in air is 470 nanometers. Express your answer in nanometers.

Answers

The minimum thickness of the film required will be equal to 78.85 nm.

When two waves add up in such a manner that the two waves cancel out and the there is no resulting wave then this phenomenon is known as Destructive interference of the waves. According to the question, light will be reflected two times, first from upper layer and then from the interface. So, the path travelled will be equal to 2t and the path difference will be  2tη_p. The values given in the question are

Index of refraction of polystyrene; η_p = 1.49

Index of refraction of Fabulite; η_f = 2.409

Wavelength of the light in air; λ = 470 nm

The formula for calculating minimum thickness is expressed as

2tη_p = λ/2

=> t = λ/2 × (1/2η_p)

=> t = λ/(4η_p)

=> t = 470/(4 × 1.49)

=> t = 78.85 nm

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a box starts from rest and slides down an incline that is 10m long. At the bottom it is travelling at a speed of 5.0m/s. If the incline makes an angle of 20 degrees with respect to the horizontal, what is the coefficient of friction between box and incline
0.15,0.23,0.31,0.40,0.37

Answers

a box starts from rest and slides down an incline that is 10m long. At the bottom it is travelling at a speed of 5.0m/s. If the incline makes an angle of 20 degrees with respect to the horizontal, then the coefficient of friction between box and incline is 0.23.

Coefficient of friction is a measure of the amount of friction existing between two surfaces. When you find a coefficient of friction, you’re calculating the resistance to motion at the interface of two surfaces of similar or dissimilar materials. To find the coefficient of friction between box and incline, first we need to under the free body diagram of box, so the box is sliding downward and the friction is acting opposite to the motion. From this we conclude that-

mgsinθ - fN = ma

where f= frictional force acting between the box and the incline

N= normal force action on the box

a= acceleration

To find acceleration of the box, we know

v² - u² = 2as

(5m/s)² - 0² = 2xax10m

as u= initial velocity i.e. box is at rest

25 = 20xa

a = 1.25m/s²

as we know -

f = uN

where u = coefficient of friction between box and the incline

u = (mgsinθ - ma) / mgcosθ

u = tanθ - a/gcosθ

u = tan(20°) - 1.25/gcos(20°)

u = 0.36 - 1.25/9.81*0.939

u = 0.225 or 0.23

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he length of a moving spaceship is 30.0 m according to an astronaut on the spaceship. if the spaceship is contracted by 13.8 cm according to an earth observer, what is the speed of the spaceship? c

Answers

The speed of the spaceship is 0.099c.

What is speed?

Speed is the fastest movement of something.

Given:

L = 30 m is the proper length of the ship

• Delta*L = 13.8cm = 0.13m is the change in length

Let us first determine our contracted length. We can do this by subtraction:

L = 30m - 0.13m

We get:

L = 29.87

Now to determine the speed of the ship, we use the length contraction equation:

L = L_{0} * √(1 - (v ^ 2)/(c ^ 2))

We isolate the square root term:

√(1 - (v ^ 2)/(c ^ 2)) = L/L_{0} To simplify calculations, let us first substitute our lengths:

√(1 - (v ^ 2)/(c ^ 2)) = (29.87/(30) =

= 0.995

After calculation

V/C = 0.099874

Or V= 0.099c

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the frequency spectrum of a signal that is sampled at a rate of 1000 samples/sec is obtained by dft. what must be the frame length (observation window) for processing if you want to get a frequency resolution of 5 hz for the spectrum?

Answers

The frame size for these settings is the inverse of the frequency resolution and is 2 seconds. 2048 samples are taken each second is the sampling frequency.

Definition of a resolution.

The capacity to distinguish between two signals called resolution in general. This pertains to the capacity to distinguish between two peaks in chromatography. Provided by where tr1 & tr2 and w1 but also w2 are the resolutions, R. A vector is resolved when it is divided into a number of vectors that point in distinct directions.

What purpose does resolution serve?

How many pictures are displayed each inch of a screen is sometimes referred to as PPI, or pixels per inch. Higher resolutions have more pixels per square inch (PPI), which means more digital signal and a better, more precise image.

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I need help
Tell us what activity is engaged in malala yousafiza what he is fighting for. Her life.
What a reward she got.
Express opinions about it

Answers

Answer:

the activity in this is not an easy way to do it in my mind and the heart of the city is not a bad day to get to a new report from the University of Texas I think that it was not until you are looking for a way that it would have been a great job in the world and is not intended to limit the scope of this invention to provide a method and system and a lot of people are going to get.

determine the number of conducting electrons per cubic meter for copper, given that its electron mobility is 3 × 10-3 m2/v-s.

Answers

The number of conducting electrons per cubic meter for copper, given that its electron mobility is 3 × 10-3 m2/v-s is 1.20 × 10⁷ electrons/ m³.

Electron mobility characterizes how fast an electron (or charged carrier) can pass through a stable fabric (e.g. metals or semiconductors), whilst pulled by means of an electric subject.

Calculation:-

resistivity of the copper (p) = 1.73 × 10⁸ Ωm

η = σ/μe

Here, σ = electrical conductivity

σ = 1/ρ

e  = charge on electrons = 1.6 × 10⁻¹⁹

μ = mobilty of electrons

n = σ/μe

n = 1/ρμe

n = 1/8.304 × 10⁻⁸

n = 10⁸/8.304

n = 1.20 × 10⁷ electrons/ m³

Mobility is described as the potential for motion and the potential to get from one region to another using one or extra modes of delivery to satisfy every day needs. As such, it differs from accessibility, which refers back to the ability to get entry to or attain a desired provider or activity.

Mobility is officially described as the fee of the glide pace in keeping with unit of electric field strength; for that reason, the faster the particle actions at a given electric field strength, the larger the mobility. The mobility of a particular sort of particle in a given stable can also vary with temperature.

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