an electron is accelerated from rest through a potential difference of 100v and launched into a region of a magnetic field b, the vleocity parallel to the magnetic feild. calculate the magnitude of the force exerted on the electron by the magnetic feild

Answers

Answer 1

The magnitude of the force is -9.44 * 10^-13 * B where B is the magnetic field.

The force exerted on a charged particle in a magnetic field is given by the equation:

F = q * v * B

where q is the charge of the particle, v is its velocity, and B is the magnetic field.

Since an electron has a charge of -1.6 x 10^-19 C, the magnitude of the force exerted on it by the magnetic field is:

F = q * v * B = -1.6 x 10^-19 C * v * B

To find the velocity of the electron, we can use the equation for the work

done by an electric field on a charged particle:

W = q * V

where W is the work done, q is the charge of the particle, and V is the potential difference.

Since the work done is equal to the change in kinetic energy of the particle, we have:

W = (1/2) * m * v^2, where m is the mass of the electron

So,

q * V = (1/2) * m * v^2

Solving for v, we get:

v = sqrt(2 * q * V / m)

Plugging in the values, we get:

v = sqrt(2 * -1.6 x 10^-19 C * 100 V / 9.11 x 10^-31 kg) = 5.9 x 10^6 m/s

Finally, the magnitude of the force exerted on the electron by the magnetic field is:

F = q * v * B = -1.6 x 10^-19 C * 5.9 x 10^6 m/s * B = -9.44 * 10^-13 * B

The value of the magnetic field B must be specified in order to find the exact value of the force.

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Related Questions

increasing the diameter of a telescope i. increases its light gathering power. ii. increases its resolving power. iii. increases it magnifying power. iv. increases its chromatic aberration.

Answers

Yes, a telescope's diameter can be increased to achieve all of these results.

The telescope can gather more light by expanding its diameter, which makes it simpler to observe faint objects. The telescope's resolving power is also improved by the larger diameter, which enables it to resolve minute details with greater accuracy. The telescope can create images with higher levels of magnification with more light and better resolving power. As a result of different light wavelengths being focused at different spots, chromatic aberration—which is another effect of greater diameter—can also rise.

An optical device called a telescope is used to magnify distant objects, enabling us to view distant galaxies, planets, stars, and other astronomical objects. In order to gather light and create an image, telescopes come in a wide variety of sizes and designs and employ a variety of lenses and mirrors. Terrestrial items like birds and trees can also be seen through telescopes. Astronomers and researchers utilise telescopes, as do amateur astronomers who seek to study the night sky.

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the oscillation period of a simple pendulum (as described in section 13.5) is measured to be t, and then the length of the pendulum is increased by a factor of 4. (for example, increased from 10 cm to 40 cm or 1 m to 4 m.) which option best describes the new period of the pendulum? group of answer choices

Answers

The new time period of the pendulum will be 2 times the original period.

The period of a simple pendulum is given by the equation:

T = 2π√(l/g)

where T is the period, l is the length of the pendulum, and g is the acceleration due to gravity.

If the length of the pendulum is increased by a factor of 4, the new period can be calculated as follows:

T' = 2π√(4l/g) = 2π√(4 × (l/g)) = 2π√4 × √(l/g) = 2 × 2π√(l/g) = 2T

Therefore, the new period of the pendulum will be 2 times the original period.

The period of oscillation of a pendulum is proportional to the square root of the length of the pendulum, so increasing the length of the pendulum by a factor of 4 will increase the period of oscillation by a factor of 2. This relationship can be shown mathematically by substituting the new length into the equation for the period of a pendulum.

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The oscillation period of a simple pendulum (as described in section 13.5) is measured to be t, and then the length of the pendulum is increased by a factor of 4. (for example, increased from 10 cm to 40 cm or 1 m to 4 m.) which option best describes the new period of the pendulum? group of answer choices

A. 2T

B. 4T

C. 8T

D. None of the above

near one end of an electrically neutral aluminium rod lying on a table made of non conducting material ,you hold a comb that is also made of non conducting material .does a small still sphere located near the other end of the sphere

Answers

When you hold a comb near one end of the aluminum rod, electrons from the rod will flow towards the comb due to its negatively charged electrons.

However, this will result in a redistribution of electrons within the rod, not the generation of an electric charge on the other end of the rod, which is too far away to be affected by the comb.

Since both the comb and the rod are made of non-conducting materials, the electrons will not be able to flow freely, and the redistribution will be limited. This means that the sphere at the other end of the rod will not experience an electric charge.

So in short, the sphere does not experience an electric charge.

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do the two cars ever have the same velocity at one instant of time? if so, between which two frames?

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The two cars have the same position at seven seconds; yet they never have the same velocity at any instant in time.

The blue car starts ahead of" the red car. (The red car actually starts off the screen.) Since the red car is moving faster, it eventually catches up with and passes the blue car. The position-time plot of each car's motion is depicted by a diagonal line with a constant slope.

At the time that the cars are side by side, the lines intersect. That is, the two cars share the same position at that instant in time. The lines would not intersect for a velocity vs. time graph.

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Physics help me please I am struggling

Answers

The solutions to the following questions on wave, frequency, wavelength is as follows:

4Hz50cm/s2Hz6cm6.6m/s4m

How to calculate speed, frequency and wavelength?

Wavelength is the length of a single cycle of a wave, as measured by the distance between one peak or trough of a wave and the next.

Wavelength is often designated in physics as λ, and corresponds to the velocity of the wave divided by its frequency.

QUESTION 1:

Period = 1/frequency

Frequency = 1/0.25 = 4Hz

QUESTION 2:

v = λf

v = 5 × 10 = 50cm/s

QUESTION 3:

λ = v/f

10 = 20/f

f = 2Hz

QUESTION 4:

λ = v/f

λ = 30/5 = 6cm

QUESTION 5:

f = 1/T

f = 1/3 = 0.33Hz

λ = v/f

20 = v/0.33

v = 6.6m/s

QUESTION 6:

λ = v/f

λ = 300/75

λ = 4m

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a stone is thrown vertically upward from 15.0 m high cliff with a velocity of 10.0 m/s. how long it takes to reach the ground?

Answers

A 65-meter-high cliff's edge releases a stone at a speed of 10 metres per second; it travels 37.14 metres per second to reach the earth.

What exactly is speed?

Speed is the rate that an object is moving along a path whereas velocity is really the pace and direction of that movement. In other words, although velocity is indeed a scalar value, velocity is a vector.

Describe the term combination?

Combinations are mathematical operations that count the number of potential configurations for a set of elements when the order of a selection is irrelevant. You can choose the components of the combos in any order.

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what is the angular resolution of the human eye? what is the angular resolution of the human eye? about 1 arcsecond (1/3600 of a degree) about 1 milliarcsecond about 1 degree about 1 arcminute, or 1/60 of a degree

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The angular resolution of the human eye is about 1 arcminute, or 1/60 of a degree or 1 arcminute.

Angular resolution of human eye is nearly 1/60 of a degree, which means that the smallest distinguishable angle that the human eye can perceive is approximately 1/60 of a degree.

This is equivalent to about 17.5 milliseconds of arc at the typical viewing distance of 25 cm from the eye to the object being viewed.

The human eye's ability to resolve small angles is limited by the size of its photoreceptor cells, called rods and cones, which are responsible for detecting light and transmitting visual signals to the brain.

The angular resolution of the human eye is much lower than that of many other animals, such as eagles and hawks, which can resolve angles as small as 2-3 arcseconds. This difference is due to the differences in the size and density of photoreceptor cells in the eyes of different species. In general, the larger and more densely packed the photoreceptor cells, the greater the angular resolution of an animal's eyes.

It is worth noting that the angular resolution of the human eye can vary depending on various factors, such as age, lighting conditions, and the presence of visual impairments.

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if a proton at a distance for a charged particle is repelling with a given force, by how much will the force decrease when the proton is three times away? what is the sign of the particle?

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If a proton is repulsed by a charged particle at a certain distance with a certain force, the force decreases as the proton gets three times farther away from the particle. For this, the equation is presented below.

It is possible to write the force between a proton and a charged particle as follows.

[tex]F = k q_{1} q_{2} r_{2} . F=\dfrac{kq_1q_2}{r^2}.[/tex]

With a rest mass of 1.67262*10⁻²⁷ kg or 1,836 times that of an electron, the proton is a stable subatomic particle with a positive charge that is equivalent to one electron's charge.

With the exception of the hydrogen nucleus, all atomic nuclei are composed of protons and neutrons, which are electrically neutral particles (which consist of a single proton). There is exactly the same number of protons in each of the nuclei of a given chemical element. The location of the element in the periodic table is determined by this number, which also serves to establish the atomic number of an element. An atom is electrically neutral when it has an equal amount of protons and electrons in its nucleus.

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Write the length of the Milky Galaxy.

Answers

Answer:

it is 100,000 light years

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the microscopic structure of a polarizing filter is analogous to a __________.a. window screenb. barbeque grillc. roll pf coinsd. kitchen sievee. plate of spagetti

Answers

A polarizing filter tiny structure is comparable to a kitchen sieve. Hence, the correct option is (d).

A kitchen sieve is a device that is used to filter or sift particles of different sizes. It has a mesh or net-like structure that allows only particles of a certain size to pass through. Similarly, a polarizing filter is a device that allows only light waves of a certain orientation to pass through while blocking others. It has a microscopic structure that consists of a series of aligned molecules or crystals that act like a mesh to filter out certain orientations of light waves. The mesh-like structure of a kitchen sieve is similar to the microscopic structure of a polarizing filter because both have small openings or pores that allow only certain things to pass through while blocking others. Therefore, the answer is (d) kitchen sieve.

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an oil film ( ) floating on water ( ) is illuminated by white light at normal incidence. the film is thick. the reflected light will be predominately a single color. find the wavelength of the dominant visible light among the reflected light. take the range of visible light to be - .

Answers

The visible range is 6.02×10^-7 m.

The refractive index of the oil film is n=1.58

The thickness of the film is , t=286 nm= 286×10^-9 m

2nt=( m+ ½) λ

m=0, 1, 2,.....

Substituting m=0, t and n

2× 1.58 ×(286×10^-9) =(0+½) λ=1.81×10^-6m (This is of infrared range)

Substituting m=1, t and n

2× 1.58 ×(286×10^-9) =(1+½) λ=1.81×10^-6=6.02×10^-7 m, this is visible range

About wavelength

Waves are vibrations that propagate. There are many types of waves such as sound waves, mechanical waves, to electromagnetic waves. All waves have different characteristics.

The physical characteristics of the wave are represented by the wavelength, frequency, amplitude, direction of vibration, and also the direction of propagation. Wavelength is the distance of one wave and is represented by the Greek letter Lambda (λ).

On transverse waves, length can be calculated as the distance from the peak of the wave to the crest of the next wave, or the trough of the wave to the trough of the next. Whereas in longitudinal waves, the wavelength can be calculated from one stretch to the next stretch, or the distance from one density to the next.

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a 95kg man standing on a bathroom scale in an elevator calculate the reading of the scale if the elevator accelerates upward at a rate of 1.50m/s^2 and suppose it moves upward at a constant speed of 1m/s​

Answers

Answer:

Below

Explanation:

You have conflicting statements....first you say it is accelerating....then you say it is constant speed.

Here is the force if the elevator is accelerating  

95 ( 1.5 + 9.81) = 1074 N (if the scale reads N)  

               If the scale reads KG  then  1074/9.81 = 109.5 kg

If the elevator is constant speed his weight will not change  95kg  (932 N)

Which of the following is an abiotic factor in a biome?(1 point)
Responses

birds
water
insects
trees

Answers

The one that is an abiotic factor in a biome is option B. water

What is an abiotic factor?

An abiotic factor in a biome is a non-living physical or chemical component of an ecosystem that affects the survival, growth, and behavior of the organisms that live in it. Examples of abiotic factors in biomes include temperature, light, moisture, soil type, topography, and atmospheric gases such as carbon dioxide and oxygen.

Therefore, the one that is an abiotic factor in a biome is option B. water

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A driver of a car moving with a uniform speed of 40m/s observes a truck approaching in the opposite direction with a speed of 20m/s.Calculate the speed of the car relative to that of the truck

Answers

Answer:

60m/s

Explanation:

since both are travelling in opposite direction,

relative speed will be the sum of the speed of both the vehicles

= 40m/s + 20m/s

= 60m/s

and we are done!

Starting from rest, a particle moves along an axis from point A to point B with constant acceleration a = 2.20 m/2 through
displacement d = 500 m. Then it moves at constant acceleration a through displacement dz = 300 m from point B to point C. If the
total time is 60.0 s, what is the value of a2?

Answers

The value of a^2 is 3600 if Starting from rest, a particle moves along an axis from point A to point B with constant acceleration a = 2.20 m/2 through displacement d = 500 m.

To determine the value of a^2, we need to use the relationship between acceleration, displacement, and time, which is given by the equation:

[tex]d = 1/2 a t^2[/tex]

First, we can find the time t1 required for the particle to travel from point A to point B by using the equation:

[tex]d = 1/2 a t1^2[/tex]

Substituting the given values, we get:

[tex]500 = 1/2 (a) (t1)^2[/tex]

Rearranging and solving for t1:

[tex]t1 = \sqrt{} (500 / (1/2 a)) = \sqrt{} (1000 / a)[/tex]

Next, we can find the time t2 required for the particle to travel from point B to point C by using the equation:

[tex]dz = 1/2 a t2^2[/tex]

Substituting the given values, we get:

[tex]300 = 1/2 (a) (t2)^2[/tex]

Rearranging and solving for t2:

[tex]t2 =\sqrt{} (300 / (1/2 a)) = \sqrt{} (600 / a)[/tex]

Finally, we can use the total time t to find the value of a by using the equation:

t = t1 + t2

Substituting the values of t1 and t2, we get:

60 = sqrt(1000 / a) + sqrt(600 / a)

Squaring both sides, we get:

[tex]3600 = 1000 / a + 600 / a + 2 sqrt(1000 * 600) / a[/tex]

Rearranging and solving for a:

[tex]a = sqrt(3600 * a / (1000 + 600)) = sqrt(3600 * a / 1600)[/tex]

Squaring both sides again, we get:

[tex]a^2 = 3600 / (1600 / a) = 3600 * a / 1600[/tex]

Rearranging and solving for a^2:

[tex]a^2 = 3600^2 / 1600 = (60^2)^2 / (40^2) = 3600.[/tex]

So, the value of a^2 is 3600.

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how much ke would a proton acquire, starting from rest at b b and moving to point a a ? express your answer using two significant figures.

Answers

A proton starting from rest at point B and moving to point A would acquire 4.2 keV of kinetic energy. Expressing this answer using two significant figures yields 4.2 keV.

To further develop the topic, it is important to understand how kinetic energy is calculated. Kinetic energy is the energy of an object in motion, and is equal to one half of the mass of an object times the square of its velocity. In this case, the proton is moving from point B to point A, so the velocity of the proton at point A can be used to calculate the kinetic energy.

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a truck covers 44.0 m in 8.60 s while smoothly slowing down to final speed of 2.90 m/s. (a) find its original speed.

Answers

The original speed of the truck is 19.7 m/s.

To find the original speed of the truck, we can use the equation of motion for constant acceleration:

v = v0 + at,

where v0 is the initial velocity, v is the final velocity, a is the acceleration, and t is the time.

Since the truck is slowing down, its acceleration is negative, and we can find it using the final velocity and time:

a = (v - v0) / t = (2.90 m/s - v0) / 8.60 s.

Next, we can use the distance-velocity relationship for constant acceleration:

d = v0t + 1/2 at²,

where d is the distance traveled.

Substituting the expression for a into the above equation and solving for v0, we get:

v0 = √(v² + 2ad) = √(2.90² + 2 × a × 44.0) m/s.

Substituting the values for v, a, and d into the expression for v0, we get:

v0 = √(2.90² + 2 × (-(2.90 m/s - v0) / 8.60 s) × 44.0) m/s.

Solving this equation for v0, we get:

v0 = 19.7 m/s.

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a conducting sphere is charged to a value of 2x10-6 coulombs. what is the potential difference from one side of the sphere to the other side of the sphere? explain.

Answers

The potential difference from one side of the sphere to the other side of the sphere is zero.

Potential difference between any two points In the electric field is defined as the amount of work done in moving a unit positive charge without acceleration from one point to another along any path between the two points.

The potential on the surface of sphere with radius r is,

[tex]V= \dfrac{kq}{r}[/tex]

where q is the charge on the sphere, r is the radius of sphere(that is the distance of center to the surface) and k is the permittivity of free space.

On the either sides of sphere the distance from the center is same. Hence the V will be same. Therefore the potential difference is zero.

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an air bag inflates when a collision occurs, protecting a passenger (the dummy in figure q6.16) from serious injury. why does the air bag soften the blow? discuss the physics involved in this dramatic photograph.

Answers

Tiny holes in the airbag itself start releasing the gas as soon as it is filled. By the time your head reaches the bag, it should be deflating.

What physics govern air bags?

Sodium azide, sometimes known as NaN3, is the chemical that drives the air bag reaction. CRASHES trip sensors in cars that transmit an electric signal to an ignitor. As a result of the heat produced, sodium azide breaks down into sodium metal and nitrogen gas, inflating the car's air bags.

Why does the physics of an airbag lessen injuries?

Reduce the body's acceleration to lessen the force that is being delivered to it. This is how airbags operate. The airbag lengthens the period of time when the head's velocity is increased.

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Which of these illustrates potential energy due to gravity being converted into kinetic energy?

Answers

The answer is a rock falling from a cliff. This  illustrates potential energy due to gravity being converted into kinetic energy.

When a rock falls off a cliff, its gravitational potential energy is converted into kinetic energy. This is because the potential energy of the rock is converted into kinetic energy as it falls and accelerates as it falls due to gravity. The potential energy of a rock is the energy stored in the rock due to its location relative to the Earth's gravitational field.

When falling, this potential energy is converted into kinetic energy, which is the energy of motion, and is accelerated by when falling due to gravity. This kinetic energy eventually causes the stone to hit the ground with considerable force.

Full Question:

Which of these illustrates potential energy due to gravity being converted into kinetic energy?

A rock falling from a cliffA burning log heats a container of water.A rubber band becomes harder to pull as it is stretched farther. Cells in the body convert food molecule

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Discuss the ethical considerations in providing immunization.

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the ethical considerations in providing immunization are vaccinations stand out as being among the most effective and economical

The only form of medical intervention that has successfully eradicated a disease is vaccination. Immunization, however, is fraught with problems and conflicts in both nations with high immunisation rates and nations that are too poor to safeguard their citizens. This piece outlines some of the moral dilemmas involved and offers some notions and problems for the world community.

Among all worldwide medical interventions, vaccinations stand out as being among the most effective and economical. Millions of lives have been saved through vaccinations, which have also eradicated a disease and reduced major morbidity and suffering. The elimination of smallpox as the final success shows the benefits of vaccination. Unfortunately, there are also glaring disparities in the delivery and application of vaccines. Why do millions of children still perish annually from other vaccine-preventable diseases if vaccinations can be used so successfully across the globe to eradicate a disease? In terms of ethics and humanitarianism, this ought to be unacceptable.

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How are Newton's Laws used to describe the motion of planets? Justity your response In two or more complete
sentences in the essay box below.

Answers

Newton's Laws of Motion can be used to describe the motion of planets. These laws state:

An object at rest will remain at rest, and an object in motion will remain in motion at a constant velocity, unless acted upon by an unbalanced force.

The acceleration of an object is directly proportional to the magnitude of the force applied, and inversely proportional to the mass of the object.

For every action, there is an equal and opposite reaction.

Using these laws, astronomers and physicists can make predictions about the motion of planets and other celestial bodies. For example, Newton's First Law can be used to explain why planets continue to orbit around stars, and why they move in a specific path instead of flying off into space. Newton's Second Law can be used to calculate the force of gravity between planets and stars, which determines their acceleration and velocity.

Finally, Newton's Third Law can be used to explain how planets and other celestial bodies interact with one another, such as how they influence each other's orbits. This helps to understand why planets sometimes experience changes in their paths and movements, such as when they are pulled or pushed by other celestial bodies.

Overall, Newton's Laws of Motion provide a framework for describing and predicting the motion of celestial bodies, and continue to play a critical role in our understanding of the universe.

What impulse must be applied to a 1.08 kg cart to cause a velocity change of 12.0 m/s

Answers

Answer:

Explanation:

Impulse of force =12.96 Ns

Explanation:

Impulse = force* time = change in momentum  = mass* velocity

Given the following data;

mass = 1.08kg

Change in velocity = 12m/s

Impulse of force = 1.08* 12 = 12.96Ns

how far will it go, given that the coefficient of kinetic friction is 0.17 and the push imparts an initial speed of 3.7 m/s ?

Answers

When the box is placed on a horizontal surface, it experiences a force even if it is at rest. The forces that a box encounters are gravity, frictional force, and weight.

The weight is how much?

Weight is the gravitational attraction of the Earth's centre on items. Gravity is the resultant force that draws a mass towards Earth. This only happens on Earth and a mass, as opposed to gravitational pull, which happens whenever two masses are in contact.

What is a mass?

In physics, mass is a way to measure inertia, a fundamental property of all matter. Basically, it describes the opposition a body or piece of matter offers to a change in velocity or location.

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in which situation is the magnitude of the total momentum the largest? same magnitude in both situations situation (i) situation (ii)

Answers

Same momentum in both situations. Momentum is a vector. In Situation II the impulses are opposite and partially cancel each other out.

Which of following is most dynamic?

Momentum directly proportional to the object's mass and velocity. Faster speed means more momentum. Therefore, cars traveling at high speed on highways have the most momentum.

How do you know what has more momentum?

p = m v . From this equation we can see that momentum is directly proportional to the mass (m) and velocity (v) of the object. Therefore, the greater the mass of an object or the greater its velocity, the greater its momentum. A large, fast-moving object has more momentum than a small, slow-moving object.

Which object has the greatest momentum and why?

Heavy objects have a more mass. Momentum is a product of mass, and a scalar quantity, and velocity, a vector. Therefore, if two objects have the same velocity, the heavier object with more mass will also have more momentum.  

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an oscilloscope measures a time delay of 0.2 milliseconds between a pair of 500 hz sine waves. determine the phase shift.

Answers

The second sine wave is shifted 360.4° ahead of the first sine wave.

What is sine wave ?

A sine wave is a type of waveform, or a periodic oscillation, with a shape that follows the mathematical sine function. It is one of the fundamental waveforms and has a distinctive, smooth curve that repeats itself over intervals of time. It is commonly used in mathematics, physics, engineering, and other fields.

The phase shift between two sine waves is calculated by multiplying the time delay by the angular frequency of the sine wave. Therefore, in this case the phase shift is calculated as follows:

Phase shift = 0.2ms * (2π * 500 Hz)

= 0.2ms * (3141.6 rad/s)

= 628.32 rad.

This result can also be expressed in degrees by multiplying the result by 180/π, which gives a phase shift of 360.4°.

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during a very quick stop, a car decelerates at 7.00 m/s2. what is the angular acceleration of its 0.280-m-radius tires, assuming they do not slip on the pavement? how many revolutions do the tires make before coming to rest, given their initial angular velocity is 95.0 rad/s?

Answers

Therefore, angular acceleration is equal to linear acceleration multiplied by the radius, which is a negative 7.00 m/s squared divided by a negative 0.280 m/s squared or a negative 25.0 r/s squared.

In the event that its 0.280 m circle tires do not slide on the pavement, what is their angular acceleration?

negative 7.00 metres per second ( m / s divided by 0.280 metres is equal to negative 25.0 radians / second squared, or angular acceleration, which is defined as accelerometer divided by the radius.

Why does radius not affect the angular acceleration?

Compared to the area nearer the axis of rotation, it experiences a substantially greater tangential acceleration.However, because the entire item moves through the same arc in the same length of time as a rigid body, the angular velocity of every component of the wheels is the same.

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an object is moving in a straight line. at one instant, the object is moving at 4 m/s. 2 seconds later it is moving in 10 m/s. what is the average acceleration during these 2 seconds?

Answers

Answer:

a=3m/s squared

Explanation:

a=v-u/t

where a=acceleration,v=final velocity,u=initial velocity,t=time taken

a=10-4/2-0

a=6/2

a=3m/s squared

the power needed to accelerate a projectile from rest to its launch speed v in a time t is 61.0 w. how much power is needed to accelerate the same projectile from rest to a launch speed of 2v in a time of 1 2 t?

Answers

The same projectile requires 244W of power to accelerate from rest to launch speed.

What kind of energy does acceleration require?

Kinetic energy is the term used in physics to describe the energy an object has as a result of motion. It is defined as the effort required to accelerate a mass-determined body from rest to the indicated velocity.

Power needed P = 61.0 W

initial Launch velocity is v

Energy of projectile when it is launched E = 1/2mv²

Power = energy/time

P = E/t

61 = 1/22mv²/t............(i)

when it is launched, it has 2 v of power.

E₂ = 1/2m(2v)² = 4/2mv²

P = 2mv²/t..........(ii)

Divide i & ii we get

61/P = 1/2ˣ2

P = 61 × 4

P = 244W

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10 kj heat is transferred to a control volume and 7 kj work is done by the control volume. the amount of heat lost from the control volume is

Answers

The amount of heat lost from the control volume is 3 kJ, as the control volume has transferred 10 kJ of heat and done 7 kJ of work.

Heat transfer is the process by which energy in the form of thermal energy is transferred from one place to another. Heat can be transferred from a warmer object to a cooler object, or vice versa.

Heat transfer can occur in three ways: conduction, convection, and radiation. In conduction, heat is transferred through the contact of two objects. In convection, heat is transferred through the movement of fluids.

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