consider a conductor at rest in a static electric field. which statement is true about how the conductor interacts with the electric field?

Answers

Answer 1

Option (a) is Correct. Take a look at a static electric field around a conductor at rest. then the conductor's internal electric field is exactly zero.

Electrons are free to move in a conductor. If they are subjected to a force, they will move faster in that direction. A force F = -eE acts on each free electron when a conductor is exposed to an external electric field. Electrons gain speed and accelerate in the direction that is the opposite of the field. There are no closed loops formed by electric field lines.

Because electric field lines begin with positive charge and conclude with negative charge, the assertion is accurate. A loop can never be closed since the starting and ending points of the electric field lines are different. Charges that are free to move are present in conductors. Charges in a conductor react swiftly to attain a constant state known as electrostatic equilibrium when an excess of charge is applied to the conductor or the conductor is placed in a static electric field.

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Correct Question:

Consider a conductor at rest in a static electric field. Which statement is true about how the conductor interacts with the electric field?

A. The electric field inside the conductor is exactly zero.

B. Any net charge on the conductor is distributed evenly throughout the volume of the conductor.

C. The electric field is parallel to the surface of the conductor at all points along its surface.

D. The electric field lines pass through the conductor unaffected by its presence.


Related Questions

Animals and plants in a food web are on each other for survival. A. dependent B. suspending OC. superintendent D. interdependent​

Answers

A. dependent

This is the answer

Describe the difference between potential and kinetic energy

Answers

Answer:

Explanation:

Kinetic energy involves motion so something that is not moving has zero kinetic energy.

Potential energy does not involve motion and is based on position in a field like gravity and magnetic.

What type of substances is an alloy?

A) Moleclue?
B) Mixture?
C) Compound?
D) Element?

Answers

Compound and mixture

If the electric force between two charges is 4.2 × 10-2 N, what would the new force be if the distance between the charges is doubled and the charge on one of the charges is tripled?

Answers

Answer:

New force = 0.063 N

Explanation:

Given that,

The electric force between two charges is\(4.2\times 10^{-2}\ N\)

The formula for the electric force is:

\(F=\dfrac{kq_1q_2}{r^2}\)

If the distance between the charges is doubled, r' = 2r and one of the charges is tripled, q₁' = 2q₁, q₂' = 3q₂

Put all the values,

\(F'=\dfrac{kq_1'q_2'}{r'^2}\\\\\dfrac{F}{F'}=\dfrac{\dfrac{kq_1q_2}{r^2}}{\dfrac{kq_1'q_2'}{r'^2}}\\\\\dfrac{F}{F'}=\dfrac{\dfrac{q_1\times q_2}{r^2}}{\dfrac{2q_1\times 3q_2}{(2r)^2}}\\\\\dfrac{F}{F'}=\dfrac{4}{6}=\dfrac{2}{3}\\\\F'=\dfrac{3\times 4.2\times 10^{-2}}{2}\\\\F'=0.063\ N\)

So, the new force is 0.063 N.

Answer:

The force becomes 0.0315 N.

Explanation:

Force, F = 4.2 x 10^-2 N

When the distance is doubled, a charge is tripled, Let the force is F'.

The force between the two charges is

\(F = \frac{K qq'}{r^2}\\\)

when, q' = 3 q' and r is 2 r so

\(F' = \frac{K 3qq'}{4r^2} = \frac{3 F}{4} = \frac {3\times 4.2\times 10^{-2}}{4}=0.0315 N\)

A ray of red light in air is incident at an angle of 30. on a

boundary with olive oil. What is the angle of refraction, to the

nearest degree, for this light ray in the olive oil?

a 60

§ 20

C 30°

x

do

e 47

Answers

Answer:

20 degrees.

Explanation:

From Snell’s law of refraction:

sinθ1•n1 = sinθ2•n2

where θ1 is the incidence angle, θ2 is the refraction angle, n1 is the refraction index of light in medium1, and n2 is the refraction index for virgin olive oil. The incidence angle of the red light is θ1 = 30 degrees.

The red light is in air as medium1, so n1 (air) = 1.00029

So, to find θ2, the refracted angle:

sinθ1•1.00029 = sinθ2•1.464

sin(30)•1.00029 / 1.464 = sinθ2

0.5•1.00029 / 1.464 = sinθ2

sinθ2 = 0.3416291

θ2 = arcsin(0.3416291)

θ2 = 19.976 degrees

To the nearest degree,

θ2 = 20 degrees.

PLEASE HELP MY WHOLE GRADE-DEPENDS ON THIS

A motorboat whose speed in water is 5.00 m/s must aim upstream at an angle of 47.5° above the
horizontal in order to travel directly across the river. A. Diagram the physical scenario and add the triangle (2 pt). B. What
is the speed of the river (1 pt)? C. What is the resultant speed of the boat with respect to the shore (1 pt)? D. If the opposite
shore is 191 meters away, how long will it take to get across (1 pt)?

Answers

B horizontal in order to travel directly across the river.










Idrk :):(

Answer:

C.

Explanation:

Because the speed pf the boat will depends of the driver.

When you stand outside your are standing in the, Stratosphere. Troposphere. Mesosphere no

Answers

Uhhh I’m not really sure of the answer i think it’s stratosphere

If an object undergoes a change in velocity, then it also undergoes a change in:

Answers

Answer:

acceleration

Explanation:

If the velocity is not constant, then there must be a beginning and ending of its velocity. If that is so and there is also a change in time (which there must be) then there is a change in acceleration.

The formula for that is a = (vf - vi)/t

Answer:

probably acceleration

Explanation:

acceleration is the change in velocity

If your friend was on a skateboard and you pushed them with forward (away from your) with a force of 15N, would you feel a force? If so, how much and what direction? *

Answers

Yes. Newton’s third law of motion states every action has an equal and opposite reaction. You would feel a force of 15 N and you would go backwards. This is all assuming you were on a skateboard or were on something where you could move.

Yes.  you would feel a force 20 N towards backward direction due to this.

What is force?

The definition of force in physics is: The push or pull on a massed object changes its velocity.

An external force is an agent that has the power to alter the resting or moving condition of a body. A spring balance can be used to calculate the Force. The Newton is the SI unit of force.

"When one body exerts a force on the other body, the first body experiences a force that is equal in size in the opposite direction of the force which is exerted," according to Newton's third law of motion.

Hence, according to Newton's third law of motion, when you pushed them with forward (away from your) with a force of 15N, you would feel a force of equal magnitude (20 N) in opposite direction (backward direction).

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the tape in a videotape cassette has a total length 281 m and can play for 2 h. As the tape starts to play, the full reel has an outer radius of 45 mm and an inner radius of 12 mm. At some point during the play, both reels will have the same angular speed?
what is this common angular speed?

Answers

The common angular speed is 6.5 x 10^⁻⁴ rad/s

What is the angular speed about?

To calculate the common angular speed of the reels during play, we need to first determine the linear speed of the tape on the outer reel. We can use the formula:

Linear speed = tape length / play time

So the linear speed of the tape on the outer reel is:

Linear speed = 281 m / (2 h * 3600 s/h)

                       = 0.078 m/s

Then we can use the formula for linear speed to find the angular speed:

Linear speed = angular speed x radius

So the angular speed of the outer reel is:

Angular speed = Linear speed / radius

= 0.078 m/s / (45 mm / 1000 m/mm)

= 1.7 x 10^⁻⁴ rad/s

The inner reel radius is 12mm, so the angular speed of the inner reel is:

Angular speed = Linear speed / radius

= 0.078 m/s / (12 mm / 1000 m/mm)

= 6.5 x 10^⁻⁴ rad/s

This is the common angular speed of the reels when both have the same angular speed.

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what conditions of temperature and pressure will maximize the amount of c g at equilibrium

Answers

The conditions of temperature and pressure will maximize the amount of c g at equilibrium must be established.

The ideal temperature and pressure conditions are those that permit for the maximum production of the desired product while also maintaining the optimal yield of the reaction. In order to maximize the amount of C(g) at equilibrium, it is recommended that the reaction be carried out at a high temperature and a low pressure.The following is a comprehensive explanation of why this is so. High Temperature, the reaction's forward rate constant is raised as the temperature rises.

As a result, the forward reaction occurs more quickly, increasing the amount of products produced, this raises the quantity of C(g) produced. Low Pressure, the reaction's backward rate constant decreases as the pressure decreases. As a result, less product is converted back into reactants, resulting in a higher yield of products. As a result, lowering the pressure allows for more C(g) to be produced. Overall, it can be said that raising the temperature while reducing the pressure is the ideal approach to maximizing the quantity of C(g) at equilibrium.

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Help me please.......

Help me please.......

Answers

Answer:

Cities near water tend to have less precipitation in the summer because the water is warmer than the air

Viscosity, while not as impactful on flow as radius, still is an important factor that alters blood flow rates in the body. Dehydration as well as other pathological conditions that alter the viscosity of blood could have detrimental impacts on the body. I am unsure of how to do a proper video demonstration or even a drawing of viscosity, so we are going to stick with a good old fashioned written description for this one. I’d like to demonstrate that blood is in fact, thicker than water which would alter rate of flow. We’ll assume η=1cP for water and η=5cP for blood. With constant pressure- ΔP, r=2cm and l=10cm

Water: Q = ΔP (π (2cm4)/8(1cp)(10cm)

Q= ΔP (π*16)/ 80 Q= ΔP 50.27/80 Q= .63

Blood: Q = ΔP (π (2cm4)/8(5cp)(10cm)

Q= ΔP (π*16)/400 Q= ΔP 50.27/400 Q= .13

If pressure is constant, as viscosity increases, resistance increases, and therefore flow decreases. With our increase in viscosity from water to blood by about 5x, we see about a 5x decrease in flow, modest compared to the exponential decrease in flow as radius decreases. Interestingly, as blood vessel radius decreases however, the viscosity of blood in the body decreases, partly due to the increase in velocity, "shear thinning" is the decreased viscosity seen by faster moving blood.

Part A

Describe how tube radius might influence the flow rate in their demonstration. How would you have to manipulate your variable (increase/decrease) to make the flow rate equal between the two examples. For example, if I want to have equal flow through my two different straw lengths, I could decrease pressure through the short straw until the Flow rate was equal to that of the long straw.

Part B

Based on your manipulation, how would this affect cardiac output if you imagine your classmate's example is the vascular bed? Would cardiac output increase or decrease? Why?

Answers

Part A The radius of the tube is a factor that determines the flow of fluid through it. The flow rate of a liquid through a tube is proportional to the fourth power of the radius and inversely proportional to the viscosity of the fluid. Thus, the flow of blood through a blood vessel is affected by its diameter (radius).

Part B In order to maintain the same flow rate in both tubes, the pressure in the tube with the smaller diameter must be increased. If we imagine our classmate's example as the vascular bed, this would reduce cardiac output. Cardiac output is the amount of blood pumped out by the heart in one minute. It is determined by heart rate (HR) and stroke volume (SV), which is the amount of blood pumped out of the heart in one beat.

If we consider the smaller diameter of the tube as a blood vessel, its diameter can affect the flow of blood and, therefore, the cardiac output. A decrease in the radius of the blood vessel will result in an increase in resistance, which will require more pressure to maintain the same flow rate. If the pressure in the tube is increased to maintain the same flow rate, this would reduce cardiac output.

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What celestial body is the center of our solar system, around which every object orbits?.

Answers

Explanation:

The Sun is the center of the solar system. What is the Sun? Earth's Sun may seem different to us, but it is a star like all the other stars located outside the solar system.

What natural process is responsible for the shape of the mushroom rock?
(PLEASE HELP ME!!!!!)

Answers

Answer:

A mushroom rock, rock pedestal, or gour is a typical mushroom-shaped landform that is formed by the action of wind erosion. ... In some cases, harder rocks are arranged horizontally over a softer rock, resulting in such erosion.

Explanation:

Answer:

wind erosion

Explanation:

The figure above shows the position of a moon that orbits a planet in an elliptical path. Two specific locations of
the moon, position and position , are labeled.

1. As the moon orbits the planet from position to position , is the magnitude of the planet’s force due to
gravity exerted on the moon constant? Why or why not?
A
Yes, because the masses of the planet and moon remain constant.

B
Yes, because the elliptical path that the moon travels around the planet is the same for all revolutions.

C
No, because the tangential speed of the moon is always changing.

D
No, because the moon’s distance from the planet is always changing.

The figure above shows the position of a moon that orbits a planet in an elliptical path. Two specific

Answers

It is evident that the force due to gravity exerted on the moon is not constant because the  moon’s distance from the planet is always changing.

What is the gravitational force?

The gravitational force is the force of attraction that brings two masses together in the universe. We have to note that the gravitational force is an attractive force and that all of the objects that are found on the surface of the earth are under the gravitational filed of the earth.

Now we know that the distance that exists between the the moon as it is orbiting round the sun is always changing. We know that the gravitational force depends on the masses as well as the distance.

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32. the width of the central peak in a single-slit diffraction pattern is 5.0 mm. the wavelength of the light is 600 nm, and the screen is 2.0 m from the slit. (a) what is the width of the slit? (b) determine the ratio of the intensity at 4.5 mm from the center of the pattern to the intensity at the center.

Answers

The width of the slit is 0.192mm

In a single slit diffraction, the slit width is given as

d= mλD/y

​d= (1)(800mm)(600A)/ 2.5mm

d=(19.2×10^5 )10 ^−7mm

d=0.192mm.

The spreading out of waves as they pass through an aperture or around objects is referred to as diffraction. It happens when the aperture or obstacle is of the same order of magnitude as the incident wave's wavelength. The vast majority of the wave is blocked by very small aperture sizes.

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what do pitch and loudness have in common?

Answers

Answer:

both are subject to a person's interpretation.

Answer:

it is a subject to a person's interpretation.

Explanation:

i hope this helps!

A plane moving at a horizontal velocity of 205 m/s drops a piece of cargo which lands 7500 m below. How high is the cargo after 3.5 seconds?

Answers

Answer:

well im not gonna give the full answer but the hint im going to give is tht u can use a calculator

Explanation:

Explain the forces acting on the skateboard and how the forces affect the motion of the skateboard.

Explain the forces acting on the skateboard and how the forces affect the motion of the skateboard.

Answers

Answer:

it has kinetic energy as it goes down the hill

When you push your palms together and rub them back and forth, you are demonstrating one way of converting ________ energy into ________ energy.

Answers

Answer:

When you push your palms together and rub them back and forth, you are demonstrating one way of converting Kinetic energy into thermal energy.

"Please include all relevant working out as detailed as possible
and all relevant diagram to find the answer. Much appreciated! I
will upvote! Thank you so much"
Find total response of the system (transient+steady state). Do not solve for coefficients. Determine the frequency of applied force at which resonance will occur? M = 20 kg F, = 90 N Given: -6 rad/s M

Answers

Given the following information:Mass of the system, m = 20 kg.Damping coefficient, b = 6 Ns/m.Force, F = 90 N.Frequency of applied force, f = ?Applied force angular frequency, w = 6 rad/s.Forced vibration equation:F(t) = F0 sin(wt)where F0 = 90 N and w = 6 rad/s.Under the action of the force F, the mass m will oscillate.The equation of motion for the mass-spring-damper system is given by:$$\mathrm{m\frac{d^{2}x}{dt^{2}}} + \mathrm{b\frac{dx}{dt}} + \mathrm{kx = F_{0}sin(\omega t)}$$where k is the spring constant.x(0) = 0 and x'(0) = 0.As we have the damping coefficient (b), we can calculate the damping ratio (ζ) and natural frequency (ωn) of the system.Damping ratio:$$\mathrm{\zeta = \frac{b}{2\sqrt{km}}}$$where k is the spring constant and m is the mass of the system.Natural frequency:$$\mathrm{\omega_{n} = \sqrt{\frac{k}{m}}}$$where k is the spring constant and m is the mass of the system.Resonant frequency:$$\mathrm{\omega_{d} = \sqrt{\omega_{n}^{2}-\zeta^{2}\omega_{n}^{2}}}$$At resonance, the amplitude of the system will be maximum when forced by a sinusoidal force of frequency equal to the resonant frequency.Resonant frequency:$$\mathrm{\omega_{d} = \sqrt{\omega_{n}^{2}-\zeta^{2}\omega_{n}^{2}}}$$$$\mathrm{\omega_{d} = \sqrt{(6.57)^{2}-(-2.88)^{2}} = 6.98 rad/s}$$Hence, the frequency of applied force at which resonance will occur is 6.98 rad/s.

The frequency of the applied force at which resonance will occur is ω = 2√5 rad/s.

To determine the frequency of the applied force at which resonance will occur, resonance happens when the frequency of the applied force matches the natural frequency of the system. The natural frequency can be determined using the formula:

ωn = √(K / M),

where ωn is the natural frequency, K is the spring constant, and M is the mass of the system.

Substituting the given values of K = 400 N/m and M = 20 kg into the equation, we can calculate the natural frequency ωn.

ωn = √(400 N/m / 20 kg) = √(20 rad/s²) = 2√5 rad/s.

Therefore, the frequency of the applied force at which resonance will occur is ω = 2√5 rad/s.

The correct question is given as,

M= 20kg

Fo = 90 N

ω = 6 rad/s

K = 400 N/m

C = 125 Ns/m

Determine the frequency of applied force at which resonance will occur?

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Help !

An object is at a distance of 3 centimeters from a lens with a focal length of 1 centimeter. The lens creates an image on the same side of the object. What kind of lens is this? What is the image location? Is the image real or virtual?

Answers

Answer:

Biconcave lens or Diverging lens.

Virtual Image

0.75cm on the same side as the object.

Explanation:

Biconcave lens. Biconcave lenses form all images at the same side as the object. Although a biconvex lens can exhibit the same phenomena, it only occurs when the object is in between the focal point and the optical center (object distance<focal length). From the given parameters, the object distance is 3cm and the which is obviously greater than the focal length.

So, we conclude that the lens used is a biconcave lens.

A concave lens (biconcave, plano-convex,) alway produces a virtual image.

Let u, v and f represent the object distance, image distance and focal length of the lens respectively.

In this case,

u = 3cm

v = ?

f = -1cm ( f is negative for diverging lenses)

1/f = (1/u) + (1/v)

-1 = (1/3) + (1/v)

v = -3/4cm = -0.75 cm

The negative sign means that it's a virtual image.

An object of mass 20 g is moving in a horizontal circle of radius 250 cm at a speed of 50 cm/s. What is the centripetal acceleration experienced by the object?

Answers

The centripetal acceleration experienced by an object moving in a circle is given by the formula:

a = v²/r

where a is the centripetal acceleration, v is the speed of the object, and r is the radius of the circle.

In this problem, we are given that the object has a mass of 20 g, which we need to convert to kilograms:

m = 20 g = 0.02 kg

We are also given that the object is moving in a horizontal circle of radius 250 cm at a speed of 50 cm/s. We need to convert these measurements to SI units (meters and seconds) to use the formula for centripetal acceleration:

r = 250 cm = 2.5 m

v = 50 cm/s = 0.5 m/s

Now we can calculate the centripetal acceleration:

a = v²/r = (0.5 m/s)² / 2.5 m = 0.1 m/s²

Therefore, the centripetal acceleration experienced by the object is 0.1 m/s².

Sharks feed on a wide variety of prey and have low mortality rates. It is important that an ecosystem containing sharks contain a high degree of biodiversity. If an ecosystem containing sharks does not contain a high degree of biodiversity, the sharks will consume

Answers

Answer:

A species to extinction.

Explanation:

Biodiversity is the coexistence of several types of organisms in a habitat. The higher the level of biodiversity, the more the population of various plants and animals exist and vice versa.

Sharks feeding on a variety of animals in its ecosystem prevents extinction as time needed for breeding would promote population increase.

Answer: B, many members of a key species, and the ecosystem will no longer be stable.

Explanation:

What is downward force that acts on an airplane in flight

Answers

Answer:

重力

Explanation:

这是正确的答案还是不是

En el mar, la luz visible alcanza una profundidad de aproximadamente 200 metros (zona fotica). ¿De dónde obtienen energías las plantas y los animales por debajo de esa profundidad?

Answers

Answer:

Explanation:

En la zona apótica (profundidad inferior a 200 m); todo lo que queda de la luz solar es una luz tenue, opaca, azul-verde, demasiado impotente para siquiera considerar permitir que ocurra la fotosíntesis. Sin embargo, hay comida para tener; basura, trozos de plantas podridas y derroche de criaturas caen desde arriba para cuidar a los seres vivos en la zona apótica.

Las formas de vida a una profundidad inferior a 200 m dependen de los productos químicos que salen de los respiraderos; el procedimiento que utilizan para hacer los alimentos se llama quimiosíntesis en lugar de fotosíntesis.

FILL THE BLANK. the largest daily tidal ranges are associated with _____ tides.

Answers

The largest daily tidal range are associated with spring tides.

The vertical variation in water level between high tide and low tide in a specific coastal area is referred to as tidal range. It illustrates how much the ocean's surface rises and falls as a result of tidal forces. The moon's and the sun's gravitational pull, the coastline's form, the depth of the sea, and the terrain of the area are some of the variables that affect the tidal range. Greater differences between high and low tides occur in coastal locations with a wider tidal range, which causes more daytime changes in water level. Tidal range is important for navigation, coastal habitats, and harnessing tidal energy.


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the density of aluminum is 2700 kg/m3. if transverse waves travel at in an aluminum wire of diameter what is the tension on the wire?

Answers

The tension on the wire is 52.02 N.

From the question, we have

Density of aluminum = 2700 kg/m3

Area,

A = πd²/4

A = π x (4.6 x 10⁻³)²/4

A = 1.66 x 10⁻⁵ m²

μ = Mass per unit length of the wire

μ = ρA

μ = 2700 kg/m³ x 1.66 x 10⁻⁵ m²

μ = 0.045 kg/m

Tension on the wire = √T/μ

34 = √T/0.045

34² = T/0.045

T = 52.02 N

The tension on the wire is 52.02 N.

Complete question:

The density of aluminum is 2700 kg/m3. If transverse waves propagate at 34 m/s in a 4.6-mm diameter aluminum wire, what is the tension on the wire.

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The acceleration of a particle traveling along a straight line is a = 8s, where s is in feet. if v = v0 at s = 0, what is the correct expression of its velocity?

Answers

The  correct expression of its velocity is v = √(8s² + v₀²)

What is the expression for the velocity?

The expression for the velocity is obtained as follows:

a = dv/dt --- (1)

v = ds/dt ---(2)

dt = ds/v

Substitute dt = ds/v in (1)

a = dv/ds/v

a = v * dv/ds

also, a = 8s

v * dv/ds = 8s

v * dv = 8s*ds

Integrating both sides

v² - v₀² = 8s²

v² = 8s² + v₀²

v = √(8s² + v₀²)

In conclusion, the velocity of an object is the change in displacement with time.

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