reflection around a point is equivalent to reflection in a plane with simultaneous rotation about an axis perpendicular to that plane. t/f

Answers

Answer 1

The statement saying that reflection around a point is equivalent to reflection in a plane with simultaneous rotation about Axis perpendicular to the plane is true.

Light follows the law of reflection, that says that the light coming at a particular angle of incidence will reflect by a surface by the same angle, the angle that is made by the light after reflection is called the angle of reflection.

When light falls on a surface we generally defined the angle of reflection and the angle of incidence with respect to a normal that he made to the plane.

On one particular point the incident ray the reflected ray and the normal coincides.

Around a point is equivalent to reflection in a plane with simultaneous rotation about an axis perpendicular to the plane.

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Related Questions

A baseball and a golf ball have the same momentum. The kinetic energy of the baseball is ________ the golf ball.

Answers

Answer:

The kinetic energy of the baseball is GREATER than the golf ball.

Explanation:

These waves are traveling at the same speed. Which wave has the highest frequency? A. Wave frequency With line crossing in the middle B. A wave frequency with line crossing in the middle C. A wave frequency with line crossing in the middle D. A wave frequency with line crossing it Reset Next

Answers

These waves are traveling at the same speed.  The wave with the highest frequency is option C, "A wave frequency with line crossing in the middle."

Frequency is a measure of the number of complete cycles or oscillations of a wave that occur in one second. It is typically measured in hertz (Hz). The higher the frequency, the more cycles or oscillations occur per unit of time.In the given question, it is stated that all the waves are traveling at the same speed. This means that the speed of propagation is constant for all the waves. However, the frequency of a wave is independent of its speed.By looking at the options, we notice that all the waves have the same wave pattern with a line crossing in the middle. The difference lies in the spacing between the waves, which corresponds to the frequency.The wave with the highest frequency will have the shortest wavelength and the most closely spaced wave crests. Since option C has the shortest spacing between the wave crests, it indicates a higher frequency compared to the other options.Therefore, based on the given information, option C, "A wave frequency with line crossing in the middle," has the highest frequency among the given choices.Please note that the question does not provide specific frequency values or any other information to determine the exact frequencies of the waves. We can only compare the relative frequencies based on the given visual representation.

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WILL GIVE BRAINLIEST no spamming
How are stationary waves formed on a string?

Answers

Answer:

hey, please open my account and see my question, please help me solve the task, I have to send it to the teacher soon.

Answer:

When waves are generated and they reflect off a fixed end, the reflected waves are completely out of phase. The reflected waves and the incident waves interfere with each other along the path and results in the formation of nodes and anti-nodes. Nodes are points of completely out of phase interference and anti-nodes are points of completely in phase interference.

An apartment has the dimensions 18 m by 9 m by 6 m. The temperature is 25°C, and the relative humidity is 59 percent. What is the total mass (in kg) of water vapor in the air in the apartment?

Answers

The total mass of water vapor in the air in the apartment can be calculated using the formula for absolute humidity. The total mass is approximately 5.04 kg.

To calculate the total mass of water vapor in the air, we need to determine the volume of the apartment and then use the formula for absolute humidity.

Calculate the volume of the apartment: The volume of the apartment can be calculated by multiplying its dimensions: Volume = length x width x height = 18 m x 9 m x 6 m = 972 cubic meters.

Determine the vapor pressure: The relative humidity of 59 percent indicates that the air is holding 59 percent of the maximum amount of water vapor it can hold at the given temperature.

Find the saturation vapor pressure: The saturation vapor pressure is the maximum pressure of water vapor that air can hold at a given temperature. At 25°C, the saturation vapor pressure is approximately 3.17 kPa.

Calculate the actual vapor pressure: The actual vapor pressure can be calculated by multiplying the saturation vapor pressure by the relative humidity: Actual vapor pressure = Relative humidity x Saturation vapor pressure = 0.59 x 3.17 kPa = 1.867 kPa.

Calculate the mass of water vapour: The mass of water vapor can be determined using the formula for absolute humidity: Mass = Absolute humidity x Volume = (Actual vapor pressure / (0.287 kJ/(kg·K) x Temperature)) x Volume. In this case, the temperature is 25°C, which is 298 K.

Mass = (1.867 kPa / (0.287 kJ/(kg·K) x 298 K)) x 972 m^3 = 5.04 kg.

Therefore, the total mass of water vapor in the air in the apartment is approximately 5.04 kg.

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analogy

Teacher:Educate. student:____
,​

Answers

Answer:

Study

Explanation:

From the given analogy, we understand that.

Teachers educates

If this is true,

The students are expected to learn from what the teacher teaches.

This can also be said that, the students studies what the teachers teach

Hence, to complete the analogy.

We have;

(1) Students, Study.

We can also make use of

(2) Students, learn.

(1) & (2) answer the question completely.

Answer:

STUDENT:STUDY OR LEARN

Explanation:

A team at a university in Pennsylvania has concerns about the health of streams in a watershed because of the various land uses in the area. There has been an increase in road repair work, and the area has many dairy farms. Which of the following would be most effective at preventing sediment runoff into the streams of the watershed? *
a) Have construction crews steepen the slopes of the valleys of streams near roadwork zones.
b) Maintain zones of grass at least wide on the sides of streams in the area.
c) Construct at least one dam on a stream in the watershed to improve flood control.
d) Shift from dairy farming to corn planted in agricultural fields located within of streams.

Answers

The ecological methods allows to find the correct answer to the question of how to prevent river pollution is:

   b)  Maintain zones of grass at least wide on the sides of streams in the area.

Stream pollution from human activities can occur in a number of ways:

The rubble boat in the river. The dragging of products from the bargains, fertilizers by the rains.   Dragging of land by rain and machinery.

Let's analyze the different claims.

a) False. It is too expensive and the slopes cannot be changed due to possible flooding problems.

b) True. Maintaining a protective zone with grass on the sides of the rivers, prevents the waste of the frarmer from reaching the river, and the problems of the debris reaching the river bank. This un  ecological methods.

c) False. The dam controls flooding but does not eliminate the problems of river pollution.

d) False. Many lands are not acts for agriculture, but for livestock.

In conclusion we can find the correct answer to the question of how to prevent river pollution is:

   b) Maintain zones of grass at least wide on the sides of streams in the area.

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Which feature is created when a block of rock dropped down in relation to the block of rock beside it?

Answers

Answer:

Which feature is created when a block of rock dropped down in relation to the block of rock beside it?

Explanation:

Grabens drop down relative to adjacent blocks and create valleys. Horsts rise up relative to adjacent down-dropped blocks and become areas of higher topography.

A small car moving at 20 m/sec collides head on with an oncoming large truck moving at 25 m/sec. Which vehicle undergoes the largest change in its momentum

Answers

Answer:

The truck will undergo the largest change in momentum if it has a greater mass than the small car.

Explanation:

The change in momentum of an object can be calculated using the equation:

Δp = m * Δv

where Δp represents the change in momentum, m represents the mass of the object, and Δv represents the change in velocity.

Since we are comparing the change in momentum of the car and the truck, we need to consider the masses of both vehicles.

Let's assume the mass of the car is represented by m_car, and the mass of the truck is represented by m_truck.

Since both vehicles collide head-on, the change in velocity (Δv) will be the difference between their initial velocities, considering that they are moving in opposite directions:

Δv = v_truck - v_car

Now, let's compare the change in momentum for the car and the truck:

For the car:

Δp_car = m_car * Δv

For the truck:

Δp_truck = m_truck * Δv

Comparing the magnitudes of the change in momentum, we can neglect the negative sign:

|Δp_car| = |m_car * Δv|

|Δp_truck| = |m_truck * Δv|

Since both Δv and Δp are positive values, we can conclude that the vehicle with the greater mass will undergo the largest change in its momentum.

Therefore, if the mass of the truck (m_truck) is greater than the mass of the car (m_car), then the truck will undergo the largest change in its momentum. Conversely, if the mass of the car is greater, then the car will undergo the largest change in its momentum.

prove that d1=R(d1-d2) in relative density​

Answers

You know I’m going to be honest I don’t feel like it

You are cooking spaghetti and you look into the pot of boiling water before you put the spaghetti in. You notice the water moving around in the pot. What type of thermal energy transfer occurs to heat the water?

Answers

Answer:

Heat transfer is an exchange of thermal energy between two objects. The rate of heat transfer depends upon the temperatures of each entity and the medium through which the thermal energy is being transferred. In cooking, heat transfer refers to heating your food items through a cooking appliance, such as a stove, fryer, microwave, or oven.

Explanation:

I hope it helps

Answer:

Convection

Convection is heat transfer by mass motion of a fluid such as air or water when the heated fluid is caused to move away from the source of heat, carrying energy with it. Convection above a hot surface occurs because hot air expands, becomes less dense, and rises (see Ideal Gas Law).

Explanation:

hope this helps:-)

How far does a roller coaster travel if it accelerates at 2.83 m/s2 from an initial
velocity of 3.19 m/s for 12.0 s?

Answers

Answer:

b

Explanation:

A cylindrical water tank open to the atmosphere, 10 m tall and 6 m in diameter, is mounted with its base 25 m above ground level, and filled with water.
Calculate
a) the water pressure and force at the base of the tank?
b) the pressure in a water pipe at ground level?
c) the speed with which water will push out of a leak at a height of 8 m above the ground?(hint: force is equal to horizontal rate of change of momentum of water)​

Answers

The bottom of a cylindrical water tank, 10 m tall and 6 m in diameter, is 25 m above the ground. According to calculations, the water pressure and force at the bottom of the tank are 343,000 Pascal and 9,685,941 Newtons, respectively.

A water pipe at ground level has the same pressure as one at the tank's base. The rate of water egress from a leak 8 metres above the ground is around 19.6 metres per second.

These calculations are based on the conservation of energy and hydrostatic principles.This pressure can also be found in a ground-level water pipe. Water will seep from a leak 8 metres above the ground at a speed of about 19.6 metres per second.

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Find the ratio of the new/old periods of a pendulum if the pendulum were transported from Earth to Venus, where the acceleration due to gravity is 8.89 m/s2.
O new period
O old period

Answers

The new period of the pendulum on Venus would be approximately 0.947 times the old period on Earth.

The period of a pendulum is given by the formula:

T = 2π√(L/g)

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

Let's assume that the length of the pendulum remains the same when it is transported from Earth to Venus. On Earth, the acceleration due to gravity is 9.81 m/s^2, and on Venus, it is 8.89 m/s^2.

The ratio of the new period to the old period can be found by taking the ratio of the square roots of the gravitational accelerations:

(new period / old period) = √(8.89 / 9.81)

= 0.947

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what is the time taken for a mango to fall 20m from it tree (g=10m/s)​

Answers

Hi there!

We can use the kinematic equation:

\(d = v_0t + \frac{1}{2}at^2\)

d = displacement (20 m)

v0 = initial velocity (dropped from rest, so 0 m/s)

t = time (s)

a = acceleration due to gravity (10 m/s²)

Rearrange the equation to solve for time:

\(d = 0 + \frac{1}{2}at^2\\\\2d = at^2\\\\t^2 = \frac{2d}{a}\\\\t = \sqrt{\frac{2d}{a}}\)

Solve using the given values:

\(t = \sqrt{\frac{2(20)}{10}} = \sqrt{4} = \boxed{2 sec}\)

Answer:

\(\boxed {\boxed {\sf 2 \ seconds}}\)

Explanation:

We are asked to find the time it takes for a mango to fall 20 meters.

We know the distance, acceleration, and initial velocity, so we will use the following kinematic equation:

\(d= v_i t + \frac{1}{2} at^2\)

The mango is dropped from rest, so the initial velocity is 0 meters per second.  It falls a distance of 20 meters. The acceleration due to gravity is 10 meters per second squared.

\(v_i\)= 0 m/s d= 20 m a= 10 m/s²

Substitute the values into the equation.

\(20 \ m = (0 \ m/s)(t) + \frac{1}{2} (10 \ m/s^2)(t^2)\)

\(20 \ m = \frac{1}{2} (10 \ m/s^2)(t^2)\)

\(20 \ m = (5 \ m/s^2)(t^2)\)

We are solving for time, so we must isolate the variable t. It is being multiplied by 5 meters per second squared. The inverse operation of multiplication is division, so divide both sides by 5 m/s².

\(\frac {20 \ m}{5 \ m/s^2}= \frac{(5 \ m/s^2)(t^2)}{5 \ m/s^2}\)

\(\frac {20 \ m}{5 \ m/s^2}=t^2\)

\(4 \ s^2=t^2\)

The variable t is being squared. Take the square root of both sides.

\(\sqrt { 4 \ s^2 }= \sqrt{t^2}\)

\(2 \ s=t\)

It takes 2 seconds for a mango to fall 20 meters.

Fig above shows a wave traveling through a medium. Use the fig to answer the questions below.

A.)What is the amplitude of the wave ? Include correct units.
B.)Use the graph to determine the time of one wave. Use it to find the frequency.
C.)If the speed of the wave is 25 m/s, what is the wavelength of the wave ? Show data listing, equation , substitution leading to the answer for full credit.

Fig above shows a wave traveling through a medium. Use the fig to answer the questions below.A.)What

Answers

(a) The amplitude of the wave is 0.2 m.

(b) The period of the wave is  4 s.

(c) The wavelength of the wave is 100 m.

What is the amplitude of the wave?

(a) The amplitude of the wave is the maximum displacement of the wave.

amplitude of the wave = 0.2 m

(b) The period of the wave is the time taken for the wave to make one complete cycle.

period of the wave = 5.5 s - 1.5 s = 4 s

(c) The wavelength of the wave is calculated as follows;

λ = v / f

where;

v is the speed of the wavef is the frequency of the wave

f = 1/t = 1 / 4s = 0.25 Hz

λ = ( 25 m/s ) / 0.25 Hz

λ = 100 m

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HELP ASAP!
on the screenshot.

HELP ASAP!on the screenshot.

Answers

6-A
7-B
8-A
Hope this helps

Some dragonflies splash down onto the surface of a lake to clean themselves. After this dunking, the dragonflies gain altitude, and then spin rapidly at about 1100 rpm to spray the water off their bodies. When the dragonflies do this "spin-dry," they tuck themselves into a "ball" with a moment of inertia of 2.0×10−7kg⋅m2 . How much energy must the dragonfly generate to spin itself at this rate?

Answers

The dragonfly must generate approximately 4.8 × 10^-4 Joules of energy to spin itself at a rate of 1100 rpm.

Start by converting the rotational speed from rpm (revolutions per minute) to rad/s (radians per second). Since 1 revolution is equal to 2π radians, we can use the conversion factor:

Angular speed (ω) = (1100 rpm) × (2π rad/1 min) × (1 min/60 s)

ω ≈ 115.28 rad/s

The moment of inertia (I) is given as 2.0 × 10^-7 kg⋅m².

Use the formula for rotational kinetic energy:

Rotational Kinetic Energy (KE_rot) = (1/2) I ω²

Substituting the given values:

KE_rot = (1/2) × (2.0 × 10^-7 kg⋅m²) × (115.28 rad/s)²

Calculate the value inside the parentheses:

KE_rot ≈ (1/2) × (2.0 × 10^-7 kg⋅m²) × (13274.28 rad²/s²)

KE_rot ≈ 1.331 × 10^-3 J

Round the result to the proper number of significant figures, which in this case is three, as indicated by the given moment of inertia.

KE_rot ≈ 4.8 × 10^-4 J

Therefore, the dragonfly must generate approximately 4.8 × 10^-4 Joules of energy to spin itself at a rate of 1100 rpm.

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what are the 5 super typhoons that entered the Philippine Area of Responsibility (PAR)?

Answers

Answer:

2.1 Typhoon Damrey (Asiang)

2.2 Tropical Storm Longwang (Biring)

2.3 Tropical Depression 03W (Konsing)

2.4 Tropical Depression 04W.

2.5 Unnamed tropical depression.

Explanation:

1. A diver running 4 m/s dives out horizontally from the edge of a vertical cliff and lands 32 meters
from the cliff. How long was the diver in the air before they hit the water?
a. 125 seconds
c. 36 seconds
b. 8 seconds
d. 128 seconds

Answers

C because I did the math yesterday

How do I find the mass in kg

How do I find the mass in kg

Answers

To find the mass in kilograms, you need to know the object's weight in newtons and the acceleration due to gravity. The formula for finding mass is mass = weight / acceleration due to gravity. So if you have an object with a weight of 100 N and the acceleration due to gravity is 9.8 m/s^2, the mass would be 10.204 kg.

The mass of the block is 0.025 kg or 25 g, when the spring has k = 28 N/m, and compresses 0.11 m before bringing the block to rest.

When a block is dropped onto a spring with k=28 N/m, the block has a speed of 3.2 m/s just before it strikes the spring. If the spring compresses an amount of 0.11 m before bringing the block to rest, what is the mass of the block?The formula for the spring potential energy is given as follows; PE = (1/2) kx² where k is the spring constant and x is the amount of deformation of the spring. Substituting the values given;PE = (1/2) 28 (0.11)²PE = 0.16972 J. According to the law of conservation of energy, the potential energy stored in the spring at maximum compression is equal to the kinetic energy the block had before it struck the spring;KE = (1/2) mv²where m is the mass of the block and v is its velocity.Substituting the values;0.16972 = (1/2) m (3.2)²m = 0.025 kg or 25 gTherefore, the mass of the block is 0.025 kg or 25 g.

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answer and solution to this question

answer and solution to this question

Answers

Frequency=  30 Hz, Period= 0.0333 s, Wave Number=15.708 rad/m, Wave Function= y(x, t) = 0.05 sin(15.708x - 94.248t), Transverse displacement= -0.013 m, Time= 0.297 s.

How to calculate the frequency?

(a) To find the frequency (f), we can use the equation: wave speed = frequency x wavelength. Rearranging this equation, we get:

frequency = wave speed / wavelength

Substituting the given values, we get:

frequency = 12 m/s / 0.4 m = 30 Hz

Therefore, the frequency of the wave is 30 Hz.

To find the period (T), we can use the equation:

period = 1 / frequency

Substituting the frequency value we just calculated, we get:

period = 1 / 30 Hz = 0.0333... s (rounded to four decimal places)

Therefore, the period of the wave is approximately 0.0333 s.

To find the wave number (k), we can use the equation:

wave number = 2π / wavelength

Substituting the given values, we get:

wave number = 2π / 0.4 m = 15.708 rad/m (rounded to three decimal places)

Therefore, the wave number of the wave is approximately 15.708 rad/m.

(b) The wave function for a transverse wave on a string is given by:

y(x, t) = A sin(kx - ωt + φ)

where A is the amplitude, k is the wave number, x is the position of the point on the string, t is the time, ω is the angular frequency, and φ is the phase constant.

We already know the values of A, k, and ω from the previous calculations. To find φ, we can use the given initial condition: "at t = 0 end of the string has zero displacement and is moving upward". This means that y(0,0) = 0 and ∂y/∂t(0,0) > 0. Substituting these conditions into the wave function, we get:

0 = A sin(0 + φ)

∂y/∂t = -Aω cos(0 + φ)

Since sin(0 + φ) = sin(φ) = 0 (because sin(0) = 0), we get:

φ = nπ, where n is an integer

Since cos(0 + φ) = cos(φ) = 1 (because cos(0) = 1) and ∂y/∂t(0,0) > 0, we get:

n = 0 or 2

Therefore, the possible values of φ are 0 or 2π.

Substituting the values of A, k, ω, and φ, we get:

y(x, t) = 0.05 sin(15.708x - 94.248t)

Therefore, the wave function describing the wave is:

y(x, t) = 0.05 sin(15.708x - 94.248t)

(c) To find the transverse displacement of a wave at x = 0.25 m and t = 0.15 s, we can use the wave function we just found:

y(0.25, 0.15) = 0.05 sin(15.708(0.25) - 94.248(0.15))

y(0.25, 0.15) ≈ -0.013 m (rounded to three decimal places)

Therefore, the transverse displacement of the wave at x = 0.25 m and t = 0.15 s is approximately -0.013 m.

(d) To find how much time must elapse from the instant in part (c) until the point at x = 0.25 m has zero displacement,

From part (c), we know that the transverse displacement of the wave at x = 0.25 m and t = 0.15 s is approximately -0.013 m. We need to find the time it takes for this point to return to zero displacement.

We can use the wave function we found in part (b) and set y(0.25, t) = 0:

0 = 0.05 sin(15.708(0.25) - 94.248t)

Since sin(θ) = 0 when θ = nπ (where n is an integer), we get:

15.708(0.25) - 94.248t = nπ

Solving for t, we get:

t = (15.708(0.25) - nπ) / 94.248

To find the smallest positive value of t that satisfies this equation, we need to use the smallest positive value of n that makes the right-hand side of the equation positive (because we want to find the time it takes for the point at x = 0.25 m to return to zero displacement, which happens after the point has completed a full cycle). We can see from the equation that n must be an even integer to make the right-hand side positive. The smallest even integer greater than zero is 2. Substituting n = 2, we get:

t = (15.708(0.25) - 2π) / 94.248

t ≈ 0.297 s (rounded to three decimal places)

Therefore, the time it takes for the point at x = 0.25 m to return to zero displacement is approximately 0.297 s.

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Which statement accurately describes surface tension?

A.
Attractive forces between molecules at the surface cause a liquid to resist spreading out.
B.
A liquid with larger molecules resists movement more than a liquid with smaller molecules does.
C.
A material with relatively weak bonds between its particles can be shaped into a thin sheet.
D.
A material slows or completely blocks the flow of electrons through it.

Answers

Answer:

A. Attractive forces between molecules at the surface cause a liquid to resist spreading out.

Explanation:

Surface tension can be defined as a property of liquid which makes its surface to resist an external force, as a result of the cohesive nature of its molecules.

This ultimately implies that, the surface tension of a liquid is mainly caused by the cohesive forces existing between its molecules.

Hence, the statement which accurately describes surface tension is that, the attractive forces between molecules at the surface cause a liquid to resist spreading out. Also, the attractive force is due to electrostatic forces and it reduces the surface area of a liquid.

Mathematically, surface tension is given by the formula;

Surface tension = surface force)/length the force acts

γ = F /d

Where;

Γ is the Surface tension.

F is the force which applies to the liquid.

d is the length where the force acts

Answer:

Attractive forces between molecules at the surface cause a liquid to resist spreading out.

Explanation:

How does work done on an object affect its kinetic energy

Answers

According to the work-energy theorem, the work done on an object by a net force equals the change in kinetic energy of the object. Essentially kinetic energy is the energy used for motion. Interestingly, as work is done on an object, potential energy can be stored in that object. A moving object has kinetic energy because work has been done on it. When work is done energy in one form is transferred to the kinetic energy of the moving object. To stop the object again, the same amount of work would have to be done to bring it back to rest.

An electron is moving to the right with an initial speed of vo = 3.5 x 10E7 m/s when it enters a
region of space that is L = 3.3 cm wide with a uniform electric field pointing down of magnitude
E = 8.2E4 N/C.

Answers

An electron is moving to the right with an initial speed of vo = 3.5 x 10E7 m/s when it enters a

region of space that is L = 3.3 cm wide with a uniform electric field pointing down of magnitude

E = 8.2E4 N/C. The electron will experience electric field

What informs the electron with electric field?

The electron will experience a force due to the electric field, which is given by the equation F = qE, where q is the charge of the electron (a negative value) and E is the electric field.

The force will cause the electron to accelerate in the direction of the field, which is opposite to its initial direction of motion. The acceleration of the electron can be calculated using the equation a = F/m, where m is the mass of the electron.

The distance the electron will travel before it exits the region of space can be calculated using the equation x = v_0t + 0.5a*t^2, where v_0 is the initial velocity and t is the time it takes for the electron to travel through the region.

Therefore, the correct answer is as given above

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The complete question goes thus:

An electron is moving to the right with an initial speed of vo = 3.5 x 10E7 m/s when it enters a

region of space that is L = 3.3 cm wide with a uniform electric field pointing down of magnitude

E = 8.2E4 N/C. What will happen to the electron?

A curve in a road has a bank angle calculated and posted for 80 km/h.80 km/h. However, the road is covered with ice, so you cautiously plan to drive slower than this limit. What might happen to your car

Answers

The presence of ice on the road reduces the frictional force between the tires and the road, thus if you drive at a greater speed the car will slip off the road.

What is banking angle?

This is the angle at which the vehicle is inclined with respect to the horizontal is curved road.

A banked road or curve has maximum speed or speed limit in which a vehicle must ply safely to avoid slipping or fall off from the curved road.

The presence of ice on the road reduces the frictional force between the tires and the road, thus if you drive at a greater speed the car will slip off the road.

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A 2.3 kg block on a frictionless incline of 27 degrees. The acceleration of gravity is 9.8 m/s2. Answer in units of ms. What is the normal force on the block...

Answers

The normal force on the block is approximately 20.05 N.

What is force acting on a body?

Force describes the interaction between objects or between an object and its environment. It causes a change in the motion of the body it acts upon.

The normal force, which counteracts the force of gravity dragging the block downward, is the force generated by the slope acting perpendicular to its surface. As the incline has no friction, there is no force acting parallel to its surface.

To ascertain the parts of the force of gravity pulling on the block, we can apply trigonometry. There are two parts to the force of gravity: one that is parallel to the incline's surface and the other that is perpendicular to it. The weight of the block, mg, where m is its mass and g is its gravitational acceleration, is equal to the component of gravity perpendicular to the inclination. mg sin θ, where is the angle of the incline, is the component of gravity that is parallel to the incline.

To calculate the acceleration of the block moving down the incline, we can apply Newton's second law, F = ma. The component of gravity parallel to the inclination, or mg sin θ, represents the net force exerted on the block. As a result, we have:

\(mg sin(theta) = ma\)

To solve for a, we obtain:

\(a = g sin(theta)\)

Substituting the given values, we get:

\(a = 9.8 m/s^2 * sin(27°)\) ≈ \(4.69 m/s^2\)

Now that we know the normal force acting on the block, we can use Newton's second law once more. The component of gravity's force perpendicular to the incline is equal in magnitude to the normal force and moves in the opposite direction. As a result, we have:

\(mg cos(theta) = N\)

Inputting the values provided yields:

\(N = 2.3 kg * 9.8 m/s^2 * cos(27°)\) ≈ \(20.05 N\)

Therefore, the normal force on the block is approximately 20.05 N.

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Which statement accurately describes a magnetic object? :
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A: They have many spinning electrons oriented in the same direction that create magnetic fields.


B: They have more electrons than non-magnetic materials that create magnetic fields.


C: Non-paired electrons spin in opposite directions that create a magnetic field.


D: Paired electrons spin in opposite directions to create a magnetic field.

Answers

The correct statement which best describes a magnetic object from among the options above is:

They have many spinning electrons oriented in the same direction that create magnetic fields.

The correct answer choice is option a.

How magnetic object carry their electrons in the same direction in a a magnetic field.

When magnetic material spins its electrons in the same axis in the magnetic field, the force of current which passes through the same direction results in the attraction which exists between the magnetic object and magnetic substance.

So therefore, we can now confirm that when we consider the orientation of electrons of magnetic material in a direction similar to field, it causes attraction.

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what is work - energy theorem ??​

Answers

The work-energy theorem explains the idea that the net work - the total work done by all the forces combined - done on an object is equal to the change in the kinetic energy of the object. After the net force is removed (no more work is being done) the object's total energy is altered as a result of the work that was done.

This idea is expressed in the following equation:

is the total work done

is the change in kinetic energy

is the final kinetic energy

is the initial kinetic energy

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Question 12 of 34 Which of the following means that an object is slowing down? /13 ယာ O A. Its velocity is decreasing. B. Its acceleration is increasing. O C. Its acceleration is decreasing. O D. Its velocity is increasing.​

Answers

Answer:

A. Its velocity is decreasing

Explanation:

The sum is of two or more vectors is​

Answers

Explanation:

the sum of two or more vector is resultant vector.

The sum is of two or more vectors is
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