High temperature and pressure tend to favor flow rather than breakage, so it is surprising that large, very deep earthquakes are sometimes observed, occurring in warm places where the pressure is high. What is accurate about these rare, deep earthquakes?.

Answers

Answer 1

They happen at subduction zones, where shifting mineral assemblages appear to "implode" as a result of increased pressure on the rock as it is subducted deeper.

The notion that is currently preferred is "Implosion." The building blocks often reorganize to take up less space as subduction zones move rocks deeper where pressure is stronger, moving from, say, a one-on-top-of-another pattern to a fit-in-the-gap-between-those-below pattern. This might sometimes seem to happen gradually before happening abruptly (I can't move till my neighbor does...), resulting in an implosion. Where temperatures and pressures are just so high that we don't imagine rocks can break, the largest, deepest earthquakes occur. Nowhere near as deep as the earthquakes, humans have never dug a hole. Atomic bomb testing has mostly ended. A large earthquake is also much larger than a large atomic weapon.)

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Related Questions

TRUE OR FALSE!!!!!

PLEASE HELP


Igneous rock is formed by volcanoes releasing magma from the mantle, the rock cools and piles up forming a mountain. Rivers direct water to cool magma underground forming metamorphic rock under lake beds.

Answers

Answer:

true

Explanation:

this is true, igneous rocks are formed from molten lava when it cools

Answer: True

Explanation:

A 6.0 kg block is placed at the top of frictionless ramp that is inclined so that it makes an angle of 13.8 degrees with the horizontal. The block starts from rest and travels down the ramp. When the block gets to the bottom of the ramp is has a speed of 4.0 m/s. What was the length of the ramp? (How far did it travel?)

Answers

The length of the ramp if the block has a mass of 6 kg and placed at the top of frictionless ramp that is inclined so that it makes an angle of 13.8 degrees with the horizontal is 3.4 m

W = m g

W = Weight

m = Mass

g = Acceleration due to gravity

m = 6 kg

g = 9.8 m / s²

W = 6 * 9.8

W = 58.8 N

θ = 13.8°

Resolving W into its horizontal component,

Wx = W sin θ

Wx = 58.8 * sin 13.8°

Wx = 14.11 N

∑ \(F_{x}\) = m \(a_{x}\)

Wx = m \(a_{x}\)

\(a_{x}\) = 14.11 / 6

\(a_{x}\) = 2.35 m / s²

v² = u² + 2 a s

v = Final velocity

u = Initial velocity

s = Distance

v = 4 m / s

u = 0

4² = 0 + ( 2 * 2.35 * s )

s = 16 / 4.7

s = 3.4 m

Therefore, the length of the ramp is 3.4 m

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What is the answer ?

What is the answer ?

Answers

Answer:

So its correct answer is 335000 joule by the way nice question

which eletromagnetic waves have the lowest frequency radio waves micro waves x rays or gamma rays

Answers

Answer:         Radio waves have the lowest energies, longest wavelengths, and lowest frequencies of any type of EM radiation. In order from highest to lowest energy, the sections of the EM spectrum are named: gamma rays, X-rays, ultraviolet radiation, visible light, infrared radiation, and radio waves.

Explanation:

Radio waves have the lowest frequency

Which of the following is NOT a function of the skeletal system?

A. Support your body
B. Give shape to your body
C. Bring oxygen to your body
D. Protect your body​

Answers

D
Hope this helps
And
I think the answer is D

Doc Brown has calculated that his Delorean can accelerate at a rate of 2.52 m/s/s. How far away must he and Marty stand to allow the car to accelerate from rest to a speed of 39.1 m/s?

Answers

Answer:

d = 303.33 m

Explanation:

Given that,

Acceleration of Doc Brown is 2.52 m/s²

The initial speed of Doc Brown is 0 as it was at rest.

Final speed of Doc Brown is 39.1 m/s

We need to find the distance between he and Marty. Let the distance is d. Using equation of motion as follows :

\(v^2-u^2=2ad\\\\\text{Put u = 0}\\\\d=\dfrac{v^2}{2a}\\\\d=\dfrac{(39.1)^2}{2\times 2.52}\\\\d=303.33\ m\)

So, the distance between he and Marty is 303.33 m.

if elecomegtic force is stonger than gravity, why is it overpowered by gravity on large scales

Answers

The electromagnetic force and gravitational force are two of the four fundamental forces of nature. While the electromagnetic force is much stronger than the gravitational force on a small scale, it appears that gravity dominates on larger scales.

The electromagnetic force is strongest between electrically charged particles, while the gravitational force is proportional to the mass of objects. The electromagnetic force is approximately 10^36 times stronger than the gravitational force on the scale of single atoms and molecules. However, on larger scales, the gravitational force begins to dominate.

This is because the electromagnetic force is a long-range force that decreases rapidly with distance, while the gravitational force is a long-range force that decreases more slowly with distance. As a result, the total amount of gravitational force between two large objects like stars or planets is much greater than the total amount of electromagnetic force.

In summary, the electromagnetic force is much stronger than the gravitational force on a small scale, but it is overpowered by gravity on large scales due to the long-range nature of the gravitational force and its relatively slower decrease with distance.

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WILL AWARD BEST ANSWER! find the current flowing across the 30 ohm resistor
i = _ a

WILL AWARD BEST ANSWER! find the current flowing across the 30 ohm resistori = _ a

Answers

0.143 A

Explanation:

The total resistance of the circuit is

\(r = \frac{(40)(30)}{40 + 30} + \frac{(50)(20 + 10)}{50 + (20 + 10)} \\ = 35.89 \: ohms\)

so the total current is

Itotal= V/R = 9V/35.89 ohms

= 0.25 A

To find the voltage drop across the 30-ohns resistor, use

V = Itotal × (combined resistance of 40 30)

= 0.25 A × 17.14 ohms = 4.285 volts

so the current through the 30-ohm resistor is

I = (voltage drop)/30-ohms

= (4.285 V)/(30 ohms)

= 0.143 A

For a parallel circuit the voltage across each resistor is the same. Therefore, the voltage drop across the 30 Ω resistor is 9V. Then, the current through this resistor is 0.3 A.

What is resistance ?

Resistance is the hindrance to the flow of current through a circuit. It is expressed in Ohms. Resistance and current are in inverse proportion. According to Ohm's law, the product of current and resistance is the voltage across the circuit.

V = I R

There are two type of circuits parallel and series. Parallel circuits connects each components in parallel fashion where, the current through each one will be different and voltage is constant.

In a series circuit, the voltage drop across each component is different but the current is the same.

Here, the resistors are connected in a parallel fashion. Hence the voltage drop across each resistors will be 9 V itself.

then current across 30 Ω resistor is:

I = V/R

 = 9 v/ 30 Ω

 = 0.3 A.

Therefore, the current through the resistor of 30 Ω  is 0.3 A.

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HELP ASAP!!! 100 points!!!!!!!!!

Indicate what happens to the resonant frequency of a mass-and-spring system which acts as simple harmonic oscillator when the following things are changed:

Only the spring constant,k, of the mass-and-spring system is increased.

Only the mass of the mass-and-spring system is increased.

Only the amplitude of the mass-and-spring system is increased.

Choices: Frequency increases, decreases or stays the same.

Answers

Answer:

Shown from explanation.

Explanation:

The resonant frequency is related by the formula;

Fo= 1/2π√(K/M)

Where Fo is resonant frequency

M is mass

K is the spring constant

From the expression above;

When K is increased frequency would increases since frequency is directly proportional to spring constant.

Similarly when the mass is increased the frequency decreases since frequency is inversely proportional to the mass.

Amplitude is a property of a wave and so the frequency stays same.

Answer:

Hi!

So, this is what you need to do.

Fo = 1/2 π √(K/M)

The m = mass (in case you didn't know)

Explanation:

That should help you with your answer :)


Which of the following is NOT available for drinking
A) groundwater
B) lakes
C) rivers with tributaries
D) frozen ice caps

Answers

Answer:

B

Explanation:

lakes are too big or large

What is the resistance of a circuit contains two 50. 0 resistors connected in series with a 12. 0 v battery

Answers

The resistance of a circuit that contains two 50.0 Ω resistors connected in series with a 12.0 V battery is 100 Ω. The resistance of the circuit is equal to the sum of the individual resistors when they are connected in series.

In this case, two 50.0 Ω resistors are connected in series, resulting in a total resistance of 100 Ω. Resistance can be defined as the obstruction that electricity faces when it travels through a conductor. The greater the resistance, the less current is allowed to flow through the circuit. The following equation is used to calculate resistance: R = V / IWhere R is resistance, V is voltage, and I is current.

Resistance can also be calculated using Ohm's Law if we know the values of voltage and current. When resistors are connected in series, the total resistance of the circuit is equal to the sum of the individual resistors. This is expressed by the following equation:RT = R1 + R2 + ... + RNWhere RT is the total resistance of the circuit, and R1, R2, and RN are the individual resistors. In this case, the circuit contains two 50.0 Ω resistors connected in series.

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While rolling on the pool table, ball X has 16.00 J of kinetic energy. It collides with identical ball Y and ball X stops, but ball Y moves on with 15.75 J of kinetic energy. What causes the loss of energy?

Answers

Inelastic collision and a host of other factors causes the loss of energy.

What is kinetic energy?

Kinetic energy of an object is the energy that it possesses due to motion.

It can be defined as the work needed to accelerate a body of a given mass from rest to its stated velocity. When it has gained this energy during its acceleration, the body maintains this kinetic energy unless its speed changes.

In an inelastic collision which is the case of ball X and Y, the kinetic energy of the system is not conserved. The energy that you find lost has been dissipated as other forms of energy. This can be heat, friction, vibrational energy transferred to atoms of the colliding particles, energy lost to deform the atomic structure etc.

In conclusion, the inelastic collision nature of the two balls results in the loss of energy through different forms.

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circular motion is best analyzed in a coordinate system with:_____.

Answers

circular motion is best analyzed in a coordinate system with: polar coordinate system.

What is circular motion?

Circular motion is best analyzed using a polar coordinate system. In this system, the position of a particle is defined by its distance from a fixed point (the origin) and its angle with respect to a fixed axis (usually the x-axis). The distance from the origin is called the radial coordinate, denoted by "r", and the angle with respect to the x-axis is called the angular coordinate, denoted by "θ".

This polar coordinate system allows us to easily describe the motion of a particle in terms of its position, velocity, and acceleration.

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Identify the following physical quantities as scalars or vectors.speeddistancevelocitypositiondisplacementaverage velocityacceleration

Answers

Speed, distance, and position are scalar quantities, while velocity, displacement, average velocity, and acceleration are vector quantities.

Speed refers to how fast an object is moving and is a scalar quantity, with only magnitude, without direction. Distance is a scalar quantity that refers to the amount of space between two points, also having only magnitude.

Position is a scalar quantity that refers to the location of an object in space and also has only magnitude.

Velocity, on the other hand, is a vector quantity, as it has both magnitude and direction. It is the rate of change of an object's position over time.

Displacement is another vector quantity, and it refers to the change in position of an object from its starting point.

Average velocity is a vector quantity that is the average of all velocity changes during a certain time interval.

Acceleration is also a vector quantity and refers to the rate of change of velocity. It measures how quickly the velocity of an object changes, and like velocity, it has both magnitude and direction.

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1 point
Q8. Complete this sentence.If I leave the coffee in the same place then
after a long time it will be at the same temperature as the surroundings.
The coffee and the surroundings are now in................
(1 mark) *
Your answer (please answer quick)

Answers

Answer:

Thermal equilibrium

Explanation:

Two systems are said to be in thermal equilibrium when there is no further exchange of thermal energy between them. At thermal equilibrium, these systems possess equal temperature.

Thermal energy is transferred between objects of varying temperatures or between a system and the surrounding. The thermal energy is transferred from the object with higher temperature (hotter) to the one with lower temperature (colder) until a state of equilibrium is attained.

In the case of the coffee and the environment, if the coffee is at higher temperature than the surrounding, it loses heat energy to the surrounding until both of them are now at the same temperature. Conversely, if the coffee has a lower temperature than the surrounding, it gains thermal energy from the surrounding until thermal equilibrium is achieved.

The "small" version of what common unit of measure is equal to 4.1868 of the SI unit of energy (joules), while the "large" version is equal to 4,184 joules?

Answers

The common unit of measure being referred to here is the calorie.

The "small" version of a calorie, also known as the gram calorie, is equal to 4.1868 joules of energy.

This unit is commonly used in the field of nutrition to measure the energy content of food.

On the other hand, the "large" version of a calorie, also known as the kilocalorie or Calorie (with a capital C), is equal to 4,184 joules of energy.

This unit is used to measure the energy required by the human body to maintain basic functions and perform physical activities.

It is also the unit commonly used on food labels to indicate the energy content of a particular food item.

It is important to note that while the gram calorie and the kilocalorie are both commonly used, the latter is the more widely recognized and accepted unit of energy in most countries around the world.

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If a person is picking up a book with the force of 50 N and the gravity is pushing down with 15 N, what is the net force?

Answers

Answer:

\(the \: net \: force = \: 50 - 15 = 35.\)

Answer:

Net force is going to be GREATER FORCE - LESS FORCE if they are working in opposite direction

so,

         50N - 15N = 35N

atom has a central __________ surrounded by _____ . 2)Protons and neutrons are inside the _______ 3)Protons are _______ charged particles and electrons are ______ charged particles. 4)charge of neutron is _____ 5)An atom consists of equal number of __________ and __________ 6)A ___________ is a charge storing device

Answers

Answer:

1. nucleus and electron

2. nucleus

3. Positively charged, negatively charged

4. zero

5. protons and electrons

6. Capacitor

Explanation:

1. nucleus and electron - Nucleus is the central part of atom which is positively charged

2. nucleus

3. Positively charged, negatively charged - Proton have +1 change and electron have -1 charge

4. zero - Neutrons are neutral in nature and hence have no charge

5. protons and electrons

6. Capacitor

The main difference between obsessive-compulsive personality disorder (OCPD) and obsessive-compulsive disorder (OCD) is that __________.

people with OCPD know their disorder is irrational
people with OCD know their disorder is irrational
OCPD is an anxiety disorder consisting of disturbing thoughts
OCD is a mood disorder consisting of disturbing behaviors

Answers

Answer:

B. people with OCD know their disorder is irrational

Explanation:

Got it right

Answer:

B

Explanation:

Edge2021

Explain why it is safe to eat food from the uranium glass plate.
a. idea that food is irradiated / not contaminated.
b. alpha cannot penetrate skin or body
c. contains low percentage of uranium(-238).

Answers

The answer for Eating food from a uranium glass plate is safer is Choice C which is food is irradiated / not contaminated.

It is safer to eat food from a uranium glass plate because the uranium added to the glass will always be in the oxidized form used to color it. The uranium added to the glass will also be not soluble thus it will not be radioactive.

Thus, the reason for eating food safely from the uranium glass plate is it will not be contaminated

The other two options(alpha cannot penetrate skin or body and contains a low percentage of uranium) will be wrong because the plate will be completely non-radioactive.

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A stone is thrown vertically upwards with an initial velocity of 20m/sec. Find the maximum height ot reaches and the time taken by it to reach the height. (g=10m/s2)

plz short numerical ASAP​

Answers

Answer:

The height reached is 20m, The time taken to reach 20m is 2 seconds

Explanation:

Observing the equations of motion we can see that the following equation will be most helpful for this question.

\(v^{2} = u^{2} + 2as\)

We are given initial velocity, u

We know that the stone will stop at its maximum height, so final velocity, v

Acceleration, a

And we are looking for the displacement (height reached), s

Substitute the values we are given into the equation

\(0^{2} = 20^{2} + 2(10)s\)

Rearrange for s

\(0^{2} -20^{2} =20s\)

\(-400=20s\)

\(\frac{-400}{20} =s\)

s = -20 (The negative is just showing direction, it can be ignored for now)

The height reached is 20m

Use a different equation to find the time taken

\(s = vt - \frac{1}{2} at^{2}\)

Substitute in the values we have

\(-20=(0)t - \frac{1}{2} (10)t^{2}\)

Rearrange for t

\(-20 =0 -5 t^{2}\)

\(\frac{-20}{-5} =t^{2}\)

\(4 = t^{2}\)

t = 2s

The time taken to reach 20m is 2 seconds

A 50 kg go cart is located at the top of a 10 m tall hill….sitting motionless. It goes down the hill and rises to the top of the second hill while have a speed of 1 m/s. How tall is the second hill?

Answers

Answer:

Explanation:

This is a Law of Momentum Conservbation problem, where the total energy of the system cannot increase or decrease, only change form. The total energy equation for this situation is

TE = PE + KE where TE is total energy, PE is potential energy, and KE is kinetic energy. We begin by realizing that the go-kart is motionless at the top of a hill. If the kart isn't moving, then it has no KE, but if it is up off the ground and has the potential to fall to a point lower than it is curremtly, it has potential energy. That means that the total energy available to this go-kart is found in its potential energy and will not change throughout the trip's entirety. Thus,

TE = PE + 0 and

TE = (50.0)(9.8)(10.0) so

TE = 4900 J and since that's the total energy available throughout the trip, and we are looking to find the height of the next hill where this is both potential and kinetic energy, then

4900 = PE + KE and

4900 = (50.0)(9.8)(h) + \(\frac{1}{2}(50.0)(1.0)^2\) and

4900 = 490h + 25.0 and

4875 = 490h so

h = 9.9 m (I kinda ignored the rules for significant digits at the end, which goes against every teacher's bone in my body, but nonetheless, there's your answer!)

what is the economic system in the united states?
A. Capitalist economy
B. Stock Market economy
C. Global economy
D. Communist economy

Answers

Answer:

A. Capitalist economy

Explanation:

The United States is a capitalist economy. Hope this helps, thank you !!

i message definition​

Answers

Answer:

ok?

Explanation:

Which of these animals would be measured to have the most mass? an elephant a goldfish a dog a fox

Answers

Answer:

An elephant.

Explanation:

The amount of matter contained inside a body is called its mass. It is independent of the location of the object. It remains the same always.

Out of the four options we need to tell which animals would be measured to have the most mass. It is very clear that, an elephant has most mass. It is very huge in size of three other animals.

Hence, the correct option is (A).

Answer:

I think its a Elephant

Explanation:

You push a book across a table. The book moves at a constant speed, but you do not move. Identiffy all the forces on you. Then identify all of the forces on the book

Answers

The forces acting on me are static frictional force and reaction force of the book. The forces acting on the book moving with a constant speed are Applied force and Kinetic frictional force.

Forces acting on me are

Static frictional forceReaction force of the book

The book at rest, will have a static frictional force. So when I push the book, these forces will act on me. According to Newton's third law of motion, when I apply a certain amount of force on the book, the book will exert the equal amount of force on me.

Forces acting on the book are

Applied forceKinetic frictional force

The book when moving at constant velocity will have zero net force, because according to Newton's second law of motion, force is directly proportional to acceleration. If the velocity is constant, acceleration will be zero and net force will also be zero. Since the book is moving on a table, a kinetic frictional force will act on the book to resist the movement of the book.

Therefore,

The forces acting on me are Static frictional force and Reaction force of the book.The forces acting on the book are Applied force and Kinetic frictional force

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if a bus has a mass of 5000 kg and a velocity of 10 m/s, what must the velocity of a 1500 kg can be to have the same momentum

Answers

Answer:

qeyygrydfguygffsddtggfxccfufdrfff

how much heat (cal) is required to raise the temperature of 12.7 g of water from 18.3 ∘c to 55.0 ∘c?

Answers

It takes 1950.12 J of heat to increase the temperature of 12.7 g of water from 18.3 °C to 55.0 °C.

What is heat transfer?

Heat transfer is the process through which internal energy from one material is transferred to another.

The amount of heat required to raise the temperature of a substance can be calculated using the equation:

q = m c ΔT

where q is the amount of heat, m is the mass of the substance, c is the specific heat capacity of the substance, and ΔT is the change in temperature.

For water, the specific heat capacity is 4.184 J/g°C.

So, to raise the temperature of 12.7 g of water from 18.3 °C to 55.0 °C, the amount of heat required can be calculated as follows:

q = 12.7 g × 4.184 J/g°C × (55.0 °C - 18.3 °C)

q = 12.7 g × 4.184 J/g°C × 36.7 °C

q = 1950.12 J

So, 1950.12 J of heat is required to raise the temperature of 12.7 g of water from 18.3 °C to 55.0 °C.

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A playground ride consists of a disk of mass M = 50 kg and radius R = 2.4 m mounted on a low-friction axle. A child of mass m = 16 kg runs at speed v = 2.8 m/s on a line tangential to the disk and jumps onto the outer edge of the disk. ANGULAR MOMENTUM (a) Consider the system consisting of the child and the disk, but not including the axle. Which of the following statements are true, from just before to just after the collision? The axle exerts a force on the system but nearly zero torque. The torque exerted by the axle is nearly zero even though the force is large, because || is nearly zero. The angular momentum of the system about the axle changes. The momentum of the system doesn't change. The momentum of the system changes. The angular momentum of the system about the axle hardly changes. The torque exerted by the axle is zero because the force exerted by the axle is very small. (b) Relative to the axle, what was the magnitude of the angular momentum of the child before the collision? |C| = kg·m2/s (c) Relative to the axle, what was the angular momentum of the system of child plus disk just after the collision? |C| = kg·m2/s (d) If the disk was initially at rest, now how fast is it rotating? That is, what is its angular speed? (The moment of inertia of a uniform disk is ½MR2.) = radians/s (e) How long does it take for the disk to go around once? Time to go around once = s ENERGY (f) If you were to do a lot of algebra to calculate the kinetic energies before and after the collision, you would find that the total kinetic energy just after the collision is less than the total kinetic energy just before the collision. Where has most of this energy gone? Increased translational kinetic energy of the disk. Increased thermal energy of the disk and child. Increased chemical energy in the child.

Answers

When the child jumps on the disk, the system's precise energy changes, torque and constrain applied by the pivot are true. The overall active vitality diminishes.

How does angular momentum apply when the child jumps on the disk?

(a) The following statements are true:

The pivot applies a constraint on the framework but about zero torque. The pivot gives a constraint to back the child and the disk, but it applies insignificant torque since the drive is connected at the center of mass of the disk, coming about in a zero lever arm.The precise energy of the framework almost the pivot changes. Sometimes recently the collision, the child's precise force is zero, but after the collision, the child exchanges precise energy to the disk, causing the system's precise force to alter.

These other statements are untrue:

The torque applied by the hub isn't about zero, as the pivot applies a constraint on the framework.The force of the framework changes since the child's energy is exchanged to the disk upon collision.The precise force of the framework around the pivot barely changes; it really changes as clarified prior.The torque applied by the pivot isn't zero; it is fair moderately little compared to the torque applied by the child on the disk.

(b) The greatness of the precise energy of the child some time recently the collision relative to the pivot is given by |C| = mvr, where m is the mass of the child, v is the speed of the child, and r is the radius of the disk. Stopping within the values, |C| = (16 kg) × (2.8 m/s) × (2.4 m) = 107.52 kg·m²/s.

(c) Fair after the collision, the precise force of the framework of the child also disk relative to the pivot is moderated and remains the same as sometime recently the collision. In this manner, the precise force is still |C| = 107.52 kg·m²/s.

(d) On the off chance that the disk was at first at rest, its introductory precise speed is zero. After the collision, precise force is preserved. Utilizing the equation for precise force (L = Iω) and the given moment of inactivity for a uniform disk (I = 1/2MR²), able to fathom the precise speed (ω):

107.52 kg·m²/s = (1/2)(50 kg)(2.4 m)² × ω

Understanding ω gives ω ≈ 0.893 radians/s.

(e) The time taken for the disk to create one total turn (go around once) is given by T = 2π/ω. Stopping within the esteem for ω, we have T = 2π/0.893 ≈ 7.03 seconds.

(f) The statement is deficient, and without assist data, it isn't enough to decide where most of the vitality has gone. The whole vitality of the framework may alter due to different components such as contact, dissipative powers, or the transformation of vitality into other shapes.

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_________ is stored energy.

(A) Potential
(B) Kinetic
(C) None of the above
(D) All of the above

Answers

Answer:

I think so is b kinetic o a potential

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