A particle moving in the x direction is being acted upon by a net force f(x)=cx2, for some constant
c. the particle moves from xinitial=l to xfinal=3l. what is δk, the change in kinetic energy of the particle during that time? express your answer in terms of c and l.

Answers

Answer 1
The work-energy theorem states that the change in kinetic energy of the particle is equal to the work done on the particle:
[tex]\Delta K = W[/tex]
The work done on the particle is the integral of the force on dx:
[tex]W= \int\limits^{3L}_L {F(x)} \, dx = \int\limits^{3L}_L {cx^2} \, dx = \frac{26}{3}cL^3 [/tex]
So, this corresponds to the change in kinetic energy of the particle.
Answer 2

The change in kinetic energy during that time is : [tex]\frac{26}{3} cl^{3}[/tex]

Given data :

Direction of particle = x

Net force = F(x) = cx²

Initial position = l

Final position = 3l

Determine the change in kinetic energy during this time

we will apply the work energy theorem which is : ΔK = W

To determine change in kinetic energy we have to determine the work done on the particle.

Work done on particle ( W ) =  [tex]\int\limits^3_l F({x}) \, dx[/tex] =  [tex]\int\limits^3_l c{x^{2} } \, dx =[/tex] [tex]\frac{26}{3} cl^{3}[/tex]

Hence the change in kinetic energy during that time is : [tex]\frac{26}{3} cl^{3}[/tex]

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Related Questions

An object traveling 200 feet per second slows to 50 feet per second in 5 seconds calculate the object

Answers

The object's acceleration is  -30 ft/sec² .

How many turns should a solenoid of cross-sectional area 3.3×10−2 m2 and length 0.30 m have if its inductance is to be 47 mh ?

Answers

The inductance of a solenoid is given by
[tex]L=\mu \frac{N^2}{l} A[/tex]
where
[tex]\mu = 12.56 \cdot 10^{-7}NA^{-2}[/tex] is the magnetic permittivity
N is the number of turns of the solenoid
l is its lenght
A is its cross-sectional area

By re-arranging the formula and replacing the numbers, we get the number of turns of the solenoid:
[tex]N= \sqrt{ \frac{lL}{\mu A} }= \sqrt{ \frac{(4.7\cdot 10^{-3}H)(0.3 m)}{(12.56\cdot 10^{-7}NA^{-2})(3.3\cdot10^{-2}m^2)} } =583[/tex]

What does it mean to say that science is a “systematic” process?

Answers

Well, "Systematic" means doing something, according to plan, meaning if we play tic-tac-toe, and you go first and i go second, and it keeps repeating the same way, its systematic. Because we played according to the rules. The plan.

At the top of a giant swing on the gymnastics high bar, candy's velocity is 1 m/s, and she is 3.5 m high. if candy's mass is 50 kg, what is her total mechanical energy at this instant?

Answers

The total mechanical energy is the sum of the kinetic energy and the gravitational potential energy:
[tex]E=K+U= \frac{1}{2}mv^2 +mgh[/tex]
where m=3.5 kg is Candy's mass, v=1 m/s is her velocity and h=3.5 m is her height. If we replace these numbers, we find the mechanical energy of the system:
[tex]E= \frac{1}{2} (50 kg)(1m/s)^2 + (50 kg)(9.81 m/s^2)(3.5 m)=1742 J =1.74 kJ [/tex]

At the top of the giant swing on the gymnastics high bar, candy's total mechanical energy is 1740J.

Given the data in the question;

Candy's velocity; [tex]v = 1 m/s[/tex]Candy's height from the ground; [tex]h = 3.5m[/tex]Candy's mass; [tex]m = 50kg[/tex]

Candy's total mechanical energy; [tex]M.E_c = \ ?[/tex]

Total Mechanical Energy (M.E) is the sum of both the potential energy and the kinetic energy of an object.

[tex]Mechanical \ Energy = Potential \ Energy + Kinetic \ Energy[/tex]

[tex]M.E = mgh + \frac{1}{2}mv^2[/tex]

Where m is the mass, g is gravitational acceleration( [tex]9.8m/s^2[/tex] ), h is the height and v is the velocity.

We substitute our values into the equation

[tex]M.E_c = ( 50kg * 9.8m/s^2*3.5m) + ( \frac{1}{2}* 50\ *(1m/s)^2)\\\\M.E_c = 1715kg.m^2/s^2 + 25kg.m^2/s^2\\\\M.E_c = 1740 kg.m^2/m^2\\\\M.E_c = 1740J\\[/tex]

Therefore, at the top of the giant swing on the gymnastics high bar, candy's total mechanical energy is 1740J

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A 7 L sample of gas has a pressure of 1.1 atm at a temperature of 285 K. If the pressure decreases to 0.6 atm, causing the volume to increase to 10 L, what is the new temperature? Round your answer to the nearest tenth.

Answers

A boiling pot of water (the water travels in a current throughout the pot), a hot air balloon (hot air rises, making the balloon rise) , and cup of a steaming, hot liquid (hot air rises, creating steam) are all situations where convection occurs. 
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A 7 L sample of gas has a pressure of 1.1 atm at a temperature of 285 K. If the pressure decreases to 0.6 atm, causing the volume to increase to 10 L, what is the new temperature? Round your answer to the nearest tenth.

Answer: 222.1K


Which has a higher acceleration: a 10 kg object acted upon with a net force of 20 N or an 18 kg object acted on by a net force of 30 N

Answers

When a force F is acting on an object of mass m, the acceleration of the object is (Newton's second law)
[tex]a= \frac{F}{m} [/tex]
The first object has a mass of 10 kg and a force of 20 N is acting on it, so its acceleration is
[tex]a_1= \frac{20 N}{10 kg}=2 m/s^2 [/tex]
The second object has a mass of 18 kg and a force of 30 N is acting on it, so its acceleration is
[tex]a_2= \frac{30 N}{18 kg}=1.67 m/s^2 [/tex]
So, the first object has higher acceleration.

Answer:

the 10-kg object has higher acceleration

Explanation:

Two cars of the same mass have different velocities. Which car has more momentum

Answers

the car with the higher velocity would have a more impactful momentum.

What type of motor operates at a constant steady-state speed regardless of the load?

Answers

The type of motor that allows for constant speed regardless of load are called Geared Speed Control motors. This type of motor has a tachometer feedback device attached at the rear of the motor that gives constant feedback to the speed controller giving the advantage of constant speed regardless of load. The tachometer allows for varied frequency delivery to the motor to maintain pre-set output speed.

With what speed must you approach a source of sound to observe a 25% change in frequency?

Answers

sound source is at rest, you are moving with velocity v, f = frequency, c = speed of sound:

f = f0(1 + v/c)

115 = 100(1 + v/343)
115 = 100 + 100v/343
15 = 100v/343
v = 15*343/100
v = 51,45 m/s

With the known value of v (speed of sound in the medium, e.g., 343 m/s) and the desired change in frequency (25% or 0.25), you can calculate the speed you must approach the source of sound to observe a 25% change in frequency.

To observe a 25% change in frequency (Doppler effect) when approaching a source of sound, you need to know the relative velocity between you and the source of sound. The Doppler effect occurs when there is relative motion between the observer and the source of the sound.

The formula for calculating the apparent frequency (f') observed by a moving observer due to the Doppler effect is:

f' = f * (v + vo) / (v - vs)

Where:

f' = Apparent frequency observed by the moving observer

f = Actual frequency of the sound emitted by the source

v = Speed of sound in the medium (approximately 343 meters per second in air at room temperature)

vo = Velocity of the observer (positive if moving towards the source, negative if moving away from it)

vs = Velocity of the source of sound (positive if moving away from the observer, negative if moving towards it)

Since  want to observe a 25% change in frequency, the apparent frequency (f') would be 25% different from the actual frequency (f):

f' = 1.25 * f

Assuming the observer is moving towards the source (vo is positive), we can rewrite the equation as:

1.25 × f = f × (v + vo) / (v - vs)

Now, we can solve for the relative velocity vo:

(v + vo) / (v - vs) = 1.25

Cross-multiply:

v + vo = 1.25 * (v - vs)

Now, isolate vo:

vo = 1.25 × (v - vs) - v

With the known value of v (speed of sound in the medium, e.g., 343 m/s) and the desired change in frequency (25% or 0.25), you can calculate the speed you must approach the source of sound to observe a 25% change in frequency.

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At an instant when a soccer ball is in contact with the foot of the player kicking it, the horizontal or x component of the ball's acceleration is 930 m/s2 and the vertical or y component of its acceleration is 900 m/s2. the ball's mass is 0.39 kg. what is the magnitude of the net force acting on the soccer ball at this instant?

Answers

just try your best best friend everyone

Which scientists contributed to discovering the universal law of gravitation? Check all that apply. Tycho Brahe Albert Einstein Johannes Kepler Nicolaus Copernicus Sir Isaac Newton Robert Hooke

Answers

Final answer:

Sir Isaac Newton is the primary contributor to the universal law of gravitation, with his precise mathematical formula that unified terrestrial and celestial phenomena. Johannes Kepler's laws of planetary motion were foundational for Newton's work, and Albert Einstein expanded on these ideas with his theory of general relativity.

Explanation:Contributors to the Universal Law of Gravitation

Several prominent individuals contributed to the discovery and understanding of the universal law of gravitation. Sir Isaac Newton is the most well-known figure associated with the law, as he defined the gravitational force, proposing that it was a universal force that explained both why objects fall to Earth and the motions of celestial bodies. He was the first to provide a precise mathematical formula for the law of gravitation.

Before Newton, Johannes Kepler discovered three laws of planetary motion, which Newton found crucial for his own work, as they showed gravitation's effects on planetary orbits. Moreover, Albert Einstein expanded upon the concept of gravitation with his theory of general relativity which showed that there is more to the gravity story than Newton's law suggested. Although their contributions were indirect, scientists such as Galileo Galilei and Robert Hooke, also helped set the stage for Newton's discoveries through their work on planetary motions and gravitational investigations respectively.

If the initial velocity of the system were not zero, how would this affect your results?

Answers

just try your best best friend everyone

A flat piece of glass covers the top of a vertical cylinder that is completely filled with water. if a ray of light traveling in the glass is incident on the interface with the water at an angle of θa = 36.0 ∘ , the ray refracted into the water makes an angle of 49.4 ∘ with the normal to the interface. part a what is the smallest value of the incident angle θa for which none of the ray refracts into the water?

Answers

Final answer:

The critical angle is the smallest incident angle at which light is no longer refracted into water, but instead is totally internally reflected. This can be calculated using Snell's law, where the sine of the critical angle is the ratio of the indices of refraction for water and glass.

Explanation:

The smallest value of the incident angle θa for which none of the ray refracts into water, and instead exhibits total internal reflection, is known as the critical angle. To find this critical angle, we can apply Snell's law (n1 × sin(θa) = n2 × sin(θb)), where θa is the incident angle and θb is the refracted angle when θb is 90°, the angle of refraction is at the maximum and therefore indicates the critical angle condition. Using the indices of refraction for glass (n1) and water (n2), we can solve for the critical angle which will indicate the threshold above which light will not refract into water but instead be totally internally reflected.

A spring whose stiffness is 1140 n/m has a relaxed length of 0.51 m. if the length of the spring changes from 0.26 m to 0.79 m, what is the change in the potential energy of the spring? δu = -9.063 incorrect: your answer is incorrect. j

Answers

Final answer:

The change in potential energy of the spring is 152.19 J.

Explanation:

The potential energy of a spring is given by the equation PE = (1/2)kx², where k is the spring constant and x is the displacement of the spring. In this case, the change in length of the spring is 0.53 m (0.79 m - 0.26 m). We can calculate the potential energy change using the formula and given values:

PE = (1/2)(1140 N/m)(0.53 m)² = 152.19 J

Therefore, the change in potential energy of the spring is 152.19 J.

A monatomic ideal gas expands slowly to twice its original volume, doing 230 j of work in the process. part a part complete find the heat added to the gas if the process is isothermal. q = 230 j submitprevious answers correct part b part complete find the change in internal energy of the gas if the process is isothermal. δu = 0 j submitprevious answers correct part c part complete find the heat added to the gas if the process is adiabatic. q = 0 j submitprevious answers correct part d part complete find the change in internal energy of the gas if the process is adiabatic. δu = -230 j submitpreon a warm summer day, a large mass of air (atmospheric pressure 1.01×105pa) is heated by the ground to a temperature of 26.0 ∘c and then begins to rise through the cooler surrounding air.vious answers correct part e find the heat added to the gas if the process is isobaric.

Answers

A boiling pot of water (the water travels in a current throughout the pot), a hot air balloon (hot air rises, making the balloon rise) , and cup of a steaming, hot liquid (hot air rises, creating steam) are all situations where convection occurs. 
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How much energy is required to move a 1350 kg object from the earth's surface to an altitude twice the earth's radius?

Answers

Final answer:

The calculation of energy required to move an object to an altitude twice the Earth's radius involves understanding and applying principles of gravitational potential energy and the universal law of gravitation.

Explanation:

The question involves calculating the energy required to move a 1350 kg object from the Earth's surface to an altitude twice the Earth's radius. To solve this, we use the formula for gravitational potential energy (GPE), which is GPE = mgh at close distances to Earth's surface, and the universal law of gravitation for larger distances.

However, at distances far from the surface, the formula shifts to GPE = -G * (m1*m2)/r, where G is the gravitational constant, m1 and m2 are the masses of the two objects, and r is the distance between their centers. Since the altitude is twice the Earth's radius, the effective distance r would be 3 times the Earth's radius. This question requires integration of both concepts and understanding of physics to solve comprehensively.

Jack is working with layer masks on an image, but he is worried that he may damage the image. Which of these would be an accurate fact about layer masks?

Answers

It would be the last one. 

Layer masks are a non-destructive image editing technique that allows changes to be applied without altering the original image data, providing safety and flexibility in editing.

One accurate fact about layer masks in image editing is that they are non-destructive. This means that when Jack works with layer masks, he is not directly altering or damaging the original image data. Instead, layer masks allow him to apply changes, such as hiding or revealing parts of the layer, without permanently affecting the image. These masks can be edited at any time to adjust the visibility of different portions of the layer. If a mistake is made, Jack can simply edit the mask to correct the issue, rather than having to restore the original image from a separate file. Therefore, layer masks provide flexibility and safety for image editing, ensuring the original data remains intact.

When traveling from oxygen to sulfur to selenium, through this group in the periodic table, what is changing?
A) The density of the elements decreases.
B) The number of energy levels increases.
C) The number of valence electrons of the elements decreases.
D) The state of the element changes from gas to liquid to solid.

Answers

Hi!

The answer should be B) The number of energy levels increases. 

Hope this helps!

-Payshence xoxo

Answer: Option (B) is the correct answer.

Explanation:

It is known that oxygen, sulfur and selenium are all group 16 elements.

The electronic configuration of oxygen is as follows.

     [tex]1s^{2}2s^{2}2p^{4}[/tex]

The electronic configuration of sulfur is as follows.

     [tex]1s^{2}2s^{2}2p^{6}3s^{2}3p^{4}[/tex]

The electronic configuration of selenium is as follows.

     [tex]1s^{2}2s^{2}2p^{6}3s^{2}3p^{6}3d^{10}4p^{4}[/tex]

Hence, we can see that on moving down the group there is increase in energy levels of the atoms from 2p to 4p.

Therefore, we can conclude that when traveling from oxygen to sulfur to selenium, through this group in the periodic table, change is that the number of energy levels increases.

Now you will focus on a second hypothesis. This hypothesis can be very similar to the first, but this time you want to focus only on the second variable in question, speed. What could be a hypothesis that would illustrate the relationship between speed and kinetic energy? Use the format of "if…then…because…” when writing your hypothesis.

Answers

If the speed of an object increases, then its kinetic energy will increase proportionally because speed and kinetic energy have a linear relationship when graphed.


just got it right...

A block with mass 0.5kg is forced against a horizontal spring of negligible mass, compressing the spring a distance of 0.2m. when the spring is released, the block moves on a horizontal tabletop for 1.00 m before coming to rest. the force constant k is 100n/m. what is the coefficient of kinetic friction μk between the block and the tabletop?

Answers

A boiling pot of water (the water travels in a current throughout the pot), a hot air balloon (hot air rises, making the balloon rise) , and cup of a steaming, hot liquid (hot air rises, creating steam) are all situations where convection occurs. 
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what part of the hammer acts as the fulcrum when the hammer is used to remove a nail

Answers

the end of it with the dent

The fulcrum in a hammer when removing a nail is at the part where the hammer pivots.

By applying effort to the handle of a claw hammer, the output force at the nail puller end is increased due to the lever principle. Understanding these concepts aids in efficiently removing nails from wood.

Which equations can be used to calculate the electric potential energy stored in a capacitor? Check all that apply. U = QV U = CV U = U = CV2 U = U = QV2

Answers

There are different ways to calculate the electric potential energy stored in a capacitor.
 Among these forms we have:
 Form 1:
 
U = (CV ^ 2) / 2
 Form 2:
 U = (Q ^ 2) / 2C
 Form 3:
 
U = (QV) / 2
 Where,
 Q: load
 C: capacitance
 V: voltage.
 Answer:
 U = (CV ^ 2) / 2
 
U = (Q ^ 2) / 2C
 
U = (QV) / 2

U=1/2QV

U=1/2CV^2

U=Q^2/2C

Which graphic design tools help you draw circles and rectangles?

Answers

Geometric Shape Tools 
Hope this helps :)

Answer: geometric shape tools

Explanation: plato/edmentum answer.

hope this helps! :)

Which of the following statement is true about image formation using a plane mirror? The distance from the image to the mirror is determined by-

A.the distance from the mirror to the object.

B.the size of the object compared to the mirror.

C.the brightness of the light on the object.

D.the orientation of the object relative to the mirror.

Answers

For a plane mirror, the distance from the image to the mirror
is determined by the distance from the mirror to the object. (A)

A block sliding across a level surface has a mass of 2.5 kg and a mechanical energy of 20 joules. What is its velocity?

Answers

Hi!

The energy of the block is 4 m/s

To calculate this, you need to use the equation for kinetic energy. The block is sliding (i.e. it's moving). If the object is sliding across a level surface, the only energy it has is kinetic energy, because there is no change in potential energy (which changes with height). So, the mechanical energy will be pure kinetic energy. The equation is the following, derived from the expression for kinetic energy:

[tex]v= \sqrt{ \frac{2*Ke}{m}}=\sqrt{ \frac{2*20 (kg*m^{2}*s^{-2}) }{2,5kg}}=4 m/s[/tex]

Have a nice day!

Dario, a prep cook at an italian restaurant, spins a salad spinner and observes that it rotates 20.0 times in 5.00 seconds and then stops spinning it. the salad spinner rotates 6.00 more times before it comes to rest. assume that the spinner slows down with constant angular acceleration. part a what is the magnitude of the angular acceleration of the salad spinner as it slows down?

Answers

For an uniformly accelerated motion, the following relationship is used:

[tex]2 a S=v_f^2 -v_i ^2[/tex] (1)

where a is the acceleration, S the distance covered, and vf and vi the final and initial speeds of the motion.

In our problem we are dealing with a rotational motion. Initially, the salad spinner has constant angular speed, which is given by

[tex]\omega _i = 2 \pi f[/tex]

where f is the rotational frequency, which is the number of revolutions per second:

[tex]f=  \frac{20 rev}{5 s}=4 Hz [/tex]

so the initial angular speed is

[tex]\omega _i = 2 \pi (4 Hz)=25.2 rad/s[/tex]

Then, the salad spinner starts to decelerate with constant deceleration [tex]\alpha[/tex], and during its deceleration it spins for other 6 revolutions, so covering a total angle of

[tex]\theta = 2 \pi (6 rev)=37.7 rad[/tex]

until it stops, so until it reaches a final speed of [tex]\omega _f=0[/tex].

To find the angular acceleration, we can use the equivalent of equation (1) for angular motions:

[tex]2 \alpha \theta = \omega_f^2 - \omega_i^2[/tex]

and so, since the final speed is [tex]\omega _f=0[/tex]:

[tex]\alpha = -  \frac{\omega _i^2}{2 \theta}=- \frac{(25.2 rad/s)^2}{2\cdot 37.7 rad}=-8.4 rad/s^2  [/tex]

where the negative sign means the salad spinner is decelerating.

Answer:

[tex] \alpha = -\frac{(25.132 rad/s)^2}{2* 37.7 rad}= -8.377 rad/s^2[/tex]

And we can convert this into degrees like this:

[tex] \alpha= -8.377 rad/s^2 * (\frac{180}{\pi rad}) =-479.967 rad/s^2[/tex]

Explanation:

For this case we assume that the angular acceleration is constant and the spinner slows down and come to rest at the end

We can calculate the distance traveled each revolution with this formula:

[tex] \theta= 20 rev * \frac{2\pi rad}{1 rev}= 40 \pi rad[/tex]

And since we know that the time to reach the velocity 0 is 5 s we can find the angular velocity like this:

[tex] w_o= \frac{\theta}{t}= \frac{40 \pi rad}{5 s}= 25.132 rad/s[/tex]

We know that the spinner rotates 6 more times before come rest, so the total distance traveled is:

[tex] \theta= 6* 2\pi = 37.699 rad[/tex]

[tex] w_f = 0 rad/s[/tex]

And we have the following formula :

[tex] w^2_f = w^2_i + 2\alpha \theta[/tex]

Since we know that the final angular velocity is 0 we can solve for [tex] \alpha[/tex] the angular acceleration and we got:

[tex] \alpha = -\frac{w^2_o}{2 \theta}[/tex]

And replacing the values that we found before we have this:

[tex] \alpha = -\frac{(25.132 rad/s)^2}{2* 37.7 rad}= -8.377 rad/s^2[/tex]

And we can convert this into degrees like this:

[tex] \alpha= -8.377 rad/s^2 * (\frac{180}{\pi rad}) =-479.967 rad/s^2[/tex]

A 3.7-kg block on a horizontal frictionless surface is attached to an ideal spring whose force constant (spring constant) is 450 n/m. the block is pulled from its equilibrium position at x = 0.000 m to a position x = +0.080 m and is released from rest. the block then executes simple harmonic motion along the horizontal x-axis. the maximum elastic potential energy of the system is closest to

Answers

Final answer:

In the simple harmonic motion of a block attached to a spring, the maximum elasticity potential energy (U) occurs when displacement from equilibrium is the greatest. Given the provided spring constant (k) and displacement (x), the energy can be calculated using the formula U = (1/2)kx². The maximum elastic potential energy in this scenario is close to 1.44 joules.

Explanation:

In physics, the problem you're dealing with relates to simple harmonic motion associated with a block attached to a spring on a frictionless surface. When the object is displaced from equilibrium and let go, it performs simple harmonic motion. During this motion, there is a constant interconversion between the kinetic and potential energy within the system.

The 'spring constant' (k) of an ideal spring is given as 450 n/m and the displacement from the equilibrium position (x) is 0.080 m. The maximum elastic potential energy is at extremes of the motion, when the displacement is the greatest (+/- x). It is given by the formula: U = (1/2)kx², where U is the elastic potential energy.

Substituting the given spring constant and displacement values into the formula: U = (1/2) * 450 * (0.080)² = 1.44 joules. Hence, the maximum elastic potential energy of the system is closest to 1.44 joules.

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An inclined plane of angle θ has a spring of force constant k fastened securely at the bottom so that the spring is parallel to the surface. A block of mass m is placed on the plane at a distance d from the spring. From this position, the block is projected downward toward the spring with speed v as shown in the figure below. By what distance is the spring compressed when the block momentarily comes to rest? (Use any variable or symbol stated above along with the following as necessary: g, the acceleration due to gravity.)

Answers

Final answer:

Using the principles of energy conservation and kinetic energy, the distance the spring compresses when the block comes to rest is found through the equation x = sqrt((m*v*v)/k), where m is the mass, v is the velocity, k is the spring constant, and x is the distance of compression.

Explanation:

To compute the distance the spring is compressed when the block comes to rest, we need to consider both kinetic energy conservation and energy conservation through potential energy of the spring. Our initial kinetic energy supplied by the block sliding down the plane (K1) will turn into a potential energy in the spring when it's compressed (U2). Hence, we have K1 = U2.

Assuming initial kinetic energy (K1) given by 0.5*m*v*v, and potential energy in the spring (U2) equals to 0.5*k*x*x where x is the distance in which spring is compressed.

From the conservation of energy principle, 0.5*m*v*v = 0.5*k*x*x. By simplifying the equation, we get x = sqrt((m*v*v)/k). This equation provides us the distance the spring is compressed when the block comes to rest.

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A car has a kinetic energy of 1.9 × 10^3 joules. If the velocity of the car is decreased by half, what is its kinetic energy?

Answers

The initial kinetic energy of the car is
[tex]E_1 = \frac{1}{2}mv_1^2 = 1.9 \cdot 10^3 J[/tex]

Then, the velocity of the car is decreased by half: [tex]v_2 = \frac{v_1}{2} [/tex]
so, the new kinetic energy is
[tex]E_2 = \frac{1}{2}mv_2 ^2 = \frac{1}{2} m ( \frac{v_1}{2} )^2= \frac{1}{2}m \frac{v_1^2}{4}= \frac{E_1}{4} [/tex]
So, the new kinetic energy is 1/4 of the initial kinetic energy of the car. Numerically:
[tex]E_2 = \frac{1.9 \cdot 10^3 J}{4}=475 J [/tex]

Why does buying locally grown fruits and vegetables decrease your carbon footprint?

A.) They are grown without fertilizers.
B.) Less fuel is used to deliver these products to the market.
C.) They are healthier for you.
D.) Less water is used to grow these products.

Answers

C. less fuel used to deliver
its B less fuel is used to deliver these products to the market 
Other Questions
What do Americans today do to remember the large dinner that took place at Plymouth in 1621? 25 points !!! How do you conjugate the French conditional tense? A diver is swimming at sea level (0), when he suddenly sees a shark and quickly dives under water. He dives 3 meters in 1 second. He continues to descend for 15 seconds. What is the diver's final position? How many times greater is the value of 5 in 3,590 than the value of 5 in 359 ? since your sister is sick and your parents are calling the doctor. The line was busy so leave a voicemail. Include appropriate greetings, explanation of situation, describe the symptoms, request to be called back, leave your phone number. Do this all in Spanish. Define the term interpersonal communication and the role of I messages 1.Suzette ran and biked for a total of 34 mi in 3.5 h. Her average running speed was 6 mph and her average biking speed was 12.5 mph. How many hours did suzette run Which religion or philosophy accepts the belief of reincarnation? Can someone help me with 2-5? In the song "what's going on," how does the singer show that society is going through troubled times during the 1960s and 1970s? Use each of these terms in a sentence that explains the term's meaning. a. monopoly b. interstate commerce c. cede why might polar bears might become extinct A. they may drown when the glaciers melt B. too many people hunt them C. they do not have any predators D. their thick fur is not suited for a warming climate Which of these is a biased statement. A. In my community, education is most important to the Asian population, and reduced library hours would be seriously inconvenient.B. The impact library budget cuts will be felt by the entire community, not just children and the elderly.C. Middle- and high-school students like me often depend on the library's services for research and internet access.D. Many of our community's children attend Story Hour weekly. someone help a sister out Singing You and me are free to remember the strategy for using the Underground Railroad.A RhymingB Keywords f(5)= 3.14r^{2} pls help Which example most clearly uses pathos to make an appeal?A. A reference to the author's 15 years as a district court judgeB. An account of a tornado sweeping through a small town C. A survey that shows 78 percent of parents want longer school daysD. A graph showing a small business's quarterly earnings What are the answers for the 10.6 volcanoes and plate tectonics enrich?PLEASE HELP! How did attitudes toward credit and consumerism change in the 1920s? @ganeshie8 Which of the following would appear in the Credits column of a bank statement for a checking account? A.An online bill payment B.Interest earned C.Bank fees D.An ATM withdrawal