A box of mass 8.0 kg is lifted from the ground and placed on a shelf. The box gains 100J of potential energy. The box falls off the shelf. Air resistance can be ignored. At what speed does the box hit the ground?
A 3.5m/s
B 5.0m/s
C 25m/s
D 28m/s

HELP

Answers

Answer 1

Explanation:

[tex]pe = mgh \: \\ taking \: g \: as \: 10ms^{ - 2} \\ 100 = 8.0 \times 10 \times h \\ h = 1.25m \\ \\ using \: newtons \: third \: equation \\ v^{2} = u^{2} + 2gh \\ where \: v \: is \: final \: velocity \: and \: u \: is \: initial \: velocity \: = 0 \\ v^{2} = 0 + 2 \times 10 \times 1.25 \\ = 25 \\ v = 5.0ms^{2} [/tex]


Related Questions

What is the frequency of a 6.14 x 10^4 m wave?
A. 2.7 x 10 ^ 8 hz
B. 1.18 x 10 ^ 3 hz
C. 4.88 x 10^3 hz
D. 1.4 x 10 ^ -6 hz

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Answer:

C.

Explanation:

I think it's c please let me know if it's incorrect

If it's an electromagnetic wave in air or vacuum, then its frequency is Choice-C.
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Entropy is a state that goes from “order to disorder," what is the only way living things can slow down this process?

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Thr only way living things can slow down the process of entropy is through anabolic processes.

What is entropy?

Entropy is the degree of disorderliness or randomness of a substance.

According to the second law of thermodynamics, the entropy of a system always tends to increase.

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An electron, starting from rest, accelerates through a potential difference of 25.0 V. What is the final de Broglie wavelength of the electron, assuming that its final speed is not relativistic

Answers

Answer: λ = 0.245 nm

Explanation:

KE = qV

V = 25.0 V

where q = e = 1.6*10^-19

KE = (1.6*10^-19)(25.0 V)

KE= 4.0 * 10^-18 J

λ = [tex]\frac{h}{\sqrt{2mKE} }[/tex]

mass of electron = 9.11 * 10^-34

λ = [tex]\frac{6.626*10^{-34} }{\sqrt{(2)(9.11*10^{-31})(4.0*10^{-18}) } }[/tex]

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Answers

What distinguishes asteroids from other solar system objects is that they always have irregular, "potato-like" shapes, it's a true statment.

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A long pipe organ is 10 m tall. It has an open end and closed end. Find
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Answers

Answer:

Resonances occur at:

OC       OCOC         OCOCOC       OCOCOCOC      OCOCOCOCOCλ

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Note: the first resonance occurs at f = 340 / 40 = 8.5 /sec

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what most stars become when they die

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Answer:

Light shone on metal expulses electrons from its surface. This phenomenon is the photoelectric effect, and the electrons are called photoelectrons. Experiments indicate that by increasing light frequency, the kinetic energy of the photoelectrons increases, and by intensifying the light, the current increases

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Answer:

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B.
False

Answers

Answer:

True

Explanation:

Examples: factory workers at Tyson complain of pains because of doing the same motion for 8 hours a day and how ever many days a year.

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U
E

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Answer:

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An apple is released from rest 500 m above the ground. Due to the combined forces of air resistance and gravity, it has a speed of 40 m s when it reaches the ground. What percentage of the initial mechanical energy of the apple-Earth system was dissipated due to air resistance

Answers

Answer:

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Explanation:

Find a ratio

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Answer:

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Often times we think about insulation, we think about keeping cold items cold, such as drinks in an ice chest or the cool temperature in your home. But insulation also keeps things high! The same thermos that keeps your water cold keep your hot chocolate worm. How was that possible?

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Answer:

So, insulation essentially works by creating a sort of barrier between the hot and the cold object. This barrier helps to reduce heat transfer by either reflecting the thermal radiation or by decreasing thermal conduction and convection from one object to the other.

Answer:

So, insulation essentially works by creating a sort of barrier between the hot and the cold object. This barrier helps to reduce heat transfer by either reflecting the thermal radiation or by decreasing thermal conduction and convection from one object to the other.

FORENSICS!!
What are physical properties for each piece of evidence?
1. Blood
2. Body
3. gun
4. White powder
5. cup
6. Dark hair strand
7. Shell casing
8. Light hair strand

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Gun goes bang white powder good for nose shell casing 40 cal body fat

An apple is released from rest 500 m above the ground. Due to the combined forces of air resistance and gravity, it has a speed of 40 m s when it reaches the ground. What percentage of the initial mechanical energy of the apple-earth system was dissipated due to air resistance? take the potential energy of the apple-earth system to be zero when the apple reaches the ground.

Answers

The percentage of the initial mechanical energy of the apple-earth system that was dissipated is : 84%

Determine the percentage of the initial mechanical energy dissipated

Given that

Potential energy = mgh = 0

                           = m* 9.81 * 500 = 0

                           = 4905 m J

Kinetic energy ( K ) = 1/2 mv²

                                 = 1/2 * m * 40²

                                 = 800 m

Next step : calculate the dissipated energy

dissipated energy = Potential energy - kinetic energy

                              = 4905 m - 800 m

                              = 4105 m

Final step : determine the percentage of the dissipated energy

= dissipated energy / potential energy

= 4105 m / 4905 m

= 84%

Hence we can conclude that The percentage of the initial mechanical energy of the apple-earth system that was dissipated is : 84%

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You push a box 10.0m with a force of 45 N. How much work do you do?

Answers

Answer:

450m because you multiply the force to the distance to get how much work you've done.

The most reactive nonmetals are the
a. transition metals.
b. noble gases.
c. alkali metals
d. halogens.

Answers

The noble gases ( group 17 ) are the most reactive non-metal elements.

Which of the following objects would probably become hottest if left in the sun for several hours?
a piece of white paper
a piece of black plastic
a sheet of aluminum foil
a block of light-coloured wood

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It’s a no explanation needed

A bullet with a mass of 4.26 g and a speed of 881 m/s penetrates a tree horizontally to a depth of 4.44 cm. Assume that a constant frictional force stops the bullet. Calculate the magnitude of this frictional force. Try energy considerations.

Answers

Let F be the magnitude of the frictional force. This force performs an amount of work W on the bullet such that

W = -Fx

where x is the distance over which F is acting. This is the only force acting on the bullet as it penetrates the tree. The work-energy theorem says the total work performed on a body is equal to the change in that body's kinetic energy, so we have

W = ∆K

-Fx = 0 - 1/2 mv²

where m is the body's mass and v is its speed.

Solve for F and plug in the given information:

F = mv²/(2x)

F = (0.00426 kg) (881 m/s)² / (2 (0.0444 m))

F = 37,234.8 N ≈ 37.2 kN

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