You perform 556 J of work lifting a box to a height of 1.3m. How much force did you use to lift the box?

Answers

Answer 1
The work is equal to the product between the force applied and the distance covered by the box:
[tex]W=Fd[/tex]
In our problem, W=556 J, and d=1.3 m (the box is lifted to a height of 1.3 m, so it covered 1.3 m from its initial point). Therefore we can find the force applied to lift the box:
[tex]F= \frac{W}{d}= \frac{556 J}{1.3 m}=427.7 N [/tex]
Answer 2

Answer:

The work is given 556 J. Here work is performed horizontally so your distance d=1.3 m

W=F.d

F=W/d =556/1.3 = 427.69 N

Explanation:


Related Questions

if a glacier is in equilibrium, where ablation is equal to the accumulation, what occurs in the terminus or 'snout'

Answers

The answer is : neither erosion nor deposition occurs.
If a glacier is in equilibrium, where ablation is equal to the accumulation,  either erosion nor deposition occurs in the terminus or 'snout'.  It stops depositing rocks, the snow would stop falling at the terminu, the temperature would rise, It is neither advancing nor retreating anymore.

If a glacier is in equilibrium, its terminus remains stable as ice loss from ablation equals ice gain from accumulation. The glacier's terminus does not advance or retreat under these conditions.

If a glacier is in equilibrium, it means that the ablation (loss of ice) is equal to the accumulation (gain of ice). The point where this balance is achieved is the equilibrium line. If the glacier is in equilibrium, the terminus or 'snout' of the glacier remains at a stable position. While the ice continues to flow downslope, the position of the terminus does not advance or retreat because the amount of ice being lost to ablation is equal to the amount being gained through accumulation.

If it takes 320 N of force to push a box up a ramp, yet it would take 1,600 N of force to lift the box straight up, what is the mechanical advantage of the ramp? O A. 0.2 O B. 4 O C. 5 O D. 40

Answers

MA = Fwithout help/Fwith machine
MA = 1600/320 = 5

Kepler-186f is much closer to the sun than earth is to its sun. why is it considered to be in the habitable zone even though it’s close to a sun

Answers

The sun which Kepler-186f orbits is a much smaller star in both mass and size. This along with other factors has a large affect on the size and distance of the habitable zone.

Its sun is cooler than our sun, so there is a possibility that water can exist in liquid state on this planet.

20 POINTS AND BRAINLIEST

describe the forces acting on the ball at the instant it is pushed. Do these forces continue to act on the ball as it rolls

Answers

Yes they keep acting until the ball is stopped. 
Ok, so the forces acting on the ball is Fraction, Potential Energy, and Kinetic Energy. So the ball goes down the ramp because of gravity, it moves because of Kinetic Energy and stops after some time because of Friction and Potential Energy. These forces do continue until the ball stops. Please give brainiest I helped!

Explain how convections currents cause Earth’s plates to move continuously

Answers

The Earth's crust is broken up into pieces called plates. Heat rising and falling inside the mantle creates convection currents generated by radioactive decay in the core. The convection currents move the plates.

if an atom has 3 electrons and 3 protons, what is the charge on the atom

Answers

the atom is neutral because the charge of 3 electrons is -3 and the charge of 3 protons is +3, therefore they cancel out

why is it important foe scientists to know how many valence electrons a given element has

Answers

Because the number of valence electrons of an element determines the properties and in particular the reactivity of that element.

In fact, elements of the first group (i.e. only one valence electron) have high reactivity, because they can easily give away their valence electron to atoms of other elements forming bonds. On the contrary, elements of the 8th group (noble gases) have their outermost shell completely filled with electrons, so they do not have valence electrons, and they have little or no reactivity at all.

Which tubes will test positive for Benedict's test and which will test positive for Iodine test?

Answers

Disaccharides are positive in Benedicts test as it is a reducing sugar. Any animal product testing positive for starch on the lodine test may be contaminated or mixed with plant product. The positive control for the iodine test was the starch solution. 

If this helped, please give me brainliest :)
Final answer:

Benedict's test is used to identify reducing sugars and results in color changes from blue to green, yellow, or red. The Iodine test, on the other hand, identifies starch by changing from a brown iodine color to a blue-black color.

Explanation:

In conducting laboratory tests, two popular assays are the Benedict's test and the Iodine test. The Benedict's test is used to detect the presence of reducing sugars, like glucose, in a sample. If a tube turns from blue (the color of the original Benedict's solution) to green, yellow or red, it indicates a positive result - the various colors represent different levels of sugar concentration.

Conversely, the Iodine test is used to detect the presence of starch in a sample, such as in a potato or bread. In a positive Iodine test result, the originally brown iodine solution will change to a blue-black color upon interaction with starch.

Therefore, tubes containing reducing sugars (like glucose or lactose) will test positive in a Benedict's test, and tubes containing starch will test positive in an Iodine test.

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describe the shapes of a concave lens and a convex lens

Answers

The fact that a double convex lens is thicker across its middle is an indicator that it will converge rays of light that travel parallel to its principal axis. A double convex lens is a converging lens. A double concave lens is also symmetrical across both its horizontaland vertical axis.
This is from google btw.
A concave lens ‘caves in’. A convex lens goes out like a bubble-shape. I don’t know of this will help, but use it if you can.

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

Answers

Answer: The acceleration of 10 kg object is greater than that of 18 kg object.

Explanation:
According to Newton's Second law:
F = ma --- (A)

Let's find the acceleration for both 10 kg and 18 kg objects!
The net force on both of these masses = F = 20N

(1) Acceleration of 10 kg object
Mass = m = 10 kg
Plug in the values in equation (A):
20 = 10 * a
Acceleration = a = 2 m/s^2

(2) Acceleration of 18 kg object
Mass = m = 18 kg
Plug in the values in equation (A):

20 = 18 * a
Acceleration = a = 1.11 m/s^2


2 > 1.11; therefore, 10 kg object has the higher acceleration compared to the acceleration of the 18 kg object.

Explanation:

The expression of the applied force in terms of mass and acceleration by using Newton's second law is as follows;

F= ma

Here, m is the mass of the object and a is the acceleration of the object.

Calculate the acceleration of a 10 kg object acted upon with net force of 20 N in the above expression.

Put m= 10 kg and F= 20 N in the above expression.

20= (10)a

a= 2 m/s^2

Calculate the acceleration of a 18 kg object acted upon with net force of 20 N in the above expression.

Put m= 18 kg and F= 20 N.

20= (18)a

a= 1.11 m/s^2

Therefore, the acceleration of a 10 kg object acted upon with net force of 20 N is greater than the acceleration of a 18 kg object acted upon with net force of 20 N.

PLEASE HELP ASAP WILL GIVE BRAINLIEST <333

Answers

the answer to the question is d

Answer 1) For calculating ΔU;

We can use the expression for the first law of thermodynamics which is,

ΔU = Q + W

Where ΔU is the Change in internal energy, Q is heat added to the system and W is the work done on the system.

As, Q = + 51 KJ and W = -15 KJ.

So, ΔU = 51 -15 = 36 KJ.

Hence, ΔU = 36 KJ

Answer 2) Using the same first law of thermodynamic equation for calculating ΔU (Internal Energy o the system) ;

ΔU = Q + W;

Given, Q = + 100 KJ and W = - 65 KJ

On substituting the values in the above equation we get,

ΔU = 100 - 65 = 35 KJ

Therefore, ΔU = 35 KJ

Answer 3) Using the same first law of thermodynamic equation for calculating ΔU (Internal Energy o the system) ;

ΔU = Q + W;

Given here, Q = - 65 KJ and W = - 20 KJ

On substituting the above values in the equation we get,

ΔU = -65 -20 = - 85 KJ

Therefore, ΔU = - 85 KJ for this system.

Answer 4) According to the answers in 1), 2) and 3) it can be seen that there has been change in the internal energies of the system for all, but some are positive changes and some are negative.

As per the definition of the internal energy, when the system does work on its surroundings, energy is found to be lost, and E is observed to be negative; and when the surroundings do work on the system, the internal energy of the system becomes larger, converting E into positive.

So, it is clear that in case 3) the system did work on the surroundings as E value is found to be negative, rest have positive E values.

work transfers what between objects

Answers

work transfers energy through objects hope this helps.

Answer:

Energy

Explanation:

The answe is "work transfers energy between objects".

There are different types of energy. Work is one of them and is a type of energy in transit.

So work is energy that is exchanged between objects or systems.

When work is done energy is tranferred by mechanical means (if the means are not mechanicals, the type of energy transferred is called heat), for example when pushing a box, energy is transferred to it so that it can move.

Which of the following is responsible for the formation of sinkholes F. Eroding soil on Earths’s surface G. Ice that builds up on earths surface H. Deposition that has built up at the mouth of the river I. Flowing groundwater that dissolves rock , such as limestone

Answers

ans is I. Flowing groundwater that dissolves rock , such as limestone

Sinkholes are commonly formed by acidic groundwater dissolving limestone or other susceptible rock types underground, leading to the collapse of the surface into cavities created by such erosion. The correct answer is I. Flowing groundwater that dissolves rock , such as limestone

The formation of sinkholes is typically the result of groundwater flowing through and dissolving rock formations, such as limestone. When acidic groundwater moves through these rocks, it slowly erodes them, creating underground cavities.

Over time, as the rock continues to dissolve and the cavities grow larger, the land surface above can no longer be supported and collapses, forming a sinkhole. This type of underground erosion is especially effective when the groundwater contains carbonic acid, which is particularly good at dissolving limestone.

Acidic groundwaters and their reaction with basic rock formations like limestone are key in the development of sinkholes. Collapse sinkholes can form abruptly and are often dangerous as they remove support for the surface suddenly. In contrast to other options like eroding soil, ice buildup, or deposition, it is the flowing groundwater that typically leads to these hazardous and sometimes massive geographical features.

Explain why Earth and other planets were not solid when they formed during the beginning of the Precambrian, approximately 4,600 million years ago (MYA). What was this particular time period called, and why is this time period not really considered apart of Earth’s geological history?

Please help
I'll mark who ever comes up with the best answer brainliest

Answers

A) Earth was formed by accretion from the Solar nebula. That is that, at first, atoms and molecules started colliding, forming dust and debris; that debris started colliding with each other, slowly forming a protoplanet.
Due to natural radiation of the elements and to the various impacts of the debris, the temperature of the protoplanet was very high. 
At this kind of temperature rocks and all the other materials were fused in a homogeneous matter, which started to solidify when the temperature decreased. 

B) This particular period is called Hadean eon and it is the very beginning part of Precambrian.

C) The Hadean eon started when Earth started forming and ended with the solidification of the crust, the formation of the atmosphere (mostly carbon dioxide) and the condensation of water into seas and oceans. For these reasons it is not considered apart from Earth's geological history, even thou rocks dated so back in time are rare to find.


A) Earth was formed by accretion from the Solar nebula. That is that, at first, atoms and molecules started colliding, forming dust and debris; that debris started colliding with each other, slowly forming a protoplanet. Due to natural radiation of the elements and to the various impacts of the debris, the temperature of the protoplanet was very high.  At this kind of temperature rocks and all the other materials were fused in a homogeneous matter, which started to solidify when the temperature decreased.   B) This particular period is called Hadean eon and it is the very beginning part of Precambrian. C) The Hadean eon started when Earth started forming and ended with the solidification of the crust, the formation of the atmosphere (mostly carbon dioxide) and the condensation of water into seas and oceans. For these reasons it is not considered apart from Earth's geological history, even thou rocks dated so back in time are rare to find. A) Earth was formed by accretion from the Solar nebula. That is that, at first, atoms and molecules started colliding, forming dust and debris; that debris started colliding with each other, slowly forming a protoplanet. Due to natural radiation of the elements and to the various impacts of the debris, the temperature of the protoplanet was very high.  At this kind of temperature rocks and all the other materials were fused in a homogeneous matter, which started to solidify when the temperature decreased.   B) This particular period is called Hadean eon and it is the very beginning part of Precambrian. C) The Hadean eon started when Earth started forming and ended with the solidification of the crust, the formation of the atmosphere (mostly carbon dioxide) and the condensation of water into seas and oceans. For these reasons it is not considered apart from Earth's geological history, even thou rocks dated so back in time are rare to find. A) Earth was formed by accretion from the Solar nebula. That is that, at first, atoms and molecules started colliding, forming dust and debris; that debris started colliding with each other, slowly forming a protoplanet. Due to natural radiation of the elements and to the various impacts of the debris, the temperature of the protoplanet was very high.  At this kind of temperature rocks and all the other materials were fused in a homogeneous matter, which started to solidify when the temperature decreased.  

To determine a waves' frequency, you must know the

A. distance it travels.
B. number of oscillations in a given period of time.
C. distance between the crest and trough.
D.height of the wave.

Answers

B. number of oscillations in a given period of time.

Answer : Frequency equals number of oscillations in a given period of time.

Explanation :

The number of oscillations in a given period of time is known as the frequency of the wave. It is denoted by [tex]\nu[/tex]. Its SI unit is hertz (Hz).

It is also defined as the inverse of time period i.e.

[tex]\nu=\dfrac{1}{T}[/tex]

T is the time period.

Hence, the correct option is (B) " number of oscillations in a given period of time ".

Which of the following materials is a conductor of electric current? a wooden spoon,a plastic game piece,a glass window,a copper wire

Answers

The answer to your question is A COPPER WIRE. Hope this helps!

Im going to eat lol! :)

its a copper penny hope this helps

what does it mean to say that momentum is conserved

Answers

It means that any system the total momentum before n event is always equal to the total momentum after the event. it usually applies to explosions or collisions.

Is energy transformation only occurring at only point 3?

Answers

No, energy transformation is occurring in every point of the motion.

In fact, the ball starts from point 1 with maximum kinetic energy and zero potential energy (taking the hand of the boy as reference level). The kinetic energy converts into gravitational potential energy as it goes higher: in point 2, part of the kinetic energy has converted into potential energy (because the velocity has decreased, while the height has increased), and then when the ball reaches point 3 all the kinetic energy has converted into potential energy (because now the velocity is zero, while the height is maximum). As the ball descends (point 4), the velocity starts to increase again, therefore the kinetic energy increases and the potential energy decreases (because the height is deacreasing now).
Summarizing, energy transformation is occuring in every point of the motion.

Final answer:

Energy transformation involves various types such as kinetic to potential energy, work to kinetic energy, and is influenced by the parameters of the system, including quantum mechanical constraints and relativistic observations. It can occur at different points, not just one.

Explanation:

Energy transformation in a physical system does not occur exclusively at one particular point unless specified by the conditions or constraints of that system. Different types of energy transformation include the conversion of kinetic energy to potential energy and vice versa, as well as the transformation of work into kinetic energy.

The details provided reference various energy concepts in physics, such as the transformation involved when light from the Sun shines on Earth, and energy conservation as applied to multiple dimensions.

In the realm of quantum mechanics, like the one described by 'equation (3.24)' and determining when one or three energy levels might exist, it typically involves solving the equation with the given parameters 'p' to find the allowed energy states. Alterations to the parameter 'p' could result in different energy states, hence affecting the number of observable energy levels.

Understanding the relationship between energy conservation and the direction of velocity is key when dealing with multidimensional problems.

Additionally, the example of Betty and Alice helps illustrate the relativistic effects on energy when observing a system from different reference frames, underlying the complexity involved when addressing conservation of energy in relativistic contexts.

If the earth’s gravity were much less powerful our atmosphere would be similar to

Answers

If the earth’s gravity were much less powerful our atmosphere would be similar to The moon's 

Which of the following statements is true?

A.Animals add water vapor to the air through respiration.
B.Plants add water vapor to the air through photosynthesis.
C.Both plants and animals can make protein using nitrogen compounds.
D.Automobiles are the leading cause of acid rain.

Answers

I would say c. 

Forgive me if I am wrong! 


The picture below shows the positions of the Earth, Moon, and Sun during an eclipse.



What is true of the eclipse shown in the picture?



A) It is a solar eclipse, in which the Moon casts a shadow on the Earth.


B) It is a lunar eclipse, in which the Moon casts a shadow on the Earth.


C) It is a lunar eclipse, in which the Earth casts a shadow on the Moon.


D) It is a solar eclipse, in which the Earth casts a shadow on the Moon.

Answers

Selection A is appropriate.
A


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if a swimmer pushes off a pool wall with a force of 250n, what is her acceleration.

Answers


Her acceleration is

           (250) divided by (the swimmer's mass, in kilograms).

The unit is " meters per second² " .

What is the difference between a constellation and an “asterism”? Name at least one commonly known asterism.

Answers

A "constellation" is the total, full, complete thing in the night sky ...
ALL of the stars that go together to make up the complete dog or
the queen or the fish or the bear, or whatever else the story of
that particular part of the sky involves.

An "asterism" is a small, easily recognized group of stars, that
can be spotted right away, although they're only a small part
of a constellation.

The Big Dipper, the Little Dipper, Orion's Belt, and the Great Square
are asterisms.  They're parts of the constellations of the Big Bear,
the Little Bear, Orion the Great and Mighty Hunter, and Pegasus,
respectively.
Final answer:

A constellation is a sector into which the sky is divided, while an asterism is a noticeable star pattern within a constellation. The Big Dipper is a commonly known asterism within the constellation of Ursa Major.

Explanation:

A constellation is one of the 88 sectors into which the sky is divided. Each point in the sky falls within a specific constellation. On the other hand, an asterism is an especially noticeable star pattern within a constellation. The Big Dipper, which is an asterism within the constellation of Ursa Major, is a commonly known example.

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which object has the most gravitational potential energy
a. a 15 kg at a height of 0.5

b 10 kg at a height of 0.5

c a 10 kg at a height of 0.8

d a 15 kg at aheight of 0.8

Answers

The correct option is d.

The object with the most gravitational potential energy is 15 kg mass at a height of 0.8 meters.

To determine which object has the most gravitational potential energy, we'll use the formula for gravitational potential energy:

[tex]\[ U = mgh \][/tex]

Where:

- [tex]\( U \)[/tex] is the gravitational potential energy,

- [tex]\( m \)[/tex] is the mass of the object,

- [tex]\( g \)[/tex] is the acceleration due to gravity (approximately [tex]\( 9.8 \, \text{m/s}^2 \)[/tex]),

- [tex]\( h \)[/tex] is the height of the object above the reference point (in meters).

Now, let's calculate the gravitational potential energy for each object:

a. [tex]\( U_a = (15 \, \text{kg}) \times (9.8 \, \text{m/s}^2) \times (0.5 \, \text{m}) = 73.5 \, \text{J} \)[/tex]

b. [tex]\( U_b = (10 \, \text{kg}) \times (9.8 \, \text{m/s}^2) \times (0.5 \, \text{m}) = 49 \, \text{J} \)[/tex]

c. [tex]\( U_c = (10 \, \text{kg}) \times (9.8 \, \text{m/s}^2) \times (0.8 \, \text{m}) = 78.4 \, \text{J} \)[/tex]

d. [tex]\( U_d = (15 \, \text{kg}) \times (9.8 \, \text{m/s}^2) \times (0.8 \, \text{m}) = 117.6 \, \text{J} \)[/tex]

Comparing the results, the object with the most gravitational potential energy is 15 kg object at a height of 0.8 meters, with a gravitational potential energy of 117.6 J.

Jonathan has six strings that are the same thickness and are all the same material. He cuts the strings to different lengths and pulls so that they all have the same tightness. Which string will have the highest pitch when he plucks it with his finger?

Answers

The shortest string will have the highest pitch.

Your answer is C.

The shortest string will have the highest pitch. This is because the pitch of a sound depends on the speed of its vibrations.

Technician A says that the burning of the air-and-fuel mixture in the cylinder is called fuel activation. Technician B says that the basic function of the upper-end components is to control the flow of air-and-fuel mixture into the engine and the flow of exhaust gases out of the engine after combustion. Who is right? A. Both Technicians A and B B. Technician A only C. Neither Technician A nor B D. Technician B only

Answers

The answer is A. Both Technicians A and B. Technician B is correct because the basic function of the upper-end components of an air-fuel mixture is to control the flow of it into the mixture. And also the statement of technician A is correct also.

How this answer can be Verifies if it's wrong!?!?!

Explain what happens to the pitch of a cell phone ringing when the amplitude of a sound wave increases.

Answers

As the amplitude of a sound wave increases the pitch of the ringing would be much higher (like if you were to inhale helium.. just with a phone)

the pitch of the cell phone ringing will remains same when the amplitude of a sound wave increases.

The pitch of a sound wave depends on its frequency. more frequency means higher pitch and less frequency means lower pitch. The amplitude of wave is the maximum displacement of the particles of the medium from their mean positions. Increase in amplitude will increase the loudness and not the pitch. So the pitch remains same as the amplitude of sound wave is increased.

Please need help still lost on this

Answers

A longitudinal wave is a wave that vibrates in the same direction as its direction of propagation. In a longitudinal wave, the direction of particle displacement is parallel to the direction of wave motion. The correct answer is "In a longitudinal wave, particle displacement is parallel to the direction of wave motion."

This means that as the wave moves forward, the particles of the medium through which the wave travels move back and forth along the same line as the wave's direction of propagation. This type of wave is often referred to as a compressional wave because it causes the particles of the medium to be compressed and then expanded as the wave passes through. An example of a longitudinal wave is sound waves. These waves move through the air by compressing and expanding the air particles along the same direction as the wave's motion, producing changes in air pressure that our ears detect as sound. Therefore, the correct answer is "In a longitudinal wave, particle displacement is parallel to the direction of wave motion."

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When sunlight strikes oil on the surface of water, a variety of colors are observed. What is the best explanation for this observation?

Answers

The reason is light scattering.

The sunlight that falls on oil we perceive to be white in color. But in fact that light is made of all colors (purple, blue, red, green, yellow, orange, red...). All these colors have same intensity and come under same angle so they combine and give white light. 

Each of these colors has different wavelength and different frequency. Depending on the wavelength of a color it refracts on oil under different angle. After exiting molecule of oil all color exit at different angle. This is reason that the do not combine and do not give white light. We see them as individual colors.

If a forklift raises a 76-kg load a distance of 2.5 m, about how much work has it done?

Answers

Final answer:

To calculate the work done by the forklift, we need to find the force exerted by the forklift and multiply it by the distance it raises the load. The force exerted by the forklift can be found using the formula Force = mass x gravity. The work done by the forklift is approximately 1864 Joules.

Explanation:

To calculate the work done by the forklift, we can use the formula:

Work = Force x Distance

First, we need to find the force exerted by the forklift. Since the load has a mass of 76 kg, we can use the formula:

Force = mass x gravity

where gravity is approximately 9.8 m/s^2 (acceleration due to gravity). So, the force exerted by the forklift is:

Force = 76 kg x 9.8 m/s^2 = 745.6 N

Now, we can calculate the work done by the forklift:

Work = 745.6 N x 2.5 m = 1864 J

Therefore, the forklift has done approximately 1864 Joules of work.

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