what is the amount of work done, in joules, to lift a basket weighing 88 newtons a total of 3 meters?

Answers

Answer 1

The amount of work done to lift a basket weighing 88 newtons a total of 3 meters can be calculated using the formula:

Work = Force x Distance x Cos(theta)

where Force is the weight of the basket, Distance is the height it is lifted, and theta is the angle between the force and the direction of motion (in this case, theta is 0 since the force is acting vertically upwards and the basket is also moving vertically upwards).

So, the amount of work done is:

Work = 88 N x 3 m x Cos(0)

Since Cos(0) = 1, the equation simplifies to:

Work = 88 N x 3 m x 1

Work = 264 Joules

Therefore, the amount of work done to lift the basket weighing 88 newtons a total of 3 meters is 264 Joules.

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Related Questions

One of the solid reactants was treated in a coffee grinder before adding to

the reaction container. *

O

A. Concentration

B. Temperature

C. Surface Area

D. Catalyst

E. Agitation

Answers

Answer:

C. Surface area

Explanation:

The rate of  chemical reaction depends on various factors such as:

concentration and pressurenature of reactantstemperaturesurface areapresence of catalyst, etc.

Effect of surface area of reactants: the rate of a chemical reaction can be increased by increasing the the area of contact of the reacting substances. This is especially important when one or more of the reactants are solids., because only the particles of the solid that are exposed are able to take part in the reaction at each instant of time. Therefore, the greater the surface area of the solid reactant particles the faster the reaction.

The surface area of solid reactants can be increased by grinding or pelletizing, thus allowing for a greater contact between the reacting particles,

The instance in which one of the solid reactants was treated in a coffee grinder before adding to the reaction container is one way of increasing the surface area of a reactant.

What kind of potential energy does a diver on a diving board have?

Answers

Take a look at the image attached.

On my whiteboard, I have showed a picture of this scenario.

First let's review potential energy.

Potential energy is energy that is stored,

which can be used to do work.

However, there are specific types of potential energy.

The potential energy here would be gravitational potential energy.

Anything that is raised above Earth's surface has the potential to

fall which is why we call it gravitational potential energy.

Gravitational potential energy has to do more with position

or the position of an object in a gravitational field.

As the diver dives into the water, that gets

turned into kinetic energy shown at the bottom.

What kind of potential energy does a diver on a diving board have?

Answer:

Gravitational Potential Energy

Explanation:

Like the diver on the diving board, anything that is raised up above Earth's surface has the potential to fall because of gravity. Sorry about the last one hope this answer helps.

What is a parametrization of a curve in the xy plane?

Answers

A parametrization of a curve in the xy plane is a method of expressing the coordinates of each point on the curve as functions of a single parameter.

A parametrization of a curve in the xy plane is a method of expressing the coordinates of each point on the curve as functions of a single parameter. When a curve is given in terms of parametric equations, it is possible to define the curve using a set of parametric equations.

A curve is defined as a continuous function of at least one variable. A curve in the xy-plane is a graph that consists of a set of points (x,y), where x and y are real numbers.

A parametric curve is a curve that is defined using parametric equations, which are equations that express the coordinates of each point on the curve as functions of a single parameter. The parameter is usually denoted by t, but it can be any letter or symbol.

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The diagram shows how states of matter can change when energy is either added or removed.
System before change
System after change
00000
00000
00000
00000
00000
00000
00000
All of these statements below are true EXCEPT
Energy was added to the matter causing the particle movement to increase.
The matter changed states which is a physical change.
The particles in the matter before the change had more energy than after the change.
The particles in the matter before the change had less energy than after the change

Answers

A change in temperature frequently causes substances to change phases. Most substances are solid at low temperatures; as the temperature rises, they become liquid; and at still greater temperatures, they become gaseous.

Melting is the conversion of a solid into a liquid (an older term that you may see sometimes is fusion). Solidification is the process where a liquid turns into a solid. The melting point, or the temperature at which a pure substance begins to melt, is a property of that substance. A solid must expend energy to become a liquid. A specific quantity of energy is required by every pure substance in order to transform from a solid to a liquid. This amount is known as the substance's enthalpy of fusion (or heat of fusion).

The complete question is- The diagram shows how states of matter can change when energy is either added or removed.

System before change

System after change

00000

00000

00000

00000

00000

00000

00000

All of these statements below are true EXCEPT

Energy was added to the matter causing the particle movement to increase.

The matter changed states which is a physical change.

The particles in the matter before the change had more energy than after the change.

The particles in the matter before the change had less energy than after the change.

the diagram is attached below.

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The diagram shows how states of matter can change when energy is either added or removed.System before

A person walking in high heals can damages the floor by making small dimples in the
floor since all their weight is concentrated on the tip of the high heal. It the person
weighs 81 kg and the high of the tip of the high heal is 3.5 cm2, what is the force over
the floor?
SHOW WORK IF POSSIBLE TANKS A LOT

Answers

Answer:

2 314.28571 kg / m

Explanation:

divide

and you see

When two oceanic plate boundaries meet, this crustal feature forms?
A)
sea floor spreading
B)
volcanic island arc
C)
plate tectonics

Answers

The correct answer is B

Which is a primary energy source used by power plants to generate electricity
A:wind power
B:solar
C:coal
D:hydropower

Answers

Answer:

it would be coal

Explanation:

coal is the most used energy source in many countries as of China , India and, the United States

Coal is a primary energy source used by power plants to generate electricity

Electricity generation plants convert the chemical energy of fuel into electricity. Coal, oil, natural gas and nuclear fuels are the energy sources most commonly used for generating electricity.

What is coal ?

"Coal is a combustible black or brownish-black sedimentary rock with a high amount of carbon and hydrocarbons. Coal is classified as a nonrenewable energy source because it takes millions of years to form. Coal contains the energy stored by plants that lived hundreds of millions of years ago in swampy forests."

What is electricity?

"A fundamental form of energy observable in positive and negative forms that occurs naturally (as in lightning) or is produced (as in a generator) and that is expressed in terms of the movement and interaction of electrons. "

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A bowling ball with a mass of 8kg strikes a pin that is at rest and has a mass of 2. The pin flies forward with a velocity of 8m/s and the ball continues forward at 2 m/s. What was the original velocity of the ball?

Answers

The required original velocity of the bowling ball is calculated to be 6 m/s.

The total momentum prior to and following a collision are identical in a closed system.

From the principle of conservation of momentum,

M × U + m × u = M × V + m × v ----(1)

Where,

M = Mass of the bowling ball (M = 8 kg)

m = Mass of the pin (m = 2 kg)

U = Initially, the bowling ball's speed

u = Initial velocity of the pin (u = 0 m/s)

V = Final velocity of the bowling ball (V = 2 m/s)

v = Final velocity of the pin (v = 8 m/s)

Substitute these values in (1) and to solve U:

8(U)+2(0) = 8(4)+2(8)

8U = 32 + 16

8U = 48

U = 6 m/s

Thus, the initial velocity of the bowling ball is calculated to be 6 m/s.

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NASA is currently working on sending humans to Mars by the 2030s. When astronauts arrive
on Mars, NASA intends to already have their food supply there. The food will be sent by an
unmanned spacecraft. It will then be stored, unrefrigerated, for five to seven years.
List at least two likely constraints and two likely criteria for this engineering design problem.

Answers

Answer:

With regards to NASA's ambition to send humans to Mars, is an encouraging idea.  Also, the aim of sending food supply by unmanned spacecraft before the 2030 project though noble is filled with constraints and design problems.

For the constraints,

1. The spacecraft could be lost on the space before it reaches its destination being Mars. This is because, lack of communication between the control unit on earth and the spacecraft signify it being lost forever.

2. The food supply is bound to spoil on Mars since it would be stored unrefrigerated. This is as a result of the actions of the micro organisms acting on them.

For the criteria for the engineering design problem:

1. The distance between earth and Mars is very far

2. Not factoring in the preservation method into the unmanned aircraft.

Explanation:

A spring with spring constant 58N/cm is stretched 4cm. How much force is it applying

Answers

Answer:

232 N

Explanation:

By Hooke's law, the force applied to a spring is proportional to the stretch of the spring, so

F = kx

Where F is the force, k is the spring constant and x is how much it is stretched.

So, replacing k by 58N/cm and x by 4 cm, we get

F = (58 N/cm)(4 cm)

F = 232 N

Therefore, the force applied is 232 N

If you pour hot soup into a bowl, and the bowl stays cool to the touch, you can assume that
A
the bowl is a good insulator of heat.

B
the bowl is a good conductor of heat.

C
the bowl’s temperature cannot be measured.

D
the bowl transfers most of its heat through radiation.

Answers

Answer:

A

Explanation:

since it did not absorb the heat then it is an insulator

A, As the bowl didn’t absorb any heat it is a good insulator of heat

HELP!! will sulfur and oxygen atoms most likely form an ionic bond or covalent bond?

Answers

Answer: covalent bond

Explanation:

since sulfur and oxygen are both non-metals it forms a covalent bond

Most likely, sulfur and oxygen atoms create a covalent bond.

What is an ionic bond?

Ionic bonding includes an electron transfer, in which one atom acquires an electron and the other loses an electron.

One of the ions formed has a negative charge (anion), whereas the other has a positive charge (cation)

The atoms link together to create a molecule because their opposing charges attract one other.

The type of chemical bond that involves the transfer of electrons between atoms will be an ionic bond.

Covalent bonds are chemical bonds that keep atoms of different elements together while sharing electrons.

Hence, most likely, sulfur and oxygen atoms create a covalent bond.

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4) from the plots, determine the short-circuit current corresponding to the same value of field current which produced the rated open-circuit voltage.

Answers

Short circuit current vs field current slope from the curve for If=0.2 and If=0.4.

Slope = (Isc(If=0.4)-Isc(If=0.2))/2

An electric current modern-day is a circulation of charged debris, which include electrons or ions, transferring through an electrical conductor or space. it's miles measured because the net charge of go with the flow of electrical charge thru a floor or into a manipulated volume.

The current flowing in a circuit may be utilized in a diffusion of approaches from producing warmness to inflicting circuits to exchange, or statistics to be stored in an integrated circuit.

There are three simple currents utilized in business healing electric stimulation units: direct cutting-edge, alternating contemporary, and pulsed modern-day.

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the average braking force of a 1000-kg car moving at 10 m/s braking to a stop in 5 s is (hint: write out the equation you are using before plugging in numbers)

Answers

The average braking force required to stop the car in 5 seconds is 2000 N.

The average braking force of a 1000-kg car moving at 10 m/s and coming to a stop in 5 seconds can be calculated using the formula:

Braking force = (mass x velocity) / time

Substituting the given values, we get:

Braking force = (1000 kg x 10 m/s) / 5 s = 2000 N

Therefore, the average braking force required to stop the car in 5 seconds is 2000 N.

It's important to note that this calculation assumes that the car is undergoing uniform deceleration. Real-world situations can be more complex, as factors such as road conditions and braking system efficiency can affect the actual braking force required.

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What is it called when we have two gears connected by a chain in when large gear turns wants to small gear turns two or more times

Answers

You have to make sure you don’t use the first gear any more to be able to use the

You are interested in space travel and want to learn more facts about space travel.
Which would be the best source of information? (2 points)
The Star Wars web page NASA web page
A book about planets
A magazine article

Answers

Answer:

A Book about Planets

Explanation:

Answer:

Nasa web page

Explanation:

Which one best represents the heat capacity of a system represented by identical quantum harmonic oscillators?

Answers

Even when we don't know its exact location, a classical particle has a specific position at a specific moment. For a quantum particle, this is no longer valid. The probability densities and energy eigenfunctions for the quantum oscillator go over the boundaries of the conventional turning points.

The analog of the classical harmonic oscillator in quantum mechanics is called the quantum harmonic oscillator. One of the most crucial model systems in quantum mechanics is the arbitrary smooth potential, which is one of the most common ways that a smooth potential can be represented as a harmonic potential at a stable equilibrium point. It is referred to as "harmonic" because the solution of Newton's second law, a second-order differential equation that governs the motion of the item, is a series of sines and cosines of time with a specific frequency, exactly like the outcome.

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In a solar system, two comets pass near the sun, which is located at the origin. comet e is modeled by quantity y plus 16 end quantity squared over 400 plus x squared over 144 equals 1 and comet h is modeled by quantity y plus 13 end quantity squared over 144 minus x squared over 25 equals 1 comma where all measurements are in astronomical units. part a: what are the vertices for the path of comet e

Answers

The vertices of the path of the comet e are (-12,0) and (+12,0) as it is moving an elliptical path.

Given, that the Sun is located at the origin.

Comet e is modeled by

((y + 16)²)/400 + (x²)/144 = 1

This is an equation of an ellipse. So, the path traveled by Comet e is an elliptic path.

Comparing with the Standard equation of ellipse:

((y - k)²)/(b²)+ ((x - h) ²)/(a ²) = 1

whose, Centre is (h,k) and Vertex is (h±a, 0)

On Comparing Centre (h, k), h= 0 and k = -16 &

a²=144

a = 12

and,

b²=400

b=20

So, Centre (0, -16),

Vertex (-12,0) and (+12,0)

So, the vertices of the path of the comet e are (-12,0) and (+12,0).

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What is the mathematical relationship between current, resistance, and voltage?

Answers

Answer:

q=IR

Explanation:

q is voltage

I is current

R is resistance

FILL THE BLANK.
the energy density of most enteral formulas is between _____.

Answers

The energy density of most enteral formulas is between 1.0 and 2.0 kilocalories per milliliter (kcal/mL).

The energy density of enteral formulas refers to the amount of calories (energy) contained within a given volume of the formula. Enteral formulas are specially designed liquid nutrition products used for individuals who are unable to consume food orally or have difficulty absorbing nutrients from solid food.

The energy density of most enteral formulas typically falls within the range of 1.0 to 2.0 kilocalories per milliliter (kcal/mL). This range allows for flexibility in meeting individual energy needs based on factors such as age, medical condition, and nutritional requirements.

Enteral formulas with lower energy density, such as 1.0 kcal/mL, are often used for individuals who require a lower calorie intake or have specific dietary restrictions. These formulas may be recommended for those with certain gastrointestinal disorders or conditions where a slower rate of nutrient delivery is desired.

On the other hand, enteral formulas with higher energy density, such as 1.5 or 2.0 kcal/mL, are utilized when higher calorie requirements need to be met within a smaller volume. These formulas may be beneficial for individuals with increased energy needs, such as those recovering from surgery, trauma, or severe malnutrition.

It's important to note that the energy density of enteral formulas can vary among different brands and types of products. Additionally, the choice of an enteral formula and its energy density should be made under the guidance of a healthcare professional or registered dietitian, considering the specific nutritional needs of the individual.

Hence, The energy density of most enteral formulas is between 1.0 and 2.0 kilocalories per milliliter (kcal/mL).

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Which of the following does NOT travel in a vacuum?
w) radio waves
x) gamma rays
y) magnetic waves
z) sound waves

Answers

Answer:

Z -- SOUND WAVES

What is the symbol for this please?​

What is the symbol for this please?

Answers

Answer:

the symbol stands for cell

А______
is a unit of measurement for energy. (7 Letters)

Answers

Answer:

Joule or kilowatt/hour

Which of ONE of the following four elements has the most metallic properties?

The atomic numbers of the elements are listed below.
12
14
16
17​

Answers

Answer:

12 (Magnesium- Mg)

Explanation:

Looking at the four numbers, we have:

Magnesium, Silicon, Sulfur, and Chlorine.

We can eliminate two of the answers immediately just by looking at the periodic table.

Sulfur and Chlorine are on the nonmetal side of the periodic table. So that's definitely not it. That leaves Magnesium and Silicon.

Silicon is a Metalloid. Magnesium is an Alkaline earth Metal.

Metaloids are elements that have a mix of both metal and nonmetal properties (luster, how it feels, etc.). Since it's a MIX and Magnesium is just straight METAL-

We can say Magnesium has the most metallic properties.

hope this helps!!

for a resistor, what resistance corresponds to a short circuit? for an uncharged capacitor, what value capacitance corresponds to a short circuit? explain your answers. repeat for an open circuit.

Answers

Zero resistance or capacitance value corresponds to a short circuit, which is the travel of current along an unintended path.

True short circuits happen when electrical circuit wires or wire connections are exposed or broken; they need to be identified and addressed as soon as possible. When there is a low resistance connection between two conductors supplying electricity to a circuit, a short circuit happens.

A "ideal" open circuit would have zero capacitance. A capacitor with 0 capacitance has no electrical charge accumulating on its plates or conductors. Zero capacitance means it can become fully charged as soon as the current is flown through it.

The capacitance C of a capacitor is defined as the ratio of the maximum charge Q that may be held in a capacitor to the applied voltage V across its plates. In other terms, capacitance is the capacity of the device to store the most charge per volt:

C = Q/V.

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Find the force required to do 25 joule work when the force causes a displacement of 0.5m

Answers

Answer: Force required to 25 joule work when the force causes a displacement of 0.5m is 50N

Explanation: To calculate the work done we use the formula

W=F.s                               (1)

W= work done

F=  force applied               s= displacement

Given, work done W= 25 joules= 25 J

displacement s= 0.5m

∴From equation (1) we get the force required when work is done and displacement is given, that is

F\(=\frac{W}{s}\)                                (2)

∴Force required \(F=\frac{W}{s}= \frac{25J}{0.5m}=50N\)            

(1 J is the work done by a force of 1 N acting over a displacement of 1 m and so 1 J= 1 Nm⇒ 1 N = 1 J/m)

ANS: Force required to do 25 J work when a force causes displacement of 0.5m = 50 N

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A ball with a mass of 0.7 kg is thrown straight upward, flies up to its maximum height, and
then falls back down. If the ball was initially thrown with a kinetic energy of 250.1 joules,
how much potential energy will the ball have at its maximum height? Round your answer to
the tenths place.

Answers

Answer:

250.05 J

Explanation:

From the question given above and, the following data were obtained:

Mass (m) = 0.7 kg

Kinetic energy (KE) = 250.1 J

Potential energy (PE) =?

Next, we shall determine the velocity of the ball. This can be obtained as follow:

Mass (m) = 0.7 kg

Kinetic energy (KE) = 250.1 J

Velocity (v) =?

KE = ½mv²

250.1 = ½ × 0.7 × v²

250.1 = 0.35 × v²

Divide both side by 0.35

v² = 250.1 / 0.35

Take the square root of both side

v = √(250.1 / 0.35)

v = 26.73 m/s

Next, we shall determine the maximum height reached by the ball. This can be obtained as follow:

Initial velocity (u) = 26.73 m/s

Final velocity (v) = 0 m/s (at maximum height)

Acceleration due to gravity (g) = 9.8 m/s²

Maximum height (h) =.?

v² = u² – 2gh (since the ball is going against gravity)

0² = 26.73² – (2 × 9.8 × h)

0 = 714.4929 – 19.6h

Collect like terms:

0 – 714.4929 = – 19.6h

– 714.4929 = – 19.6h

Divide both side by –19.6

h = –714.4929 / –19.6

h = 36.45 m

Finally, we shall determine the potential energy of the ball at the maximum height. This can be obtained as follow:

Mass (m) = 0.7 kg

Acceleration due to gravity (g) = 9.8 m/s²

Maximum height (h) = 36.45 m

Potential energy (PE) =?

PE = mgh

PE = 0.7 × 9.8 × 36.45

PE = 250.05 J

Thus, the potential energy at the maximum height is 250.05 J.

In materials such as metals, the outer shell electrons are loosely bound to the nuclei of their atoms and are free to move from one atom to another. These materials are good conductors. Is this true or false?

Answers

In materials such as metals the outer most electrons are loosely bound and therefore their movement is chaotic, this allows for the transportation of energy in form of electricity therefore, this materials are good conductors. The statement is true.

Is this spring or winter?

Is this spring or winter?

Answers

The season is Spring

Due in a few minutes plzzzz help! Will mark brainliest

Due in a few minutes plzzzz help! Will mark brainliest

Answers

Answer:

1. 960

2. 16.6666

3. 0.41666666666

4. 10

Explanation:

A*V=W

A*120=50

V=I*R

R being resistance

(I'm not a 100% sure on 2 & 3)

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