If W = 55J and t = 5s, calculate the power exerted. If W = 55J and t = 5s, calculate the power exerted.​

Answers

Answer 1

If W = 55J and t = 5s, the power exerted is approximately 11 watt.

What is power?

The rate at which work is completed or energy is moved is known as power. It is described as the rate of doing work or the amount of energy per unit of time.

The Watt (W), which is equal to one joule per second (1 J/s), is the SI unit of power. By dividing the amount of effort or energy transferred by the amount of time involved, one can compute power.

The formula for power is:

Power = Work / time

Given

W = 55 J

t = 5 s,

We can substitute these values in the formula to calculate the power:

Power = 55 J / 5 s

Power = 11 J/s or 11 Watts

Therefore, the power exerted is 11 Watts.

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Related Questions

Which of the following is NOT true about drawings and specifications?

Answers

Answer:

sorry but we can't tell the answer because your not showing the drawings and specifications.

true or false a second -degree burn may develop blisters

Answers

The answer would be true. During a second degree burn the top two layers of the skin are affected, which at times may result in painful blisters.

True. A second-degree burn can indeed develop blisters.

Second-degree burns are characterized by damage to both the outer layer of skin (epidermis) and the layer beneath it (dermis).

Blisters can form as a result of the burn, with the damaged skin producing fluid-filled pockets. Blisters in second-degree burns are often painful and can be a characteristic sign of this type of burn.

Third-degree burns are less painful than second-degree burns because third-degree burns result in nerve damage, which reduces feeling.

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The equation for true stress is expressed as ________ while the equation for true strain is expressed as _________. After necking begins, the equation ___________ must be used to determine true strain.

Answers

Answer:

stress = σ = F / A

strain = ε = ΔL / L

After necking the equation σt = F / Aneck

                                             εt = ln( A / Aneck)

Explanation:

Simple Gear Train With Idler Gear Mechanism ASAP WILL GIVE BRAINLEIST

Simple Gear Train With Idler Gear Mechanism ASAP WILL GIVE BRAINLEIST
Simple Gear Train With Idler Gear Mechanism ASAP WILL GIVE BRAINLEIST
Simple Gear Train With Idler Gear Mechanism ASAP WILL GIVE BRAINLEIST

Answers

Answer:

1. A input and output will turn in same direction

2. b input and output will turn in opposite direction

3. b reversible

Explanation:

Answer:

1. the second, bc an idler allows it to turn the direction.

Explanation:

2. the opposite, 3. reversible

need help with auto class

need help with auto class

Answers

Answer:

  11.25 mm

Explanation:

The points where readings are taken are shown in the attachment corresponding to the step described in the directions.

Step 3: The final reading is ...

  11 mm + (1/10)×2.5 mm = 11.25 mm

need help with auto class

What information does marginal analysis help a firm to determine?

Answers

Answer:

The goal is to determine if the costs associated with the change in activity will result in a benefit that is sufficient enough to offset them.

Explanation:

Marginal analysis is an examination of the associated costs and potential benefits of specific business activities or financial decisions.

A vehicle's suspension has to balance what two competing desires?

Answers

Answer:

A vehicle's suspension has to balance the competing desires of comfort and handling (or stability).

Explanation:

The balancing act between comfort and handling in a vehicle's suspension is necessary to provide an optimal driving experience. Here's why:

Comfort: One desire is to ensure a smooth and comfortable ride for the occupants of the vehicle. A suspension system that effectively absorbs road imperfections, bumps, and vibrations helps reduce the impact felt inside the vehicle, providing a more comfortable experience. This is particularly important for passenger cars and vehicles used for long-distance travel.

Handling/Stability: The other desire is to enhance the vehicle's handling and stability. A suspension system that provides good handling characteristics helps the vehicle maintain proper traction, stability, and control during maneuvers such as cornering, braking, and acceleration. It improves the overall safety and performance of the vehicle, especially in situations that require precise control and responsiveness, such as sporty driving or emergency maneuvers.

Achieving the right balance between comfort and handling in the suspension system involves design considerations, such as selecting appropriate springs, shock absorbers, and other components, as well as tuning the suspension geometry. The goal is to provide a comfortable ride without sacrificing stability and control.

Ultimately, striking the right balance between comfort and handling ensures that the vehicle delivers a pleasant and safe driving experience, catering to the needs of both the driver and the passengers.

I hope this helps. Cheers! ^^

Does anyone know how to do this on tynker!??

Does anyone know how to do this on tynker!??

Answers

Answer:yea❤️

Explanation:

Usually when I tinkle I dont post it But it can be a cool think to do just try hard and do ur best!

Perchuty (P. z fan ce the Treffe resistivalyThe law of resistivity.

Answers

We can see here that the law of resistivity, also known as Ohm's law, states that the electrical resistance of a conductor is directly proportional to its resistivity and length, and inversely proportional to its cross-sectional area.

How is law of resistivity represented?

The Law of resistivity can be mathematically represented as:

R = ρ × (L / A)

Where:

R is the electrical resistance of the conductor,

ρ (rho) is the resistivity of the material,

L is the length of the conductor, and

A is the cross-sectional area of the conductor.

The resistivity (ρ) is a characteristic property of a material that quantifies its ability to resist the flow of electric current. It depends on the nature of the material, its temperature, and sometimes its purity. Resistivity is measured in ohm-meters (Ω·m).

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What will happen to the aircraft speed if the drag force becomes more than the thrust force ? Help

Answers

Answer:

Explanation:

If the forces of thrust and drag are balanced, an aircraft doesn't move. It is only when thrust overcomes drag that a plane moves forward. When drag is greater than thrust, the plane is pushed backward,

please  

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If in level flight, the engine power is reduced, the thrust is lessened, and the aircraft slows down. As long as the thrust is less than the drag, the aircraft continues to decelerate. To a point, as the aircraft slows down, the drag force will also decrease. The aircraft will continue to slow down until thrust again equals drag at which point the airspeed will stabilize

Resistance in a circuit that has 35 mA of current and 5.6 V applied equals.

Answers

Answer:

R = 160 Ω

Explanation:

For this problem, we will simply apply Ohm's law to find the resistance in the circuit.  Ohm's law is as follows:

Voltage = Current x Resistance

We can solve the law for resistance:

Resistance = Voltage / Current

And now we just plug in our values:

Resistance = 5.6V / 35mA

Resistance = 5.6V / 0.035 A

Resistance = 160 Ω

Hence the resistance of the circuit is 160 Ω.

Cheers

Which of these simple machines will require the least effort to lift a load? Explain yours answer.
1. A machine with a greater load distance
2. A machine with a smaller effort distance
3. A machine with a greater effort distance
4. A machine with an effort and load distance ​

Answers

Answer:

3. A machine with a greater effort distance

Explanation:

According to the formula for calculating mechanical advantage (MA) in simple machines, which is given by MA = Load distance / Effort distance, a larger effort distance would result in a larger mechanical advantage. This means that with a larger effort distance, a given amount of effort would be able to overcome a larger load.

3. A machine with a longer effort distance: This would presumably need less work since the effort is delivered over a longer distance, resulting in a bigger mechanical advantage and requiring less effort to move the load.

ITS FOR DRIVERS ED!!

the letters i need to unscramble are: e,i, r, i, d, l, p, v, r, n, e, g, i, g, i

ITS FOR DRIVERS ED!!the letters i need to unscramble are: e,i, r, i, d, l, p, v, r, n, e, g, i, g, i

Answers

I got “driving is a privilege”
Yeah I’m guessing its that as well ^

Help me is it a b c or d?

Help me is it a b c or d?

Answers

b is the correct answer of this question

What was the most technologically advanced car in the 90's

Answers

Answer:

There were several technologically advanced cars in the 1990s, including the Mitsubishi 3000GT, Porsche 959, and Williams FW15C Formula One car. It is difficult to determine a single car as the "most technologically advanced" since advancements varied across different models and manufacturers. However, the 1993 Williams FW15C is often considered one of the most technologically advanced Formula One cars of all time , featuring advanced electronics, active suspension, and advanced aerodynamics. Additionally, the 90s were a golden decade for technologically advanced Japanese cars , including iconic models like the Nissan Skyline GT-R and Toyota Supra.

Explanation:

Answer:

While there were many advanced cars in the 90's the McLaren F1 was one of the most technologically advanced cars in the '90s.

Hope this helps:))

Question: 10 of 15
QUESTION:
Which of the following determines the size of a fillet weld?
POSSIBLE ANSWERS:
O Crown height
O Leg length
O Porosity
O Root opening width
Submit Answer
Skip Question

Answers

Answer:

Leg length

Explanation:

The distances from the root to the edges of the legs (toes) and the height of the crown are basic measurements.

One integrated circuit design calls for the diffusion of arsenic into silicon wafers; the background concentration of As in Si is 2.5 x 1020 atoms/m. The predeposition heat treatment is to be conducted at 1000°C for 45 minutes, with a constant surface concentration of 8x 10^26 As atoms/m³. At a drive in temperature of 1100°C, determine the diffusion time required for a junction depth of 1.21m. For this system, values of Q and Do are 4.10 eV and 2.29x10^3m/s, respectively.

One integrated circuit design calls for the diffusion of arsenic into silicon wafers; the background

Answers

The diffusion time that is needed for the junction depth of 1.21 m is given as 13875 seconds

How to solve for the diffusion time

background concentration of As in Si is 2.5 x 10²⁰ atoms/m

tp = 1000°c

tp = 45 minutes

= 45 x 60 seconds

surface concentration = 8x 10^26

Td = 1100°c

Junction depth = 1.2

= 1.2 x 10⁻⁶m

qd = 4.10ev

Do = 2.29 x 10⁻³

We have to use the equation

\(Dp = Doexp(-\frac{qd}{kTP} )\\\\= (2.23 * 10^-^1^3 m^2/s) exp [-\frac{4.10}{8.62*10^-^5 *(1000+273)} ]\)

= 1.36 x 10⁻¹³

From the relation that we have here

\(Qo = 2cs\sqrt{\frac{Dpte}{pi} } \\\\= 2 * 8* 10^2^6*\sqrt{\frac{1.36*10^-^1^3(45*60)}{pi} }\)

Qo = 1.73 x 10¹³

Dd at 1100

\(Dd = 2.29*10^-^3exp(\frac{-4.10}{8.62x10^-^5)(1100 + 273)}\)

Dd = 2.06 x 10⁻¹⁸m²/s

From the relation we have

\(exp[\frac{(1.2 * 10^-^6)^2}{4*(2.06x10^-^1^8)+d} ]=\frac{1.73*10^1^9}{2.5x10^2^0*\sqrt{pi*2.06*10^-^1^8x+d} }\)

\(ln\frac{2.72*10^7}{\sqrt{+d} } =\frac{1.75*10^5}{+d}\)

Using heat and trial, we would have the value of +d = 13875 seconds

The diffusion time is 13875 seconds

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Given a force of 72 lbs at a distance of 15 ft, calculate the moment produced.​

Answers

Answer:

1425.78 N.m

Explanation:

Moments of force is calculated as ;

Moments= Force * distance

M= F*d

The S.I unit for moment of force is Newton-meter (N.m)

Given in the question;

Force = 72 lbs

1 pound = 4.45 N

72 lbs = 4.45 * 72=320.4 N

Distance= 15 ft

1ft= 0.3048 m

15 ft = 15*0.3048 = 4.57 m

d= 4.57 m

M= F*d

M=320.4*4.57 =1425.78 N.m

what is shown in the above figure

Answers

Answer:

there is no figure .....

If an object rolls over______(type of material), then it will______ (describe the prediction of distance it will travel)

Answers

If an object (ball) rolls over the ground (type of material), then it will come to a stop as the friction from rolling operates in the opposite direction to the velocity of the object (ball).

How do rolling frictions work?

When an object rolls on another, like a car's wheels on the ground, rolling friction, or frictional force, results.

When objects roll over a surface, there is friction that is applied to them. A soccer ball rolling along the ground, for instance, will come to a stop because the rolling friction works in the opposite direction of the ball's motion. In comparison to static or sliding friction, rolling friction is far less powerful.

Therefore, This explains why wheels are used by the majority of ground transportation methods, such as bicycles, cars, four-wheelers, roller skates, scooters, and skateboards. Rolling friction is also used in ball bearings.

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When might you need to convert units in relation to engineering? What must you carefully consider during the process of converting units?

Answers

A person might need you to convert units in relation to engineering because it help  one to have accuracy and avoid any form of confusion in measurement.

What must you carefully consider during the process of converting units?

The factors to consider are:

Always Write the conversion as a kind of a fraction that is equals to one.Do Multiply it out and remove all units in the answerThen also Cancel any units that are seen in the top and bottom.

Hence, A person might need you to convert units in relation to engineering because it help  one to have accuracy and avoid any form of confusion in measurement.

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Roundabouts have significantly lower crash and fatality rates than intersections.
O True
O False

Answers

Answer:

True

Explanation:

Apparently roundabouts reduce injury crashes by about 75%

Select the tasks performed by a space operations specialist.

a. operate satellite electronic systems
b. apply system operational procedures
c. analyze satellite operational status
d. analyze Internet chatter
e. track enemy targets
f. analyze maps of weapons development

Answers

Note that a space operations specialist will:

operate satellite electronic systems (Option A)apply system operational procedures (Option B)analyze satellite operational status (Option C).

Who is a space operation specialist?

Space operations specialists typically work in the field of aerospace or satellite engineering, and their primary responsibilities involve maintaining and operating satellite systems and other space-related equipment.

They may also be responsible for monitoring the status of satellite systems, analyzing data from satellite missions, and developing procedures for operating satellite systems.

Note that Space operations specialists operate in space operations centers.

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You are driving on a public road and need to tum your vehicle around. You can use a three-point turn
Whether the road is straight or curved, but not if the road is on a hill.
in place of a U-turn, if there is a sign prohibiting a U-turn.
O Only where U-turns are permitted, and only if the road is too narrow for your vehicle to make a U-turn and you cannot go
around the block.

Answers

Only where U-turns are permitted, and only if the road is too narrow for your vehicle to make a U-turn and you cannot go.

Tech A says wire size is very important. Tech B says there are two scales used to measure wire size. Who is correct?

Answers

Answer:

teach b says there are two scales used to measure wire size

Explanation:

Answer:

b

Explanation:

In your opinion...
Do you think a product that measures distance could be included in a game or activity for you or others? If so, how?

Answers

Answer:no

TTHANLS FOR FREE POINTS

Explanation:

Technician a says that when more air is entering a spray booth than is removed it is considered to have negative pressure technician b say the negative air pressure draws more overspray through spray booth filters than positive air pressure Who’s right

Answers

Technician A is incorrect and Technician B is correct.

In a spray booth, when the amount of air entering the booth is greater than the amount of air being removed, it is considered to have positive pressure. Conversely, when the amount of air being removed is greater than the amount of air entering, it is considered to have negative pressure. Therefore, Technician A's statement is incorrect.

On the other hand, Technician B's statement is correct. Negative air pressure can draw more overspray through spray booth filters because it creates a vacuum effect that draws in the overspray and helps prevent it from escaping into the rest of the work area. This is why spray booths are designed to have a negative pressure differential to help control overspray and keep the work environment safe.
Both Technician A and Technician B are correct in their statements, but they are referring to different aspects of the spray booth operation.

Technician A is correct in stating that when more air is entering the spray booth than is being removed, it is considered to have negative pressure. Negative pressure means that the pressure inside the spray booth is lower than the pressure outside. This setup helps to contain the overspray and fumes within the booth, minimizing the risk of spreading them to the surrounding areas.

Technician B is also correct in stating that negative air pressure draws more overspray through the spray booth filters than positive air pressure. When the spray booth has negative pressure, it creates a suction effect. This suction draws the overspray particles towards the filters, improving their efficiency in capturing and removing the overspray from the air.

In summary, both technicians are correct in their statements. The negative pressure in the spray booth helps contain the overspray, and it also enhances the effectiveness of the booth's filters in capturing the overspray particles.

what you guys like the best

what you guys like the best
what you guys like the best
what you guys like the best
what you guys like the best
what you guys like the best

Answers

Answer:

I Don't Know

Explanation:

Which describes how fast-moving particles assist in transferring thermal energy to a cup after hot tea is poured into it?.

Answers

Fast-moving particles assist in transferring thermal energy to a cup after hot tea is poured into by colliding with slow-moving particles.

What is thermal energy?

Thermal energy is also referred to as heat and it can be defined as a form of energy that is transferred from one physical object to another, especially due to a difference in temperature.

During the process of heat conduction, thermal energy is primarily transferred between objects with different degrees of temperature and materials that are directly in contact with each other but differ in their ability to either accept or donate electrons.

Additionally, thermal energy is generally transferred from a hotter object (body) to a cooler one, provided that there is no external work done.

In conclusion, fast-moving particles assist in transferring thermal energy to a cup after hot tea is poured into by colliding with slow-moving particles.

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Answer: ✔B.) They collide with slow-moving particles.

Explanation:

Which of the following identifies the limitations of green engineering?
A. competition and cost
B. resources and cost
C. geography and cost
D. pollution and cost

Answers

Answer:

Resources and Cost

Explanation:

Cost: Sustainable choices can value a lot of as a result of they price makers more to provide. Thus, there'll always be an oversized initial investment once selecting a green element for your home. Resources: Sustainable materials don't seem to be always as without delay available as their less eco-friendly alternatives.

Hope it helps!<3

Answer:

resources and cost

Explanation:

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During one month, Minstrel purchased $203,000 of raw materials on credit; issued materials to production of $200,000 of which $25,000 were indirect. Minstrel incurred a factory payroll of $155,000, of which $35,000 was indirect labor. Minstrel uses a predetermined overhead rate of 150% of direct labor cost. 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