stranded copper wire is used in most automotive electrical circuits because it ________.

Answers

Answer 1

Stranded copper wire is used in most automotive electrical circuits because it is flexible, durable, and able to carry high amounts of current. The multiple strands also provide a better surface area for conducting electricity, which can improve the overall performance of the electrical system in the vehicle.

These little, bundled wires are crushed, then covered in non-conductive insulation. Because stranded wire is more flexible, it is perfect for bending and twisting to fit complex shapes or connecting electronic components in small areas. Stranded wire won't split or sever and is more malleable and flexible than solid wire. It is frequently utilised for indoor applications including speaker lines, circuit boards, and electronic devices.

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Answer 2

Stranded copper wire is used in most automotive electrical circuits because it is flexible, durable, and able to handle high electrical currents without overheating.

Additionally, the multiple strands of wire in a stranded copper wire provide more surface area for electrical current to flow through, reducing resistance and minimizing voltage drop.

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Related Questions

how should email be considered similar to a phone call

Answers

Answer:

Emails and phone calls are both common forms of communication that are used in professional and personal settings. There are several similarities between email and phone calls:

1. Both are asynchronous forms of communication: Unlike instant messaging or face-to-face conversations, both emails and phone calls allow the sender or recipient to respond at their convenience. They don't require immediate attention or an instant response.

2. Both are written forms of communication: While phone calls rely on spoken words, emails are written. As a result, both can be used to convey detailed information and allow the sender to carefully consider their words before sending.

3. Both are forms of direct communication: Emails and phone calls both allow for direct communication between two parties. This can be beneficial for discussing sensitive information or resolving issues quickly.

4. Both can be used for formal and informal communication: Emails and phone calls can be used in both personal and professional contexts. They are both flexible forms of communication that can be adapted to fit different situations.

5. Both require attention to tone and etiquette: Just like with phone calls, emails require attention to tone and proper etiquette. Both forms of communication should be approached professionally and respectfully to ensure effective communication.

In conclusion, while there are differences between emails and phone calls, there are also similarities that make them useful communication tools. Both allow for direct, asynchronous communication and can be adapted to fit different situations.

Explanation:

A(n) is built only after an engineer can prove sound design through structural analysis.

Answers

Answer:

Prototype

Explanation:


10. Which one of the following statements expresses a true proportion?
OA. 2.1 1.2
OB. 54:9 = 6:3
OC.79-8.9
OD. 34 9:12

Answers

Answer:

OB. 54:9 = 6:3.

Explanation:

A proportion must be written in the form of an improper or proper fraction, with the exception that there will be a ":" between the numbers, instead of a division symbol. The only option that meets this requirement is answer B, therefore, B is the correct answer.

A circular bar supports an axial force of 39 KN. If the compressive stress in the bar is not to exceed
80 MN/m2, determine the diameter of the bar. ​

Answers

The diameter of the bar is 55.85 KN

What does "bar diameter" mean?

A circular bar supports an axial force of 39 KN. If the compressive stress in the bar is not to exceed 80 MN/m2,

If you want to get the nominal diameter in inches, multiply the bar size by 80/39. For instance, the diameter of #8 rebar is 80/39 inches (or 1 inch). The weight, nominal area, and nominal diameter are common metrics.

The formula below may be used to determine the minimal diameter of round bar given the width and height of flat bar. Square Bar Minimum Diameter = Square Root of Flat Bar's Width and Height in Inches.

\(\sqrt{}\)80 * 39 = 55.85

The diameter of the bar is 55.85 KN

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True or False? A constricting nozzle is used
to create, concentrate, and direct the high-
velocity plasma.

Answers

Answer:

True

Explanation:

Principles of plasma arc cutting, Uses a constricting nozzle to create, concentrate,  and direct the high-velocity plasma. Plasma gas is always used

in plasma arc cutting When shielding gas is also used, the process is called dual flow plasma arc cutting. I hope this helps.

 

For modeling and calculation purposes, architects treat air as an incompressible fluid. As an architect's intern, you are doing the specs on a dorm air conditioning system that is designed to replace the air in each room every twenty-nine minutes. If the rooms each have a volume of 175 m3 and they are supplied by ducts with a square cross section, determine the following. (a) the length of each side of a duct if the air speed in the duct is to be 3. 2 m/s m (b) the length of each side of a duct if the air speed at the duct is to be a value twice this speed. M

Answers

(a) To determine the length of each side of a duct if the air speed in the duct is to be 3.2 m/s, we can use the equation:

Volume flow rate = Area x Air speed

The volume flow rate is the volume of air that needs to be supplied to each room every 29 minutes, which is:

Volume flow rate = 175 m^3 / 29 min = 6.03 m^3/s

The area of the duct can be found by rearranging the equation:

Area = Volume flow rate / Air speed

Substituting the given values, we get:

Area = 6.03 m^3/s / 3.2 m/s = 1.885 m^2

Since the duct is square, each side of the duct will have the same length, which is:

Side length = sqrt(Area) = sqrt(1.885 m^2) = 1.373 m

Therefore, the length of each side of a duct if the air speed in the duct is to be 3.2 m/s is 1.373 m.

(b) To determine the length of each side of a duct if the air speed at the duct is to be twice the previous speed, we can use the same equation:

Volume flow rate = Area x Air speed

The volume flow rate is still the same, but the air speed is now 2 x 3.2 m/s = 6.4 m/s. Substituting the values, we get:

Area = 6.03 m^3/s / 6.4 m/s = 0.941 m^2

The length of each side of the duct is:

Side length = sqrt(Area) = sqrt(0.941 m^2) = 0.970 m

Therefore, the length of each side of a duct if the air speed at the duct is to be twice the previous speed is 0.970 m.

A pmos transistor conducts when the control the output is _____.

Answers

A PMOS transistor conducts when the control input (gate) is LOW or at a logic level of 0.

In a PMOS transistor, the source is connected to VDD (the positive supply voltage), and the drain is connected to the output (load). When the gate of the PMOS transistor is at a logic level of 0 or LOW, it creates a channel between the source and drain, allowing current to flow from the source to the drain and turning the transistor ON. This results in a low resistance path between the output and VDD, allowing a high logic level to be present at the output.

Conversely, when the gate of the PMOS transistor is at a logic level of 1 or HIGH, it blocks the channel between the source and drain, preventing current from flowing and turning the transistor OFF. This results in a high resistance path between the output and VDD, causing the output to be pulled up to VDD through a resistor, which translates to a logic level of 0 at the output.

Therefore, a PMOS transistor conducts when the control input (gate) is at a logic level of 0, and it does not conduct when the control input (gate) is at a logic level of 1.

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The declaration property used to set the text color on a web page is

Answers

Answer:

color

Explanation:

Without more context I cannot be sure that this is correct, but I believe you are looking for the CSS declaration property of "color".

Have a nice day!

     I hope this is what you are looking for, but if not - comment! I will edit and update my answer accordingly.

- Heather

In JavaScript object notation processing, which statements are true about the JSON data structures? Select all that apply.
1-JSON is called JavaScript object notation.
2-JSON is often used in REST web APIs.
3-JSON is dependent to language and platform.
4-JSON is a light-weight data exchange format.
A-1-2-3
B-2-3-4
C-1-3-4
D-1-2-4

Answers

JSON stands for JavaScript Object Notation. JSON data structures is a light-weight data exchange format.

JSON is dependent on language and platform. JSON is often used in RESTful web APIs. The correct statements about JSON data structures are:

1. JSON is called JavaScript object notation

.2. JSON is often used in REST web APIs.

4. JSON is a light-weight data exchange format.Therefore, the main answer is option D: 1-2-4. However, it is important to note that JSON is not dependent on language and platform. It is an independent data exchange format that is widely used for data transmission.

To answer this question more than 100 words:

The JSON (JavaScript Object Notation) data structures are a lightweight data exchange format. It is called JavaScript object notation. It is often used in REST web APIs. The main benefit of using JSON is its readability for both humans and machines. It is simple to read and write JSON data, which makes it easy to parse and generate data across various languages and platforms.JSON data structures are used in a variety of contexts. It is commonly used as a data interchange format for web applications and RESTful web APIs. When web applications request data from servers or APIs, the data is often returned in the form of JSON. JSON structures are easy to create and parse, making them a popular choice for data exchange between web applications. JSON is an independent data exchange format that is widely used for data transmission. It is not dependent on any specific language or platform. This makes it a popular choice for data exchange across different platforms and systems.In conclusion, JSON is a light-weight data exchange format that is widely used in REST web APIs. It is independent of language and platform. JSON structures are simple to read and write, making them easy to parse and generate data across various languages and platforms.

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Calculate the B/CB/CB/C ratio for the following cash flow estimates at a discount rate of 777% per year.Item Cash FlowFW of benefi ts, $ 30,800,000AW of disbenefi ts, $ per year 105,000First cost, $ 1,200,000M&O costs, $ per year 400,000Life of project, years 20

Answers

Per year 400,000Life of project, years 20. The discount rate is the interest charge commercial banks and other financial institutions make to the Federal Reserve Bank in order to borrow short-term money. Thus, option D is correct.

What cash flow estimates at a discount rate?

The formula for benefit-cost ratio is: Benefit-Cost Ratio = ∑ Present Value of Future Benefits / ∑ Present Value of Future Costs.

A project determined to have exactly equal benefits and costs B/C ratio equals precisely one). A systematic process for calculating and comparing benefits and costs of a project. Measure calculated by dividing the incremental monetized benefits related to a project by the incremental costs of that project.

Therefore, The present value of future cash flows is computed using a rate of return known as the discount rate in a discounted cash flow analysis. An examination of discounted cash flows shows. Per year 400,000Life of project, years 20

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Can someone tell me what car year and model this is please

Can someone tell me what car year and model this is please

Answers

Answer:

i think 1844

Explanation:

2005 BMW 5 Series , that should be it

What is factors to be consider when designing a road waywhat are the factors consider what are the factors considered when designing a roadway ​

Answers

Highway design involves the consideration of three major factors (human, vehicular, and roadway) and how these factors interact to provide a safe highway. Human factors include reaction time for braking and steering, visual acuity for traffic signs and signals, and car-following behaviour.

A PBX/PABX has seven telephone channels to a public exchange.During the busy hour on average 3.4 lines are occupied (a) what is the traffic intensity during the busy hour?

Answers

Enthalpy Changes the overall energy change in the substance portrayed in the graph at  48°C.

What are the data that were obtained from the question?

Mass (m) = 0.3 Kg

Initial temperature (T1) = 20°C

Heat (Q) added = 35 KJ

Specific heat capacity (C) = 4.18 KJ/Kg°C

Final temperature (T2)

The final temperature of water can be obtained as follow:

Q = MC(T2 – T1)

35 = 0.3 x 4.18 (T2 – 20)

35 = 1.254 (T2 – 20)

Clear the bracket

35 = 1.254T2 – 25.08

Collect like terms

1254T2 = 35 + 25.08

1.254T2 = 60.08

Divide both side by the coefficient of T2 i.e 1.254

T2 = 60.08/1.254

T2 = 47.9 ≈ 48°C

Therefore, the final temperature of the water is 48°C.

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while developing a new type of bearing that was meant to replace a recalled model, a minor quality issue was discovered. the bearings should have a diameter of 23 mm, with a /-1 mm tolerance. a few bearings have been found to deviate from these limits. which diagramming tool can be used to determine the work process's accuracy?

Answers

Control chart diagramming tool can be used to determine the work process's accuracy.

What is Control chart ?

The control chart is a graph used to study how a process changes over time. Data are plotted in time order. A control chart always has a central line for the average, an upper line for the upper control limit, and a lower line for the lower control limit. These lines are determined from historical data.

What are the main purposes of control charts?

Control charts show if a process is in control or out of control. They show the variance (or variation) of process output over time. Control charts compare this variance against upper and lower limits to see if it fits within the expected, specific, predictable and normal variation levels.

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An engine operates on the theoretical diesel cycle with a compression ratio of 15. the heat addition (combustion) process corresponds to 10% of the stroke. the pressure and temperature of air at the beginning of compression (state 1) are 98 kpa and 17oc. on a cold air-standard basis, the thermal efficiency of the diesel cycle can be expressed as:

Answers

Answer is illustrated through images attached.

Here compression ratio is 15.

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An engine operates on the theoretical diesel cycle with a compression ratio of 15. the heat addition
An engine operates on the theoretical diesel cycle with a compression ratio of 15. the heat addition
An engine operates on the theoretical diesel cycle with a compression ratio of 15. the heat addition
An engine operates on the theoretical diesel cycle with a compression ratio of 15. the heat addition

A well-hydrated human body is made up of about _______ percent water.

Answers

Answer:

70%

Explanation:

Answer:


70%


Explanation:


A well-hydrated human body is made up of about 70% water :)


Hope that helps

In an HVAC system, the purpose of pneumatics is to serve as
A. a controller.
B. a source of conditioning.
C. conditioned air flow.
D. an energy source.
(It’s not A)

Answers

A. a controller. Pneumatics is used as a controller in an HVAC system, as it can be used to control and monitor the pressure, temperature, and flow of the air in the system.

What is HVAC system?

HVAC stands for Heating, Ventilation and Air Conditioning. It is a system that controls the temperature, humidity, air quality and air circulation in an enclosed space. The system typically consists of a furnace, air conditioner, thermostat, ducts, and vents. The furnace heats the air while the air conditioner cools it, and the thermostat helps to regulate the temperature. The ducts distribute and move the air through the building. The vents allow air to move into and out of the building and regulate the amount of air flow. The HVAC system is used to provide comfort and optimal air quality for the occupants of a building. It also helps to maintain a healthy indoor environment by controlling humidity levels and preventing the growth of mold or other allergens.


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Label the following statements as either T (true) or F (false).
1) For Propane (C3H8) burning with theoretical amount of air, the air-fule ratio on the mole basis is 5.
2) The enthalpy of any substance at the standard reference state is 0.
3) 180% of theoretical air is equivalent to 80% of excess air.
4) The conservation of mass principle requires that the total number of moles on each side of a chemical reaction is equal.
5) The adiabatic flame temperature of methane (CH4) burning with pure oxygen and theoretical amount of air is the same, all other conditions being the same.

Answers

Answer:

1 its 1 bc you have to do it step by step

Explanation:

step by step

While operating your small UA, it accidentally strikes your crewmember in the head causing him to lose consciousness. When should this accident be reported?a. 10 days.
b. the remote pic.
c. Within 10 days of the accident.
d. Within 50 days of the accident.

Answers

The accident should be reported to the remote pic and within 10 days of the accident, as per the regulations regarding accidents involving UA operations.

According to the Federal Aviation Administration (FAA) regulations for Unmanned Aircraft Systems (UAS) operation, any accident involving a small UAS that results in serious injury, loss of consciousness, or property damage of at least $500 must be reported to the FAA within 10 days of the occurrence.

It's important to note that accidents involving UAS can have serious consequences, and it's crucial to prioritize safety and follow all regulations and guidelines to prevent accidents from happening in the first place.

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The distribution of the earliest public buildings in the highlands of Peru suggests that highland peoples shared a religious tradition. These buildings were first identified at the site of ________.

Answers

The earliest public buildings in the highlands of Peru, indicating a shared religious tradition among highland peoples, were first identified at the site of Chavín de Huántar.

The distribution of early public buildings in the highlands of Peru, particularly the presence of specific architectural features and artistic motifs, points to a common religious tradition among highland peoples. The site of Chavín de Huántar, located in the Andean highlands of Peru, stands out as a significant archaeological site where these early public buildings were first identified.

Chavín de Huántar is renowned for its monumental architecture, including the Chavín temple complex, which served as a religious center during the Chavín culture (circa 900 BCE to 200 BCE). The presence of similar architectural elements and religious symbolism at Chavín de Huántar and other highland sites suggests a shared belief system and religious practices among the ancient highland peoples of Peru.

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You are driving on a roadway with multiple lanes of travel in the same direction, and are approaching an emergency vehicle parked along the roadway. You must:a. Leave the lane closest to the emergency as soon as it is safe to do so, or slow down to a speed of 20 MPH below the posted speed limit.b. Yield to the emergency vehicle.c. If you are in the lane closest to the emergency vehicle, immediately come to a complete stop and ask if anyhelp is needed.d. All of the above.

Answers

Answer: a. Leave the lane closest to the emergency as soon as it is safe to do so, or slow down to a speed of 20 MPH below the posted speed limit.

Explanation:

Giving a way to the law enforcement vehicle and a medical emergency vehicle is necessary. If one approaches an emergency vehicle parked along the roadway one should change the lane as the vehicle may not move and the driver may also waste his or her time also one should also slow down his or her speed while approaching the vehicle as most of the emergency vehicle are in rush to reach the hospital so the driver should maintain some distance with the medical emergency vehicle.

at what stage in a turbine engine are gas pressures the greatest?

Answers

The greatest gas pressures in a turbine engine are typically seen in the combustion chamber. This is the section where fuel is burned, and the resulting hot gases are used to power the engine's turbines.

The pressure in the combustion chamber can reach several times atmospheric pressure, with some designs capable of producing pressures of up to 80 bar.

The reason for the high pressure in the combustion chamber is due to the need to generate sufficient force to drive the turbines. As the gases expand and exit the combustion chamber, they are directed through a series of turbine blades that convert the pressure and heat energy into rotational force. The greater the pressure in the combustion chamber, the greater the force that can be produced by the turbines.

It is worth noting that while the combustion chamber typically has the highest gas pressures in a turbine engine, other sections of the engine may experience significant pressure differentials. For example, the compressor section must generate enough pressure to compress incoming air and feed it into the combustion chamber, while the exhaust section must manage the pressure of the exiting gases to maintain efficient engine operation.

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select three of the prerequisites for becoming a civil engineer

Answers

Aspiring civil engineers generally begin their college careers by enrolling in chemistry, physics, and advanced mathematics courses. Some programs may include classes in computer-aided design (CAD) as part of the core requirements.


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One of the three machines is having issues (the old one). The reliability of this machine is characterized by mean time between failures of 48 hours and a mean time to repair of 5 hours. Determine using the values from the previous problem:
(a) What is the machines availability?
(b) Taking into account the availability of the machine only for its operation time, determine its average hourly production rate.
(c) Since the machine is old I am limited to what I can do to it to improve its reliability. Suggest what I might do to keep up with the production quotas that Ford requires.
(d) The machine is from Germany and is metric. Unfortunately, all the wrenches we have in the plant are English system. To access the panel to make repairs, four 13 mm bolts must be removed. Will the 1/2 inch wrenches I supply my workers with work, or will I need to go one size larger? (e) Repair time could be reduced if I could lift the machine up with a forklift. My forklift is rated for one ton, but the German manufactured machine is rated at 1000 kg. Will the forklift work?

Answers

The machine's availability is calculated using the MTBF and MTTR values, while the average hourly production rate considers the machine's availability during its operation time.

How can the machine's availability and average hourly production rate be determined?

(a) The machine's availability can be determined using the formula Availability = MTBF / (MTBF + MTTR). Substituting the given values, we can calculate the availability of the machine.

(b) To determine the average hourly production rate, we need to consider the machine's availability during its operation time. We can calculate the production rate by multiplying the machine's availability by the desired production rate.

(c) Since the machine is old and limited in terms of reliability improvements, some suggestions to meet Ford's production quotas could include optimizing maintenance schedules, implementing proactive maintenance practices, training operators to identify early signs of issues, and keeping critical spare parts readily available.

(d) To determine if the 1/2 inch wrenches will work for removing the 13 mm bolts, we need to convert inches to millimeters. If 1 inch is approximately equal to 25.4 mm, we can compare the sizes to see if the 1/2 inch wrench is compatible or if a larger size is needed.

(e) To determine if the forklift can lift the machine, we need to convert tons to kilograms. If 1 ton is equal to 1000 kilograms, we can compare the forklift's capacity of one ton to the weight of the German machine rated at 1000 kg to see if it falls within the forklift's lifting capacity.

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Which of the following is an example of biomimicry? (Select all that apply.)
a ceramic material that can be given a rough, natural-seeming texture
a support material designed like cartilage in the human body
a synthetic polymer whose internal composition is similar to tree sap
a wood material that when sanded smooth looks remarkably like stone

Answers

Answer:

a synthetic polymer whose internal composition is similar to tree sap

a support material designed like cartilage in the human body

a ceramic material that can be given a rough, natural-seeming texture

Explanation:

all of these mimic naturally occurring structures/phenomenon

For a manufacturing process that produces copper tubing, a(n) would track the variability of the tubing's diameter. A. R-chart B. x-bar chart C. p-chart D.m-chart E. v-chart

Answers

A. R-chart An R-chart, also known as a range chart, is used to track the variability or dispersion of a manufacturing process.

It is commonly used in statistical process control (SPC) to monitor the consistency of a process over time.

In the case of copper tubing production, an R-chart would be suitable for tracking the variability of the tubing's diameter. The chart displays the range (the difference between the largest and smallest values) of a set of samples taken from the manufacturing process. By analyzing the range values, one can assess whether the process is producing tubing with consistent diameter or if there is excessive variability.

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The distance between the centers of the two arms of a U-tube open to the atmosphere is 30 cm, and the U- tube contains 20-cm-high alcohol in both arms. Now the U-tube is rotated about the left arm at 4.2 rad/s. Determine the elevation difference between the fluid surfaces in the two arms.

Answers

The U-tube is rotated about the left arm at a speed of 4.2 rad/s. The distance between the centers of the two arms of the U-tube open to the atmosphere is 30 cm, and both arms contain 20-cm-high alcohol.

We need to determine the elevation difference between the fluid surfaces in the two arms.In order to determine the elevation difference between the fluid surfaces in the two arms, we'll use Bernoulli's equation as follows:P₁ + ρgh₁ + 1/2 ρv₁² = P₂ + ρgh₂ + 1/2 ρv₂²Here, P₁ and P₂ are the pressures at points 1 and 2, respectively. ρ is the density of the fluid. h₁ and h₂ are the heights of points 1 and 2, respectively. v₁ and v₂ are the velocities of the fluid at points 1 and 2, respectively. Since both the arms contain alcohol, their density is the same.

Therefore, the density term cancels out from both sides of the equation. P₁ and P₂ are atmospheric pressures, so they are also the same. We can ignore them. The velocity at point 1 is zero because it's at rest. We need to find the difference in elevation, so we can subtract h₁ from h₂.

Therefore, the equation becomes:0 + 0 + 0 = 0 + (h₂ - h₁)g + 1/2 v₂²where g is the acceleration due to gravity, and we've ignored the factor of 1/2 ρv₁² since v₁ is zero. The velocity of the fluid at point 2 can be calculated using the formula:v = ωrwhere ω is the angular velocity, and r is the radius of rotation. Since the U-tube is rotated about the left arm, the radius of rotation is 15 cm.

Therefore, v = 4.2 × 0.15 = 0.63 m/s. Substituting this value in the equation, we get:0 = (h₂ - h₁)9.8 + 1/2 (0.63)²Rearranging the terms, we get:(h₂ - h₁) = (1/2 × 0.63²)/9.8 = 0.020 mTherefore, the elevation difference between the fluid surfaces in the two arms is 0.020 m. Answer: 0.020 m.

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An electric motor converts electrical energy into mechanical energy. how do we get the mechanical energy?

Answers

The conversion of electrical energy into mechanical energy in an electric motor is made possible by the interaction between magnetic fields, which produces the necessary force to generate motion.

An electric motor works on the principle of electromagnetism, which involves the interaction between an electric current and a magnetic field. When an electric current is passed through a wire that is placed within a magnetic field, the wire experiences a force and starts to move.

When an electric current is passed through the wire, it creates a magnetic field that interacts with the magnetic field of the permanent magnet or electromagnet.

This interaction produces a force that causes the coil to rotate around the metal core, creating mechanical energy.The rotation of the coil is then transferred to the motor's shaft, which is connected to the mechanical system that needs to be powered.

The mechanical energy produced by the motor can be used to drive various types of machinery, such as fans, pumps, or conveyor belts, depending on the specific application.

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Write the function removeIfFound () which removes all copies of a particular value from an array. The function returns the number of values removed. Here's a short example: int al50]110, 54, 81, 45, 95, 25, 10, 95j; size t size- 8; int removed-removeIfFound(a, size, 10); The example shown here removes all copies of the value 10 from the array a. Both a and size are modified by the function. In this case, since there are two copies of 10, size is changed to 6 and the function returns 2. Be especially careful when writing your code that you don't skip values that are contiguous in the array. For instance, if you remove 2 from 11, 2, 2, 2, 1}, you should end up with (1, 1).

Answers

The removeIfFound() function is designed to remove all occurrences of a specific value from an array.

It takes the array, the current size of the array, and the value to be removed as input parameters. The function modifies the array and updates the size accordingly. The function returns the number of values that were removed from the array.

The removeIfFound() function can be implemented using a simple loop. It iterates over the elements of the array, checks if each element matches the value to be removed, and removes it if there is a match. To ensure that contiguous values are not skipped, we need to shift the remaining elements of the array to fill in the gaps left by the removed values.

Here is a possible implementation of the removeIfFound() function in C++:

cpp

Copy code

size_t removeIfFound(int arr[], size_t& size, int value) {

   size_t count = 0;

   size_t i = 0;

   

   while (i < size) {

       if (arr[i] == value) {

           // Shift remaining elements to fill the gap

           for (size_t j = i; j < size - 1; ++j) {

               arr[j] = arr[j + 1];

           }

           --size;

           ++count;

       } else {

           ++i;

       }

   }

   

   return count;

}

In this implementation, we use a variable count to keep track of the number of values that have been removed. The loop iterates over the array and checks if each element matches the value to be removed. If a match is found, the loop shifts the remaining elements to the left by one position, effectively removing the current element. The size of the array is decremented, and the count is incremented. If there is no match, the loop proceeds to the next element. Finally, the function returns the count of removed values.

By using this removeIfFound() function, you can remove all occurrences of a specific value from an array while maintaining the order of the remaining elements.

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5. Refrigeration refers to space temperatures that are below

What the correct answer?

Answers

Explanation:

The term refrigeration means cooling a space, substance or system to lower and/or maintain its temperature below the ambient one (while the removed heat is rejected at a higher temperature). In other words, refrigeration is artificial (human-made) cooling.

Refrigeration, is the act of removing undesirable heat from one thing, substance, or space and transferring it to another object, substance, or space.

What is refrigeration?

Refrigeration refers to the process of chilling an area, material, or system in order to decrease and or keep its temperature below that of the surrounding environment.

Refrigeration, sometimes known as chilling, is the act of removing undesired heat from one item, substance, or area and transferring it to another.

The temperature can be lowered by using ice, snow, cooled water, or mechanical refrigeration to remove heat.

Hence,refrigeration, is the act of removing undesirable heat.

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