As permitted, installing cables of entirely nonmetallic sheaths into the top of a surface-mounted enclosure through one or more nonflexible raceways, the raceways shall be not less than and not more than in length, provided they meet all of the following conditions: a. Nonmetallic-sheathed cable secured within in from where it emerges from the raceway. b. The raceway comes out of the top of the enclosure and making sure it does not penetrate a C. A fitting is needed at each end of the raceway, and it must remain accessible after the install in order to protect against d. Raceways must be to prevent access into the enclosure through the raceway. in. e. The cable sheath must be and extend into the enclosure at least a f. The raceway must be g. When cable(s) are installed in raceways as mentioned above, what NEC Table and Chapter provide guidance on the cable fill requirements for complete conduit and tubing systems, which this is to be considered. Table Chapter

Answers

Answer 1

a. Nonmetallic-sheathed cable secured within 12 inches from where it emerges from the raceway.
b. The raceway comes out of the top of the enclosure and making sure it does not penetrate a wall or structural ceiling.
c. A fitting is needed at each end of the raceway, and it must remain accessible after the installation in order to protect against physical damage.
d. Raceways must be sealed or plugged to prevent access into the enclosure through the raceway.
e. The cable sheath must be continuous and extend into the enclosure at least 1/4 inch.
f. The raceway must be securely fastened at its outer end and at other points in accordance with the applicable article.
g. When cable(s) are installed in raceways as mentioned above, the NEC Table 1, Chapter 9 provides guidance on the cable fill requirements for complete conduit and tubing systems, which this is to be considered.

According to the National Electrical Code (NEC), when installing cables of entirely nonmetallic sheaths into the top of a surface-mounted enclosure through one or more nonflexible raceways, the raceways shall be not less than 18 inches and not more than 10 feet in length, provided they meet all of the following conditions:

a. Nonmetallic-sheathed cable secured within 12 inches from where it emerges from the raceway.
b. The raceway comes out of the top of the enclosure and making sure it does not penetrate a wall or structural ceiling.
c. A fitting is needed at each end of the raceway, and it must remain accessible after the installation in order to protect against physical damage.
d. Raceways must be sealed or plugged to prevent access into the enclosure through the raceway.
e. The cable sheath must be continuous and extend into the enclosure at least 1/4 inch.
f. The raceway must be securely fastened at its outer end and at other points in accordance with the applicable article.
g. When cable(s) are installed in raceways as mentioned above, the NEC Table 1, Chapter 9 provides guidance on the cable fill requirements for complete conduit and tubing systems, which this is to be considered.

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Related Questions

what is Auto Cad? and some should help me the drawing of it?​

Answers

What is Auto Cad?

Answer : AutoCAD is a commercial computer-aided design (CAD) and drafting software application. Developed and marketed by Autodesk, AutoCAD was first released in December 1982 as a desktop app running on microcomputers with internal graphics controllers.

This is the Answer for your question :3

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what is Auto Cad? and some should help me the drawing of it?

After a strong storm, a worker does not realize that a power transmission line has fallen on his car and is electrocuted while opening the car door. What is this an example of?.

Answers

Answer:

This is an example of the conduction of electricity through metal. Free moving electrons on the car will conduct a electric field when a voltage is applied to the car;  in this case the transmission line, and would flow through the metal to the door handle causing electrocution.

Question 2

A car suspension system consisting of a spring and viscous damper carries a mass of 250kg.

The damping coefficient, c, of the damper is 100Ns/m and the spring stiffness, k, is 640 N/m.

The road surface subjects the system to a sinusoidal force of 10N at an angular frequency of 2

rad/s.

a. Form a differential equation that represents the system.

(5 marks)

Answers

A differential equation that represents the system is

using Newtons law of motion

Mx: - (-cx· - kx + F)

Mx: + cx· + kx - F

250x: + 100x· + 640x = 10 sin (2t)

What is a differential equation?

An equation that connects one or more unknown functions and their derivatives is known as a differential equation in mathematics. In practical settings, functions typically represent physical quantities, derivatives their rates of change, and the differential equation establishes a connection between the two.

Differential equations are widely used in many fields, including engineering, physics, economics, and biology, as a result of the prevalence of these relationships.

Studying differential equations primarily entails learning about the solutions—the collection of functions that satisfy each equation—and the solutions' characteristics. The only differential equations that can be solved with explicit formulas are the simplest; however, many properties of a given differential equation's solutions can be determined without performing an exact calculation.

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Consider a vertical piston/cylinder system. The piston has a mass of 35 kg and has an unknown radius. There is a pressure gauge to output the pressure inside the cylinder. If the piston is compressed and the pressure gauge reads 300 kPa. What is the area of the piston

Answers

Answer:

Area of the piston = 1.143 * 10^-3 m^2

Explanation:

Here, we are tasked with calculating the area of the piston.

Mathematically, the area of the piston =

Piston force/ cylinder pressure

From the question,

Piston force = mg where m is the mass of the piston = 35 kg and g is the acceleration due to gravity = 9.8 m/s^2

Thus, piston force = 35 * 9.8 = 343 N

Now the pressure gauge reads 300 KPa and 1KPa = 300 * 10^3 Pa = 300000 Pa

Thus, the area of the piston = 343/300000 =

0.001143333333 m^2 which is simply 1.143 * 10^-3 m^2

How does concurrent engineering speed up product development?

A. The product and process are designed using computer-aided design.
B. The product and process are designed in series.
C. The product and process are designed in separate spaces.
D. The product and process are designed simultaneously.

Answers

Answer:

The product and process are designed simultaneously

Explanation:

PENN

This wired networking standard specifies the order in which data is sent through the network.
Select one:
a. Ethernet
b. WiMAX
c. LTE
d. TCP/IP

Answers

The wired networking standard that specifies the order in which data is sent through the network is Ethernet.

Ethernet is a widely used wired networking standard that defines the protocols and specifications for data transmission over a local area network (LAN). It specifies the order in which data is sent through the network by utilizing the Carrier Sense Multiple Access with Collision Detection (CSMA/CD) algorithm.

The CSMA/CD algorithm ensures that multiple devices connected to an Ethernet network can share the same communication medium without interfering with each other. Before transmitting data, a device using Ethernet listens to the network to detect if it is clear to send data. If the network is busy, it waits for an opportune moment. Once the network is clear, the device sends the data, constantly monitoring for collisions. If a collision occurs (when two or more devices transmit data simultaneously), they stop transmitting, wait for a random period of time, and then retry.

By following this protocol, Ethernet ensures orderly and efficient data transmission within the network, minimizing collisions and maximizing data throughput. It has become the de facto standard for wired local area networks due to its reliability, scalability, and widespread adoption.

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problem resulting from using a seat warmer for too long, it is called by ___

Answers

The problem resulting from using a seat warmer for too long is called "Toasted Skin Syndrome." In rare situations, the condition may cause skin cancer.

Toasted Skin Syndrome is also known as erythema ab igne. It is a condition that causes skin discoloration and pigmentation due to prolonged exposure to low heat. This condition is generally caused by extended periods of exposure to heat sources such as a laptop, heating pad, hot water bottle, or seat warmer. The heat source doesn't have to be too hot to cause this condition.

It takes long-term exposure to lower heat to create this problem. Toasted skin syndrome appears like a spotty or patchy reddish or brownish discoloration of the skin. It is most frequently seen on the thighs, arms, and legs, but it can occur anywhere on the body.

This is a non-cancerous condition that can go away on its own once the heat source has been removed. The affected skin may feel warm, itchy, or tender to the touch. Furthermore,  Therefore, it is essential to take precautions to avoid prolonged exposure to heat sources.

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When a customer makes a purchase at Wal-Mart, the sales system, after recording that transaction at its POS (point of salE. terminal transmits that data to the company that supplies the item that was purchased. As determined by the inventory level of that item, the supplier company may restock the item in that Wal-Mart store. This process IS: A) supply chain management B) demand chain management C) vendor-managed inventory D) enterprise resource planning inventory E) just-in-time inventory

Answers

the process of transmitting data from Wal-Mart's sales system to the supplier company for restocking is an example of supply chain management. This process is important for businesses because it allows them to reduce costs, increase efficiency, and improve customer satisfaction.

The process described above is an example of supply chain management. Supply chain management involves the coordination of all activities involved in the production and delivery of a product or service, from the supplier of raw materials to the end customer.

In this case, Wal-Mart is the customer, and the supplier company is responsible for restocking the item that was purchased. This involves the supplier monitoring the inventory levels of their product at Wal-Mart and ensuring that they have enough stock to meet demand. By doing this, the supplier is able to maintain a good relationship with Wal-Mart, as they are able to provide the product that the customer wants, when they want it.

Supply chain management is important for businesses because it allows them to reduce costs, increase efficiency, and improve customer satisfaction. By working closely with their suppliers, businesses can ensure that they have the right amount of inventory at the right time, reducing the risk of stockouts or overstocking. This can help to reduce costs, as well as improve cash flow by reducing the amount of money tied up in inventory.

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All of these are designed to absorb collision energy EXCEPT:
A. dimples.
B. slots.
C. crush zones.
D. reinforcements.

Answers

Answer:dimples

Explanation:

The option that is not designed to absorb collision energy is Reinforcements.

Thus option D (reinforcements)  is correct.

Here,

Reinforcements are designed to strengthen and support the structure of the vehicle, and not to absorb collision energy.

Automobiles have several safety features designed to protect drivers and passengers in the event of a collision. These safety features include airbags, seat belts, crumple zones, and several other components.

Among these safety features, the ones designed to absorb collision energy are dimples, slots, and crush zones. They are made to absorb the force of the impact during a collision and help prevent serious injuries to the occupants of the vehicle.

Therefore, the correct answer is D, reinforcements, which are not designed to absorb collision energy.

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Crude oil at 20 c fills the space between two concentric cylinders 250 mm high and with diameters of 150 mm and 156 mm. Find the torque is required to rotate the inner cylinder at 12 r min, the outer cylinder rernaining stationary

Answers

the torque is required to rotate the inner cylinder at 12 r min, the outer cylinder remaining stationary is 11.0807 N-m.

we have left out some other important details, such as the time required to reach that rpm, whether the beginning state is at rest, and the axis around which the cylinder is revolving. However, we'll suppose that it will be 60 seconds (time is necessary to convert rpm to angular acceleration)

rotation around the center axis

Angular acceleration = torque + MOI

Currently, angular acceleration equals 2 rpm/(t 60).

In order to avoid getting an extremely high figure, we estimated that the diameter of the cylinder was 600 mm rather than 600 meters: angular acceleration= 1.047 rad/s² MOI for cylinder across center dia= 1/4MR²+ 1/12ML²

MOI= 10.5833 kg-m

Now, the product of these two is torque.

11.0807 N-m of torque

Various MOI equations can be used to compute for different axes of rotation.

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The complete question is:

Crude oil at 20 c fills the space between two concentric cylinders 250 mm high and with diameters of 150 mm and 156 mm. Find the torque is required to rotate the inner cylinder at 12 r min, the outer cylinder remaining stationary.

Given the control objective of maintaining a constant temperature of an outlet stream of a leveling tank that includes a single inlet stream and a steam-powered heating coil:

Answers

Maintaining a constant temperature of an outlet stream of a leveling tank that includes a single inlet stream and a steam-powered heating coil is a crucial control objective. The outlet stream temperature of a leveling tank with a single inlet stream and a steam-powered heating coil is kept constant by controlling the flow of the heating fluid.

A steam-powered heating coil is used in a leveling tank to maintain a constant temperature of the outlet stream. The temperature of the outlet stream can be regulated by regulating the flow rate of the heating fluid, which is steam. Temperature sensors are used to detect the temperature of the outlet stream and provide feedback to the control system. The control system, in turn, regulates the flow of the heating fluid based on the feedback provided by the temperature sensors.

This is done by manipulating the opening and closing of a control valve that regulates the flow rate of the heating fluid in response to the temperature sensor's feedback.The control valve is connected to a controller that monitors the temperature sensor's output and adjusts the valve's opening or closing position to maintain the desired temperature setpoint. As a result, a closed-loop control system is used to maintain the desired outlet stream temperature.

Furthermore, since the control system is responsive to the temperature sensor's feedback, it can compensate for changes in the inlet stream flow rate and temperature, ensuring that the outlet stream temperature remains constant. In conclusion, a steam-powered heating coil is used in a leveling tank with a single inlet stream to maintain a constant outlet stream temperature, which is regulated by a closed-loop control system that is responsive to temperature sensor feedback.

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Where's an inductor most likely to be found in a power-supply circuit?

Answers

The main use for inductors as energy storage is in switch-mode power supplies, like the power supply in a PC. In the simpler, non-isolated switch-mode power supplies, a single inductor is used in place of a transformer and an energy storage component.

Which of the following is an example of a tax

Answers

Answer:

A tax is a monetary payment without the right to individual consideration, which a public law imposes on all taxable persons - including both natural and legal persons - in order to generate income. This means that taxes are public-law levies that everyone must pay to cover general financial needs who meet the criteria of tax liability, whereby the generation of income should at least be an auxiliary purpose. Taxes are usually the main source of income of a modern state. Due to the financial implications for all citizens and the complex tax legislation, taxes and other charges are an ongoing political and social issue.

I dont know I asked this to

Explanation:

Are spent lead acid batteries exempt from hazardous waste regulations if they are recycled?

Answers

Answer: Spent lead acid batteries (SLABs) are considered hazardous waste under the Resource Conservation and Recovery Act (RCRA) in the United States. However, they are exempt from the regulations that apply to other hazardous waste if they are recycled properly.

According to the Environmental Protection Agency (EPA), when spent lead acid batteries are recycled, they are considered a "universal waste" under RCRA. Universal wastes are certain types of hazardous waste that are considered less hazardous than other hazardous wastes and are subject to less stringent regulations. The regulations for universal waste are intended to encourage the collection and proper recycling or disposal of these materials.

To be considered for this exemption, the spent lead-acid batteries must be managed in accordance with the regulations for universal waste, which include proper labeling, storage, and transportation, as well as the requirement that the batteries be sent to a facility that is authorized to manage universal waste.

It is important to note that individual states may have different regulations regarding management and disposal of spent lead-acid batteries, so it is best to check with your state's environmental agency for specific information.

a building foundation made up of a base of poured concrete where finished flooring is installed on top of the cured concrete is best described as

Answers

The supporting load-bearing components of the structure will rest on footings that make up a slab on grade foundation. Concrete slabs are poured for the remaining portion of the ground floor. The entire finished flooring is put in place immediately on top of the concrete slab.

Modern structures frequently use concrete slabs as structural support for their flat, horizontal surfaces. While thinner mud slabs may be used for outside paving, steel-reinforced slabs, typically between 100 and 500 mm thick, are most frequently utilized to construct floors and ceilings (see below). The ground floor of many residential and commercial buildings is constructed from a large concrete slab that is either supported by foundations or rests directly on the subsoil. These slabs are often categorized as suspended or ground-bearing. If a slab rests directly on the foundation, it is considered to be ground-bearing; otherwise, it is suspended. There are numerous typical slab designs for multi-story structures (see "Design" for more types): Applications for beam and block, also known as rib and block, are mostly found in residential and commercial settings. Pre-stressed beams and hollow blocks make up this sort of slab, which is temporarily supported until it sets, usually after 21 days. A precast hollow core slab that is crane-installed on the job site. Thinner, pre-cast concrete slabs are strung between the steel frames of high rise buildings and skyscrapers to create the floors and ceilings on each level. Along with homes, high rise structures and sizable shopping centres also use cast in-situ slabs. Shutters and reinforced steel are used to cast these in-situ slabs on the spot.

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Which of these processes uses a die and a press to form parts?

A) Stamping

B) Tailor-rolling

C) Hydroforming

D) Tailor-welding

Answers

The process of die forming that uses a die and a press to form parts from the given processes is called; C: Hydroforming

What are some of the steps in the die forming operations?

There are different types of die forming in sheet metal operations. Now, Hydroforming is a specialized type of die forming that uses a high pressure hydraulic fluid to press room temperature working material into a die.

Tailor Welding is a process of making welded blanks made from individual sheets of steel of different thickness, strength and even coating that are joined together by the use of laser welding.

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The future and success of the electric car largely depend on the
development and improvement of one of its key components: the
battery. Science has been looking for alternatives to lithium for some time, such as graphene, carbon dioxide, zinc-air, but it seems that now a solution has begun to appear on the horizon: solid-state batteries.
Regarding solid-state batteries, investigate the following:
1. Describe the main features of the technology; eg how they operate, what they are made of, why they are called "solid state", what their components are.
2. Describe the reasons why it is considered a superior technology to the batteries currently used for electric vehicles. There are those who claim that they are the "holy grail" of batteries for electric vehicles.
3. Describe at least 3 potential benefits and 3 risks of the developed technology
4. Describe what would be the potential to produce (manufacture) this type of battery in Ecuador, if any.
5. Include the bibliography consulted, in an appropriate format.

Answers

1) The main Features of Solid-State Batteries are:

- Operation

- Composition

- Solid-State Designation

2) The reasons why we have a Superiority of Solid-State Batteries are:

- Energy Density

- Safety

- Faster Charging

3) The 3 potential benefits and risks are:

Potential Benefits:

- Improved Safety

- Longer Lifespan

- Environmental Friendliness

Potential Risks:

- Cost

- Manufacturing Challenges

- Limited Scalability

4) The potential for solid-state battery production in Ecuador would depend on various factors such as:
- access to the necessary raw materials.

- technological infrastructure.

- Research and development capabilities.

- Market demand.

5) Bibliography:

- Goodenough, J. B., & Park, K. S. (2013). The Li-ion rechargeable battery: A perspective. Journal of the American Chemical Society, 135(4), 1167-1176.

- Tarascon, J. M., & Armand, M. (2001). Issues and challenges facing rechargeable lithium batteries. Nature, 414(6861), 359-367.

- Janek, J., & Zeier, W. G. (2016). A solid future for battery development. Nature Energy, 1(7), 16141.

Manuel, J. (2021). Solid-state batteries: The next breakthrough in energy storage? Joule, 5(3), 539-542.

What are the benefits of Solid State Batteries?

1) The main Features of Solid-State Batteries are:

- Operation: Solid-state batteries are a type of battery that uses solid-state electrolytes instead of liquid or gel-based electrolytes used in traditional batteries. They operate by moving ions between the electrodes through the solid-state electrolyte, enabling the flow of electric current.

- Composition: Solid-state batteries are typically composed of solid-state electrolytes, cathodes, and anodes. The solid-state electrolyte acts as a medium for ion conduction, while the cathode and anode store and release ions during charge and discharge cycles.

- Solid-State Designation: They are called "solid-state" because the electrolytes used are in a solid state, as opposed to liquid or gel-based electrolytes in conventional batteries. This solid-state design offers advantages such as improved safety, higher energy density, and enhanced stability.

2) The reason why we have a Superiority of Solid-State Batteries is:

- Energy Density: Solid-state batteries have the potential to achieve higher energy density compared to conventional lithium-ion batteries. This means they can store more energy in a smaller and lighter package, leading to increased driving range for electric vehicles.

- Safety: Solid-state batteries are considered safer because they eliminate the need for flammable liquid electrolytes. This reduces the risk of thermal runaway and battery fires, addressing one of the key concerns with lithium-ion batteries.

- Faster Charging: Solid-state batteries have the potential for faster charging times due to their unique structure and improved conductivity. This would significantly reduce the time required to charge electric vehicles, enhancing their convenience and usability.

3) The 3 potential benefits and risks are:

Potential Benefits:

- Improved Safety: Solid-state batteries eliminate the risk of electrolyte leakage and thermal runaway, improving the overall safety of electric vehicles.

- Longer Lifespan: Solid-state batteries have the potential for longer cycle life, allowing for more charge and discharge cycles before degradation, leading to increased longevity.

- Environmental Friendliness: Solid-state batteries can be manufactured with environmentally friendly materials, reducing the reliance on rare earth elements and hazardous substances.

Potential Risks:

- Cost: Solid-state batteries are currently more expensive to produce compared to conventional lithium-ion batteries. This cost factor may affect their widespread adoption.

- Manufacturing Challenges: The large-scale production of solid-state batteries with consistent quality and high yields is still a challenge, requiring further research and development.

- Limited Scalability: The successful commercialization of solid-state batteries for electric vehicles on a large scale is yet to be achieved. Scaling up production and meeting the demand may pose challenges.

4) Potential for Battery Production in Ecuador:

The potential for solid-state battery production in Ecuador would depend on various factors such as:
- access to the necessary raw materials.

- technological infrastructure.

- Research and development capabilities.

- Market demand.

5) Bibliography:

- Goodenough, J. B., & Park, K. S. (2013). The Li-ion rechargeable battery: A perspective. Journal of the American Chemical Society, 135(4), 1167-1176.

- Tarascon, J. M., & Armand, M. (2001). Issues and challenges facing rechargeable lithium batteries. Nature, 414(6861), 359-367.

- Janek, J., & Zeier, W. G. (2016). A solid future for battery development. Nature Energy, 1(7), 16141.

Manuel, J. (2021). Solid-state batteries: The next breakthrough in energy storage? Joule, 5(3), 539-542.

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What is the uppermost part of the tree referred to as?

Answers

Answer:

canopy I believe it is called

Answer:

Canopy

Explanation:

The canopy of a tree is sometimes also called its “crown.” This part of the tree is the uppermost part, made up of branches, stems, and leaves for a deciduous tree. ... For evergreen trees, the canopy would include the branches, stems, and needles.

Layout the logical structure of the report.along with headings and subheadings

Answers

Answer:

The typical structure of a report, as shown on this page, is often referred to as IMRAD, which is short for Introduction, Method, Results And Discussion. As reports often begin with an Abstract, the structure may also be referred to as AIMRAD.

The steel bolt and anchor assembly is used to reinforce the roof of a passageway in an underground coal mine. The bolt is tensioned to 5000 lb. Determine the elastic potential energy in the bolt.

Answers

The elastic potential energy in the bolt is 1562.5 pound-force inches.

To determine the elastic potential energy in the bolt, we need to calculate the amount of elastic potential energy stored in the bolt due to its elongation. The elastic potential energy can be calculated using the formula:

Elastic Potential Energy = (1/2) · k · x²

Where:

k is the spring constant (also known as the bolt's stiffness)

x is the elongation or displacement of the bolt

To find the spring constant (k), we can use Hooke's Law, which states that the force exerted by a spring is directly proportional to its displacement.

Mathematically, it can be expressed as:

F = k x

Where:

F is the force applied to the bolt

x is the elongation or displacement of the bolt

In this case, the force applied to the bolt is 5000 lb and the elongation (x) is 5/8 in.

First, let's convert the force to pounds (lb) to pounds-force (lbf) because the unit of force in the US customary system is lbf. 1 lb = 1 lbf.

Force (F) = 5000 lb = 5000 lbf

Now, we can calculate the spring constant (k):

k = F / x

= 5000 lbf / (5/8 in)

= 5000 lbf / (5/8) lbf/in

= 5000 × (8/5) lbf/in

= 8000 lbf/in

Next, we can calculate the elastic potential energy:

Elastic Potential Energy = (1/2) · k · x²

= (1/2) · 8000 lbf/in · (5/8 in)²

= (1/2) · 8000 lbf/in · (25/64) in²

= (1/2) · (8000/64) lbf · 25 in

= 1562.5 lbf

Therefore, the elastic potential energy in the bolt is 1562.5 pound-force inches.

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Complete question =

The steel bolt and anchor assembly is used to reinforce the roof of a passageway in an underground coal mine. The bolt is tensioned to 5000 lb the whole bolt is 34 in long and the displacement or elongation of the bolt = 5/8 in

Determine the elastic potential energy in the bolt.

What is the last step in the engineering design process?

A. Implement the tested and optimized design on a broad scale.

B. Build and test a prototype.

C. Identify the problem or need.

D. Determine the constraints and criteria for the solution.

Answers

Answer:

Engineering Design Loop: The steps of the design process include: identify the need, research the problem, develop possible solutions, select the most promising solution, construct a prototype, test and evaluate the prototype, communicate the design, and redesign.

Explanation:

water pricing in afghanistan

Answers

Answer:

you are the best boy wueueiej

A tensile test is performed on a metal specimen, and it is found that a true
plastic strain of 0.16 is produced when a true stress of 500 MPa is applied; for the
same metal, the value of K in the quation is 825 MPa). Calculate the true strain that
results from the application of a true stress of 600 MPa .

Answers

Answer:

600 mpa

Explanation:

It's smart for a equation then you reperfuce

2.2.2 Make a list of the electronic components that could be used in making this product (energy saving switch). ​

Answers

The electronic components that could be used in making of energy saving switch are:​

Transistors semiconductor devices CapacitorsCoils (inductors)

Which electronic component is used as a switch?

Transistors as  well as other kinds of semiconductor devices are known to be tools or element that can be used in the making of switches. In its use or applications.

Note that the base or gate of a transistor, based  on the kind of transistor that is known to be in use, and it is one that is often employed as a form of control element to be able to switch on as well as switch off the current that often exist between the emitter as well as the collector or the source and that of the drain.

Note also that the electronic components that are able to  store energy in regards to electronic devices, are known to be capacitors and coils (inductors) and they often play a key function of temporarily saving  energy. One key role of a capacitor is to save an electric charge.

Therefore, The electronic components that could be used in making of energy saving switch are:​

Transistors semiconductor devices CapacitorsCoils (inductors)

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Saturated refrigerant-134a vapor at 15 psia is compressed reversibly in an adiabatic compressor to 80 psia. Determine the work input to the compressor. Use the tables for R-134a.

Answers

The initial enthalpy and the entropy of the saturated water can be found out from the table of A-12E

i.e.   \($h_1= 101 \ \text{Btu/lbm}$\)

       \($s_1 = 0.22717 \text{ Btu/lbmR}$\)

Since the process mentioned above is an adiabatic compression process, the entropy will remain constant throughout the process. Therefore, we take the value of entropy and the final pressure using the table with few interpolations and also approximations to find the final enthalpy. It is given by :

       \($h_2= 116.09 \text{ Btu/lbm}$\)

So the work input from the energy balance equation :

       \($\dot{W} + \dot{m}h_1 = \dot{m}h_2$\)

          \($w=h_2 - h_1$\)

              = 116.09 - 101

              = 15.09

Therefore, \($w= 15.09 \text{ Btu/lbm}$\)

Effective operation of roller chain and gear couplings
requires proper
A. lubrication and cooling.
B. lubrication and balance.
C. alignment and balance.
D. alignment and lubrication.

Answers

Effective operation of roller chain and gear couplings requires proper alignment and lubrication.

Roller chain coupling are compact and flexible couplings. They are used for low to moderate speed/torque applications. For effective operation they need to be maintained by applying lubrication and aligning.

Gear couplings are used for high speed and torque applications. For effective performance they need to be lubricated frequently and proper alignment is needed.

Hence effective operation of roller chain and gear couplings  requires proper lubrication and alignment.

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The input impedance for a 100 Ω lossless transmission line of length 1.162 λ is measured as 10 + j40Ω. What is the load impedance?

Answers

The load impedance for the given transmission line is 90 - j30 Ω.

What is the impedance of the load in a 100 Ω lossless transmission line of length 1.162?

The load impedance can be calculated using the following equation:

ZL = Zin * conj(Z0^2/Zin)

Where conj() denotes the complex conjugate of the quantity inside the parenthesis.

Substituting the given values, we get:

ZL = (10 + j40) * conj(\(100^2\)/(10 + j40))

= (10 + j40) * conj(1000 - j400)

= (10 + j40) * (1000 + j400)

= 4400 + j3600

= 90 - j30 Ω

Therefore, the load impedance that should be connected to the transmission line is 90 - j30 Ω for maximum power transfer.

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A alloy bar 1m long and 200m in cross-section is subjected to compression force 20KN if the modulus of elasticity of the axial is 100Gpa. Find the decrease in length of the bar

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A alloy bar 1m long and 200m in cross-section is subjected to compression force 20KN if the modulus of elasticity of the axial is 100Gpa. The decrease in the length of the bar is 1 X 10^-12m.

Define elasticity.

Elasticity, in physics and materials science, is the capacity of a body to withstand a force that distorts it and to recover its original size and shape when the force is withdrawn.

Elasticity is characterized as a feature of materials that allows them to resume their original shape after being deformed by stress that has been removed. The pascal is the SI unit for elasticity and the elastic modulus (Pa).

Solution Explained:

Given,

Length = 1m

Area of Cross-Section (A) = 200m^2

Tensile force (P) = 20kN

Modulus of elasticity (E) = 100Gpa = 1 X 10^11 N/m^2

Using the formula,

Δl = P X length / A X E

   = 20 X 1 / 200 X 1 X 10^11

After calculation, we get

Δl = 1 X 10^-12m

Therefore, the decrease in length is 1 X 10^-12m.

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What kind of plan or development of road can be done to avoid traffic?​

Answers

Answer: Breakdown Lanes

Reason: With breakdown lanes when a car needs to stop it can go to the backdown lane and fix its issue.

true or false: in a single-stream, steady flow system, the mass flow rates for the inlet and outlet must be the same. true false question. true false

Answers

Answer:

True

Explanation:

in a single-stream, steady flow system, the mass flow rates for the inlet and outlet must be the same is true

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