For an N channel E MOSFET what is the value of Id when VGS(Th)=3 V and Vgs(on)=4 V and k=1.5 mA/V2. Id=Blank 1 mA

Answers

Answer 1

The value of Id, the drain current of an N-channel enhancement-mode MOSFET, can be determined using the given parameters.

When the (VGS) is equal to the threshold voltage (VGS(Th)) of 3 V, the MOSFET is just starting to conduct. When VGS exceeds VGS(Th) and reaches VGS(on) of 4 V, the MOSFET is fully turned on. Given that the value of k, the MOSFET transconductance parameter, is 1.5 mA/V^2, we can calculate Id using the following formula: Id = (k * (VGS - VGS(Th))^2).  Plugging in the values, we have Id = (1.5 mA/V^2 * (4 V - 3 V)^2    = 1.5 mA/V^2 * (1 V)^2                                                                               = 1.5 mA.  Therefore, the value of Id is 1 mA.

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Related Questions

a lot of research has gone into making small improvements on pressure ratio for a stage in an axial compressor. it took about 25 years to come from a pressure ratio of 1.15 to 1.23 per stage. is it worth the effort? take an axial compressor with total pressure ratio of 24 and explain in terms of number of stages and power to weight ratio of the gas turbine

Answers

The decision of whether it is worth the effort to make small improvements on pressure ratio for a stage in an axial compressor depends on various factors such as the specific application, the cost of the improvements, and the benefits that the improvements may provide.

In the case of a gas turbine with a total pressure ratio of 24, the number of stages required to achieve this pressure ratio would depend on the pressure ratio per stage. If each stage has a pressure ratio of 1.23, then the number of stages required would be:

24 / 1.23 = 19.51

Since the number of stages must be an integer, the gas turbine would require 20 stages to achieve a total pressure ratio of 24.

The power to weight ratio of the gas turbine is an important metric for assessing its efficiency and performance. Improving the pressure ratio per stage can result in a higher total pressure ratio for the gas turbine, which can lead to improved power output and efficiency. However, this improvement comes at the cost of additional weight and complexity in the form of additional compressor stages.

Therefore, the decision to invest in improving the pressure ratio per stage in an axial compressor should be made after considering the potential benefits in terms of improved power output and efficiency, as well as the costs associated with additional weight and complexity.

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A 10 hp motor is used to raise a 1000 Newton weight at a vertical distance of 5 meters. What is the work the motor performs?
please explain the calculation

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The work done by a 10 HP motor when it raises a 1000 Newton weight at a vertical distance of 5 meters is 5kJ.

Define work. Explain the rate of doing work.

Work is the energy that is moved to or from an item by applying force along a displacement in physics. For a constant force acting in the same direction as the motion, work is easiest expressed as the product of force magnitude and distance traveled.

Since the force transfers one unit of energy for every unit of work it performs, the rate at which work is done and energy is used are equal.

Solution Explained:

Given,

Weight = 1000N and distance = 5m

A/Q, the work here is done in lifting then

Work = (weight) × (distance moved)

         = 1000 X 5

         = 5000Nm or 5000J = 5kJ

Therefore, the work done in lifting a 1000 Newton weight at a vertical distance of 5 meters is 5kJ.

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A rear wheel drive car has an engine running at 3296 revolutions/minute. It is known that at this engine speed the engine produces 80 hp. The car has an overall gear reduction ratio of 10, a wheel radius of 16 inches, and a 95% drivetrain mechanical efficiency. The weight of the car is 2600 lb, the wheelbase is 95 inches, and the center of gravity is 22 inches above the roadway surface. What is the closest distance the center of gravity can be behind the front axle to have the vehicle achieve its maximum acceleration from rest on good, wet pavement?

Answers

Answer:

the closest distance the center of gravity can be behind the front axle to have the vehicle achieve its maximum acceleration from rest on good, wet pavement is 47.8 in

Explanation:

Given that;

Weight of car W = 2600 lb

power = 80 hp = 44000 lb ft/s

Engine rpm = 3296

gear reduction ratio e = 10

drivetrain efficiency n = 95% = 0.95

wheel radius R = 16 in  = 1.3333 ft

Length of wheel base L = 95 in =

coefficient of road adhesion u = 0.60

height of center of gravity above pavement  h = 22 in

we know that;

Coefficient of rolling resistance frl = 0.01 for good wet pavement

distance of center of gravity behind the front axle lf = ?

Maximum tractive effort (Fmax) =  (uW / L) (lf - frl h) / (1 - uh / L)

First we calculate our Fmax to help us find lf

Power = Torque × 2π × Engine rpm / 60 )

44000 = Torque ( 2π×3296 / 60)

Torque = 127.5 lb ft  

so

Fmax = Torque × e × n / R

so we substitute in our values

Fmax = 127.5 × 10 × 0.95 / 1.333

Fmax = 908.66 lb

Now we input all our values into the initial formula

(Fmax) =  (uW / L) (lf - frl h) / (1 - uh / L)

908.66 =  [(0.6×2600/95) (lf - 0.01×22)] / [1 - 0.6×22) / 95]

908.66 = (16.42( lf - 0.22)) / 0.86

781.4476 = (16.42( lf - 0.22))

47.59 = lf - 0.22

lf = 47.59 + 0.22

lf = 47.8 in

Therefore the closest distance the center of gravity can be behind the front axle to have the vehicle achieve its maximum acceleration from rest on good, wet pavement is 47.8 in

A refrigerator with a COP of 3.0 removes heat from the refrigerated space at a rate of 10 kW. Determine the rate of power input.

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The rate of power input for this refrigerator is 3.33 kW.

A refrigerator with a COP (Coefficient of Performance) of 3.0 is designed to remove heat from the refrigerated space efficiently. The COP is the ratio of the amount of heat removed from the refrigerated space to the work (power input) done by the refrigerator.

In this case, the heat removal rate is given as 10 kW. To determine the rate of power input, we can use the following formula:

COP = (Heat removal rate) / (Power input)

Rearranging the formula to solve for the power input:

Power input = (Heat removal rate) / COP

By substituting the given values:

Power input = (10 kW) / (3.0)

Power input = 3.33 kW (approx.)

So, the rate of power input for this refrigerator is approximately 3.33 kW. This means that for every 3.33 kW of electrical power supplied to the refrigerator, it is able to remove 10 kW of heat from the refrigerated space. A higher COP indicates a more energy-efficient refrigerator.

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which of the following is true? a. a radial load is applied when the pressure from the load is perpendicular to the axis of the shaft, whereas an axial load is applied when the pressure from the load is parallel to the axis of the shaft. b. an axial load is applied when the pressure from the load is perpendicular to the axis of the shaft, whereas a radial load is applied when the pressure from the load is parallel to the axis of the shaft. c. both radial and axial loads are applied when the pressure from the load is perpendicular to the axis of the shaft. d. both radial and axial loads are applied when the pressure from the load is parallel to the axis of the shaft.

Answers

Option A holds the correct answer. Because the statement given in option A truly reflects the radial load and axial load.

When the load pressure is perpendicular to the axis of the shaft, a radial load is applied and when the load pressure is parallel to the axis of the shaft, an axial load is applied. In other words, the radial load is applied when the pressure from the load is 'perpendicular to the axis of the shaft'. In contrast, the axial load is applied when the pressure from the load is 'parallel to the axis of the shaft'.

However, the rest of the statements are not correct in the context of radial loads and axial loads.

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Identify a house building project and discuss all the tools you could use to manage your project's time and budget

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Effective tools for managing time and budget in a house building project include project management software, Gantt charts, budgeting software, cost estimating tools, and communication platforms.

Managing a house building project requires effective tools for time and budget management. Here's a step-by-step explanation of the tools that can be used:

1. Project Management Software: Utilize project management software such as Microsoft Project, Asana, or Trello. These tools help create project schedules, assign tasks, track progress, and manage dependencies. They provide a visual representation of the project timeline and help in allocating resources efficiently.

2. Gantt Charts: Gantt charts are graphical representations of project schedules. They illustrate tasks, their durations, and dependencies. Gantt charts allow project managers to identify critical paths, track progress, and adjust schedules accordingly.

3. Resource Planning Software: Use resource planning software like ResourceGuru or Teamdeck to manage and allocate resources effectively. These tools help schedule workers, equipment, and materials, ensuring optimal resource utilization while considering availability and project timelines.

4. Budgeting Software: Implement budgeting software such as QuickBooks, FreshBooks, or Excel spreadsheets to monitor project expenses and track costs. These tools help in estimating costs, recording expenditures, and comparing actual spending against the budgeted amounts.

5. Cost Estimating Tools: Utilize cost estimating software like RSMeans, CostX, or ProEst for accurate and efficient cost estimation. These tools provide databases of material costs, labor rates, and construction costs, allowing for detailed and reliable budget estimates.

6. Earned Value Management (EVM): EVM is a technique for measuring project performance and cost efficiency. It compares the planned budget and schedule with actual progress to assess project health. EVM tools such as Primavera P6 or Microsoft Project can help monitor project performance and identify any deviations from the budget and schedule.

7. Risk Management Software: Employ risk management software such as RiskyProject or Active Risk Manager. These tools aid in identifying, assessing, and mitigating project risks that could impact the project's time and budget. They allow for proactive risk management and contingency planning.

8. Time Tracking Tools: Use time tracking tools like Harvest or Toggl to monitor the time spent on project tasks. These tools help in evaluating productivity, identifying bottlenecks, and ensuring efficient time management.

9. Communication and Collaboration Tools: Implement communication and collaboration tools like Slack, Microsoft Teams, or Basecamp. These platforms facilitate real-time communication, document sharing, and collaboration among team members, enhancing coordination and reducing project delays.

By utilizing these tools, project managers can effectively manage the time and budget of a house building project, ensuring efficient resource allocation, cost control, risk management, and timely completion of the project.


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How does the concept of honor and unity shape the hispanic/latino family identity? Conduct additional research and cite as necessary.

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The concept of honor and unity shape the hispanic/latino family identity because In the culture and tradition of the Latino family the father is seen as the undisputed head of the family while the mother is one who  is known to handle the issue of the maintenance of the household and as such they are both  held in highest honor.

What is the role of the family in Hispanic culture?

The family unit is known to be the single most vital unit in the Latino culture.

It is seen to be one that affect  the perception and behavior of  all the members as to how they view the outside world.

Hence Latinas are said to see themselves as standing in gap for their family in outside contacts and thus they honor their family.

Therefore,  The concept of honor and unity shape the hispanic/latino family identity because In the culture and tradition of the Latino family the father is seen as the undisputed head of the family while the mother is one who  is known to handle the issue of the maintenance of the household and as such they are both  held in highest honor.

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A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes through the center of gravity of the box. The box is 5m wide x 5m tall, and the coefficient of static friction between the box and the surface is u=0.15. Determine the smallest magnitude of the force P that will cause the box to slip or tip first. Specify what will happen first, slipping or tipping.

A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes

Answers

Answer:

SECTION LEARNING OBJECTIVES

By the end of this section, you will be able to do the following:

Distinguish between static friction and kinetic friction

Solve problems involving inclined planes

Section Key Terms

kinetic friction static friction

Static Friction and Kinetic Friction

Recall from the previous chapter that friction is a force that opposes motion, and is around us all the time. Friction allows us to move, which you have discovered if you have ever tried to walk on ice.

There are different types of friction—kinetic and static. Kinetic friction acts on an object in motion, while static friction acts on an object or system at rest. The maximum static friction is usually greater than the kinetic friction between the objects.

Imagine, for example, trying to slide a heavy crate across a concrete floor. You may push harder and harder on the crate and not move it at all. This means that the static friction responds to what you do—it increases to be equal to and in the opposite direction of your push. But if you finally push hard enough, the crate seems to slip suddenly and starts to move. Once in motion, it is easier to keep it in motion than it was to get it started because the kinetic friction force is less than the static friction force. If you were to add mass to the crate, (for example, by placing a box on top of it) you would need to push even harder to get it started and also to keep it moving. If, on the other hand, you oiled the concrete you would find it easier to get the crate started and keep it going.

Figure 5.33 shows how friction occurs at the interface between two objects. Magnifying these surfaces shows that they are rough on the microscopic level. So when you push to get an object moving (in this case, a crate), you must raise the object until it can skip along with just the tips of the surface hitting, break off the points, or do both. The harder the surfaces are pushed together (such as if another box is placed on the crate), the more force is needed to move them.

Hydraulic fracturing is: Select one: a. a first step in storage of high-level radioactive waste b. a way of extracting natural gas shale formations c. a step in oil refining where oil is separated into different viscosities d. none of the above

Answers

The answer is B - a way of extracting natural gas shale formations.

Hydraulic fracturing is “a way of extracting natural gas shale formations.”

Shale and other types of "tight" rock, or impermeable rock formations that lock in oil and gas and complicate the production of fossil fuels, can be extracted of their natural gas or oil using the modern high-volume hydraulic fracturing process. Thus, option B is correct.

What are the factor involving in Hydraulic fracturing?

Shale gas is extracted through a procedure called hydraulic fracturing, also referred to as “fracking.” Due to the fact that shale reserves are often dispersed horizontally rather than vertically, deep holes are first drilled into the shale rock, then horizontal drilling is used to reach more of the gas.

A mixture of sand, chemicals, and water is pushed at high pressure down a borehole during hydraulic fracturing. The released gas can flow out of the rocks and back up the borehole because the water pressure causes cracks in the rock to widen, and the sand particles settle into the openings to keep them open.

Therefore, a way of extracting natural gas shale formations.

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1. It's very kind _______ you to help us. Thanks a lot. A. for B. to C. with D. of

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It’s letter d.
Hope this helps☺️

explain the modulus of elasticity. which property of the material does it represent? give the approximate values of the modulus of elasticity of steel, concrete, and wood.

Answers

The modulus of elasticity, also known as Young's modulus, is a measure of a material's stiffness or resistance to deformation under stress. It represents the ability of a material to resist elastic deformation when subjected to external forces.

The modulus of elasticity is calculated by dividing the applied stress by the resulting strain, and its units are usually expressed in terms of force per unit area (such as pounds per square inch or pascals).

Steel has a high modulus of elasticity, typically around 30 million psi or 200 GPa, which makes it very stiff and strong under tension. Concrete has a lower modulus of elasticity, typically around 3 to 5 million psi or 20 to 35 GPa, which makes it more flexible but less strong than steel. Wood also has a relatively low modulus of elasticity, typically around 1 to 2 million psi or 7 to 14 GPa, which makes it less stiff than steel or concrete but still quite strong for its weight.

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An automobile having a mass of 1100 kg initially moves along a level highway at 120 km/h relative to the highway. It then climbs a hill whose crest is 80 m above the level highway and parks at a rest area located there. Use a reference with kinetic and potential energy each equal to zero for the stationary highway before the hill. Let g = 9.81 m/s^2.

For the automobile, determine its change in kinetic energy and its change in potential energy, both in kJ. For the automobile, determine its change in kinetic energy, in kJ.
a. -8594
b. -663.1
c. -6.63x10^5
d. 663.1

Answers

Answer:

\(-6111.11\ \text{kJ}\)

\(863.28\ \text{kJ}\)

Explanation:

m = Mass of automobile = 1100 kg

v = Velocity of car = 120 km/h = \(\dfrac{120}{3.6}\ \text{m/s}\)

h = Height of hill = 80 m

g = Acceleration due to gravity = \(9.81\ \text{m/s}^2\)

Change in kinetic energy

\(KE=\dfrac{1}{2}m(u^2-v^2)\\\Rightarrow KE=\dfrac{1}{2}\times 1100\times (0-(\dfrac{120}{3.6})^2)\\\Rightarrow KE=-611111.11\ \text{J}\)

Change in kinetic energy is \(-6111.11\ \text{kJ}\)

Change in potential energy is given by

\(PE=mgh\\\Rightarrow PE=1100\times 9.81\times 80\\\Rightarrow PE=863280\ \text{J}\)

The change in potential energy is \(863.28\ \text{kJ}\).

How do I get my car to recognize my key?

Answers

Turn the ignition to the on position after inserting the key. Just the electronics, leave the engine off.

After 10 minutes and 30 seconds, switch off the light by turning the key. Restart the key, then wait another 10 minutes and 30 seconds before turning it off once more. Low batteries are the primary culprit, but shock can also make the fob forget its pairing. Check your car's user manual for the correct steps to reset most remote controls. The fob needs to be reprogrammed if resetting does not fix the issue. The ignition is the component of an automobile engine where fuel is ignited. The ignition is immediately disconnected by the gadget. single-word noun. The ignition is the area inside an automobile where you turn the key to start the engine.

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a stable lti system has impulse response h[n] which has the z-transform h(z) shown below. find the impulse response h[n].

Answers

Given the Z-transform of impulse response of a stable LTI system is:

\(h(z) = 2z / (z-1)\)

we have to decompose the above rational Z-transform to partial fractions. This is done by applying the partial fraction decomposition techniques.

\(h(z) = 2z / (z-1) = A / (z-1) + Bz\)

After the multiplication of (z-1) on both sides, we get

\(2z = A + Bz(z = 1) => A = 2z = 2\)

\(B = 2 / (z-1)\) Now, h(z)

\(h(z) = 2 / (z-1) + 2z / (z-1)^2\)

Now, we know the Z-transform of unit impulse function δ(n), which is:

\(Z{δ(n)} = 1\)

the Z-transform of h(n) can be expressed as:\(H(z) = Z{h(n)} = 2 / (z-1) + 2z / (z-1)^2\)Now, applying the inverse Z-transform on H(z), we get the h(n), as follows:

\(h(n) = L^-1 {H(z)} = L^-1 { 2 / (z-1) } + L^-1 { 2z / (z-1)^2 }\)

\(h(n) = 2δ(n) + 2n u(n)\) Where,\(L^-1 { 2 / (z-1) } = 2δ\)(n)and,\(L^-1 { 2z / (z-1)^2 } = 2n u(n)\)

Therefore, the impulse response h(n) for the given Z-transform is 2δ(n) + 2n u(n).

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2) If a system has many components and each component has high reliability, the overall system reliability is still low. Why is this?

Answers

Having many components with high reliability does not necessarily guarantee high overall system reliability.

The overall system reliability depends not only on the reliability of individual components but also on the way these components are interconnected and interact with each other.

A complex system with many components may have a higher likelihood of failure due to interactions between the components, even if each component has a high individual reliability.

This is because the failure of one component can cause a chain reaction that leads to the failure of other components, resulting in a cascading failure that affects the overall system.

Additionally, the maintenance and repair of a complex system with many components can also be more difficult and time-consuming, increasing the risk of downtime and reducing overall system reliability.

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The bonus rates for each salesperson are determined by sales amounts using the following scale: Sales greater than $35,000 earn a bonus rate of 5%, sales greater than $25,000 earn a bonus rate of 4%. All other sales (any amount greater than 0) earn a bonus rate of 2%. With the sheets still grouped, in cell C5 use an IFS function to determine the commission rate for the first salesperson whose sales are in cell B5. Fill the formula down through cell C8.

Answers

Assuming that cell B5 contains the sales amount for the first salesperson, the IFS function to determine the commission rate in cell C5 is:

=IFS(B5>35000, 0.05, B5>25000, 0.04, B5>0, 0.02)

This formula checks the sales amount in B5 against each threshold amount in descending order (starting with $35,000), and returns the corresponding bonus rate if the sales amount is greater than that threshold. If the sales amount is less than or equal to zero, it returns a bonus rate of 0%.

To fill the formula down through cell C8, select cell C5 and drag the fill handle down to cell C8. This will copy the formula to the other cells in the group, adjusting the cell references as needed.

Please help I need by today !!

What is the purpose of a portfolio?

Answers

Answer:

To document your work and projects.

Explanation:

I hope I got the right meaning. :)

Kimber has been tasked with assembling her department's latest updates into a single document. as she combines multiple documents, what's an important word processing skill to know that ensures the end result is organized and easy to use? question 7 options: footnoting animation bookmarking pagination

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When it comes to combining multiple documents, an important word processing skill to know that ensures the final result is organized and easy to use is pagination.

Pagination is a page numbering technique that is done sequentially. These page numbers are usually located at the top or bottom of the web page. In most cases, it is used for main pages and partitions in corporate websites. This kind of design can generally make the user experience simpler on the site. They can also feel more comfortable when it comes to distributing and navigating products within the website.

For example, like this, imagine an e-commerce site that consists of hundreds of product catalogs from various categories. Of course, these products will not be found easily if only placed on one page. As a solution, UI developers and designers can take advantage of pagination to make product placement more structured.

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If the beam is subjected to a bending moment of m = 20 kn⋅m , determine the bending stress in the beam at point a

Answers

Therefore, the maximum bending stress at point a based on the given question is 744.2 MPa.

How to solve

Given:

Moment of inertia of the section (I) = 2.6873×10^-5 m^4

Vertical distance away from the neutral axis (c) = 0.1 m

Maximum bending moment (M) = 20,000 N·m

To find:

Maximum bending stress (σmax)

Formula:

σmax = (M * c) / I

Calculation:

σmax = (20,000 N·m * 0.1 m) / 2.6873×10^-5 m^4

σmax = 744.2 MPa

Therefore, the maximum bending stress is 744.2 MPa.

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3.1 Distinguish between the human and engineering approaches to
loss prevention. (12)

Answers

The human approach focuses on staff awareness, training, and personal responsibility to minimize the probability of mistakes and risk-taking.

The engineering approach utilizes protective equipment, engineered designs, and automatic equipment to minimize accidents and losses.

The two methodologies: human and engineering approaches to loss prevention both aim to minimize and manage risk. However, there are some distinct differences in their approaches to reducing loss. Below are the details of the human and engineering approaches to loss prevention:

The human approach, also known as the behavioral approach, acknowledges that human error plays a significant role in accidents and losses. It recognizes the unpredictability of human behavior, making it challenging to anticipate and manage compared to system-generated problems. Therefore, the human approach emphasizes the development of staff awareness, training, and personal responsibility as strategies to minimize the likelihood of mistakes and risk-taking.

On the other hand, the engineering approach emphasizes that accidents and losses can be reduced through the implementation of protective equipment, engineered designs, and automatic equipment. Engineering solutions involve designing systems, structures, and equipment that minimize the chances of accidents or injuries. By providing multiple layers of protection, engineering measures aim to minimize human errors, enhance security, and improve the overall operational environment.

In conclusion, both the human and engineering approaches offer different solutions to loss prevention. The choice of the most effective approach depends on the specific circumstances and issues faced by a company. However, integrating both methods is generally considered the best approach. By incorporating human factors such as staff training and communication into the engineering design, an effective safety culture can be established.

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All of these are designed to absorb collision energy EXCEPT: dimples. O slots. O crush zones. Oreinforcements.

Answers

The term that is not designed to absorb collision energy is dimples.

What is an energy-absorbing mechanism?

Energy-absorbing mechanism is a safety mechanism that absorbs the kinetic energy that is generated during an impact.

The shock-absorbing material, which is intended to be compressed in a controlled manner under the impact, is the most basic component of this system.

What is the purpose of the design of a crush zone?

Crush zones are engineered areas of a vehicle that are designed to absorb and dissipate energy during a collision.

They are often constructed from a variety of materials, including high-strength steel, aluminum, magnesium, and other composites.

O Slots, crush zones, and reinforcements are all safety features that are designed to absorb collision energy and lessen the impact of a collision on the vehicle and its occupants.

These energy-absorbing mechanisms allow the vehicle to deform or collapse in a controlled manner, slowing down the rate of deceleration and reducing the amount of force transferred to the vehicle's occupants.

Dimples, on the other hand, are not an energy-absorbing mechanism.

Dimples are tiny indentations or bumps on the surface of a material that is often used to reduce aerodynamic drag. They are not designed to absorb collision energy.

Therefore, the answer is dimples.

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Water and air quality are critical issues facing human society.


True

False

Answers

Humans impact the physical environment in many ways: overpopulation, pollution, burning fossil fuels, and deforestation. Changes like these have triggered climate change, soil erosion, poor air quality, and undrinkable water.

In an orthogonal cutting operation, the tool has a rake angle = 0°. The chip thickness before the cut= 0.30 mm and the cut yields a deformed chip thickness = 0.65 mm. Calculate (a) the shear plane angle and (b) the shear strain for the operation.

Answers

The shear plane angle is calculated as 49.4 degrees while the shear strain is given as 1.17

What is Shear Strain

Shear strain is a measure of deformation resulting from an applied force that is parallel to the surface of an object. It is usually expressed as a fractional change in the length of the object. Shear strain is a measure of the displacement of the surface points of an object in the direction perpendicular to the direction of the applied force.

The shear plane angle is the angle between the plane of shear stress and the normal to the plane of shear. It is typically measured in degrees and can range from 0 to 90 degrees.

(a) Shear plane angle = tan⁻¹((0.65-0.30)/0.30) = 49.4°

(b) Shear strain = (deformed chip thickness - initial chip thickness)/initial chip thickness

Substituting the values into the formula;

Shear Strain = (0.65-0.30)/0.30 = 1.17

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what is the IMA of a fixed pulley ​

Answers

Answer:

Not sure

Explanation:

Looking now

In a pulley, the ideal mechanical advantage is equal to the number of rope segments pulling up on the object. ... In the single fixed pulley, only one rope segment pulls up on the load, so the ideal mechanical advantage is 1.

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What is a transition? A. An animation that happens on a single slide B. An outline format that uses roman numerals C. An image file imported to a title slide D. An effect that happens between slides Please select the best answer from the choices provided A B C D

Answers

Answer:

its c

Explanation:

Obtain both analytically and computationally the rise time, peak time, maximum overshoot, and settling time in the unit-step response of a closed-loop system given by C(s) 36 R(S) 52 + 2s + 36 R(s) C(s) K S +2 k Figure 5–84 Closed-loop system. R(s) C(s) 16 $ + 0.8 S k Figure 5-85 Block diagram of a system.

Answers

To obtain the rise time, peak time, maximum overshoot, and settling time analytically, one must determine the transfer function of the closed-loop system and analyze its characteristics.

Here, the information provided is incomplete, and as the transfer function of the system is not fully specified. The given equations represent the transfer functions of the individual blocks in the system, but the interconnections and feedback are not clear. So, to obtain accurate results, the complete transfer function of the closed-loop system is needed. Once the transfer function is known, we can perform stability and transient analysis to determine the rise time, peak time, maximum overshoot, and settling time.

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which statement about life on earth is true ?

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Answer:

Humans have been on Earth for a very short amount of time.

Explanation:

edgeunity 2021

Answer:

Humans have been on Earth for a very short amount of time<3

D.

Explanation:

4.)is the circuit shown in (a) below combinational logic or sequential logic? explain in a simple fashion what the relationship is between the inputs and outputs. what would you call this circuit? repeat for the circuit shown in (b).

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(a) The combinational logic circuit depicted in (a) is a circuit. One output LED and two input switches make up the device. Only when both input switches are closed or turned on does the output LED turn on.

Combinational logic is a subset of digital logic that is used in electronics and computer science to create circuits where the output is fully reliant on the input variables. The logical combinations of the input variables are the outputs in combinational logic. Gates like AND, OR, and NOT carry out the logical processes. Combinational logic's key benefit is that it is straightforward to build and simple to comprehend. Digital electronics frequently employs combinational circuits for tasks including data processing, signal processing, and mathematical computations. Adders, multiplexers, and demultiplexers are a few typical examples of combinational logic circuits.

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The accompanying specific gravity values describe various wood types used in construction. 0.320.350.360.360.370.380.400.400.40 0.410.410.420.420.420.420.420.430.44 0.450.460.460.470.480.480.490.510.54 0.540.550.580.630.660.660.670.680.78 Construct a stem-and-leaf display using repeated stems. (Enter numbers from smallest to largest separated by spaces. Enter NONE for stems with no values.)

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Answer:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \\ \\{0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \\ \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \\ \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \\ \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

Explanation:

Given

\(0.32,\ 0.35,\ 0.36,\ 0.36,\ 0.37,\ 0.38,\ 0.40,\ 0.40,\ 0.40,\ 0.41,\)

\(0.41,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.43,\ 0.44,\ 0.45,\ 0.46,\)

\(0.46,\ 0.47,\ 0.48,\ 0.48,\ 0.49,\ 0.51,\ 0.54,\ 0.54,\ 0.55,\)

\(0.58,\ 0.63,\ 0.66,\ 0.66,\ 0.67,\ 0.68,\ 0.78.\)

Required

Plot a steam and leaf display for the given data

Start by categorizing the data by their tenth values:

\(0.32,\ 0.35,\ 0.36,\ 0.36,\ 0.37,\ 0.38.\)

\(0.40,\ 0.40,\ 0.40,\ 0.41,\ 0.41,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\)

\(0.43,\ 0.44,\ 0.45,\ 0.46,\ 0.46,\ 0.47,\ 0.48,\ 0.48,\ 0.49.\)

\(0.51,\ 0.54,\ 0.54,\ 0.55,\ 0.58.\)

\(0.63,\ 0.66,\ 0.66,\ 0.67,\ 0.68.\)

\(0.78.\)

The 0.3's is will be plotted as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \ \end{array}\)

The 0.4's is as follows:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \ \end{array}\)

The 0.5's is as follows:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \ \end{array}\)

The 0.6's is as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \ \end{array}\)

Lastly, the 0.7's is as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

The combined steam and leaf plot is:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \\ \\{0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \\ \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \\ \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \\ \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

A(n) _____ provides a portable source of light when working on a vehicle.

Answers

Answer:

flashlight???

Explanation:

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