Show that the dimensions of momentum per unit area per time are the same as those of force per unit area

Answers

Answer 1

Answer:

Unit of,

momentum = kg×m/s

momentum per unit area = kg×m/s×m² = kg/m×s

momentum per unit area per unit time= kg/ms²

force = kg×m/s²

force per unit area = kg×m/s²×m² = kg/ms²

Explanation:


Related Questions

Think about the ineffective leaders (bosses, coaches, etc.) you have experienced.  What dark-side traits did these leaders possess that caused them to be ineffective?​

Answers

The dark-side traits the leaders possessed that caused them to be ineffective are; Narcissism, Psychopathy and Machiavellianism.

What are bad character traits?

According to Paulhus and williams, they discovered in year 2002 that several personality traits could be related to failures of a leader but they narrowed it down to three which they referred to as the Dark Triad.

These dark side traits are;

NarcissismPsychopathyMachiavellianism

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Question 1 A design team completes their high-fidelity prototype of a responsive website. Before they hand off designs to the engineering team, they need to confirm that the designs are final. What questions should they answer before handing off the designs

Answers

A question the design team should answer before handing off the designs is: are the designs a true representation of the intended end user experience?

What is a website?

A website can be defined as a collective name that is used to describe series of webpages that are interconnected or linked together with the same domain name.

In Computer technology, the main goal of a high-fidelity prototype is to understand how end users would interact with a website and areas to improve the design.

In conclusion, the design team should answer whether or not the designs are a true representation of the intended end user experience before handing off the designs.

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What is the dumbest way you’ve been injured?

Answers

Someone threw a penny at me and it went in my mouth, and then I started choking and I had to go to the hospital :)))

Answer:

Once when I was playing a soccer game I tripped over the ball then a heavy girl accidentally ran over my hand and that's how I fractioned my finger  

Explanation: i-

Explain three examples of workshop

Answers

Answer:

Invitational Workshop

An invitational workshop is what many of us know. It’s what Lucy Calkins has made famous through the Reading and Writing Workshop. In the invitational workshop, the instructor usually hosts a minilesson. This minilesson is intended to meet the needs of the majority of children in the classroom. Afterward, the children are “invited” to employ the skills or strategy for the minilesson during workshop time, where students work independently or in small groups

Explanation:

Answer:

Here are 5 examples:

Invitational WorkshopConstructivist WorkshopReflection WorkshopConferencing WorkshopChoice Workshop

Explanation:

I hope this helps!

Problem 2 (20 points): Three prismatic bars, two of material A and one of material B, transmit a tensile load P. The two outer bars (material A) are identical. The cross-sectional area of the middle bar (material I} B) is 50% larger than the cross-sectional area of the outer bar. Also, the modulus of elasticity of material A is twice that ofmaterial B. Find: (a) What fraction ofthe load Pis transmitted by the middle bar? (b) What is the ratio of the stress in the middle bar to the stress in the outer bars? (c) What is the ratio of the strain in the middle bar to the strain in the outer bars

Answers

Answer:

you said 20 points

Explanation:

Create a Reverse application that stores the number corresponding to the element's index in an integer array of 10 elements. For example, the second element, which has index 1, should store 1. The application should then display the title "Countdown" and then list numbers stored in the array in reverse order.

Answers

Answer:

Written in Java

public class MyClass {

   public static void main(String args[]) {

     int [] myarray = new int[10];

     for(int i = 0;i<10;i++)  {

         myarray[i] = i;

     }

     System.out.println("Countdown");

     for(int i = 9;i>=0;i--)  {

        System.out.println(myarray[i]);

     }

   }

}

Explanation:

This line declares the array

     int [] myarray = new int[10];

The following iteration inserts 0 to 9 into the array

     for(int i = 0;i<10;i++)  {

         myarray[i] = i;

     }

This line prints "Countdown"

     System.out.println("Countdown");

The following iteration prints the array in reverse order

     for(int i = 9;i>=0;i--)  {

        System.out.println(myarray[i]);

     }

Consider a convergent duct with an inlet area A1 = 5 m2. Air enters this duct with a velocity V1=10m/s and leaves the duct exit with a velocity V2=30 m/s.

Required:
a. What is the area of the duct exit?
b. If the air pressure and temperature at the inlet area are 1.2 x105 N/m2, and 300K, respectively, what is the pressure at the exit?

Answers

Answer:

(a) The area of the duct exit is 1.67 m²

(b) The air pressure at the exit is 1.195 x 10 N/m²

Explanation:

Given;

inlet area, A₁ = 5 m²

inlet velocity, V₁ = 10 m/s

exit velocity, V₂ = 30 m/s

(a) The area of the duct exit is determined by applying continuity equation;

A₁V₁ = A₂V₂

Where;

A₂ is the area of the duct exit

A₂ = (A₁V₁) / (V₂)

A₂ = (5 x 10) / (30)

A₂ = 1.67 m²

(b) Apply Bernoulli’s equation to determine the pressure at the exit;

[tex]P_1 + \frac{\rho V_1^2}{2} = P_2 + \frac{\rho V_2^2}{2}\\\\P_2 = P_1 + \frac{\rho V_1^2}{2} - \frac{\rho V_2^2}{2}\\\\P_2 = P_1 + \frac{\rho }{2} (V_1^2 - V_2^2)[/tex]

Density of air at 300k = 1.177 kg/m³

[tex]P_2 = P_1 + \frac{\rho }{2} (V_1^2 - V_2^2)\\\\P_2 = 1.2*10^5 \ + \ \frac{1.177}{2} (10^2 - 30^2)\\\\P_2 = 1.2*10^5 \ + \ -470.8\\\\P_2 = 1.195*10^5 \ N/m^2[/tex]

Therefore, the air pressure at the exit is 1.195 x 10 N/m²

What is the most common impediment to communication in cross functional team

Answers

Answer:

Conflicting goals. Specialised jargon. Unequal responsibilities

Consider an area-source box model for air pollution above a peninsula of land. The length of the box is 15 km, its width is 80 km, and a radiation inversion restricts mixing to 15 m. Wind is blowing clean air into the long dimension of the box at 0.5 m/s. On average, there are 250,000 vehicles on the road, each being driven 40 km in 2 hours and each emitting 4 g/km of CO.

Required:
a. Estimate the steady-state concentration of CO in the air. Should the city be designated as "nonattainment" (i.e., steady-state concentration is over the NAAQS standard)?
b. Find the average rate of CO emissions during this two-hour period.
c. If the windspeed is zero, use the formula to derive relationship between CO and time and use it to find the CO over the peninsula at 6pm

Answers

Consider an area-source box model for air pollution above a peninsula of land. The length of the box is 15 km, its width is 80 km, and a radiation inversion restricts mixing to 15 m. Wind is blowing clean air into the long dimension of the box at 0.5 m/s. On average, there are 250,000 vehicles on the road, each being driven 40 km in 2 hours and each emitting 4 g/km of CO.

Required:

a. Estimate the steady-state concentration of CO in the air. Should the city be designated as "nonattainment" (i.e., steady-state concentration is over the NAAQS standard)?

b. Find the average rate of CO emissions during this two-hour period.

c. If the windspeed is zero, use the formula to derive relationship between CO and time and use it to find the CO over the peninsula at 6pmConsider an area-source box model for air pollution above a peninsula of land. The length of the box is 15 km, its width is 80 km, and a radiation inversion restricts mixing to 15 m. Wind is blowing clean air into the long dimension of the box at 0.5 m/s. On average, there are 250,000 vehicles on the road, each being driven 40 km in 2 hours and each emitting 4 g/km of CO.

Required:

a. Estimate the steady-state concentration of CO in the air. Should the city be designated as "nonattainment" (i.e., steady-state concentration is over the NAAQS standard)?

b. Find the average rate of CO emissions during this two-hour period.

c. If the windspeed is zero, use the formula to derive relationship between CO and time and use it to find the CO over the peninsula at 6pmConsider an area-source box model for air pollution above a peninsula of land. The length of the box is 15 km, its width is 80 km, and a radiation inversion restricts mixing to 15 m. Wind is blowing clean air into the long dimension of the box at 0.5 m/s. On average, there are 250,000 vehicles on the road, each being driven 40 km in 2 hours and each emitting 4 g/km of CO.

Required:

a. Estimate the steady-state concentration of CO in the air. Should the city be designated as "nonattainment" (i.e., steady-state concentration is over the NAAQS standard)?

b. Find the average rate of CO emissions during this two-hour period.

c. If the windspeed is zero, use the formula to derive relationship between CO and time and use it to find the CO over the peninsula at 6pm

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If total surface flow 144 million acre-foot is spread over 881,913 km², Estimate the depth of water?

Answers

Answer:

  20.1 cm

Explanation:

The depth is the ratio of volume to area.

  [tex]\dfrac{1.44\times10^8\text{ ac$\cdot$ft}}{8.81913\times10^5\text{ km}^2}=\dfrac{(1.44\times10^8)(4.356\times10^4\text{ ft}^3)(0.3048\text{ m/ft})^3}{(8.81913\times10^5\text{ km}^2)(10^3\text{ m/km})^2}\\\\=\dfrac{1.44\times4.356\times0.3048^3\times10^{12}}{8.81913\times10^{11}}\text{ m}\approx0.2014\text{ m}[/tex]

The depth of water is about 20.1 cm.

_____

Additional comment

An acre-foot is 43,560 cubic feet.

A foot is 0.3048 meters.

A kilometer is 1000 meters.

A centimeter is 0.01 meters.

The Stefan-Boltzmann law can be employed to estimate the rate of radiation of energy H from a surface, as in

H = Aeσ^4

where H is in watts, A = the surface area (m^2 ), e = the emissivity that characterizes the emitting properties of the surface (dimensionless), σ = a universal constant called the Stefan-Boltzmann constant (= 5.67 x 10^8 W m^2 K^-4 ), and T = absolute temperature (K).

Required:
Determine the error of H for a steel plate with A = 0.15 m^2 , e = 0.90, and T 5 650 ± 20.
b. Compare your results with the exact error. Repeat the computation but with T = 650 ± 40. Interpret your results.

Answers

Explanation:

A.

H = Aeσ^4

Using the stefan Boltzmann law

When we differentiate

dH/dT = 4AeσT³

dH/dT = 4(0.15)(0.9)(5.67)(10^-8)(650)³

= 8.4085

Exact error = 8.4085x20

= 168.17

H(650) = 0.15(0.9)(5.67)(10^-8)(650)⁴

= 1366.376watts

B.

Verifying values

H(T+ΔT) = 0.15(0.9)(5.67)(10)^-8(670)⁴

= 1542.468

H(T+ΔT) = 0.15(0.9)(5.67)(10^-8)(630)⁴

= 1205.8104

Error = 1542.468-1205.8104/2

= 168.329

ΔT = 40

H(T+ΔT) = 0.15(0.9)(5.67)(10)^-8(690)⁴

= 1735.05

H(T-ΔT) = 0.15(0.9)(5.67)(10^-8)(610)⁴

= 1735.05-1059.83/2

= 675.22/2

= 337.61

This car is parked. The engine is off and there is no music playing, What energy is currently in use?

Answers

Answer:

Potential energy

Explanation:

"Potential energy" is a type of energy an object has when it's at rest or in this case not moving. The car is parked, and the engine is off, that means there is no electrical, kinetic, thermal, or mechanical energy in play since the engine isn't running and the car isn't moving. The radio is off too so that means there is no sound energy or electric energy (again) in play either. You are just parked with the car completely shut off, but you do have the potential to move the car by turning on the engine and start driving, which means potential energy is currently in use.

Hope this helps.

Q4. (assessment criteria 3. 1) state newton's law of cooling and define the terms in the equation. 1. 2. Obtain the solution when the initial liquid temperature is 100 c, the ambient temperature is 2 and the thermal time constant is 60 min. 3. Plot the solution. Remember to label the axis. 4. Calculate the fluid temperature after one time constant.

Answers

answer with
this link
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An elevation is.... * 10 points a. A detailed description of requirements, composition and materials for a proposed building. b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building. c. The development of the last remaining lots in an existing developed area, the new development within an area already served by existing infrastructure and services, or the reuse of already developed, but vacant properties. d. The practice of creating structures and using processes that are environmentally responsible and resource-efficient throughout a building's life-cycle from siting to design, construction, operation, maintenance, renovation and deconstruction.

Answers

Answer:

b. A view of a building seen from one side, a flat representation of one façade. This is the most common view used to describe the external appearance of a building.

Explanation:

An elevation is a three-dimensional, orthographic, architectural projection that reveals just a side of the building. It is represented with diagrams and shadows are used to create the effect of a three-dimensional image.

It reveals the position of the building from ground-depth and only the outer parts of the structure are illustrated. Elevations, building plans, and section drawings are always drawn together by the architects.

Hi, I need a hand please.

Describe how you would use principles of series circuit to analyze a parallel circuit. What formulas used in a series circuit analysis would not apply?

Answers

Answer:

The principles of a series circuit that can be used to analyze a parallel circuit is that of calculating total resistance in the circuits.

The formula used in a series circuit analysis for finding total resistance is different from that used in a parallel circuit for finding overall resistance. i.e.

For a series circuit total resistance Rt={R1+R2+R3+.......Rn}

For a parallel circuit, total resistance 1/Rt ={1/R1+1/R2+1/R3+.....1/Rn]

Explanation:

In a series circuit, the current passing through each component is the same where as in a parallel circuit the voltage through each component is the same.

The principles of series circuit that can be used to analyze a parallel circuit is that of calculating total resistance in the circuits. In a series circuit, total resistance is calculated as the sum of resistance of the components connected to the circuit, where as in a parallel circuit, overall resistance is the summation of the resistance of individual components.

This means you can use principles of series circuit to find total resistance then use that value to confirm the individual resistance values of components in a parallel circuits. This is possible because you will have the expected total resistance [calculated from the series circuit], then the sum of resistance of the same but individual components now in the parallel circuit should be equal to the total resistance calculated from the series circuit.

The formula for calculating resistance in series circuit given as :{Rt= R1+R2+R3+.......Rn} where Rt is the total resistance and R1,R2,R3...Rn are the values of individual components in the series circuit, can not be used in finding overall resistance in a parallel circuits because the formula for total resistance will change to : [1/Rt =1/R1+1/R2+1/R3+.....1/Rn]

Witch type of wetland has shollow water or streams.

Answers

Non-tidal marshes are the most prevalent and widely distributed wetlands in North America. They are mostly freshwater marshes, although some are brackish or alkaline. They frequently occur along streams in poorly drained depressions and in the shallow water along the boundaries of lakes, ponds and rivers.

Which option identifies why the design in the following scenario represents a green engineering design solution?

Emily has just redesigned a toy car. The materials she used were once parts of automobiles that were taken to recycling plants.


✔️She is incorporating existing materials.
✔️She is discovering new materials.
✔️She is reducing waste through choice of materials.
✔️She is developing new materials.

Answers

The option that identifies why the design in the following scenario represents a green engineering design solution is option C: She is reducing waste through choice of materials.

What does it mean to reduce waste?

Anything that lowers waste by starting with less material is considered a waste reduction. Using both sides of a piece of paper, purchasing items in bulk rather than individually packaged, or using ceramic mugs instead of disposable ones are all easy ways to reduce waste.

Therefore, the way that Emily is using tends to lowers greenhouse gas emissions, conserves energy, and generates employment. You may contribute to pollution prevention and environmental protection by lowering the quantity of waste you produce. You also save money, protect natural resources, and reduce the quantity of waste that ends up in landfills.

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Answer:

She is Incorporating existing materials

Explanation:

What are the 2 main sources of data

Answers

Following are the two sources of data:

Internal Source. When data are collected from reports and records of the organisation itself, it is known as the internal source. ... External Source. When data are collected from outside the organisation, it is known as the external source.

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Answer:

I hope this helps

Explanation:

.... Internal source

.... External source

Please give me the answers

Answers

Answer:

the 4th one

Explanation:

no id you can't drive

in an operating system the scheduler perform the task of assigning ___processes to ___

Answers

The task of the scheduler in an operating system is; Assigning system processes to Run queue.

What is a Scheduler in OS

Schedulers as their name implies are special system software which handle process scheduling in various ways. Their main objective is to select the jobs to be submitted into the system and to decide which process to run accordingly.

On this note, The OS scheduler determines how processes are moved between the ready and run queues which can only have one entry per processor core on the system;

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All of these are true about aluminum EXCEPT that it:
A) has a self-healing, corrosion-resistant coating,
B) is resistant to galvanic corrosion
C) is a nonferrous metal,
D) is easy to be initially formed,

Answers

The option which is not a property of the metal aluminium is; Option B;  is resistant to galvanic corrosion

What are the properties of aluminum metal?

Aluminum is a non - ferrous metal that is lightweight, durable, malleable and corrosion-resistant (not galvanic) which is widely used for components in the transportation and construction industries. Its's properties includes;

Non-corrosive.Easily machined and cast.Lightweight yet durable.Non-magnetic and non-sparking.Good heat and electrical conductor.

From all the listed properties and explanations, it is clear that the only option among those given that is not a property of aluminum is Option B

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A strip footing of width 3 m is founded at a depth of 2 m below the ground surface in a (c – 0) soil having a cohesion c = 30 kN/m2 and angle of shearing resistance 0 = 35°. The water table is at a depth of 5 m below ground level. The moist weight of soil above the water table is 17.25 kN/m3. Determine the find ultimate bearing capacity of the soil.

Answers

Using Terzagi's Equation as shown in the attachement;

Qa = 4225 kN/m

As per the given data, the ultimate bearing capacity of the soil is 313 kN/[tex]m^2[/tex]

What is bearing capacity?

Bearing capacity is the capacity of soil to support loads applied to the ground in geotechnical engineering.

To determine the ultimate bearing capacity of the soil, we can use the following formula:

q_ult = cN_c + 0.5γ*(BN_q + 0.4N_g*(B - B_f)*N_q)

To find the values of N_c, N_q, and N_g, we can use the following equations:

N_c = [cot(0) + tan(φ)][1 + 0.2(B_f/D)][(N_q/N_c) - 1][(N_q/N_c) - 2]

N_q = [(1 + sin(0))(1 - sin(0))][(N_q/N_c) - 1]

N_g = 0.5*(N_q - 1)*tan^2(φ)

Using the above equations, we can calculate the values of N_c, N_q, and N_g as follows:

N_c = [cot(35°) + tan(35°)][1 + 0.2(3/2)][(2.45/N_c) - 1][(2.45/N_c) - 2] ≈ 11.5

N_q = [(1 + sin(35°))(1 - sin(35°))][(2.45/N_c) - 1] ≈ 10.5

N_g = 0.5*(10.5 - 1)*[tex]tan^2[/tex](35°) ≈ 2.6

Substituting these values into the formula for q_ult, we get:

q_ult = 3011.5 + 0.517.25*(310.5 + 0.42.6*(3 - 3)*10.5) ≈ 313 kN/m^2

Therefore, the ultimate bearing capacity of the soil is approximately 313 kN/m^2.

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identifies potential new customers and preserves favorable business relationships with past customers

Answers

❎❎❎❎❎❎❎ sorry but that didn't help me that much

Tru or false A tractor is experiencing a reduction in pressure the amount of force this will result in decreasing the Propulsion of the tractor

Answers

False mate I live in one

Answer:

true

Explanation:

i took the test and got it right

3. Of the following answers, which is NOT a way for employees to control exposure routes?

Answers

There are a lot of ways employees uses in controlling exposure routes.  But when risk assessment is not be performed is not a part of the control methods.

What are the three ways to  control workplace hazards?

The ways to control workplace hazards are known to be means taken to ensure safety in the workplace.

The examples are:

The use a hazard control plan to know, select and implement controls. Looking into the efficiency of existing controls, and creating plans with measures to protect workers in case of emergencies and nonroutine activities, etc.

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Consider an unpipelined processor where it takes 8ns to go through the circuits and 0.2ns for the latch overhead. Assume that the Point of Production and Point of Consumption in the unpipelined processor are separated by 4ns. Assume that one-third of all instructions do not introduce a data hazard and two-thirds of all instructions depend on their preceding instruction.

Required:
What is the throughput of the processor (in BIPS) for (i) an unpipelined processor, (ii) a 10-stage pipeline, and (iii) a 20-stage pipeline.

Answers

Answer:

i) 125 * 10^9  i

ii) 5.2 ns

iii) 4.8 ns

Explanation:

i) The throughput of the processor for an unpipelined processor

= [tex]\frac{1}{8*10^9} = \frac{10^9}{8 }[/tex]  = 125 * 10^9  instructions per set

ii ) for a 10-stage pipeline

1st instruction :

= 0.2 + 8ns/10

= 0.2 + 0.8 =  1ns

2nd instruction

= 0.2 + 1 + 4

= 5.2 ns

iii). for a 20-stage pipeline

1st instruction

= 0.2 + 8ns/20

= 0.2 + 0.4  = 0.6 ns

2nd instruction

= 0.2 + 0.6 + 4

= 4.8 ns

An entrepreneur buts a computer from a manufacturer for $975. Calculate
the selling price if he makes a profit of 25%.

Answers

Answer:

1218.75

Explanation: If he makes a 25% profit, he needs to sell it for 125% of the computer price. 1.25*975 is 1218.75

Consider a carbon fiber reinforced epoxy composite. The fibers are continuous, unidirectionally aligned and 40% by volume. The tensile strength of carbon fibers is 2998 MPa, and the Young's modulus is 214 GPa. The tensile strength of the epoxy matrix is 100 MPa, and its Young's modulus is 3 GPa.

Required:
a. Compute the Young's modulus and the tensile strength of the composite in the longitudinal direction.
b. What is Young's modulus in the longitudinal direction?

Answers

Answer:

- the Young's modulus of the composite in the longitudinal direction  = 87.4GPa.

- The tensile strength of the composite in the longitudinal direction  = 1.26 × 10⁹.

Explanation:

The following parameters or data were given in this particular question/problem;

1. "The fibers are continuous, unidirectionally aligned and 40% by volume."

2." The tensile strength of carbon fibers is 2998 MPa, and the Young's modulus is 214 GPa."

3. " The tensile strength of the epoxy matrix is 100 MPa, and its Young's modulus is 3 GPa."

So, let us delve right into the solution to this question:

[ kindly note that part b. of this problem is the same as the part a. of the problem

Also, in point 2. above 2998MPa = 2.998 =GPa, approximately 3GPa].

40% = 40/100 = 0.4. Therefore, 1 - 0.4 = 0.6. Hence, the Young's modulus of the composite in the longitudinal direction = 3 × 0.6 + 214 × 0.4 =  1.8 + 85.6 = 87.4GPa

The tensile strength of the composite in the longitudinal direction = 100 × 10⁶ × 0.6 + 3 × 10⁹ ₓ 0.4 = 1.26 × 10⁹.

which condition results from alcohol consumption and causes swelling and inflammation of the liver?

Answers

Answer:

Alcoholic hepatitis

Explanation:

Hepatitis is a condition that involves inflammation of the liver. When the liver is inflamed, it swells as a result of tissue injury or infection, which can lead to its damage. Hepatitis can be acute (short-term) or chronic (long-term).

Alcoholic hepatitis is a type of hepatitis caused by excessive consumption of alcohol. It is most likely to occur in people who drink heavily over a long period of time, and rarely occurs in those who drink large amounts of alcohol in a short time.

Research new and upcoming “Green Designs” for any plumbing or electrical system in either in the residential or commercial arena. Describe what the idea is and what it does that makes it considered to be a green design and discuss how it is installed and interconnected with the rest of the mechanical and electrical systems within a project. Your paper should be in accordance with APA format. Using one inch margins, the body of the paper is to be between three and four pages. Your paper must also include a title page and reference page(s). An abstract is not required for this assignment. Your paper must include at least two references outside of your text book.

Answers

The use of solar power, hydropower system and geothermal systems are an upcoming trend in  plumbing or electrical system.

What is green design?

Green design is known to be a kind of product or system that is said to be reserved for those areas of design that are said to be consciously working to make the end product a sustainable and ecologically feasible one

Note that Green design is made in numerous fields such as, in car and plumbing or electrical system to save time and money.

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