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Provided a detailed exploration and evaluation of the solution – shipping container homes.

Answers

Answer 1

Answer:

Shipping container homes are an innovative and eco-friendly solution to the housing crisis, as they repurpose used containers that would otherwise go to waste. However, it is important to consider the potential challenges of building with containers, such as insulation and ventilation issues.

Explanation:


Related Questions

which metal is used in planes.

Answers

Answer:

Steel

Explanation:

Steel is the metal that using in planes.

Aluminum and titanium also used in this aircraft industry.

Aluminum is ideal for aircraft manufacture because it's lightweight and strong.

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Answer:

steel

Explanation:

The metals used in the aircraft manufacturing industry include steel, aluminium and titanium with each possessing certain qualities that make them ideal for this use.

When compared to Primary Shoe linings, Secondary Shoe linings are:

Answers

Answer:

Thinner and less durable.

12. The part of the shingle that is left uncovered is:
A. the top
B. to the weather
C. the left end
D. the smooth side

Answers

Answer:

A. The top

Explanation:

2. Explain how fossil fuels are form

Answers

Answer:

Found from interent:

Explanation:

2. Explain how fossil fuels are form

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

Answers

Technician A is incorrect and Technician B is correct.

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

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

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

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

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

rapid impulse conduction from node to node is called

Answers

Answer:

It is called a saltatory propagation.

Which effect is caused by the bending of a structure

Answers

Answer:

The most common structural element that is subject to bending moments is the beam, which may bend when loaded at any point along its length. Failure can occur due to bending when the tensile stress exerted by a force is equivalent to or greater than the ultimate strength (or yield stress) of the element.

Which type of timing system(s) do you most commonly encounter in passenger cars?

Answers

Answer:

The Ins and Outs of Variable Valve Timing (VVT) Systems and Their Role in Vehicle Emissions. By the early 1990s, almost all import automotive manufacturers had a successful variable valve timing (VVT) system in production.

Explanation:

Which statement most accurately evaluates the response to the prompt? Which statement most accurately evaluates the response to the prompt?

Answers

The statement that most accurately evaluates the response to the prompt is "The response fulfills the purpose but is inappropriate for the audience." (Option C)

How is this so?

It is accurate and well aligned to indicate that one is grateful to their teachers. An accurate follow up to that statement should have been an explanation how, citing examples to buttress the initial statement.

Another body of text that could have helped is to mentioned names of specific teachers that have helped.

By deviating from the original thought , the response ceased to be appropriate for the intended audience as the second statement was a bit undiplomatic.

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Full Question:

Although part of your question is missing, you might be referring to this full question:

Which statement most accurately evaluates the response to the prompt?

A. The response fulfills the purpose and is appropriate for the

audience.

B. The response does not fulfill the purpose but is appropriate for the

audience.

C. The response fulfills the purpose but is inappropriate for the

audience.

O D. The response does not fulfill the purpose and is inappropriate for

the audience.

Which statement most accurately evaluates the response to the prompt? Which statement most accurately

If you want a job putting circuit breaker boxes in place, what is the minimum education required for the position?
A. Associate degree
B. Bachelor degree
C. Master's degree
D. Doctoral degree​

If you want a job putting circuit breaker boxes in place, what is the minimum education required for

Answers

Answer:

bachelor

Explanation:

a year after of studying engineering at uni should get you your place since

this is the second highest level this should do.

the 6 penalties for driving under influence

Answers

Young offenders, jail, fines, license troubles, DUI, and punishments

How to prepare the tools and materials for electric wiring?​

Answers

Answer:

The Voltag e Tester.

The Digital Multimeter.

The Non-Contact Voltage Tester.

Lineman's Pli ers.

A Quarter Inch Screwdriver.

Multi Wire Strip per and Cutting Tool.

Help this is due soon

Help this is due soon

Answers

Note that the mean of the data given above is 500.20 ml;

The standard deviation is computed as 8.5 ml approximately. Note that the graph is attached accordingly.

What is the importance of Mean and Standard Deviation?

The mean and standard deviation are important statistical measures as they provide a quantitative description of the central tendency and dispersion of a dataset. The mean is a measure of the typical or average value, while the standard deviation is a measure of how much the values in the dataset vary from the mean.

In real life, the mean and standard deviation are used in various fields such as finance, engineering, psychology, and healthcare.

For example, in finance, the mean and standard deviation of returns are used to assess the risk and potential reward of investments. In healthcare, the mean and standard deviation of a population's blood pressure can be used to determine the prevalence of hypertension and to evaluate the effectiveness of treatments.

To calculate the mean and standard deviation, we'll need to use the following formulas:

Mean = (sum of all values) / (number of values)

Standard deviation = \($\sigma = \sqrt{\frac{\sum_{i=1}^{n}x_i^2 f_i}{\sum_{i=1}^{n}f_i} - \mu^2}$\)


Where:

\(\sigma\): the standard deviation of the dataset

sum of \(x^2_{i}\) * : the sum of the squares of the values in the dataset, each multiplied by its corresponding frequency

sum of \(f_{i}\): the sum of the frequencies of each value in the dataset

\(\mu\): the mean of the dataset

\(\mu^2\): the square of the mean of the dataset.

Mean:

Using the given data, we can calculate the mean as follows:

Mean = (485*13 + 490*17 + 495*25 + 500*40 + 505*23 + 510*18 + 515*15) / (13+17+25+40+23+18+15)

Mean = 75,530/151

Mean = 500.198675

Mean  \(\approx\) 500.20 ml
So the Mean water level in the bottle is approximately 500.20 ml


Standard Deviation:


To compute the Standard Deviation, first we must compute the mean  this has already been computed as 500.20 ml

Next we will need the MW² values. They are given as:

485² =  235,225.00

490² =  240,100.00

495² =  245,025.00

500² =  250,000.00

505² =  255,025.00

510² =  260,100.00

515² =  265,225.00



Next we need to find Frequency * MW²

235,225.00 * 13  = 3,057,925.00

240,100.00 * 17 =  4,081,700.00

245,025.00 *  25  =  6,125,625.00

250,000.00 * 40 =  10,000,000.00

255,025.00 * 23 =  5,865,575.00

260,100.00 * 18 = 4,681,800.00

265,225.00 * 15 = 3,978,375.00

Sum of Frequency*MW² =  37,791,000.00

Recall that:

Sum of Frequency = (13+17+25+40+23+18+15)

Sum of Frequency = 151

Thus,

SD = √[(37,791,000.00/151) - (500.20²)]

SD = √[(250271.523179) - (250200.04)]

SD = √71.483179

SD = 8.45477255756

Standard Deviation (σ) \(\approx\) 8.5


Thus, the mean is approximately  500.20 ml; while the standard deviation is approximately 8.5.

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Help this is due soon

just answered some questions, here’s some points

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Answers

Answer:

Okay got it

How many points are they. Send it to me I want to see it

The answer is I do not know bro

QUESTION 1: Different Line Types Look at the drawing of a different bicycle pump below. This drawing is accurate, so we call it a scale draw It is four times smaller than a real pump. We say it is drawn to a scale of 1:4. That means that if you meas the length of the outer tube of this drawing, it will be four times smaller than the outer tube of the real pu F + 320 Figure 9: Bicycle pump. Scale 1:4 Why is the outer tube of this pump drawn with solid lines?​

Answers

Answer:

The outer tube of the pump is drawn with solid lines because it represents the visible edges of the object, which are the most important and prominent features of the drawing. Solid lines are used to indicate visible edges, while other types of lines such as dashed or dotted lines are used for hidden or construction lines that are not meant to be seen in the final drawing.

Explanation:

When drawing an object, it's important to distinguish between the visible edges and the hidden or construction lines. The visible edges are the lines that represent the outer contour or silhouette of the object, which define its shape and form. In the case of the bicycle pump, the outer tube is the most prominent and recognizable feature of the pump, so it's drawn with solid lines to emphasize its importance and to make it stand out from the other parts of the pump.

On the other hand, the hidden or construction lines are used to guide the drawing process, to show the internal structure or components of the object, or to indicate the position of other features that are not visible from the current viewpoint. These lines are usually drawn with dashed or dotted lines to distinguish them from the visible edges and to avoid confusion.

By using different types of lines, the artist can create a clear and accurate representation of the object, with all the relevant information conveyed in a concise and understandable way. This is especially important in technical or scientific drawings, where precision and clarity are essential for conveying complex ideas or designs.

Sadie wants to sell her fan-fiction on the online platform Fanalot. Instead of selling a subscription plan to all of the stories she has written, she decides to sell readers access to each story individually. Her online research suggests that if she charges x dollars per story, she will sell – 5x+100 stories per month. Fanalot will charge Sadie 20% of the amount she charges per story. So, Sadie will earn 80% of the amount she charges per story, or 0.8x dollars, in profit. Which equation can Sadie use to estimate the price she can charge per story to earn $300 in profit each month?

Answers

The equation Sadie can use to estimate the price she can charge per story to earn $300 in profit each month is:

0.8x(5x+100) - 0.2x(5x+100) = 300

Simplifying this equation, we get:

4x^2 + 80x - 300 = 0

This is a quadratic equation that can be solved using the quadratic formula:

x = (-b ± sqrt(b^2 - 4ac)) / 2a

Plugging in the values for a, b, and c, we get:

x = (-80 ± sqrt(80^2 - 4(4)(-300))) / 8

x = (-80 ± sqrt(73600)) / 8

x = (-80 ± 271.23) / 8

x = -43.9 or 7.9

Sadie cannot charge a negative price, so the only possible solution is:

x = 7.9

Therefore, Sadie can charge $7.90 per story to earn $300 in profit each month.

Has anyone lost faith in humanity ✌️

Answers

‼️‼️‼️thank u for the freebie lolllll shdisndidneidn

GUYS HELP!! What are some stem fair project ideas for 7th grade, my teachers really strict, and he barely takes any stem fair project ideas

Answers

Answer:

Do a plant model that shows photosynthesis

QUICK ASAP!!!

Which option predicts the most likely outcome in the following scenario?

Paul is working with a client to create an indoor pool in a mall. The client’s main concern is cost. Their plans include a chlorine-based filter, though Paul would like to use a different filter that is more eco-friendly.

A. Paul will need to conduct a complete life cycle analysis.

B. Paul will need to persuade his client of the benefits of the different filter.

C. Paul will need to conduct an in-depth cost analysis.

D. Paul will need to research government regulations on different types of filters.

Answers

Answer:

Im pretty sure the answer is B

Explanation:

Paul will need to persuade his client of the benefits of the different filter.

An echo chamber is... * 1.a physical room that bounces sound off the wall 2.a place to gather diverse ideas 3.a marketplace where ideas and posts compete for popularity 4.a self-imposed set of conditions in which you are only exposed to ideas and opinions aligned to your own

Answers

Answer:

The correct option is;

1. A physical room that bounces sound off the wall

Explanation:

In Engineering,  An echo chamber is a room which is used to produce a persistent repetition of a sound after the initial sound is made mainly with the intention of recording purpose

Echo chambers are used in radio programming for sound cave or large room sound effects such that the reverberations are picked up by microphones which provides amplification

Current day echo chambers are achieved by electronic sound effects functions present in modern sound equipment, however, physical echo chambers, such as the famous Capitol Studios echo chambers are still in use.

Jack graduated from a 4 year engineering program and immediately began working for the
large engineering firm he had interned with the previous summer. Jack worked with all
aspects of machine design and implementation into the manufacturing process. Jack took
advantage of the corporation’s tuition reimbursement program and received his masters and
doctorate degrees. After 10 years working in the field, Jack applied for and obtained a job
teaching in the engineering program at a local university.

What Field AND Career Path/Sector is Jack in?

Answers

The Field that Jack is in is Engineering. The career path he is on is Lecturing.

What is a career path?

Career Pathways is a workforce development technique utilized in the United States to assist people in making the transition from schooling to and through the job.

It entails creating goals and determining the skills and expertise required for an employee to attain them. Career pathing provides a broader perspective than the standard career ladder, which merely lays out "rungs" or levels to ascend.

However, the field in which a person has decided to specialize is the area in which they have decided to gain knowledge and theoretical skill.

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

Answers

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

How is law of resistivity represented?

The Law of resistivity can be mathematically represented as:

R = ρ × (L / A)

Where:

R is the electrical resistance of the conductor,

ρ (rho) is the resistivity of the material,

L is the length of the conductor, and

A is the cross-sectional area of the conductor.

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

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Determine the dimensions for T if T = M V^2 A / L^3 where M is a mass, V is a velocity, A is an area, and L is a length.
A. M
B. L/T
C. ML/T^2
D. M/(L T^2)
E. No dimensions

Answers

Answer:

C

Explanation:

I literally had this question yesterday

Answer: C

Explanation: I had this question a couple minutes ago too

purpose of all components in a water level sensor​

Answers

Answer:

A combination of high and low sensors are used to tell the control panel when water levels are too high or too low. The control panel will then automatically turn the pump on or off depending on the corrective action needed.

Explanation:

purpose of all components in a water level sensor​

what happens if you put too many beans in a car and then drive it?

Answers

Simple

You are working at taco bell, so hypothetically, you would be reconsidering your life choices while driving god who knows how many beans

A 35 ft long solid steel rod is subjected to a load of 8,000 lb. This load causes the rod to stretch 0.266 in. The modulus of elasticity of the steel is 30,000,000 psi. Determine the diameter of the rod. (precision of 0.00)

Answers

Answer:

53.67

Explanation:

Augusta Ada King is famous for

Answers

Answer:

Augusta Ada King is famously known for her work on Charles Babbage's early mechanical general-purpose computer, the Analytical Engine.

Explanation:


.

Engineering uses specialized engineering techniques in the medical field. It is a relatively new discipline that
involves applications such as diagnostic equipment, therapeutic devices, pharmaceutical drugs and artificial
Jimbs (prosthetics)..
a. Electrical
b. Polymer
C.Biomedical
D.Civil

Answers

The correct answer is C. Biomedical engineering.

What is Biomedical engineering?

The area of Biomedical engineering is a distinct field that utilizes methods and concepts from engineering to address medical challenges and innovations.

The task involves enhancing healthcare delivery, diagnosis, and treatment via the creation and engineering of diverse medical devices, equipment, and pharmaceuticals.

A vast array of products falls under this area, such as tools for diagnosing medical conditions like magnetic resonance imaging (MRI) and computerized tomography (CT) scanners, medical equipment for treatment purposes such as pacemakers or insulin pumps, medications for various illnesses, and prosthetic limbs designed to aid those with limited mobility.

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A hydraulic press must be used to press-fit two components together in an assembly process. The system must generate at least 3453 lb. of force to perform the press fit. The piston at the input cylinder is pushed with a force of 723 lbs. and has an area of 33.7 in.2. The output can use up to 15 cylinders that are each 33.7 in.2.

How many output cylinders must be incorporated into the design?

Answers

Note that 5 output cylinders must be incorporated into the design.

Why is this so ?

The mechanical advantage   of the system is the ratio of the output force to the inputforce. The mechanical advantage of the system is given by

MA = Fout / Fin

where

MA = mechanical advantage

Fout = output force

Fin = input force

MA = 3453/ 723 = 4.77

The area of the output cylinders is 33.7 in.2. The number of output cylinders is given by

n = Aout / Apiston

where

n = number of output cylinders

Aout = area of the output cylinders

Apiston = area of the piston at the input cylinder

hence,

The number of output cylinders must be at least 4.77 / 1 = 4.77. Since the number of output cylinders must be an integer, the number of output cylinders must be 5.

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Bill Nye The Science Guy Pressure
Hello if anyone saw the video before please help me in the video he is talking too fast for me to get the answers 1. Hovercrafts floats and rockets fly because of Pressure.

2. Water pressure in the bucket, tube and container is the ___________________, but if you hoist the bucket, the water pressure ______________________. This causes the bricks to __________________.

3. _________________ make the pressure on fireboats.

4. _______________________ exert pressure on a small surface area causing the woman to sink in the mud. _________________ spread the pressure over a large area and allow the woman to cross the swamp safely.

5. Room pushes the card upholding the water in the glass

6. ________________ in the room holds the arrow to the glass. Under the suction cup a _________________ is formed.

7. A ___________________ holds the lid on the container tightly enough that it can support Bill’s weight.

8. In the experiment with the water and the glass, the size of the glass and board does/does not matter. Air pressure will/will not hold the cardboard on the glass.

9. Vacuums work because the air in the room has Air pressure and inside the machine, there is ______________ pressure.

10. You can drive a nail into a board by the pointed end because it has _______ area and ________ pressure …but not by the flat end because that end has ________ area and ________ pressure.

11. High pressure water and sand can cut_____________________ and ________________.

12. The air in the cup is compressed when Bill dives to the bottom of the river because the water pressure at the bottom of the river is ____________ than the pressure at the top of the river.

Answers

Answer:

Answer is as follows

Explanation:

1. Pressure is responsible for making hovercrafts float and rockets fly.

2. Water pressure in the bucket, tube and container is the same at the bottom, but if you hoist the bucket, the water pressure decreases. This causes the bricks to fall.

3. Firehoses make the pressure on fireboats.

4. High heels exert pressure on a small surface area causing the woman to sink in the mud. Snowshoes spread the pressure over a large area and allow the woman to cross the swamp safely.

5. Air pressure in the room pushes the card upholding the water in the glass.

6. Suction in the cup in the room holds the arrow to the glass. Under the suction cup, a vacuum is formed.

7. A vacuum holds the lid on the container tightly enough that it can support Bill's weight.

8. In the experiment with the water and the glass, the size of the glass and board does not matter. Air pressure will hold the cardboard on the glass.

9. Vacuums work because the air in the room has air pressure and inside the machine, there is lower pressure.

10. You can drive a nail into a board by the pointed end because it has less area and more pressure...but not by the flat end because that end has more area and less pressure.

11. High-pressure water and sand can cut steel and glass.

12. The air in the cup is compressed when Bill dives to the bottom of the river because the water pressure at the bottom of the river is greater than the pressure at the top of the river.

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