Answer:
4 THEN 2 THEN 1 THEN 3
Explanation:
HOPE THIS HELPS SORRY FOR CAPS
Who is???????????????????
what should i do to my nissan 350z, twin charge it or have twin turbos, to twin turbos with a super charger? i want it to be over 700HP
how would i do this? express ur opinions please.
Answer:
A
Explanation:
It just makes sense
Why is it important to apply and handle finishing materials only in an approved area
Answer:
hsheydulwwkhrhwnnksjdnahywhfuu
why it is important to prepare first the materials and tools carpentry before doing the tasks?
Answer:
It is important to inspect and check materials and tools for defects and damage before receiving them so that you can ask for replacements for those that you found .
Explanation:
The materials and tools carpentry should be prepared before doing tasks so as to seek for replacement incase of a defect.
What are Tools?Tools serves as the working implements that are been used in carrying out specific task especially in engineering.
Therefore, it is essential to check the tools and their working condition before one commence work for the day.
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What are the benefits of using the engineering design process? combining scientific knowledge and creativity in a rigid and structured approach to problem-solving combining scientific knowledge, careful reasoning, and artistic invention in a flexible approach to problem-solving combining scientific knowledge and logic in a rigid and structured approach to problem-solving combining careful reasoning and artistic invention in a flexible approach to problem-solving
Answer:
combining scientific knowledge, careful reasoning, and artistic invention in a flexible approach to problem-solving
Explanation:
4. What is the unit of measure for electricity consumption?
A.Therm
B.Kilowatt-Hour
C.Pounds
D.Kilowatt
Note that the Unit of Measure for electricity consumption is: "Kilowatt-Hour" (Option B)
Why is Unit Of measure important?Unit of measure is important because it provides a standardized way of expressing quantities and measurements that can be easily understood and communicated across different contexts and languages.
It ensures consistency and accuracy in scientific, commercial, and industrial applications, and facilitates efficient exchange of goods and services.
Without standardized units of measure, there would be confusion, errors, and inefficiencies in all aspects of daily life that involve measurements, from cooking recipes to international trade.
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● Windshield Wipers use which motion?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Cams and Valves use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Pistons use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Fuel Injectors and Accelerators use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Steering Columns use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Gears use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
o
● Suspensions use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
● Brakes use which motions?
o Rotary
o Linear
o Reciprocal
o Oscillating
Answer:
Windshield Wipers use Reciprocal motion.
Cams and Valves use Reciprocal motion.
Pistons use Linear motion.
Fuel Injectors and Accelerators use Rotary motion.
Steering Columns use Rotary motion.
Gears use Rotary motion.
Suspensions use Oscillating motion.
Brakes use Rotary motion.
e) What are the major jobs of a nurse?
Answer:
the major jobs of a nurse are
1.to take care of patients
2.to give medicine to patients in time
3.to help doctors in operation time
during the _____ Stroke , the piston is moving Upward in the cylinder, with both valves closed
Answer:
compression
Explanation:
Explain the function of structural analysis in reverse engineering, and outline an example of its different aspects and uses.
Answer:
What is structural analysis reverse engineering?
Reverse engineering (RE) is the process of taking something apart and analyzing its workings in detail, usually with the intention of understanding its structure, function, and operation.
Explanation:
What is capillary action? A) The act of using a solvent to clean a car part B) The ability to get into small spaces and reduce friction points C) The adhesion of water molecules grabbing at the walls of a vessel, drawing the water upward even against the effects of gravity D) When water breaks down dirt without the use of soaps or other cleaners
What are the benefits of synthetic motor oil compared to conventional oil?.
Answer:
At both low and high temperatures, synthetic oils enjoy better viscosity and stability than conventional oil or synthetic blends. Full synthetic oils are designed to flow quickly in winter temperatures and resist extreme heat, allowing your engine to run smoothly year-round. Turbocharger protection.
Answer:
Below:
Explanation:
At both low and high temperatures, synthetic oils enjoy better viscosity and stability than conventional oil or synthetic blends. Full synthetic oils are designed to flow quickly in winter temperatures and resist extreme heat, allowing your engine to run smoothly year-round. Turbocharger protection.
Hope it helps....
It's Muska
why a biomedical engineer would need to dilute any solutions?
Biomedical engineers may need to dilute solutions for several reasons. One common reason is to adjust the concentration of a particular substance to a desired level for experimental or clinical purposes.
Dilution allows for precise control over the concentration of a solution, enabling researchers or healthcare professionals to study the effects of different concentrations of substances on biological systems.
In biomedical engineering, dilution is often employed when working with drugs or therapeutic agents. By diluting a concentrated drug solution, engineers can create different dosages suitable for specific applications. This is crucial for ensuring patient safety and achieving desired therapeutic outcomes.
Additionally, dilution is necessary for calibration and quality control purposes in biomedical engineering. Diluting stock solutions of known concentrations can generate a range of standard solutions used to calibrate instruments, verify measurement techniques, or assess the accuracy of analytical methods.
Dilution plays a critical role in ensuring accurate and reliable data collection, analysis, and experimentation within the field of biomedical engineering.
In summary, dilution is an essential technique for biomedical engineers as it allows them to control the concentration of substances, customize drug dosages, and maintain accuracy in calibration and quality control processes, all of which are vital for research, development, and healthcare applications.
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Which sentence is an example of objective writing?
aOne time when I was on vacation with my dad, we found an arrowhead.
b Arrowheads and spearheads are some of the most familiar objects made by Native Americans.
c My friends and I even tried to make an arrowhead by scraping a rock on the sidewalk
Answer: C
Explanation: He has an objective he's trying to find arrowhead with his friends.
Service information should be checked before replacing/ adding manual transmission/ transaxle
fluid because it can be
a. ATF/ Automatic transmission fluid
b. Engine oil
c. Gear lube
d. All the above
Before replacing or adding manual transmission/transaxle fluid, service information should be examined because it may also be engine oil, gear lubricant, or ATF (automatic transmission fluid).
How do you test the transmission fluid?Whether the car has an automatic or manual transmission, as well as whether you're testing the fluid whether it's hot or cold, all affect how you check the transmission fluid. The procedure is as follows: To follow the procedure, you may also watch this video.
What should I do if the manual transmission on my car is deteriorating?Examine the drained transmission fluid for any gold-colored particles. Without enough gear oil, a manual transmission will wear out very fast and will need to be rebuilt or replaced.
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Is there a way to find the velocity at a specific point in time of a falling object experiencing drag without having a motion sensor?
Yes, there is a way to estimate the velocity of a falling object experiencing drag without a motion sensor, but it requires some assumptions and approximations. See explanation below.
What is the rationale for the above response?One common approach is to use the concept of terminal velocity, which is the constant velocity that a falling object eventually reaches when the drag force due to the surrounding medium (e.g. air) is equal in magnitude to the gravitational force pulling the object downward. At terminal velocity, the net force acting on the object is zero, so it no longer accelerates and its velocity remains constant.
The terminal velocity depends on several factors such as the mass, size, and shape of the object, as well as the properties of the medium through which it is falling. However, for a small object like a ball falling through air, the terminal velocity can be estimated using the following equation:
v_term = sqrt((2 * m * g) / (ρ * A * C_d))
where:
v_term is the terminal velocity in m/sm is the mass of the object in kgg is the acceleration due to gravity (9.81 m/s^2)ρ is the density of the medium (1.2 kg/m^3 for air at sea level)A is the cross-sectional area of the object in m^2C_d is the drag coefficient of the object (a dimensionless quantity that depends on the shape and surface properties of the object)Once the terminal velocity is estimated, one could assume that the object is falling at or near terminal velocity and estimate the velocity at a specific point in time based on the distance it has fallen from its initial height. This assumes that the object has had sufficient time to reach terminal velocity before the velocity measurement is made and that the acceleration due to gravity is constant over the distance fallen, which is a reasonable approximation for short distances.
For example, if a ball is dropped from rest at a height of 10 meters and it takes 2.0 seconds to reach the ground, one could estimate that it is falling at or near terminal velocity and use the following equation to estimate its velocity at t = 1.0 second:
v = sqrt(2 * g * d)
where d is the distance fallen in meters, which is 0.5 * 9.81 * (1.0)^2 = 4.905 meters in this case. Assuming that the ball is falling at or near terminal velocity, we can estimate its velocity at t = 1.0 second to be:
v = sqrt(2 * 9.81 * 4.905) = 9.90 m/s
Note that this method is an approximation and the estimated velocity may not be very accurate, especially if the assumptions are not valid or the object is not falling at or near terminal velocity. A motion sensor would provide a more accurate measurement of the velocity at a specific point in time.
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Pressing which key will change the justification of a wall?
0000
Spacebar
Esc
Enter
Shift
Pressing Shift key will change the justification of a wall. The correct option is D.
What is Shift key?The Shift key On a keyboard, the modifier key Shift is used to type capital letters and other "upper" characters.
On the left and right sides of the row beneath the home row, there are normally two shift keys.
When drawing a wall, hold down the CTRL key to flip it over or reverse its parts. From the Properties Palette, a wall's justification can be set to Left, Right, Center, or Baseline.
You may also hold down the SHIFT key while sketching the wall to cycle through the possible defences.
Thus, the correct option is D.
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50 POINTS! - How to find scale of a design to real life?
(QUESTION EXPLANATION/CONTEXT)
So I have a culminating project and we need to make a 3D model of a bus shelter. My bus shelter is 14 inches high in the 3D modelling editor and supposed to be 157 inches in real life. I need the scale for that size. I am not sure how to find it. If you need any additional info about the design, just comment and I'll send it. ty!
To find the scale of your 3D model in relation to real life, you can use the following formula:
Scale = Real Life Size / Model Size
In your case, the real-life size of the bus shelter is given as 157 inches, and the model size is 14 inches. Plugging these values into the formula:
Scale = 157 inches / 14 inches
Scale ≈ 11.21
Therefore, the scale of your 3D model would be approximately 1:11.21. This means that one unit in your 3D model represents 11.21 units in real life. To convert any measurements from your 3D model to real-life measurements, you would multiply them by the scale factor.
where will a power cable most likely fail
A.at the connection to the plug
B.at a crimp
C.at the connection to the molded receptacle to the cable
D.at the connection to the load at the terminal
Answer:
A cable failure almost always exhibits itself as either an open circuit or a short circuit. Open circuits are more common in low voltage cables than at medium or high voltage. Open circuits are usually the result of failed connectors, or broken and/or corroded conductors.
disadvantages of large window
Answer: it can be broken more easily, and also can be ripped off by the wind
Explanation: NA
Which of the following is considered a fall prevention system because it stops a person from falling in the first place?
Select the best option.
Anchor
Guardrails
Personal fall arrest systems
Safety nets
The best option is Guardrails. Guardrails are put in place in the home and out in public spaces to prevent falls, that is their sole purpose.
What is Guardrails ?Guard rails, or protective guarding in general, are a boundary feature that can be used to prevent or deter access to dangerous or off-limits areas while allowing more light and visibility than a fence.
In horizontal railings, common shapes include flat, rounded edge, and tubular, whereas vertical railings around homes are most commonly tetraform spear-headed or ball-finialled. Park and garden railings frequently feature swirls, leaves, plate metal areas, and/or motifs, especially on and beside gates.
Guard rails are installed in many public places to protect against accidental falls. Any abrupt change in elevation where the higher portion is accessible creates the possibility of a fall. Rails are installed to protect people using the premises as a result of this responsibility and liability. Guardrails are generally required by code in the United States where there is a drop of 30 inches or more.
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Which statement describes a way in which society affects the development of technology? A. Modern farming machines allow farmers to produce more food than before. B. The development of new vaccines prevents diseases from spreading. C. Satellites allow people to better forecast and prepare for hazardous weather. D. The need for artificial limbs leads to the development of robotic arms and legs.
The statement that describes a way in which society affects the development of technology is that need for artificial limbs leads to the development of robotic arms and legs. The correct option is D.
What is technology?Technology is the pragmatic application of scientific knowledge. It encompasses machineries (such as computers) as well as processes and methods.
It may appear that all innovation is electronic, however that is only true among most modern technology.
What aspects of technology are developed and how they are used are influenced by societies. People control technology (and science) and bear responsibility for its consequences.
Using artificial means to prevent or facilitate pregnancy raises ethical, religious, and even political concerns.
Thus, the correct option is D.
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When driving, your hand position should be at
10 and 2
3 and 6
9 and 5
8and 4
8. The two-stroke engine must still complete all four stages of operation-it just does this in two piston strokes instead of
O A. two
O B. four
OC. one
O D. three
Answer:
4
Explanation:
you are just doubling it
Answer:four
Explanation:
Maintenance. Mastery Test
Select the correct answer.
William owns a small factory that manufactures steel tumblers. He is looking for industrial transportation equipment to move raw material and finished
products short distances around his facility. Which piece of equipment would suit his requirement?
A truck
B. forklift
C. pallet jack
D. conveyor belt
The piece of equipment that would suit William's requirement to move raw material and finished products short distances around his facility is the forklift (option B).
What is the Maintenance?Forklifts are commonly secondhand in industrial settings for material management tasks such as mobile heavy loads, stacking and arranging pallets, and transporting goods across short distances.
Trucks are mainly used for conveyance over longer distances, and pallet jacks and messenger belts are typically secondhand for specific tasks such as stowing and unloading cargo or mobile materials near a set path.The maintenance check would contain critical elements such as: Oil and lube change.
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whoever follows me & answers this first gets brainliest!!
Answer:
Hi
Explanation:
Answer:
ugh!
Explanation:
i got last TwT
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
Describe how to mix and apply body filler?
10) A roller coaster has a circular loop of radius 5.0 m. You go around at the minimum speed.
How fast will you be moving at the bottom?
What is your acceleration? (in m/s2, in g’s)
How does this feel? Where else have you felt this effect?
Draw a Force Diagram at the bottom.
This is dangerous. What should the radius be at the bottom, so that you only feel 2 g’s?
.
Explain why these loops have the shape that they do.
Answer:
1) The speed of the roller coaster at the bottom is approximately 15.65 m/s
2) The acceleration of the roller coaster at the bottom is 6·g's
3) The high acceleration is 6 times the force of the weight of the passengers
The high acceleration can cause gravity induced loss of consciousness
4) Please find attached a force diagram of the forces at the bottom of the roller coaster created with Microsoft Visio
5) For the acceleration at the bottom to be 2·g's the radius of the rollercoaster at the bottom should be 25 meters
5) The radius at the bottom of roller coasters are increased to reduce the normal force felt by the passengers as they pass the bottom of a circular roller coaster
Explanation:
1) The given parameters are;
The radius of the roller coaster, r = 5.0 m
The speed of the roller coaster = Minimum = 0 m/s
The shape of the roller coaster's path = Circular loop
Therefore, the maximum height of the roller coaster, h = The diameter of the of a circular path of the roller coaster, d = 2 × r = 2 × 5.0 m = 10.0 m
∴ h = 10.0 m
The minimum speed is f=given by the following equation;
\(F_N = \dfrac{m \cdot v^2}{R} - m \cdot g = 0 \ (At \ the \ top \ of \ the \ roller \ coaster's \ path)\)
Therefore, we have;
\(\dfrac{m \cdot v^2}{R} = m \cdot g\)
From which we have;
v = √(R × g)
Where;
R = The radius of the path of the roller coaster = 5.0 m
g = The acceleration due to gravity = 9.8 m/s² = constant
By plugging in the values of the variable, 'R', and the constant, 'g', we get;
v = √(5.0 m × 9.8 m/s²) = 7 m/s
The minimum speed of the roller coaster, v = 7 m/s
The speed of the roller coaster at the bottom is given by the conservation of energy formula as follows;
The energy at the top of the roller coaster = The energy at the bottom of the roller coaster
∴ The total mechanical energy of the roller coaster, M.E., is constant and at the top, \(M.E._{top}\), is given as follows;
\(M.E._{top}\) = 1/2·m·v₁² + m·g·h₁
At the bottom, the total mechanical energy is given as follows;
\(M.E._{bottom}\) = 1/2·m·v₂² + m·g·h₂
Where;
v₁ = The velocity of the roller coaster at the top = 7 m/s
h₁ = The height of the roller coaster at the top = 10 m
v₂ = The speed of the roller coaster at the bottom
h₂ = The height of the roller coaster at the bottom = 0 m
g = The acceleration due to gravity = 9.8 m/s² = Constant
By plugging in the values, we get;
M.E. = \(M.E._{top}\) = \(M.E._{bottom}\)
∴ 1/2·m·v₁² + m·g·h₁ = 1/2·m·v₂² + m·g·h₂
1/2 × (7 m/s)² + 9.8 m/s² × 10.0 m = 1/2 × v₂² + 9.8 m/s² × 0 m
122.5 m²/s² = 1/2 × v₂²
∴ v₂² = 2 × 122.5 m²/s² = 245 m²/s²
v₂ = √(245 m²/s²) = 7·√5 m/s ≈ 15.65 m/s
The speed of the roller coaster at the bottom, v₂ ≈ 15.65 m/s
2) The normal force on the car at the bottom of the roller coaster is given as follows;
\(F_N = \dfrac{m \cdot v_2^2}{R} + m \cdot g = m \times \left(\dfrac{ v_2^2}{R} + g \right )\)
Force, F = Mass, m × Acceleration, a
∴ F = m×a
Therefore, the acceleration at the bottom, 'a' by comparison of the general equation for force, 'F', and the normal force, \(F_N\), is given as follows;
\(a = \left(\dfrac{ v_2^2}{R} + g \right )\)
Plugging in the values for 'v₂²', 'R', ang 'g', gives;
\(a = \left(\dfrac{ v_2^2}{R} + g \right ) = \left(\dfrac{ 245}{5} + 9.8 \right ) = \left(49+ 9.8 \right ) = (5 + 1) \times 9.8 = 6 \times 9.8 = 6 \times g\)
a = 6·g = 58.8 m/s²
3) The high acceleration will lead to a very high normal force (equal to 6 times each of their weight) experienced by the passengers with a force
The high acceleration is dangerous and can lead to gravity induced loss of consciousness since it is more than 3·g's
4) Please find attached the force diagram at the bottom of the roller coaster created with Microsoft Visio
5) For the acceleration at the bottom to be 2·g's, we have;
\(a = \left(\dfrac{ v_2^2}{R} + g \right )\)
At a = 2·g, we have;
\(2 \cdot g = \left(\dfrac{ v_2^2}{R} + g \right )\)
\(\therefore 2 \cdot g - g = g = \dfrac{ v_2^2}{R}\)
\(R = \dfrac{ v_2^2}{g} = \dfrac{245}{9.8} = 25\)
R = 25 m
The radius at the bottom of the roller coaster should be 25 meters so that only 2·g's is felt
5) The shape of the roller coaster has an increases the radius at the bottom so as to reduce the acceleration of the car
.
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
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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