Multiply two numbers, x and y, without using MUL instruction. Use registers $t1 and $t2 for inputs and register $t3 to store the result.

Answers

Answer 1

The values of x, y, and the result are stored in memory locations x, y, and result, respectively. You may need to modify the code accordingly if the values are stored differently.

To multiply two numbers, x and y, without using the MUL instruction in MIPS assembly language, you can use a loop to perform repeated addition. Here's an example code snippet that demonstrates this:

```assembly

.data

x: .word 5

y: .word 7

result: .word 0

.text

.globl main

main:

   # Load x and y from memory into registers $t1 and $t2

   lw $t1, x

   lw $t2, y    

   # Initialize the result to 0

   li $t3, 0

   # Loop to perform repeated addition

   loop:

       add $t3, $t3, $t1   # Add x to the result

       addi $t2, $t2, -1   # Decrement y by 1

       # Check if y is zero

       beqz $t2, done

       # Continue looping

       j loop

   done:

       # Store the result in memory

       sw $t3, result

       # Exit the program

       li $v0, 10

       syscall

```

In this code, the values of x and y are loaded from memory into registers $t1 and $t2, respectively. The result is initialized to 0 in register $t3.

The loop starts by adding the value of x to the result ($t3) and then decrementing the value of y by 1. If y is not zero, the loop continues, and the addition is performed again. Once y becomes zero, the loop ends, and the result is stored in memory.

After executing this code, the value of the product of x and y will be stored in the memory location specified by the result label.

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Related Questions

What engineer would be most likely to work on identifying and reducing the number of defective car engines built on an assembly line?

Answers

Answer:

Industrial Engineer

Explanation:

An Industrial Engineer is a professional who is responsible for designing production layouts and processes that increase productivity, eliminate wastefulness and reduce costs while maintaining quality standards within an organization.

With the aid of block diagrams, construct an open loop and a closed loop

control systems. Then, identify the differences between the two control

structures.

Answers

An open loop control system is a type of control system in which the output does not affect the control action. The block diagram for an open loop control system is shown below:

[Input] --> [Controller] --> [Plant] --> [Output]

A closed loop control system is a type of control system in which the output is used to adjust the control action. The block diagram for a closed loop control system is shown below:

[Input] --> [Controller] --> [Plant] --> [Output] --> [Feedback] --> [Controller]

What is the open and closed loop  about?

In the open loop diagram, the input signal is passed through the controller, which generates an output signal that is used to control the plant. The plant then produces the final output, but this output is not fed back to the controller to adjust the control action.

In the close diagram, the input signal is passed through the controller, which generates an output signal that is used to control the plant. The plant then produces the final output, which is fed back to the controller. This feedback signal is used to adjust the control action, allowing for more precise and accurate control of the plant.

Therefore, main difference between the two control structures is the presence of feedback.

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The mass of a muon is 207 times the electron mass; the averagelifetime of muons at rest is 2.20 μs. In a certainexperiment, muons moving through a laboratory are measured to havean average lifetime of 6.85 μs. For the movingmuons, whatare (a)β(b)K,and (c)p (in MeV/c)?The rest energy of the electron is 0.511 MeV.

Answers

For moving muons in the given scenario, the values of β, K, and p are 0.824, (pc² / 104.977 MeV/c²), and √[(K + m0c²)²/c⁴ - m0²c²/c⁴] / c, respectively. These values are obtained through calculations using the provided data and relevant formulas.

The mass of a muon is 207 times the electron mass; the average lifetime of muons at rest is 2.20 μs. In a certain experiment, muons moving through a laboratory are measured to have an average lifetime of 6.85 μs.

The rest energy of the electron is 0.511 MeV. Formulas:Total energy of the particle: E = (m²c⁴ + p²c²)¹/², Where,

E = Total energy of the particle m = Rest mass of the particlec = Speed of light in vacuum p = Momentum of the particleβ = v/c, Where, β = Velocity of the particle/cK = Total Kinetic Energy of the particleK = E - mc²p = Momentum of the particle p = mv

To calculate the value of β for moving muons, we need to calculate the velocity of the muons. To calculate the velocity of the muons, we can use the concept of the lifetime of the muons. The average lifetime of muons at rest is 2.20 μs.

The moving muons have an average lifetime of 6.85 μs. The time dilation formula is given byt = t0 / (1 - β²)c², where,

t = Time interval between the decay of the muon measured in the laboratory.t0 = Proper time interval between the decay of the muon as measured in the muon's rest frame.c = Speed of light in vacuumβ = Velocity of the muon.

Hence,t0 = t / (1 - β²)c²t0 = 2.20 μs / (1 - β²)c²t = 6.85 μs. From these two equations, we can calculate the value of β.6.85 μs / t0 = 6.85 μs / (2.20 μs / (1 - β²)c²)β² = 1 - (2.20 μs / 6.85 μs)β² = 0.679β = 0.824. Hence, the value of β is 0.824.

To calculate the value of K for moving muons, we need to calculate the total energy of the muons. The rest mass of the muon is given bym0 = 207 × 0.511 MeV/c²m0 = 104.977 MeV/c².

The total energy of the muon is given byE = (m²c⁴ + p²c²)¹/²E = (104.977 MeV/c²)²c⁴ + (pc)²K = E - m0c²K = [(104.977 MeV/c²)²c⁴ + (pc)²] - (104.977 MeV/c²)c²K = pc² / (104.977 MeV/c²). Hence, the value of K for moving muons is pc² / (104.977 MeV/c²).

To calculate the value of p for moving muons, we can use the value of K calculated in p = √(E²/c⁴ - m0²c²/c²) / cHere,E = (m²c⁴ + p²c²)¹/²E²/c⁴ = m²c⁴/c⁴ + p²p²c²/c⁴ = (K + m0c²)²/c⁴p = √[(K + m0c²)²/c⁴ - m0²c²/c⁴] / c. Hence, the value of p for moving muons is √[(K + m0c²)²/c⁴ - m0²c²/c⁴] / c.

Therefore, the values of β, K, and p are 0.824, (pc² / 104.977 MeV/c²), and √[(K + m0c²)²/c⁴ - m0²c²/c⁴] / c respectively.

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how much metal can be removed from a cracked drum to restore surface

Answers

There is a turn to limit stamped on it but as others have said, if it is cracked, you need to replace.

No amount of metal removal will restore a cracked surface, rather, there is a need to completely change the metal drum.

What is a metal drum?

This means a from of cylindal metal container that is used for shipping or storage of liquids.

When its surface is cracked, then, no amount of metal removal will restore a cracked surface, rather, there is a need to completely change the metal drum.

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Which of the following best describes the universal biohazard label?

Answers

\(\huge\underline{\red{A}\green{n}\blue{s}\purple{w}\pink{e}\orange{r} →}\)

Labels are fluorescent orange or orange-red with lettering and symbols in a contrasting color.

Explanation:

Hope it helps you~

A venture tube is used to measure the flow rate of a liquid in a pipe (liquid density is 800 kg/m3). The pipe has a diameter of 10 cm and the smallest diameter of the venture has a diameter of 4 cm. A manometer with a manometer fluid of mercury (specific weight of 133 kN/m3) is used to calculate the flow rate which is connected to the venture section such that one leg is far upstream and the second leg is at the minimum diameter of the venture tube. If the flow rate is 0.05 m3/s determine the elevation change in the manometer fluid.
a. 14.6 m
b. 9.28 m
c. 4.64 m
d. 2.32 m

Answers

Answer:

\(\triangle h=4.935m\)

Explanation:

From the question we are told that:

Liquid density \(\rho=800\)

Diameter of pipe \(d=4cm \approx 0.004m\)

Diameter of venture \(d=10cm \approx 0.010m\)

Specific weight of mercury P_mg \(133 kN/m^3\)

Flow rate \(r=0.05 m^3/s\)

Area A:

            \(A_1=\frac{\pi}{4}0.1^2\\A_1=0.00785m^2\\A_2=\frac{\pi}{4}0.04^2\\A_2=0.001256m^2\\\)

Generally the Bernoulli's equation is mathematically given by

\(\frac{P_1}{\rho_1g}+\frac{V_1^2}{2g}=\frac{P_2}{\rho g}+\frac{V_2^2}{2g}\\\)

Where

\(V_1=\frac{r}{A_1} \\\\ &V_1=\frac{r}{A_2}\)

Therefore

\(P_1-P_2=\frac{Pr^2}{2}(\frac{A_1^2-A_2^2}{A_1^2A_2^2})\)

Generally the equation for pressure difference b/w manometer fluid is given as

\(P_1-P_2=(p_mg-pg)\triangle h\)

Therefore

\((p_mg-pg)\triangle h=\frac{Pr^2}{2}(\frac{A_1^2-A_2^2}{A_1^2A_2^2})\)

\(\triangle h=\frac{\frac{Pr^2}{2}(\frac{A_1^2-A_2^2}{A_1^2A_2^2})}{(p_mg-pg)}\)

\(\triangle h=\frac{\frac{(800)(0.05)^2}{2}(\frac{(0.1)^2-(0.4)^2}{(0.1)^2(0.04)^2})}{(1.33*10^3-800*9.81)}\)

\(\triangle h=4.935m\)

Therefore elevation change is mathematically given by

\(\triangle h=4.935m\)

experimental design consists of several variables, and identifying these variables is one of the inquiry process skills. in experimental design, the variable that is being tested is the

Answers

experimental design consists of several variables, and identifying these variables is one of the inquiry process skills. in experimental design, the variable that is being tested is the dependent variable.

In experimental design, the dependent variable is the variable that is being tested or measured to determine the effect or influence of the independent variable(s). It is the variable that is expected to change or be influenced by the manipulation of the independent variable(s). The dependent variable is the outcome or response variable that researchers are interested in studying.

For example, in a study investigating the effect of a new drug on blood pressure, the dependent variable would be the blood pressure readings. The researchers would manipulate the independent variable (the administration of the drug) and measure how it affects the dependent variable (blood pressure).

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A petrochemical plant in Island C produces formaldehyde (CH2O) industrially by the

catalytic oxidation of methanol (CH3OH). The following is the chemical reaction:

CH3OH + ½O2 → CH2O + H2O --- (1)

Unfortunately, a significant portion of the formaldehyde will react with oxygen to produce CO

and H2O. The following is the side reaction:

CH2O + ½O2 → CO + H2O --- (2)

Assume twice the stoichiometric amount of air needed for oxidation (all chemical reactions) is

fed to the reactor. The conversion of methanol is 90% in the reactor. The outlet stream of the

reactor was analysed and found to be 150 kg/hr of formaldehyde, 30 kg/hr of CO and other

components.(i) Determine the mass flowrate (kg/hr) of Stream A. (ii) Determine the molar flowrate (kg-moles/hr) of Stream B (iii) Determine the mass flowrate (kg/hr) of water in the outlet stream.

A petrochemical plant in Island C produces formaldehyde (CH2O) industrially by thecatalytic oxidation

Answers

I don’t know the answer...sorry

Anyone got a pc that can run 240 fps? Around like 1,300 dollars that can run 240 fps on fortnite whoever answers and gives me a good pc I will give brainliest

Answers

Answer:

What do u need it for just gaming or for streaming and other things

I’ve said this several times before but it bears repeating: Gaming PCs are bottomless pits.

Which of the following dc motors acts as a form of electrical ratchet

Answers

Among the DC motors listed, the electrical ratchet mechanism is commonly associated with a stepper motor.


What is a Stepper Motor?

The electrical ratchet mechanism is typically linked with a stepper motor among the available options for DC motors. A stepper motor makes use of electrical pulses to initiate precise rotational movements, thereby enabling accurate control over its operation.

It generally follows a sequential process where each movement is associated with a set rotation angle. The stepper motor shares a quality with an electrical ratchet as it moves forward in specific intervals, reminiscent of the ratcheting action.

The ratchet-like behavior isn't inherent in other forms of DC motors like brushless DC motors and brushed DC motors.

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Choose two other elements from the periodic table that you predict should react to form something like table salt


Please pleassssss helppp

I give branlistttttt

Choose two other elements from the periodic table that you predict should react to form something like

Answers

sodium (Na) and chloride (Cl) make table salt if that’s what you’re asking

Given below are the measured streamflows in cfs from a storm of 6-hour duration on a stream having a drainage area of 185 mi^2. Derive the unit hydrograph by the inverse procedure. Assume a constant baseflow of 550 cfs.

Hour Day 1 Day 2 Day 3 Day 4
Midnight 550 5,000 19,000 550
6 am 600 4,000 1400
Noon 9000 3000 1000
6 pm 6600 2500 750

Answers

Answer:

33.56 ft^3/sec.in

Explanation:

Duration = 6 hours

drainage area = 185 mi^2

constant baseflow = 550 cfs

Derive the unit hydrograph using the inverse procedure

first step : calculate for the volume of direct runoff hydrograph using the details in table 2 attached below

Vdrh = sum of drh *  duration

        = 29700 * 6 hours ( 216000 secs )

        = 641,520,000 ft^3.

next step : Calculate the volume of runoff in equivalent depth

Vdrh / Area = 641,520,000  / 185 mi^2

                    = 1.49 in

Finally derive the unit hydrograph

Unit of hydrograph = drh /  volume of runoff in equivalent depth

                                = 50 ft^3 / 1.49 in  =  33.56 ft^3/sec.in

Given below are the measured streamflows in cfs from a storm of 6-hour duration on a stream having a
Given below are the measured streamflows in cfs from a storm of 6-hour duration on a stream having a

a) what would if we tried to further accelerate a
Supersonic fluid with a
diverging diffuser?

Answers

If we tried to further accelerate a Supersonic fluid with a diverging diffuser,  the pressure will decrease due to an increase in area. This can be described as :

dA/A = dP/ρV² (1-M²) for supersonic flow Mach Number, M: M > 11 - M² < 0 (dA/A) = -K (dP/ρV²)k = 1-M²

What is Supersonic Fluid?

Supersonic flow fields have Mach numbers greater than one at every location. Supersonic flows are usually characterized by the presence of shock waves, which cause abrupt changes in flow characteristics and streamlines (in contrast to the smooth, continuous variations in subsonic flows).

Supersonic and subsonic relate to speeds that are faster or slower than the speed of sound, respectively. Supersonic means traveling faster than the speed of sound, which is 343.2 m/s (1,126 ft/s). Subsonic speeds are defined as anything moving slower than the speed of sound.

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4. a. A family purchased a 3 acre piece of land in Limuru for Kshs.30,000,000.00 fifteen years ago. They planted trees at a cost of Kshs.250,000.00 per acre. Each year they have been spending on average Kshs.25,000.00 per acre per month to take care of the trees and also to secure the property. They are now considering selling it. What is the minimum amount they should accept so as not to incur a loss bearing in mind that comparable properties have been yielding a rate of 6.5% interest per annum? (8 marks)

b. “Compulsory acquisition is the power of government to acquire private rights in land for public good without the willing consent of the owner but; in exchange for compensation”. Discuss this statement with special reference to the main considerations that ought to be made in conducting a valuation for compulsory acquisition. (12 marks)

Answers

The family should accept a minimum of Kshs.42,250,000.00 to avoid incurring a loss.

Why should they accept this amount and why?

To obtain the total cost, the expenses for the land, trees and upkeep are summed up and subsequently reduced by 6. 5% using a discount rate.

Hence, it can be seen that a forced acquisition appraisal primarily focuses on three key factors: the land's market value, the expenses involved in replacing the property, and the potential harm caused to the owner's belongings.

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

Answers

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

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

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

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

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

So the work input from the energy balance equation :

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

          \($w=h_2 - h_1$\)

              = 116.09 - 101

              = 15.09

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

calculate force and moment reactions at bolted base O of overhead traffic signal assembly. each traffic signal has a mass 36kg, while the masses of member OC and AC are 50Kg and 55kg, respectively. The mass center of mmber AC at G.​

Answers

Answer:

The free body diagram of the system is, 558 368 368 508 O ?? O, Consider the equilibrium of horizontal forces. F

Explanation:

I hope this helps you but I think and hope this is the right answer sorry if it’s wrong.

Identify an object in your house that contains a physical system and list three questions you could use to define the system

Answers

Answer:

ALL CAREFULLY ANSWERED CORRECTLY

Explanation:

1) A loaf of Bread PHYSICAL SYSTEM

✓ How can the environment affect the edibility of the bread

✓ What are the constituents that makes up the bread

✓ What process is involved in these constituents mixing to form the loaf.

2) The law of thermodynamics makes us to understand that when heat/energy passes through a system, the systems internal energy changes with respect to the conservation of energy law. That is energy lost = energy gained. Typically, ice would melt in a cup of hot tea because of the thermal energy in the molecules of the hot tea. When you heat a material, you are adding thermal kinetic energy to its molecules and usually raising its temperature. The temperature of the ice raises due to the kinetic energy added to it and it melts to water.

3) The theory of systems view the world as a complex system of interconnected parts. If we consider the society; (financial systems, political systems, etc) we will agree that they individually have their own components and it's the summation of this components that makes the system, this implies that system thinking could be applicable in this kinda of systems as long as they are made up of components.

4) Technology has boosted every sector of our lives and it has the capacity to do more. Restricting it's importance to entertainment alone would be an underusing of its potentials. Engineering students infact should not need any drive to be encouraged about maximizing all it can do in shaping our world.

5) ~ Nature shows its splendid soul

~Never ceases to leave us in amazement

~And we are in love

An object that contains a physical system is a T.V. remote control. Three questions that contain physical systems are:

Is air a physical system?What steps are taken to combine these ingredients to create the loaf?How might the environment impact the bread's palatability?

What is a physical system?

Sensors, motors, and robots are examples of physical systems. The use of the TV remote controls, traffic lights, security systems, air conditioning systems, and automatic doors are just a few examples given. We give explanations for why we employ physical systems.

A physical system is made up of components or elements that when put together display behavior that its component parts alone do not. (Biological systems and living systems are included in this definition.) The two components of physical systems are matter and energy.

Therefore, a TV remote control is an item that houses a physical system. Three questions are:

Is the air a system of matter? How are these ingredients mixed together to make the loaf? How may the flavor of the bread be affected by the surroundings?

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Some full-time 4WD sedans use a front engine and transaxle, with a drive shaft connected to drive the rear wheels.
Select one:
True
O False

Answers

Answer:true

Explanation:

Can be used to eliminate rubbing friction of wheel touching frame. 1.Traction 2.Thrust washer

Answers

Answer:

thrust washer

can be used to eliminate rubbing friction of wheel touching frame

Which definition best describes a regulator?
Oamechanical deice that presses gas into a smal container
O an incompressibie iquid ike oil or water
O a device that helips control the fow of a fuid
O adevice that coilects liquid in a hydraulic system and keeps it under pres

Answers

Answer:

d

Explanation:

it measures things so i think that is the answer

Answer:

it would be d

Explanation:

i hope this helps

a) A channel has a Signal to Noise Ratio of 2000 and Bandwidth
of 5000 KHz. What is the maximum data rate supported by the line?
[5 marks] b) We have a message D = 10 1000 1101 (10 bits). Using a
pred

Answers

The maximum data rate supported by the line is 100 Mbps. b) It seems that the question got cut off.

a) To determine the maximum data rate supported by the line, we can use the Nyquist formula for channel capacity:

C = 2 * B * log2(1 + SNR) Where:

C is the channel capacity (maximum data rate)

B is the bandwidth

SNR is the signal-to-noise ratio

Given:

SNR = 2000

Bandwidth B = 5000 KHz = 5 MHz

Plugging the values into the formula:

C = 2 * 5 * 10^6 * log2(1 + 2000)

C = 2 * 5 * 10^6 * log2(2001)

Using logarithmic properties, we can simplify further:

C = 2 * 5 * 10^6 * log2(2^10)

C = 2 * 5 * 10^6 * 10

C = 100 * 10^6

C = 100 Mbps

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An interest rate of norminal 12% per year , compounded weekly is

Answers

Answer: It is  a nominal rate per year

How is varnished timber shaped and cut?

Answers

You can paint over varnished wood as long as you use the right materials and painting process. The best paint to use is a water-based acrylic one. If you're using an oil-based paint only use an oil-based primer, not an acrylic one

A cylindrical steam boiler stack has a diameter of 1.0 m and is 30.0 m high. It is exposed to a wind at 250C having a velocity of 50 miles/h. Calculate the force exerted on the boiler stack

Answers

To calculate the force exerted on the cylindrical steam boiler stack by the wind, we need to use the following formula:the force exerted on the cylindrical steam boiler stack by the wind is approximately 9058.4 Newtons.

\(F = 0.625 * Cd * A * ρ * V^2\)  where F is the force exerted, Cd is the drag coefficient, A is the cross-sectional area of the stack, ρ is the density of air, and V is the wind velocity.First, we need to convert the units of the wind velocity to meters per second:50 miles/h = 22.352 m/s  Next, we can calculate the cross-sectional area of the stack:  \(A = π * r^2 = π * (0.5 m)^2 = 0.7854 m^2\)  Assuming a drag coefficient of 1.2 and a density of air of \(1.2 kg/m^3\), we can substitute these values into the formula: \(F = 0.625 * 1.2 * 0.7854 * 1.2 * (22.352 m/s)^2\)F = 0.625 * 1.2 * 0.7854 * 1.2 * (22.352 m/s)^2  F = 9058.4 N  Therefore, the force exerted on the cylindrical steam boiler stack by the wind is approximately 9058.4 Newtons.

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A nutrunner on the engine assembly line has been faululing for low torque. (A nutrunner is an automated machine that automatically torques bolts to a specified condition.) When the fault odcurs, the line stops until someone can investigate or correct the issue. This has been a problem for the past two weeks, and all employees on the assembly line are having to work overtime each day to make up for the lost time from the nutrunner issues. Please explain and visualize the process you would take to solve or improve this problem.

Answers

A nutrunner on the engine assembly line has been failing for low torque. process includes identifying the root cause of the fault, and optimizing the nut runner's performance.

The first step would be to investigate the cause of the low torque issue in the nut runner. This may involve examining the machine, reviewing maintenance records, and gathering data on when and how the fault occurs. Once the root cause is identified, corrective actions can be taken. This may include repairing or replacing faulty components, recalibrating the nut runner, or updating software/firmware.

To prevent future occurrences, implementing a preventive maintenance program is crucial. Regular inspections, scheduled maintenance tasks, and performance testing can help identify and address potential issues before they lead to line stoppages. Additionally, providing thorough training to operators and maintenance staff on nutrunner operation, maintenance procedures, and troubleshooting techniques can contribute to quicker resolution of faults and reduce downtime.

Continuous monitoring of the nutrunner's performance is essential to ensure it operates within specified tolerances. This can be done through real-time data collection and analysis, including torque measurement and trend analysis. By closely monitoring the nutrunner's performance, any deviations or anomalies can be detected early, allowing for proactive interventions.

Overall, a systematic approach that combines investigation, preventive maintenance, employee training, and continuous monitoring can help solve the problem of the faulty nutrunner and improve the efficiency and productivity of the assembly line.

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cabin upholstery materials installed in current standard category airplanes must

Answers

Cabin upholstery materials installed in current standard category airplanes must be at least flame resistant

What is Cabin upholstery

Cabin upholstery in standard airplanes must meet safety requirements. Requirements may include fire resistance, durability, maintenance, and toxicity.

Common cabin upholstery materials in standard airplanes must be flame-resistant to minimize fire risks and provide passengers more evacuation time. Fire-resistant fabrics are commonly used with coatings or made from materials like wool or aramid fibers. Synthetic leather is a durable and low-maintenance option for airplane upholstery.

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Which of following are coding languages used in controlling a robot? *
A. Scratch
B. B/B--
C. C/C++
D. Robot Z

Answers

Answer:

C/C++

Explanation:

C/C++

Select the correct answer. Which statement best describes a hydrogen fuel cell? A This device uses bioethanol as an additive to power an automobile. B. O C. This device uses photovoltaic cells to capture solar energy and generate electrical energy from it. This device uses fossil fuels to generate heat energy that machines can then convert into mechanical energy. This device converts the chemical energy of hydrogen into electricity through a chemical reaction with oxygen or another oxidizing agent. O D. E. This device converts the kinetic energy of an electric turbine into electricity based on Faraday's law.​

Answers

Answer:

Explanation:

The correct answer is "D. This device converts the chemical energy of hydrogen into electricity through a chemical reaction with oxygen or another oxidizing agent."

A talks about bio-ethanol fuel.

B is solar.

C is fossil.

E is electricity generation.

Answer:

Explanation:

ans is:

This device converts the chemical energy of hydrogen into electricity through a chemical reaction with oxygen or another oxidizing agent. O D

Can space debris take out a whole state

Answers

Yes depends how big the debris is

According to a recent study quoted in the textbook, __________________ were the number one skill(s) that college graduates found useful in the business world. Group of answer choices

Answers

Answer: According to a recent study quoted in the textbook, communication and interpersonal skills were the number one skill(s) that college graduates found useful in the business world.

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