Aluminum alloys are made by adding other elements to aluminum to im prove its properties, such as hardness or tensile strength. The following table shows the composition of ve commonly used alloys, which are known by their alloy numbers (2024, 6061, and so on) [Kutz, 1999]. Obtain a matrix algorithm to compute the amounts of raw materials needed to pro duce a given amount of each alloy. Use MATLAB to determine how much raw material of each type is needed to produce 1000 tons of each alloy. Composition of aluminum alloys Alloy %Cu %Mg %Mn %Si %Zn 2024 6061 7005 0 7075 356.0 0 0.6 0 0 0 0 4.5 5.6 0 0.6 0 0 2.5 0.3 0

Answers

Answer 1
Answer:

Answer:

Cu= 60

Mg= 67

Mn= 6

Si= 76

Zn= 101

Explanation:

Solution steps :

1) Creating matrix A holds the composition of each raw material.

2) Submission of composition of each raw material.

3) Multiplying each amount by the total amount needed to be produced.

note

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1. An automobile travels along a straight road at 15.65 m/s through a 11.18 m/sspeed zone. A police car observed the automobile. At the instant that the twovehicles are abreast of each other, the police car starts to pursue the automobile ata constant acceleration of 1.96 m/s². The motorist noticed the police car in his rearview mirror 12 s after the police car started the pursuit and applied his brakes and decelerates at 3.05 m/s². (Hint: The police will not go against the law.)a) Find the total time required for the police car to overtake the automobile.b) Find the total distance travelled by the police car while overtaking theautomobile.c) Find the speed of the police car at the time it overtakes the automobile.d) Find the speed of the automobile at the time it was overtaken by the police car.

The cost of hiring new employees outpaces the raises for established employees is A.
Salary compression

B.
Occupational based pay

C.
Merit pay

D.
Need for Achievement

Answers

Answer:

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In same Fig. A-3, a force F, having a slope of 2 vertical 3 horizontal, produces a clockwise moment of 330 ft-lb about A and a counterclockwise moment of 420 ft-lb about B. Compute the moment of F about C.​

Answers

The moment of force at the given slope about point C is 210 ft-lb.

The given parameters:

  • Vertical slope, = 2
  • Horizontal slope = 3
  • Clockwise moment = 330 ft-lb
  • Counterclockwise moment = 420 ft-lb

The magnitude of the two moments are in the following simple ratio;

330:420 = 11:14 (divide through by 30)

  • the A coordinate = (0, 5)
  • the B-coordinate = (5,0)

The line of action of the force passes line AB at the final following coordinates;

total ratio of 11:14 = 11 + 14 = 25

= (11 )/(25) * 5, \ \ (14)/(25) * 5\n\n= (2.2, \ 2.8)

The position of C = (3, 1)

The resultant position of point C = (3 - 2.2,  2.8-1) = (0.8, 1.8)

The moment of force at the given slope about point C is calculated as;

3(1.8) + 2(0.8) = 7

Recall that this is the simplest form of the moment produced by the force.

Moment about C = 7 x 30 = 210 ft-lb

Thus, the moment of force at the given slope about point C is 210 ft-lb.

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Calculate the angle of banking on a bend of 100m radius so that vehicles can travel round the bend at 50km/hr without side thrust on the tyres.

Answers

Answer:

11.125°

Explanation:

Given:

Radius of bend, R = 100 m

Speed around the bend = 50 Km/hr = (5)/(18)*50 = 13.89 m/s

Now,

We have the relation

\tan\theta=(v^2)/(gR)

where,

θ = angle of banking

g is the acceleration due to gravity

on substituting the respective values, we get

\tan\theta=(13.89^2)/(9.81*100)

or

\tan\theta=0.1966

or

θ = 11.125°

FILLIN THE BLANK Buffering is an important op amp application because it solves _____ that can't easily be solved with purely resistive circuits.Group of answer choices

Answers

Buffering is an important op amp application because it solves impedance-matching problems that can't easily be solved with purely resistive circuits. This allows for the transfer of maximum power between two circuits without any loss of signal strength.

Buffering with operational amplifiers (op amps) is a crucial application in electronics because it helps to overcome impedance-matching problems that cannot be easily resolved with only resistive circuits. Impedance-matching issues can cause signal distortion, and buffering solves this problem by creating a high-input impedance and low-output impedance circuit that separates the input and output signals, preventing the signal from being affected by the load impedance.

By using op amp buffering, the signal can be efficiently transmitted and received without signal loss or distortion, making it a useful technique in many applications, such as audio amplification and signal conditioning.

"

Complete question

Buffering is an important op amp application because it solves _____ that can't easily be solved with purely resistive circuits.

Group of answer choices

delay issues

tolerance issues

temperature issues

loading effects

impedance-matching problems

"

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Which property of real numbers is shown below?3 + ((-5) + 6) = (3 + (-5)) + 6
commutative property of addition
identity property of multiplication
associative property of addition
commutative property of multiplication

Answers

The property of realnumbers is shown below is associative property of addition. The correct option is C.

What is associative property of addition?

According to the associativeproperty of addition, you can arrange the addends in several ways without changing the result.

According to the commutative property of addition, you can rearrange the addends without altering the result.

When more than two numbers are added together or multiplied, the outcome is always the same, regardless of how the numbers are arranged.

This is known as the associativeproperty. As an illustration, 2 (7 6) = (2 7) 6. 2 + (7 + 6) = (2 + 7) + 6.

Thus, the correct option is C.

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Answer:

C

Explanation:

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Answers

Web application 3’s “Where’s the Beef” exploit can be seen in the screenshot provided. In order to mitigate this vulnerability, developers should take measures to ensure that input validation is performed on all data.

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