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Drupady [299]
2 years ago
4

What statement provides an example of designing a solution in the technological design process? 1. Aerospace engineers need a li

ghtweight material to build a jet. 2. Engineers determine which features the material must have. 3. Engineers test a carbon-plastic compound in a wind tunnel. 4. The carbon-plastic compound is redesigned to save maximum energy.
Engineering
2 answers:
Dominik [7]2 years ago
8 0

Answer:

Engineers determine which features the material must have.

Explanation:

I just took the test :)

klasskru [66]2 years ago
8 0

Answer:

b i am single

Explanation:

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Use the drop -down menus to select the appropriate question type. Picking between two possible alternatives: Showing an understa
lora16 [44]

Answer:

Picking between two possible alternatives:

✔ true/false

Showing an understanding of relationships between facts:

✔ matching

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Demonstrating factual knowledge by eliminating wrong answers and selecting the correct one:

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Explanation:

I got it right on edge. have a good day!

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2 years ago
A horizontal pipe has an abrupt expansion from D1 5 8 cm to D2 5 16 cm. The water velocity in the smaller section is 10 m/s and
anyanavicka [17]
  • Answer:  Explanation:  Application of the bernoulli's equation comes in from conservation of mass flow.  The cross sectional area of the two pipes are calculated. from A = πD²/4 The velocity of water from conservation of mass flow is also calculated ; V2 = Ac1V1/Ac2 The Loss coefficient is then calculated from KL = (1 - Ac1²/Ac2²)² Then the head Loss (hL) is calculated  The detailed calculated and appropriate steps is as shown in the attached files.

5 0
2 years ago
The rate of flow through an ideal clarifier is 8000m3 /d, the detention time is 1h and the depth is 3m. If a full-length movable
Fittoniya [83]

Answer:

a) 35%

b) yes it can be improved by moving the tray near the top

   Tray should be located ( 1 to 2 meters below surface )

   max removal efficiency ≈ 70%

c) The maximum removal will drop as the particle settling velocity = 0.5 m/h

Explanation:

Given data:

flow rate = 8000 m^3/d

Detention time = 1h

depth = 3m

Full length movable horizontal tray :  1m below surface

<u>a) Determine percent removal of particles having a settling velocity of 1m/h</u>

velocity of critical sized particle to be removed = Depth / Detention time

= 3 / 1 = 3m/h

The percent removal of particles having a settling velocity of 1m/h ≈ 35%

<u>b) Determine if  the removal efficiency of the clarifier can be improved by moving the tray, the location of the tray  and the maximum removal efficiency</u>

The tray should be located near the top of the tray ( i.e. 1 to 2 meters below surface ) because here the removal efficiency above the tray will be 100% but since the tank is quite small hence the

Total Maximum removal efficiency

=  percent removal_{above} + percent removal_{below}

= ( d_{a},v_{p} ) . \frac{d_{a} }{depth}  + ( d_{a},v_{p} ) . \frac{depth - d_{a} }{depth}  = 100

hence max removal efficiency ≈ 70%

<u>c) what is the effect of moving the tray would be if the particle settling velocity were equal to 0.5m/h?</u>

The maximum removal will drop as the particle settling velocity = 0.5 m/h

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s2008m [1.1K]

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Explanation:

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