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laila [671]
3 years ago
3

The Mechanical efficiency of your vehicles powertrain determines how well it converts fuel into ______?

Engineering
2 answers:
murzikaleks [220]3 years ago
8 0

Answer: Option C, forward motion.

Explanation: Efficiency is defined as the rate of initial energy transformed into work.

here, the initial energy comes from the fuel, and the work is moving forward the power train, so the efficiency of a power train determines how wee it converts fuel into forward motion.

As efficiency increases, the amount of fuel needed to travel a fixed distance decreases.

damaskus [11]3 years ago
7 0

Answer:

C

Explanation:

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<u>Explanation:</u>

<u>First Pass:</u>

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<u>Third Pass:</u>

( 18 17 12 19 25 ) –> ( 17 18 12 19 25 ), Swap since 18 > 17

( 17 18 12 19 25 ) –> ( 17 12 18 19 25 ), Swap since 18 > 12

( 17 12 18 19 25 ) –> ( 17 12 18 19 25 )

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<u>Fourth Pass:</u>

( 17 12 18 19 25 ) –> ( 12 17 18 19 25 ), Swap since 17 > 12

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<u>Fifth Pass:</u>

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4 years ago
An overhead 25m-long, uninsulated industrial steam pipe of 100-mm diameter, is routed through a building whose walls and air are
wariber [46]

Answer:

1) q=18414.93 W

2) C=12920$

Explanation:

Given data:

pipe length L=25m

pipe diameter D=100mm =0.1 m

air temperature T_{s1}=T_{\infty1} }=25 °C.....= 298.15k

pipe surface temp T_{s2}=150 °C.....=423.15k

surface emissivity e= 0.8

boiler efficiency η=0.90

natural gas price Cg=$0.02 per MJ

1) Total heat loss and radiation heat loss combined

          q=q_{conv} +q_{rad}

          q=A[h(T_{s2}-T_{s1})+eб(T_{s2}^4-T_{s1}^4)]....... (1)

б=5.67×10^-8 W/m^2K^4 (boltzmann constant)

area A =L.Dπ=25×0.1π=7.85 m^2

putting all these values in eq (1)

q=18414.93 W

2) suppose boiler is operating non stop annual energy loss will be

               E=q.t

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                  =5.81×10^11 J

   to find furnace energy consumption

               Ef =E/η

                  =6.46×10^5 MJ

   annual cost

                  C=Cg. Ef

                    =12920$

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Answer:

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