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GATE ME 2014 Set 1
Numerical
+2
-0
Consider one dimensional steady state heat conduction across a wall (as shown in figure below) of thickness $$30$$ $$mm$$ and thermal conductivity $$15$$ $$W/m.K.$$ At $$x=0,$$ a constant heat flux, $$q'' = 1 \times {10^5}\,\,W/{m^2}$$ is applied. On the other side of the wall, heat is removed from the wall by convection with a fluid at $${25^ \circ }C$$ and heat transfer coefficient of $$250W/{m^2}.K.$$ The temperature (in $${}^ \circ C$$), at $$x=0$$ is ___________ GATE ME 2014 Set 1 Heat Transfer - Convection Question 11 English
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GATE ME 2014 Set 1
MCQ (Single Correct Answer)
+1
-0.3
In exponential smoothening method, which one of the following is true?
A
$$0 \le \alpha \le 1$$ and high value of $$\alpha $$ is used for stable demand
B
$$0 \le \alpha \le 1$$ and high value of $$\alpha $$ is used for stable demand
C
$$\alpha \ge 1$$ and high value of $$\alpha $$ is used for stable demand
D
$$\alpha \le 0$$ and high value of $$\alpha $$ is used for unstable demand
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GATE ME 2014 Set 1
MCQ (Single Correct Answer)
+1
-0.3
The jobs arrive at a facility, for service, in a random manner. The probability distribution of number of arrivals of jobs in a fixed time interval is
A
Normal
B
Poisson
C
Erlang
D
Beta
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GATE ME 2014 Set 1
MCQ (Single Correct Answer)
+2
-0.6
Jobs arrive at a facility at an average rate of $$5$$ in an $$8$$ hour shift. The arrival of the jobs follows Poisson distribution. The average service time of a job on the facility is $$40$$ minutes. The service time follows exponential distribution. Idle time (in hours) at the facility per shift will be
A
$${5 \over 7}$$
B
$${14 \over 3}$$
C
$${7 \over 5}$$
D
$${10 \over 3}$$