1
GATE ME 2014 Set 3
Numerical
+2
-0
Heat transfer through a composite wall is shown in figure. Both the sections of the wall have equal thickness $$\left( \ell \right)$$. The conductivity of one section is $$k$$ and that of the other is $$2k.$$ The left face of the wall is at $$600$$ $$K$$ and the right face is at $$300$$ $$K.$$ GATE ME 2014 Set 3 Heat Transfer - Conduction Question 11 English

The interface temperature $${T_i}$$ (in $$K$$) of the composite wall is ___________

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2
GATE ME 2014 Set 3
MCQ (Single Correct Answer)
+2
-0.6
A solid sphere of radius$${r_1} = 20\,\,mm$$ is placed concentrically inside a hollow sphere of radius $${r_2} = 30\,\,mm$$ as shown in the figure. GATE ME 2014 Set 3 Heat Transfer - Radiation Question 11 English

The view factor $${F_{21}}$$ for radiation heat transfer is

A
$$2/3$$
B
$$4/9$$
C
$$8/27$$
D
$$9/4$$
3
GATE ME 2014 Set 3
Numerical
+2
-0
A double-pipe counter-flow heat exchanger transfers heat between two water streams. Tube side water at $$19$$ liter/s is heated from $${10^ \circ }C$$ to $${38^ \circ }C$$. Shell side water at $$25$$ liter/s is entering at $${46^ \circ }C$$. Assume constant properties of water; density is $$1000\,kg/{m^3}$$ and specific heat is $$4186$$ $$J/kg.K.$$ The $$LMTD$$ (in $${}^ \circ C$$) is ____________.
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4
GATE ME 2014 Set 3
MCQ (Single Correct Answer)
+2
-0.6
A manufacturer can produce $$12000$$ bearings per day. The manufacturer received an order of $$8000$$ bearings per day from a customer. The cost of holding a bearing in stock is Rs. $$0.20$$ per month. Setup cost per production run in Rs.$$500.$$ Assuming $$300$$ working days in a year, the frequency of production run should be
A
$$4.5$$ days
B
$$4.5$$ months
C
$$6.8$$ days
D
$$6.8$$ months
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