1
GATE ME 2003
MCQ (Single Correct Answer)
+2
-0.6
Heat is being transferred by convection from water at $${48^ \circ }C$$ to a glass plate whose surface that is exposed to the water is at $${40^0}C.$$ The thermal conductivity of water is $$0.6$$ $$W/mK$$ and the thermal conductivity of glass is $$1.2$$ $$W/mK.$$ The spatial gradient of temp in the water at the water glass interface is
$$dT/dy = 1 \times {10^4}\,\,K/m...$$ GATE ME 2003 Heat Transfer - Conduction Question 23 English

The value of the temperature gradient in the glass at the water-glass interface in $$K/m$$ is

A
$$ - 2 \times {10^4}$$
B
$$0.00$$
C
$$0.5 \times {10^4}$$
D
$$2 \times {10^4}$$
2
GATE ME 2003
MCQ (Single Correct Answer)
+2
-0.6
Heat is being transferred by convection from water at $${48^ \circ }C$$ to a glass plate whose surface that is exposed to the water is at $${40^0}C.$$ The thermal conductivity of water is $$0.6$$ $$W/mK$$ and the thermal conductivity of glass is $$1.2$$ $$W/mK.$$ The spatial gradient of temp in the water at the water glass interface is
$$dT/dy = 1 \times {10^4}\,\,K/m.$$ GATE ME 2003 Heat Transfer - Conduction Question 22 English

The heat transfer coefficient $$h$$ in $$W/{m^2}K$$ is

A
$$0.0$$
B
$$4.8$$
C
$$6$$
D
$$750$$
3
GATE ME 2003
MCQ (Single Correct Answer)
+2
-0.6
Consider a laminar boundary layer over a heated flat plate. The free stream velocity is $${U_\infty }.$$ At some distance $$x$$ from the leading edge the velocity boundary layer thickness is $${\delta _v}$$ and the thermal boundary layer is $${\delta _r}.$$ If the Prandtl number is greater than $$1,$$ then
A
$${\delta _v} > {\delta _r}$$
B
$${\delta _r} > {\delta _v}$$
C
$${\delta _v} = {\delta _r} \sim \left( {{U_\infty }} \right)$$
D
$${\delta _v} = {\delta _r} \sim {x^{ - 1/2}}$$
4
GATE ME 2003
MCQ (Single Correct Answer)
+1
-0.3
A plate having $$10\,\,c{m^2}$$ area each side is hanging in the middle of a room of $$100\,\,{m^2}$$ total surface area. The plate temperature and emissivity are respectively $$800$$ $$K$$ and $$0.6.$$

The temperature and emissivity values for the surfaces of the room are $$300$$ $$K$$ and $$0.3$$ respectively. Boltzmannn constant $$\sigma = 5.67 \times {10^{ - 8}}\,\,W/{m^2}{K^4}.$$ The total heat loss from the two surfaces of the plate is

A
$$13.66$$ $$W$$
B
$$27.32$$ $$W$$
C
$$27.87$$ $$W$$
D
$$13.66$$ $$MW$$
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