1
GATE ME 2013
MCQ (Single Correct Answer)
+2
-0.6
Specific enthalpy and velocity of steam at inlet and exit of a steam turbine, running under steady state, are as given below: GATE ME 2013 Thermodynamics - First Law of Thermodynamics Question 14 English

The rate of heat loss from the turbine per $$kg$$ of steam flow rate is $$5$$ $$kW.$$ Neglecting changes in potential energy of steam, the power developed in $$kW$$ by the steam turbine per $$kg$$ of steam flow rate, is

A
$$901.2$$
B
$$911.2$$
C
$$17072.5$$
D
$$17082.5$$
2
GATE ME 2013
MCQ (Single Correct Answer)
+1
-0.3
A cylinder contains $$5\,\,{m^3}$$ of an ideal gas at a pressure of $$1$$ bar. This gas is compressed in a reversible isothermal process till its pressure increases to $$5$$ bar. The work in $$kJ$$ required for this process is
A
$$804.7$$
B
$$953.2$$
C
$$981.7$$
D
$$1012.2$$
3
GATE ME 2013
MCQ (Single Correct Answer)
+2
-0.6
The pressure, temperature and velocity of air flowing in a pipe are $$5$$ $$bar,$$ $$500$$ $$K$$ and $$50$$ $$m/s,$$ respectively. The specific heats of air at constant pressure and at constant volume are $$1.005kJ/kgK$$ and $$0.718$$ $$kJ/kgK,$$ respectively. Neglect potential energy. If the pressure and temperature of the surroundings are $$1$$ bar and $$300$$ $$K,$$ respectively, the available energy in $$kJ/kg$$ of the air stream is
A
$$170$$
B
$$187$$
C
$$191$$
D
$$213$$
4
GATE ME 2013
MCQ (Single Correct Answer)
+1
-0.3
In order to have maximum power from a Pelton turbine, the bucket speed must be
A
equal to the jet speed.
B
equal to half of the jet speed.
C
equal to twice the jet speed.
D
independent of the jet speed.
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