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Page 1 ISRO Scientist or Engineer Mechanical 2018 . Page 2 ISRO Scientist or Engineer Mechanical 2018 . Mechanical Instructions For the following questions answer them individually Question 1 An expansion process as per law PV = constant is known as A parabolic expansion B hyperbolic expansion C isentropic expansion D free expansion Answer: B Question 2 Speed of an aeroplane is measured by A pitot tube B hot wire anemometer C venturimeter D rotameter Answer: A Question 3 Euler's dimensionless number relates the following A inertial force and gravity B viscous force and inertial force C pressure force and inertial force D viscous force and pressure force Answer: C Question 4 A simple compressible substance inside a cylinder undergoes a change of state quasistatically, isothermally and at constant pressure of 1.5 MPa. If the enthalpy change for the system is 4000 kJ at , what is the corresponding change in its entropy? A 9.45 kJ/K B 26.67 kJ/K C 14.17 kJ/K D 0 Answer: A 1 5 0 C ° . Page 3 ISRO Scientist or Engineer Mechanical 2018 . Mechanical Instructions For the following questions answer them individually Question 1 An expansion process as per law PV = constant is known as A parabolic expansion B hyperbolic expansion C isentropic expansion D free expansion Answer: B Question 2 Speed of an aeroplane is measured by A pitot tube B hot wire anemometer C venturimeter D rotameter Answer: A Question 3 Euler's dimensionless number relates the following A inertial force and gravity B viscous force and inertial force C pressure force and inertial force D viscous force and pressure force Answer: C Question 4 A simple compressible substance inside a cylinder undergoes a change of state quasistatically, isothermally and at constant pressure of 1.5 MPa. If the enthalpy change for the system is 4000 kJ at , what is the corresponding change in its entropy? A 9.45 kJ/K B 26.67 kJ/K C 14.17 kJ/K D 0 Answer: A 1 5 0 C ° . Question 5 The velocity of sound in a gaseous medium at a temperature of 400 K is 400 m/s. If the temperature of the medium is increased to 600 K, the velocity of sound will be nearly, A 400 m/s B 490 m/s C 600 m/s D None of these Answer: B Question 6 Stress strain relation of the Newtonian fluid is A parabolic B linear C hyperbolic D inverse type Answer: B Question 7 Speed of sound in water is equal to (K-bulk modulus, -density) A B C D Answer: A Question 8 If the stream function of a two dimensional flow is . then the velocity at a point (3, 4)is A 25 m/s B 20 m/s C 7 m/s D 5 m/s Answer: A Question 9 A glass tube of 8 mm diameter is immersed in water. Surface tension of water is 0.0075 kg/m and rise of water in the tube due to capillary effect is ? ? K K ? K ? ? K ? = 5 x y . Page 4 ISRO Scientist or Engineer Mechanical 2018 . Mechanical Instructions For the following questions answer them individually Question 1 An expansion process as per law PV = constant is known as A parabolic expansion B hyperbolic expansion C isentropic expansion D free expansion Answer: B Question 2 Speed of an aeroplane is measured by A pitot tube B hot wire anemometer C venturimeter D rotameter Answer: A Question 3 Euler's dimensionless number relates the following A inertial force and gravity B viscous force and inertial force C pressure force and inertial force D viscous force and pressure force Answer: C Question 4 A simple compressible substance inside a cylinder undergoes a change of state quasistatically, isothermally and at constant pressure of 1.5 MPa. If the enthalpy change for the system is 4000 kJ at , what is the corresponding change in its entropy? A 9.45 kJ/K B 26.67 kJ/K C 14.17 kJ/K D 0 Answer: A 1 5 0 C ° . Question 5 The velocity of sound in a gaseous medium at a temperature of 400 K is 400 m/s. If the temperature of the medium is increased to 600 K, the velocity of sound will be nearly, A 400 m/s B 490 m/s C 600 m/s D None of these Answer: B Question 6 Stress strain relation of the Newtonian fluid is A parabolic B linear C hyperbolic D inverse type Answer: B Question 7 Speed of sound in water is equal to (K-bulk modulus, -density) A B C D Answer: A Question 8 If the stream function of a two dimensional flow is . then the velocity at a point (3, 4)is A 25 m/s B 20 m/s C 7 m/s D 5 m/s Answer: A Question 9 A glass tube of 8 mm diameter is immersed in water. Surface tension of water is 0.0075 kg/m and rise of water in the tube due to capillary effect is ? ? K K ? K ? ? K ? = 5 x y . A 7.5 mm B 3.75 mm C 11.25 mm D none of these Answer: B Question 10 An impulse turbine produces 125 hp under a head of 25 meter. By what percentage should the speed be increased for a head of 100 meter. A 25% B 50% C 75% D 100% Answer: D Question 11 The specific speed of a centrifugal pump, delivering 1000litres of water per second against a head of 16 meter at 800 rom A 50 rpm B 100 rpm C 150 rpm D 200 rpm Answer: B Question 12 A pipe of 0.1 m suddenly changes to 0.5 m area. The quantity of water flowing in the pipe is 0.5 m /s. Head loss due to sudden enlargement is nearly A 0.025 m B 0.05 m C 0.8 m D 1.2 m Answer: C Question 13 Efficiency of a centrifugal pump is maximum when the blades are A straight B forward curved 2 2 3 . Page 5 ISRO Scientist or Engineer Mechanical 2018 . Mechanical Instructions For the following questions answer them individually Question 1 An expansion process as per law PV = constant is known as A parabolic expansion B hyperbolic expansion C isentropic expansion D free expansion Answer: B Question 2 Speed of an aeroplane is measured by A pitot tube B hot wire anemometer C venturimeter D rotameter Answer: A Question 3 Euler's dimensionless number relates the following A inertial force and gravity B viscous force and inertial force C pressure force and inertial force D viscous force and pressure force Answer: C Question 4 A simple compressible substance inside a cylinder undergoes a change of state quasistatically, isothermally and at constant pressure of 1.5 MPa. If the enthalpy change for the system is 4000 kJ at , what is the corresponding change in its entropy? A 9.45 kJ/K B 26.67 kJ/K C 14.17 kJ/K D 0 Answer: A 1 5 0 C ° . Question 5 The velocity of sound in a gaseous medium at a temperature of 400 K is 400 m/s. If the temperature of the medium is increased to 600 K, the velocity of sound will be nearly, A 400 m/s B 490 m/s C 600 m/s D None of these Answer: B Question 6 Stress strain relation of the Newtonian fluid is A parabolic B linear C hyperbolic D inverse type Answer: B Question 7 Speed of sound in water is equal to (K-bulk modulus, -density) A B C D Answer: A Question 8 If the stream function of a two dimensional flow is . then the velocity at a point (3, 4)is A 25 m/s B 20 m/s C 7 m/s D 5 m/s Answer: A Question 9 A glass tube of 8 mm diameter is immersed in water. Surface tension of water is 0.0075 kg/m and rise of water in the tube due to capillary effect is ? ? K K ? K ? ? K ? = 5 x y . A 7.5 mm B 3.75 mm C 11.25 mm D none of these Answer: B Question 10 An impulse turbine produces 125 hp under a head of 25 meter. By what percentage should the speed be increased for a head of 100 meter. A 25% B 50% C 75% D 100% Answer: D Question 11 The specific speed of a centrifugal pump, delivering 1000litres of water per second against a head of 16 meter at 800 rom A 50 rpm B 100 rpm C 150 rpm D 200 rpm Answer: B Question 12 A pipe of 0.1 m suddenly changes to 0.5 m area. The quantity of water flowing in the pipe is 0.5 m /s. Head loss due to sudden enlargement is nearly A 0.025 m B 0.05 m C 0.8 m D 1.2 m Answer: C Question 13 Efficiency of a centrifugal pump is maximum when the blades are A straight B forward curved 2 2 3 . C backward curved D forward and backward curved Answer: C Question 14 The critical radius of insulation for a spherical shell is A B C D Answer: B Question 15 If the temperature of a solid surface changes from to , then its emissive power changes in the ratio of nearly A 81 B 9 C 1.49 D 1.94 Answer: D Question 16 The heat removal rate from a refrigerated space is 7.2 kW and the power input to the compressor is 1.8 kW. The coefficient of performance (COP) of the refrigerator is A 4 B 5 C 1.25 D 0.25 Answer: A Question 17 For a fluid having Prandtl number equal to unity, the relation between hydrodynamic boundary layer thickness ( ) and thermal boundary layer thickness ( ) A B C h e a t t r a n s f e r c o e f f i c i e n t a t t h e o u t e r s u r f a c e t h e r m a l c o n d u c t i v i t y o f i n s u l a t i n g m a t e r i a l h e a t t r a n s f e r c o e f f i c i e n t a t t h e o u t e r s u r f a c e 2 × t h e r m a l c o n d u c t i v i t y o f i n s u l a t i n g m a t e r i a l 2 × h e a t t r a n s f e r c o e f f i c i e n t a t t h e o u t e r s u r f a c e t h e r m a l c o n d u c t i v i t y o f i n s u l a t i n g m a t e r i a l t h e r m a l c o n d u c t i v i t y o f i n s u l a t i n g m a t e r i a l h e a t t r a n s f e r c o e f f i c i e n t a t t h e o u t e r s u r f a c e 2 7 i r c C c 8 1 i r c C c d 1 d 2 d > 1 d 2 d < 1 d 2 d = 1 d 2 d .Read More
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