respected sir,i have been selected in the written
examination prelim (CHEMICAL) of RINL(RASHTRIYE ISPAT NIGAM
LTD.) held on 20 JUNE, So please tell me which type of
questions will be asked in 2nd stage written exam. plz send
me last 2-3 years questions asked in RINL(written exam).
Answer / vinayak be chemical
TYPES OF PUMP,NPSH,COMPRESSOR,BLOWER,MOC ETC
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How can the particle size distribution be determined in a given bulk solid?
What is a good method of minimizing shell side pressure drop in a shell and tube exchanger?
What is the working of vaccum distilation coloumn in a petroleum refinary?
ENGINEERING PHYSICS - EXAMPLE 30.1 : Two viruses a and b with masses of Ma and Mb are moving at velocities of Va and Vb respectively, facing towards each other and collide. After collision both masses of Ma and Mb disappear. (a) Find the total momentum available for both a and b. Hint : momentum = mass x velocity = M x V. (b) Guess the total energy E generated from the disappearance of a and b. Let c to be the velocity of light. Hint : E is equal to M c square.
In Pressure Sfety Valve(PSV) 2" by pass line why given for process units.
What is an isochoric process?
Please help to get IOCL/HPCL or other chemical engineering paper pls send kathir_skv@yahoo.com Regards, kathirvel
Question 38 - The terminal velocity of a falling object, v is given by v = sqrt [ 4g (R - r) D / (3Cr) ] where sqrt is the square root of, g = 9.81, D = 0.000208, R = 1800, r = 994.6, m = 0.000893. The Reynold number, L is given by L = rD (v) / m. The C for various conditions are : C = 24 / L for L < 0.1; C = 24 (1 + 0.14 L^0.7) / L for 0.1 <= L <= 1000; C = 0.44 for 1000 < L <= 350000; C = 0.19 - 80000 / L for 350000 < L. Find the value of v for the situation above by trial and error, ^ is power, <= is less than or equal to.
Explain why is a vacuum breaker used on shell and tube heat exchangers that are utilizing steam as the heating utility?
What are the assumptions made for kynch theory?
Heat transfer: In a triple effect evaporator, the heat transfer for an evaporator is calculated as q = UA (TI - TF) where TI is the initial temperature, TF is the final temperature; U and A are constants. Given that heat transfer for the first evaporator : q(1) = UA (TI - TB); second evaporator : q(2) = UA (TB - TC); third evaporator : q(3) = UA (TC - TF) where q(x) is the heat transfer function, TB is the temperature of second inlet and TC is the temperature of third inlet, prove that the overall heat transfer Q = q(1) q(2) q(3) = UA (TI - TF).
At what temperature does water have maximum density?
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