what are the precautions u are taking while starting HT
motors?
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Project Work Start
RES MOB
RES MOB COST
SITE CLEARANCE
SITE SUPERVISOR
LABOUR
TRACTOR
START OF BLOCK A
EXCAVATION OF BLOCK A
SITE SUPERVISOR
LABOUR
EXCAVATOR
FDN STEEL WORK BLK-A
SITE SUPERVISOR
STEEL FIXER
STEEL
FDN SHUTT BLK A
SITE SUPERVISOR
CARPENTER
SHUTTERING RENT
FDN CONCRET BL-A
SITE SUPERVISOR
LABOUR
CONCRETE
GF COLUMNS BL-A
SITE SUPERVISOR
STEEL FIXER
CARPENTER
GF SLAB STEEL WORK BLK-A
SITE SUPERVISOR
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describe why you are interested in a career in the oil industry?
ENVIRONMENTAL ENGINEERING - QUESTION 22.3 : A well delivers 225 US-gallons per minute of water to a chemical plant during normal system operation. (a) Calculate its flowrate in the unit of mega US-gallon per day or MGD. (b) The following formula is written next to the chlorine feed point : (chlorine feed rate, lb / day) = (flowrate, MGD) X (dose, mg / L) x (8.34). If this formula is correct, then what should the chlorine feed rate to be in pounds per day (lb / day) if the desired dose is 2 mg / L. (c) Prove by calculations that the constant 8.34 in the formula next to the chlorine feed point is correct. Let 1 US-gallon = 3.78541 L and 1 mg = 0.0000022046 pound.
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11 Answers Bihar Caustic and Chemicals,
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Question 89 - A hemocytometer is a device that is used for counting cells. In an engineering experiment, 100 microlitres of cell suspension is diluted with 50 microlitres of Trypan blue dye. Only death cells appear blue in color when stained with the dye. There are 57 cells detected in a hemocytometer, where 5.3 % of them appear blue when the chamber of the meter is placed under a microscope. Each square of a chamber can contain 0.0001 mL of liquid. (a) Calculate the number of viable cells. (b) The cells ocupied 5 squares. Calculate the average number of viable cells / square. (c) Calculate the dilution factor of the cell suspension by using the formula : Dilution = final volume / initial volume. (d) Calculate the concentration of viable cells / mL by using the formula : Concentration = (Average number of viable cells / square) x dilution x (square / volume).
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