packing height = 147.1 (N/m2)/m Total packing height = 3.2 m (including all packed beds) Gas / Vapour Properties Gas / Air flow rate = 1000 kg/h OR 0 m3/h = 0.2778 kg/s = 0 m3/s Gas pressure at entry = 1.0000 atm Gas temperature at entry = 30.00 oC = 303.00 oK Gas / Air mol weight = 29
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Experimental Investigation In Developing Low Cost Concrete From Paper Industry Waste Posted in Project Reports‚ Research Papers | Email This Post ABSTRACT Over 300 million tones of industrial wastes are being produced per annum by chemical and agricultural process in India. These materials pose problems of disposal and health hazards. The wastes like phosphogypsum‚ fluorogypsum and red mud contain obnoxious impurities which adversely affect the strength and other properties of building materials
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CE 371 HOMEWORK 2 1) Find the difference in pressure between tanks A and B if d1=300mm‚ d2=150mm‚ d3=460mm‚ d4=200 mm and S.GHG =13.6 w=9.80 kN/m3 2) Determine the elevation difference‚ h‚ between the water levels in the two open tanks shown in the figure. w=9.80 kN/m3 3) An air-filled‚ hemispherical shell is attached to the ocean floor at a depth of 10 m as shown in the figure. A mercury barometer located inside the shell reads 765 mm Hg‚ and a mercury U-tube manometer designed to give the
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First Law-Exercise: Problem 1: A volume 10 m3 contains 8 kg of oxygen at a temperature of 300 K. Find the work necessary to decrease the volume to 5 m3‚ (a) at a constant pressure and (b) at constant temperature. (c) What is the temperature at the end of the process in (a)? (d) What is the pressure at the end of process in (b)? (e) Show both processes in the p-V plane. Problem 2: The temperature of an ideal gas at an initial pressure p1 and volume V1 is increased at constant volume until the pressure
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Arts Media & Enterprise CROSS COLLEGE ASSIGNMENT BRIEF –PART 1 Course BTEC L3 90 credit Diploma in Business AWB Qualication Title Level 3 Diploma in Business Unit - NAME & NO Unit 3 : Introduction to Marketing LEVEL 3 Assignment Title Exploring how different types of organisations use marketing tools and techniques Lecturer/Assessor John K. Wiafe Issue date 14 January 2015 Interim submission date 04 February 2015 final Submission date 10 February 2015 Student declaration: I declare that this assignment
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REPORT ON FIELD VISIT TO HAZIRA OIL FIELD BY:- JOYDEEP MUKHERJEE ROLL NO:-20081020 PGP-08‚ IPMG OVERVIEW OF THE INDUSTRIAL TRIP An overview of the Oil and Gas sector was developed as
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(b) for 7‚424 ha of land and 66‚ 644‚500 m3 of water available on a year basis‚ the shadow price of these resources were respectively‚ US$ 1‚115.20/ha e USS 281.60/1000 m3; (c) for the total monthly water availability of 9‚861‚040 m3‚ the total annual water availability of 66‚644‚500 m3 became an effective restriction to the increase of the net income of the production system in the SNCP; (d) maintaining the total monthly water availability of 9‚861‚040 m3‚ annual volumes lower
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The heat removal comes from the air conditioners which remove 5 kW each. Thus for the net Q to be zero we must have N air conditioners such that (5 kW)N = 9.167 kW. To satisfy this requirement‚ we must have two air conditioning units. 2 A 0.5 m3 rigid tank contains regrigerant-134a initially at 160 kPa and 40% quality. Heat is now transferred to the refrigerant until the pressure reaches 700 kPa. Determine (a) the mass of
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Preparatory Investigation: The Water Resource‚ Land and and Buildings‚ Market and Prices The Entrepeneurs A young couple in Iceland‚ Johann and Rosa‚ have taken over Johann’s parents’ farm. Traditional husbandry of cattle and sheep for production of meat and dairy products has gone through a rough time so they have been looking for new opportunities in their farming. Johann believes that arctic charr might suit them well. Before making up their mind they inspect their water resources‚ the features
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system: 1 x 103kg/m3 = 1 g/cm3 American engineering system: 62.4 lbM/ft3. Concentration derived dimension and is usually expressed gravimetrically as the mass of a material A in a unit volume consisting of a material A and some other materials B. Concentration of A in a mixture of A and B: C_A=M_A/(V_A+V_B ) where CA = concentration of A M¬A = mass of material A VA = volume of material A V¬B = volume of material B Basic unit for concentration is kg/m3 Most widely used
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