9/17/13 The Density of Metals Lab BACKROUND: Density is a constant relationship between the mass and volume of a specific type of matter. Measurements of both mass and volume can be obtained for a metal sample. The relationship can be shown graphically by plotting the volume of a sample on the horizontal x-axis and the mass of the sample along the vertical y-axis. Plotting the values for several samples‚ a linear relationship can be seen for a density (slope=density). PURPOSE: During this lab‚ you will
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Project on Biogas Technology and Utilisation – Progress Report‚ Department of Science and Technology‚ Government of India. Dutta‚ S.‚ Rehman‚ I.H.‚ Malhotra‚ P.‚ Venkata Ramana‚ P.‚ 1997. Biogas: The Indian NGO Experience‚ AFPRO-CHF (Action for Food Production‚ Canadian Hunger Foundation) Network Programme‚ Tata Energy Research Institute (TERI)‚ New Delhi IARI (Indian Agricultural Research Institute)‚ 1980. Biogas Research at IARI: Status Report‚ compiled by T.D.Biswas and P.K.Chhonkar‚ Division of
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Hugh Kim Lab Report: Stoichiometry Lab 1. Prelab Part1. 1) Create no waste = The principle that encourages chemists to not create waste at the first place rather than cleaning it up afterwards effectively shifts the chemistry more environmentally conscious‚ as creating no waste would make the experiment efficient; the reactants will be reduced to only the essential ones and the product will be maximized‚ a change that would make the experiment economic. Also‚ if chemists aim to
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Density Problem Set Name___________________________ Period__________ Solve the following problems. Show all work‚ and report your answer to the correct number of significant figures. Be sure to report the proper units. : Densities of common substances at room temperature (g/cm3) Air 0.0013 Water 1.00 Aluminum 2.70 Gold 19.3 1. An object has a mass of 57.7 g and occupies a volume of 21.65 cm3‚ what is its density? 2. An object
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FOOD NUTRITION BASICS LABORATORY REPORT LAB 3 PROTEINS DUE DATE Next FNB Practical NAME (CAPITALS) ______________________________GROUP LETTER___________ This work is the product of my own efforts and has not been copied from any other sources except where full acknowledgement has been given. Signed________________________________________ Student No._____________ Introduction The principle involved in this experiment is denaturation. It involves loss of ordered structure and can be caused by changes
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strains of Halobacteria were used in this experiment to examine the phenotypic differences against each strain’s genotypes. The mutant strain (KBT-1) did not possess gas vesicles‚ which decreased its ability to float to the surface. The lack of gas vesicles in the mutant strain made the colonies a red color. The wild type strain (NRC-1) had gas vesicles and appeared a pink pigment color. Growth on the agar allowed one to examine the specific colonies. Inoculation and growth in the liquid culture were done
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Introduction! ! The Michelson Interferometer is commonly used to determine the wavelength of light or measure very small distances. It was invented by Albert Abraham Michelson and is commonly used in optical interferometry‚ a branch of physics involving a family of techniques one could use to extract information about waves by superimposing them. ! ! The original application of the Michelson Interferometer was to the famous Michelson-Morley experiment in 1887. Prior to Einstein’s
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cheese. Lactic acid bacteria(LAB)‚ a bacteria that can be found in the production of cheese‚ its stress gene was investigated in the experiment by using various biochemical and genetic techniques to identify and extract. The characterisation of the strain illustrates how identification of strains differ using different methods‚ such as gram stain and 16s rRNA screening. After the characterisation‚ the stress gene isolation assist the further understanding of the gene on LAB be giving different stress
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TITLE OF EXPERIMENT 2 : DILUTION 2.1: OBJECTIVES Upon completion of this experiment‚ students should be able to: 1. determine the concentration of coloured solution such as FeCl3 by using dilution and colour differentiating (colorimetric) techniques. 2.2: INTRODUCTION Concentration can be expressed in many different ways such as percentage volume and percentage weight etc. In laboratory‚ normally concentrations were expressed as molarity and normality. Molarity is the
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spectrophotometer measured for absorbance‚ which was used to calculate initial cell density. The caps on each of the samples were then loosened to allow movement of gas in and out of the tube. After a week of growth under fluorescent lighting‚ the tubes were inverted for mixing and measured for absorbance again. The values were used to calculated the corresponding final cell density. The calculations of initial and final density of cells were used to determine the algal growth rate of cells per milliliter
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