Investigation of a Hydrated Salt Table of Calculations: ³ Unknown #2 Weight of hydrate before heating .9989g Weight hydrate after heating .6534g Weight of water .3455g Mole of water in hydrate .0192mol Mole of anhydrous salt: CuSO4 .004094mol CuCl2 .004859mol CoCl2 .005033mol Mole ratio of water to each of the anhydrous salts: CuSO4 4.69
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LAB#: 20 SKILL: Planning and Designing OBSERVATIONS: A student is given a small beaker containing an unknown salt‚ x. The salt is crystalline‚ deliquescent and colorless. The student is asked to perform test and observation on the salt to determine the cation and anion present. HYPOTHESIS: Perhaps by using the flame test or reacting salt x with NaOH‚ or NH4OH the cation could be distinguished by observing the color changes or solubility while reacting salt x with H2SO4 or a mixture of copper
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In recent years‚ iron and steel material iron powder of prices rise‚ the choice of sand iron profit‚ increased profits. Therefore‚ special machinery and river sand processing equipment‚ magnetic separation machine series jaw crusher manufacturer processing equipment already in many areas the national promotion. At the same time‚ they are inseparable from magnetic separation machine. The milling equipments how to choose from sand iron? These mineral processing equipment general working principle:
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period I 5-12-11 Iron-Gall Ink I. Objective: The objective of this lab was to make our own ink and write an elemental haiku. We had to mix numerous amounts of liquids to make the ink. II. Materials: First we needed to get safety glasses to protect our eyes from any chemicals‚ we could have used aprons but we didn’t really need to. A hot plate to heat up the water. 200 ml tap water‚ three 250 ml beakers‚ one heat-proof glass funnel. Filtered paper‚ vinegar‚ hydrogen peroxide‚ a
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Copper-Iron Stoichiometry Lab Report 10/3/12 Abstract: The lab performed required the use of quantitative and analytical analysis along with limiting reagent analysis. The reaction of Copper (II) Sulfate‚ CuSO4‚ mass of 7.0015g with 2.0095g Fe or iron powder produced a solid precipitate of copper while the solution remained the blue color. Through this the appropriate reaction had to be determined out of the two possibilities. Through the use of a vacuum filtration system the mass of Cu was
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Salt River Labs Q- What is the major problem at SRL? Who are the people involved and how do they contribute to the problem? 1. There are many problems that are apparent at Salt River Labs. The first major problem is the purchasing process. There are way too many people involved in this process. The current process involves series of five different people‚ or groups of people. This starts with the Chemists who send requisitions to supervisors‚ who send the requisition to Suzie Martinez‚ who
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ANALYSIS IN WORLD LITERATURE (SALT) Title of the story: SALT Written by: Kurt Wimmer Directed by: Phillip Noyce Starring: * Angelina Jolie as Evelyn Salt/ Sasha Fyodorovna Chenkova * Liev Schreiber as Theodore “Ted” Winter/Nikolai Takovsky * Chiwetel Ejiofot as Peabody * Daniel Ilbrychski as Vasily Orlov * August Diehl as Michael Krause Evelyn Salt a CIA agent two years ago was captured
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Structures‚ Biosynthesis and Biofunctions of Iron-sulfer proteins Yiming Chen‚ Brown University‚ May 11th‚ 2011 I. Introduction Iron-sulfur proteins are the proteins which contain iron-sulfur clusters‚ like sulfide-linked di-‚ tri-‚ and tetrairon centers with various oxidative states 1. An excess of 120 distinct types of enzymes and proteins are known to contain Fe-S clusters2. Iron-sulfur proteins are known for the role of the oxidation-reduction reactions of mitochondrial electron transportation
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Research Question: Is it possible to separate salt‚ sand and iron filings from each other in a mixture‚ to figure out the percentage of each component in the original mixture? Background Research: In this Investigation‚ I will be separating sand‚ salt‚ iron fillings in a mixture and finding their percentages. Iron is a magnetic solid which is incapable of being dissolved in water. Salt is a non-magnetic solid which is capable of being dissolved in water. Sand is a non-magnetic solid which is incapable
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1998: Notes on the stratigraphy and chronology of Iron Age Tacanach‚ Tel Aviv 35‚ 208– Finkelstein‚ I. 2001: The rise of Jerusalem and Judah: the missing link‚ Levant 33‚ 105–115 MacDonald‚ K. 2011: Special issue: innovation and the evolution of human behavior Early Metallurgy in Cyprus‚ 4000–500 BC‚ Larnaca‚ Cyprus 1–6 June 1981‚ 303–312‚ Nicosia Gosden‚ C. 1994: Social Being and Time‚ Oxford Gosden‚ C Gottlieb‚ Y. 2010: The advent of the Age of Iron in the Land of Israel: a review and reassessment
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