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    Sn1 Reaction Lab Report

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    The effect of temperature on the reaction rate: As the temperature increases it provides more kinetic energy to the molecules allowing them to move faster and with more energy the molecules can overcome the activation energy barrier and therefore the reaction occurs faster. 5. Since the proposed mechanism is a SN1 reaction the reaction got faster as the polarity increased. This is because SN1 reactions work best with polar protic solvents as they stabilize the carbocation. Therefore‚ as seen

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    anthracene from benzyltriphenylphosphonium chloride and 9-anthraldehyde through the reaction mechanism recognized as the Wittig Reaction. The Wittig Reaction allows the chemist to synthesize phosphoranes in the lab with relative ease. A more recent and inexpensive version of the reaction is the Wittig-Horner reaction (1). ABSTRACT Georg Wittig was a German chemist and Nobel Prize winner in 1979 for the Wittig reaction (1). He was born in Berlin‚ on June 16‚ 1897‚ and died August 26‚ 1987 (1). Wittig

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    Introduction The purpose of this lab is to be able to observe the reaction rates of different chemical substances‚ by looking at which substance is the fastest reactant. This is what chemical kinetics is. Reaction rate is the change in the concentration of a reactant or product in a chemical reaction per unit time. In this lab the requirement was to be able to calculate each Average reaction rate which is the change in reactant or product concentration at a given time interval. Some equations that

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    Ted Legdeto Mark Maguire 10/15/13 Period G Observation and Experiment Lab Objective: To make observations about the changes that occur when several substances are mixed and to design controlled experiments to identify the substances responsible for the observed changes. Materials: We did not use graduated cylinders or beakers. Apparatus Expendables Wash bottle Pen for labeling Jars or plastic cups‚ small‚ 2 Sealable‚ zipper-lock plastic bags‚ quart size‚ 6 Measuring spoons

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    Name Lab Partner Name(s) Thermodynamics‚ Enthalpy of Reaction Lab March 27‚ 2014 I. Purpose The purpose of this lab is to learn how to determine the heat of reaction. II. Safety 1. Wear appropriate safety attire (goggles‚ aprons‚ hair tie‚ etc.). 2. Do not directly inhale or ingest chemicals. 3. Understand safety information regarding the chemicals being handled during the lab (hydrochloric acid‚ sodium hydroxide). 4. Be aware of how to operate all lab equipment. 5. Clean hands

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    Replacement of Machinery

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    ASSIGNMENT REPLACEMENT OF MACHINERY Application of Cost Analysis Techniques Submitted By SAMARTH ANAND PRN: 11020241126 All equipments used in industries‚ military‚ and even at homes have a limited life span. By passage of time‚ these equipments fail suddenly or wear out gradually. As these machines or equipments are wearing out‚ the efficiency of their functions continues to decrease and in effect affects the production rates or economic/social benefits of the system

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    Chemestry Lab Rates of Reaction (Picture from: http://sciencespot.net/Pages/kdzchem.html) The rate of reaction is how fast or slow a reaction is completed. This is important for factories and chemists all over the world. What happenes during a reaction is atoms or molecules that collide and form new molecules. You can affect this rate of reaction with: temperature of reactants or suroundings‚ surface area of reactants‚ if there is a catalyst present‚ but in theis lab the concentration was changed

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    PCR: 1 μL of Herculase II Fusion DNA polymerase‚ 10 μL of 5X Herculase II reaction buffer‚ 0.5 μL of a 100mM solution of dNTPs (25 mM each)‚ 2 μL of a 10 μM solution of each primer‚ 100 ng of each upstream and downstream fragments‚ 200 ng of pyrG marker fragment and adjust to 50 μL of double-distilled water. 35. Lysis Buffer: to prepare 50 mL of buffer dissolve 23.6 g of Guanidine thiocyanate (118.16 g/L) in 25 mL of double-distilled water. Once dissolved add: 2.5 mL of 1 M Tris-HCl pH 7.0 (121.14

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    Thermite Background: Thermite is a powder made from aluminum powder and a metal oxide [usually iron oxide (Fe2O3‚ known as rust)]. The thermite reaction is a redox reaction‚ where Aluminum reduces the oxide of another metal. For example‚ when using iron oxide (as I did) the equation would be Fe2O3(s) + 2 Al(s) -> Al2O3(s) + 2 Fe(l). Black or blue iron oxide (Fe3O4) could also be used. Other examples of possible oxides are manganese thermite (MnO2)‚ Cr2O3‚ and copper thermite (CuO). Aluminum can

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    Examples of synthesis reactions: 1. Metal  +  oxygen  →   metal oxide EX. 2Mg(s)  +  O2(g)  →    2MgO(s) 2. Nonmetal  +  oxygen  →    nonmetallic oxide EX. C(s)  +  O2(g)  →    CO2(g) 3. Metal oxide  +  water  →    metallic hydroxide EX. MgO(s)  +   H2O(l)  →    Mg(OH)2(s) 4. Nonmetallic oxide  +  water  →    acid EX. CO2(g)  +  H2O(l)  →    ; H2CO3(aq) 5. Metal + nonmetal  →    salt EX. 2 Na(s)  +  Cl2(g)  →    2NaCl(s) 6. A few nonmetals combine with each other. EX. 2P(s)  +  3Cl2(g)  →

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