The Spectrophotometric Determination of an Equilibrium Constant. Abstract: The report presents determination of equilibrium constant for the formation of a complex ion FeSCN2+. This was accomplished using a colorimeter to measure absorbance of some known concentration solutions in order to generate the calibration curve. The equation of the graph was used to compute the equilibrium concentrations of the reactants and products‚ needed to calculate the equilibrium constant for
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| Determining the melting point of aspirin • Firstly we turned on the melting point equipment; we referred to data tables for the actual value for the melting point of the aspirin. • Then we arranged the equipment to a point below the expected melting point we then noted that the rate of heating will influence the reading of the melting point. • Afterward we dipped the sealed capillary tube provided into the sample of our aspirin prepared until we got sufficient depth (about
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FOUNDATION IN SCIENCE INTRODUCTION TO PRACTICAL ORGANIC CHEMISTRY – MAKING AND PURIFYING ORGANIC COMPOUNDS Stage 1 – Deciding how much reagent to use Most organic reactions do not go to completion; most reach an equilibrium position with significant quantities of reactants still remaining. In addition‚ separating the desired product from the rest of the reaction mixture‚ and then purifying it‚ will result in the loss of more of the product. The amount of product obtained expressed as a percentage
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What is Aspirin? Aspirin is on of the first drugs to ever be commonly used and is still one of the most widely used in the world. How widely used you ask? Approximately 35000 metric tonnes are produced and consumed every year. Chemically aspirin is known as acetylsalicylic acid with the chemical formula of C9H8O4. Aspirin is an analgesic‚ anti-inflammatory‚ antipyretic‚ and is an inhibitor of platelet aggregation. The history of Aspirin Aspirin has been a major part of just about everyone’s
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Preparation and Recrystallisation of Aspirin Contents Page Synopsis iii 1 Introduction 1 1.1 Objective 1 1.2 Background 1 2 Theory 1 3 Procedure 2 3.1 Materials 2 3.2 Preparation 2 3.3 Recrystallisation 3 3.4 Determination of Melting Point 3 4 Results and Calculation 4 4.1 Mass 4 4.2 Percent yield 4 4.3 Melting Point 4 4.4 Appearance 4 5 Discussion 5
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“Aspirin has been used for many years; it is well-understood‚ effective‚ inexpensive and widely available.” - Dr. Jeffrey Berger In the last 30 years medicines prescribed by doctors have changed beyond all recognition. Our better knowledge of the nature of diseases and their management has led to the replacement of many old remedies by new ones specifically designed for each illness. Everyone has known for years that
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Aspirin Aspirin is a salicylate‚ also known as a non steroidal anti-inflammatory drug (NSAID). It is the generic name of acetylsalicylic acid and is used clinically to treat fever‚ pain and inflammation as it works by preventing the formation of prostaglandin. Prostaglandin is the active agent that is responsible for the sensitisation at the nerve endings. It can be administered orally‚ rectally or by intravenous route. (6) Benzene ring Carboxylic acid Ester Alkane Aspirin has a pKa of 3.49
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Synthesis of Aspirin and Tylenol Kyla Wykoff Abstract Aspirin and Tylenol were synthesized by means of crystallization‚ recrystallization‚ and melting point determination. Synthesis produced significantly high percent yields for aspirin‚ however‚ produced extremely low and impure percent yields for Tylenol. A second group was also used to compare results and errors‚ in which they too were also producing extremely low percent yields of Tylenol. Therefore‚ error was based on the specific protocol
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Today‚ aspirin is one of the most widely used medication on this Earth and has been since its popular breakout in the late 1890s. Long before we were born there was no such thing of a medication called aspirin. Instead‚ ancient people used willow leaves and bark from trees to help relieve oneself from pain and fevers. Aspirin as we come to know it in the form of an acetylsalicylic acid‚ was introduced to the world by Chemist Felix Hoffmann who was working at Bayer pharmaceutical company located in
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Empty 19.49 21.206 18.748 Watch Glass and Aspirin Product 20.13 22.089 19.192 Total Aspirin Mass (0.15g Filter Paper) 0.374 0.733 0.294 0.467 Trial 2 50 Degrees Watch Glass Empty 22.268 21.218 21.607 Watch Glass and Aspirin Product 22.671 21.924 22.87 Total Aspirin Mass (0.15g Filter Paper) 0.253 0.556 1.113 0.641 Trial 3 80 Degrees Watch Glass Empty 18.497 19.841 19.483 Watch Glass and Aspirin Product 19.632 20.098 20.544 Total Aspirin Mass (0.15g Filter Paper) 0.985 0.107 0.911
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