"Spectroscopy of fast green solution" Essays and Research Papers

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    Bromocresol green is a weak organic acid; therefore‚ it doesn’t reacte to completion‚ rather it reacts to a dynamic equilibrium‚ the point at which the rate of reactants turning to products is equal to the rate of products changing back into reactants. An acid (in terms of the bromsted-lowry definition) is a substance that donates H+ ions in a reaction. In bromcresol green‚ the acidic proton is the that is attached to the SO3- group. The acid

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    Spectroscopy Report

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    2 UV-Vis Spectroscopy 1.3 Fluorescence Spectroscopy 1.4 Atomic Spectrometric Methods CHAPTER 2 Methodology 14 2.1 UV-Vis Spectroscopy 2.2 Fluorescence Spectroscopy 2.3 Atomic Spectrometric Methods CHAPTER 3 Results and Data Analysis 18 3.1 UV-Vis Spectroscopy 3.2 Fluorescence Spectroscopy 3.3 Atomic Spectrometric Methods CHAPTER 4 Discussions and Problem Solving 33 4.1 UV-Vis Spectroscopy 4.2 Fluorescence Spectroscopy 4.3 Atomic

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    Mass Spectroscopy

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    Mass Spectroscopy Mass spectroscopy is a method used in science and industry in order to obtain the masses and relative concentrations of atoms and molecules and to detect isotopes in a sample based on their masses. In order to do this the method requires an instrument called the ‘mass spectrometer’‚ of which‚ is able extract accurate information of the relative masses of isotopes and their relative abundance. This makes the mass spectrometer very useful for applications such as carbon dating

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    performance and ideas)‚ Thomas Green is left with several options to choose from to solve the issue at hand. Before discussing these options it is important to describe his first step in taking any one of these decisions. Green must first email McDonald to find out the best time they could meet. For any decision Green decides upon at this point‚ it is important that he communicate face to face with McDonald and not through a memo or letter. The first option Green has is to quit Dynamic Displays

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    Spectroscopy Breakdown

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    molecule Mass spectrometer converts sample into ions‚ and that these ions can be further fragmented (broken down) into smaller molecules. Ionisation can be achieved using various different techniques‚ electron ionisation‚ chemical ionisation and Fast atom bombardment. When sample is ionised the analyser portion of the mass spectrometer seperates the molecules based on their mass to charge ratio. A dector then detects the molecule weight of all the molecules present and a spectrum is obtained

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    Mass Spectroscopy

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    Module 2 Mass Spectroscopy [pic] [pic] Diagram of a mass spectrometer Stage 1: Ionisation The sample is injected as a vapour and the atoms are bombarded by fast moving electrons. This causes the molecule to fragment into two or more pieces. When a molecule or part thereof fragments‚ one portion would be positively charged while the second portion will be uncharged. All uncharged fragments are ultimately lost in the machine as mass spectrometers only work with positive ions. Stage 2: Acceleration

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    Infrared Spectroscopy

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    Infrared Spectroscopy Organic Chemistry Lab 301A B. The purpose of this lab is to study Infrared Spectroscopy‚ which focuses on the study of the electromagnetic spectrum. The area to be studied is the infrared region‚ which is made up of gamma‚ X‚ and UV rays. We want to be able to identify spectra’s to their complementary structures. The background of this experiment particularly deals with the study of compound structure determination‚ and traits. We must be aware of the functional groups

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    NMR Spectroscopy

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    Background NMR spectroscopy is a well established method for structure determination of various organic molecules ranging from small molecules all the way up to large bio-molecules such as proteins‚ DNA and polysaccharides. The chemical environment surrounding each atom as well their proximity to other atoms in a molecule can be studied with various experiments‚ enabling high-resolution 3D-structure determinations as well as verification of the chemical structure. NMR spectroscopy is well suited

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    Spectroscopy and Modeling

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    Culture and Science University‚ Tehran‚ Iran b c a r t i c l e in f o Article history: Received 21 April 2010 Received in revised form 14 August 2010 Accepted 18 August 2010 Available online 26 August 2010 Keywords: HSA Lomefloxacin Colchicine Spectroscopy Molecular dynamic a b s t r a c t Combination of several drugs is often necessary especially during long-term therapy. The competitive binding drugs can cause a decrease in the amount of drug bound to protein and increase the biological active

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    Ir Spectroscopy

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    Callam 1/8 CHEM – 254 – WI -2009 Problem Set #1 – IR Spectroscopy - KEY 1. Which of the indicated bonds absorbs at the higher frequency in an IR spectrum? a. O or OH C=O > C-O b. N or NH C=N > C-N c. H or H C-H sp2 > C-H sp3 Callam 2/8 CHEM – 254 – WI -2009 2. What major IR absorptions are present above 1500 cm-1 for each compound? a. b. O sp3 C-H stretch 2950 C=O - ketone 1715 cm-1 cm-1 c. O sp3 C-H stretch 2950 cm-1 sp3 C-H stretch 2950 cm-1

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