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Complexometric Titration

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... Welcome to the AP Chemistry Five-Step Program. The fact that you are reading this preface suggests that you will be taking the AP exam in chemistry. The AP Chemistry exam is constantly evolving and so this guide has evolved. In this edition, we have updated the book to match the new AP Chemistry exa ...
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... In the present work, a UWS droplet evaporation model is proposed, based on the multicomponent droplet evaporation model developed by the authors [10]. The suggested analysis is based on the conventional conservation equations of species and energy for the gas phase, and the energy balance equation a ...
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... In the Haber process, nitrogen reacts with hydrogen to form ammonia: N2 (g) + 3 H2 (g) ⇌ 2 NH3 (g) The reaction does not go to completion and an equilibrium mixture of reactants and products is formed. To investigate the equilibrium, 1.00 mol of nitrogen and 3.00 mol of hydrogen are sealed in a cont ...
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... Welcome to the AP Chemistry Five-Step Program. The fact that you are reading this preface suggests that you will be taking the AP exam in chemistry. The AP Chemistry exam is constantly evolving and so this guide has evolved. In this edition, we have updated the book to match the new AP Chemistry exa ...
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... Policy for making up missed work and turning in late assignments: If you are going to miss class please inform me with an email. Your opportunity to make up work is dependent on written approval. In general most missed work is due on the next Friday. For any planned absence work that is due during t ...
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... that three conditions are met. The first condition is that all reactions involving the titrant and analyte must be of known stoichiometry. Second, the titration reaction must occur rapidly. If we add titrant at a rate that is faster than the reaction's rate, then the end point will exceed the equiva ...
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Chemical equilibrium



In a chemical reaction, chemical equilibrium is the state in which both reactants and products are present in concentrations which have no further tendency to change with time. Usually, this state results when the forward reaction proceeds at the same rate as the reverse reaction. The reaction rates of the forward and backward reactions are generally not zero, but equal. Thus, there are no net changes in the concentrations of the reactant(s) and product(s). Such a state is known as dynamic equilibrium.
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