Equivalence point in Visual C#

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Equivalence point
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Vol NaOH added (mL)
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Figure 61 Titration of a strong acid with a strong base
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80 U STEP 4 Review the Knowledge You Need to Score High
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Laboratory experiments involving reactions are usually concerned with both the reaction and the stoichiometry Typical experiments involving these concepts are 7, 14, 15, and 20 in the Experimental chapter You need some idea of the balanced chemical equation In the case of an acid base + + reaction, an acid reacts with a base The acid supplies H and the base accepts the H + If the acid is diprotic, such as H2SO4, it can donate two H The key to any reaction experiment is moles The numbers of moles may be calculated from various measurements A sample may be weighed on a balance to give the mass, and the moles calculated with the formula weight Or the mass of a substance may be determined using a volume measurement combined with the density The volume of a solution may be measured with a pipet, or calculated from the final and initial readings from a buret This volume, along with the molarity, can be used to calculate the moles present The volume, temperature, and pressure of a gas can be measured and used to calculate the moles of a gas You must be extremely careful on the AP exam to distinguish between those values that you measure and those that you calculate The moles of any substance in a reaction may be converted to the moles of any other substance through a calculation using the balanced chemical equation Other calculations are presented in the stoichiometry chapter
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1 In balancing chemical equations don t change the subscripts in the chemical formula, just the coefficients 2 Molecular compounds ionize, ionic compounds dissociate 3 In writing ionic and net ionic equations, show the chemical species as they actually exist in solution (ie, strong electrolytes as ions, etc) 4 In writing ionic and net ionic equations, don t break apart covalently bonded compounds unless they are strong acids that are ionizing 5 Know the solubility rules as guidelines, not explanations 6 Oxidizing and reducing agents are reactants, not products 7 The products of the complete combustion of a hydrocarbon are carbon dioxide and water This is also true if oxygen is present as well; but if some other element, like sulfur, is present you will also have something else in addition to carbon dioxide and water 8 If a substance that does not contain carbon, like elemental sulfur, undergoes complete combustion, no carbon dioxide can be formed
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9 If an alcohol like methanol, CH3OH, is dissolved in water, no hydroxide ion, OH , will be formed
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10 Know the strong acids and bases 11 HF is not a strong acid 12 In titration calculations, you must consider the reaction stoichiometry 13 Be sure to indicate the charges on ions correctly 14 The common coordination numbers of complex ions are 2, 4, and 6 15 Do not confuse measured values and calculated values
Reactions and Periodicity 81
U Review Questions
You have 20 minutes You may not use a calculator 1 ___ Fe(OH)2(s) + ___ H3PO4(aq) ___ Fe3(PO4)2(s) + ___ H2O(l) After the above chemical equation is balanced the lowest whole-number coefficient for water is: (A) 3 (B) 1 (C) 9 (D) 6 (E) 12 Choose one of the following for questions 2 4 (A) Cu (B) CO32 (C) Fe3+ (D) Al3+ (E) Pb2+ 2 This ion will generate gas bubbles when hydrochloric acid is added 3 This ion initially gives a white precipitate when dilute sodium hydroxide is added to a solution containing this ion The precipitate will dissolve in excess sodium hydroxide 4 Aqueous solutions of this ion are blue 5 Which of the following best represents the balanced net ionic equation for the reaction of lead(II) carbonate with concentrated hydrochloric acid (A) Pb2CO3 + 2 H + Cl Pb2Cl + CO2 + H2O + (B) PbCO3 + 2 H + 2 Cl PbCl2 + CO2 + H2O + 2+ (C) PbCO3 + 2 H Pb + CO2 + H2O (D) PbCO3 + 2 Cl PbCl2 + CO32 (E) PbCO3 + 2 HCl PbCl2 + CO2 + H2O 6 A sample of copper metal is reacted with concentrated nitric acid in the absence of air After the reaction, which of these final products are present (A) CuNO3 and H2O (B) Cu(NO3)3, NO, and H2O (C) Cu(NO3)2, NO, and H2O (D) CuNO3, H2O, and H2 (E) Cu(NO3)2, NO, and H2
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