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Help: Identify the Lewis acid, Lewis base, conjugate acid and conjugate base for the reaction of tetrabromoferrate (III) with water.
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- 7. Draw out the chemical equations of the carbonic acid / bicarbonateequilibrium system, explain how the system responds to increase acidity.Identify the Lewis acid, Lewis base, conjugate acid and conjugate base for the reaction of tetrabromoferrate (III) with water. O Since water is amphoteric it acts as both the Lewis acid and Lewis base, HFEBR4 is the conjugate acid and OH1 is the conjugate base. FeBra 1 is the Lewis acid, H20 is the Lewis base, HFEBR4 is the conjugate base and OH1 is the conjugate acid. O FeBr41 is the Lewis acid, H20 is the Lewis base, HFEBR4 is the conjugate acid and OH1 is the conjugate base. O Since water is amphoteric it acts as both the Lewis acid and Lewis base, HFeBr4 is the conjugate base and OH1 is the conjugate acid. FeBra1 is the Lewis base, H20 is the Lewis acid, HFEBR4 is the conjugate base and OH1 is the conjugate acid. FeBra 1 is the Lewis base, H20 is the Lewis acid, HFEBR4 is the conjugate acid and OH1 is theWrite the equation for the reaction of aqueous sodium p-toluate with aqueous HCI. Predict the products, and include phase labels for the expected phase of the products (are they solid or aqueous?). Indicate whether reactants or products are favored for this reaction.
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- To determine the percent purity of a sample containing iron(II) ammonium sulfate; Suggest , 2 different methods for iron(II) ion. Explain in detail what errors may occur in the methods. (volhard method, gravimetric analysis, kjeldahl, etc.) Percentage content: 1-100% ; the solution concentrations to be used are 0.01-0.1M; Take the volumes of solution to be used between 1-50 mL3. The pH of blood is buffered by a mixture of HCO3- (bicarbonate) and H2CO3 (carbonic acid).i. Write out an equation that shows a reaction of H+ with HCO3-iii. Recall that H2CO3 (aq) decomposes readily. Write a chemical equation to describe this decomposition. The pH of blood is buffered by a mixture of HCO3- (bicarbonate) and H2CO3 (carbonic acid). Write out an equation that shows a reaction of H+ with HCO-3. Recall that H2CO3 (aq) decomposes readily. Write a chemical equation to describe this decomposition. Consider your response to the last question and explain how bicarbonate and carbonic acid are generated by the dissolving of CO2 in water (Hint: The reaction for “ii” is reversible.)In CHEM 160, you learned that AgBr does not dissolve in water. Why is that? (Choose the best answer.) Group of answer choices A:It is possible to separate the Ag+ and Br- ions in water under reasonable conditions but this step requires more energy than what is released by the solvation of these ions by H2O molecules. B:We lied in CHEM 160 - AgBr is actually very soluble in water. C:It is possible to separate the Ag+ and Br- ions in water under reasonable conditions and this step requires less energy than what is released by the solvation of these ions by H2O molecules. D:Separating the Ag+ and Br- ions to an appreciable extent in water requires to much energy to accomplish under reasonable conditions. Consider this picture depicting the hydration of an atom or ion by water molecules. Of the choices below, what is the only atom or ion that the yellow particle in the center can be? Group of answer choices A:K+ ion B:oxygen atom in ethanol (CH3CH2OH) C:Cl-…
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