(a)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a
(b)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(c)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(d)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(e)
Interpretation: The chemical equation for the reaction of
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(f)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(g)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
(h)
Interpretation: The chemical equation for the reaction between
Concept introduction: In a chemical reaction the number of reactant atoms in each element should be similar to the number of product atoms those elements.
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PRINCIPLES OF MODERN CHEMISTRY-OWLV2
- Give detailed Solution with explanation needed with structures. don't give Ai generated solution. avoid handwritten Solutionarrow_forwardThe acid-base indicator HX undergoes the following reaction in a dilute aqueous solution: HX (color 1) H+ + X- (color 2). The following absorbance data were obtained for a 0.00035 M solution of HX in 0.1 M NaOH and 0.1 M HCI. Measurements were made at wavelengths of 450 nm and 620 nm using a 1.0 cm glass cuvette. 450 620 A(460 nm) A(630 nm) 0.1 M NaOH 0.1 M HCI 0.065 0.435 0.895 0.150 In the 0.1M NaOH solution, the indicator will be almost 100% in the X- form, while in 0.1M HCI, the indicator will be nearly 100% protonated (HX). Calculate the acid dissociation constant for the indicator if a pH=5 buffer solution containing a very small amount of indicator exhibits an absorbance of 0.567 at 450 nm and 0.395 at 620 nm (measured in a 1 cm glass cuvette).arrow_forwardShow work...give the name of the given compound. Don't give Ai generated solutionarrow_forward
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