The complete balanced equation for the dissolution of gold in aqua regia has to be found and the purpose of the addition of hydrochloric acid to the reaction mixture should be explained. Concept Introduction: Dissolution of gold in aqua regia: Aqua regia is the mixture of HNO 3 and HCl in the ratio of 1:3 . Neither of the acids can dissolve gold individually. But the aqua regia can dissolve gold and platinum. Nitric acid being a power full oxidising agent oxidises a very small amount of Au to Au + 3 . The formed gold ions later reacts with the chloride ions produced by the HCl and forms AuCl 4 − . The excess of hydrogen ions present in the solution stabilises the complex ion and also leads to the formation of chloroauric acid (HAuCl 4 ) . A chemical equation is the figurative representation of chemical reaction. In a chemical equation the reactants are in the left side and the products are in the right side. A balanced chemical equation serves as an easy tool for understanding a chemical reaction.
The complete balanced equation for the dissolution of gold in aqua regia has to be found and the purpose of the addition of hydrochloric acid to the reaction mixture should be explained. Concept Introduction: Dissolution of gold in aqua regia: Aqua regia is the mixture of HNO 3 and HCl in the ratio of 1:3 . Neither of the acids can dissolve gold individually. But the aqua regia can dissolve gold and platinum. Nitric acid being a power full oxidising agent oxidises a very small amount of Au to Au + 3 . The formed gold ions later reacts with the chloride ions produced by the HCl and forms AuCl 4 − . The excess of hydrogen ions present in the solution stabilises the complex ion and also leads to the formation of chloroauric acid (HAuCl 4 ) . A chemical equation is the figurative representation of chemical reaction. In a chemical equation the reactants are in the left side and the products are in the right side. A balanced chemical equation serves as an easy tool for understanding a chemical reaction.
Solution Summary: The author explains the complete balanced equation for the dissolution of gold in aqua regia and the purpose of the addition of hydrochloric acid to the reaction mixture.
The complete balanced equation for the dissolution of gold in aqua regia has to be found and the purpose of the addition of hydrochloric acid to the reaction mixture should be explained.
Concept Introduction:
Dissolution of gold in aqua regia: Aqua regia is the mixture of HNO3 and HCl in the ratio of 1:3. Neither of the acids can dissolve gold individually. But the aqua regia can dissolve gold and platinum. Nitric acid being a power full oxidising agent oxidises a very small amount of Au to Au+3. The formed gold ions later reacts with the chloride ions produced by the HCl and forms AuCl4−. The excess of hydrogen ions present in the solution stabilises the complex ion and also leads to the formation of chloroauric acid (HAuCl4).
A chemical equation is the figurative representation of chemical reaction. In a chemical equation the reactants are in the left side and the products are in the right side. A balanced chemical equation serves as an easy tool for understanding a chemical reaction.
(b)
Interpretation Introduction
Interpretation:
The complete balanced equation for the dissolution of gold in aqua regia has to be found and the purpose of the addition of hydrochloric acid to the reaction mixture should be explained.
Concept Introduction:
Dissolution of gold in aqua regia: Aqua regia is the mixture of HNO3 and HCl in the ratio of 1:3. Neither of the acids can dissolve gold individually. But the aqua regia can dissolve gold and platinum. Nitric acid being a power full oxidising agent oxidises a very small amount of Au to Au+3. The formed gold ions later reacts with the chloride ions produced by the HCl and forms AuCl4−. The excess of hydrogen ions present in the solution stabilises the complex ion and also leads to the formation of chloroauric acid (HAuCl4).
A chemical equation is the figurative representation of chemical reaction. In a chemical equation the reactants are in the left side and the products are in the right side. A balanced chemical equation serves as an easy tool for understanding a chemical reaction.
The molecular weight of sperm whale myoglobin is 17.8 kDa.17.8 kDa. The myoglobin content of sperm whale muscle is about 80 g · kg−1.80 g · kg−1. In contrast, the myoglobin content of some human muscles is about 8 g · kg−1.8 g · kg−1.
Compare the amounts of O2O2 bound to myoglobin in human muscle and in sperm whale muscle. Assume that the myoglobin is saturated with O2,O2, and that the molecular weights of human and sperm whale myoglobin are the same.
How much O2O2 is bound to myoglobin in human muscle?
How much O2O2 is bound to myoglobin in whale muscle?
The amount of oxygen dissolved in tissue water at 37°C37°C is about 3.5×10−5 M.3.5×10−5 M. What is the ratio of myoglobin‑bound oxygen to dissolved oxygen in the tissue water of sperm whale muscle?
(ii) The thermite reaction can be used to join railway tracks together.
Aluminium is used in this reaction to produce iron from iron oxide.
Fe,0, + 2Al 2Fe + Al,O,
Explain why this reaction is a redox reaction.
Four metals, A, B, C, and D, exhibit the following properties.
(a) Only A and C react with l.0 M hydrochloric acid to give H2(g).
(b) When C is added to solutions of the ions of the other metals, metallic B, D, and A are formed.
(c) Metal D reduces Bn+ to give metallic B and Dn+.
Based on this information, arrange the four metals in order of increasing ability to act as reducing agents.
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell