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(Total 13 marks) 2. This question is about salts. Green copper carbonate and sulfuric acid can be used to produce blue copper sulfate crystals. (a) Excess copper carbonate is added to sulfuric acid. Give three observations you would make. __ 1 2 (b) How can the excess copper carbonate be removed? __

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(Total 13 marks)
2.
This question is about salts.
Green copper carbonate and sulfuric acid can be used to produce blue copper sulfate crystals.
(a) Excess copper carbonate is added to sulfuric acid.
Give three observations you would make.
__
1
2
(b) How can the excess copper carbonate be removed?
__

(Total 13 marks) 2. This question is about salts. Green copper carbonate and sulfuric acid can be used to produce blue copper sulfate crystals. (a) Excess copper carbonate is added to sulfuric acid. Give three observations you would make. __ 1 2 (b) How can the excess copper carbonate be removed? __

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OlwenElite · Tutor for 8 years

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<p> <br /><br />(a) 1. The green color of copper carbonate will disappear.<br /> 2. A blue solution will be formed.<br /> 3. You would observe effervescence or bubbling caused by the release of carbon dioxide gas.<br /> <br />(b) The excess copper carbonate can be removed by filtration of the solution, leaving the dissolved copper sulfate in the liquid phase.<br /><br /></p>

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<p> <br /><br />This question is primarily about chemical reactions, salt formation, and methods of removing excess reactants.<br /><br />(a) We could observe a few different things when sulfuric acid reacts with copper carbonate:<br /><br />1. The sulfuric acid will react with the copper carbonate, and the excess copper carbonate will not be consumed in the reaction.<br />2. The formation of a liquid blue solution is the production of copper sulfate.<br />3. The reaction would release carbon dioxide gas.<br /><br />The blue color indicates the copper sulphate formed, and the bubbling or effervescence indicates the production of a gas.<br /><br />(b) The basic principle of this process is that the excess, unreacted solid can be removed by simple filtration. This leaves a blue solution containing the dissolved copper sulfate. The exact procedures might vary, but the fundamental mechanics of the process remains simple physical removal.<br /><br /></p>
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