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Cu(NO3)2(aq) + Na2CO3(aq) -> 2NaNO3(aq) + CuCO3(aq)
Balanced equation: Cu(CH3COO)2 + Na2CO3 -> CuCO3 + 2CH3COONa Net ionic equation: Cu^2+ + CO3^2- -> CuCO3
The chemical reaction between sodium carbonate and copper(II) sulfate is as follows: Na2CO3 + CuSO4 → CuCO3 + Na2SO4. This reaction forms copper(II) carbonate and sodium sulfate.
When copper II nitrate reacts with sodium carbonate, copper II carbonate and sodium nitrate are formed. The balanced chemical equation for this reaction is Cu(NO3)2 + Na2CO3 → CuCO3 + 2NaNO3.
Molecular equation: CuSO4 + Na2CO3 → CuCO3 + Na2SO4 Net ionic equation: Cu2+ + CO3^2- → CuCO3
Cu(NO3)2(aq) + Na2CO3(aq) -> 2NaNO3(aq) + CuCO3(aq)
Balanced equation: Cu(CH3COO)2 + Na2CO3 -> CuCO3 + 2CH3COONa Net ionic equation: Cu^2+ + CO3^2- -> CuCO3
The balanced chemical equation for the reaction between copper(II) nitrate (Cu(NO3)2) and sodium carbonate (Na2CO3) is: Cu(NO3)2 + Na2CO3 → CuCO3 + 2NaNO3
The chemical reaction between sodium carbonate and copper(II) sulfate is as follows: Na2CO3 + CuSO4 → CuCO3 + Na2SO4. This reaction forms copper(II) carbonate and sodium sulfate.
When copper II nitrate reacts with sodium carbonate, copper II carbonate and sodium nitrate are formed. The balanced chemical equation for this reaction is Cu(NO3)2 + Na2CO3 → CuCO3 + 2NaNO3.
Molecular equation: CuSO4 + Na2CO3 → CuCO3 + Na2SO4 Net ionic equation: Cu2+ + CO3^2- → CuCO3
They will react to form aqueous sodium chloride and solid copper carbonate in a double replacement reaction, also known as a double displacement reaction. CuCl2(aq) + Na2CO3(aq) --> CuCO3(s) + 2NaCl(aq)
CuSO4 (aq) + Na2CO3 (aq) --> CuCO3 (s) + Na2SO4 (aq)
copper carbonate
CuSO4 (aq) + Na2CO3 (aq) --> CuCO3 (s) + Na2SO4 (aq)
malachite+sulfuric acid.....yields....liquid 1+gas liquid 1+iron....yields.....liquid2 +brown solid(copper)
12.5 (g CuCO3) = [12.5 (g CuCO3) / 123.555 (g/mol CuCO3)] = 0.1012 (mol CuCO3)0.1012 (mol CuCO3)* [1 (mol CuO) / (mol CuCO3)] = 0.1012 (mol CuO)= [0.1012 (mol CuO) * 79.545 (g/mol CuO)] = 8.047 g CuO = 8.05 g CuO