Since zinc is a more active metal, it will replace the Cd2+ ion in cadmium sulfate to form zinc sulfate and cadmium metal.
Zn(s) + CdSO4(aq) -> ZnSO4(aq) + Cd(s)
Cadmium sulfate
Cadmium bisulfate is a chemical compound with the formula CdSO4. It is a white solid that is soluble in water. Cadmium bisulfate is used in the production of cadmium pigments and as a reagent in analytical chemistry.
Man..... I gotta say Chemistry is really hard once you're in college and this highschool questions is really easy so I don't know what you're thinking of searching it on the web...
CdS(s)+H2SO4(aq)--> Cd2SO4(aq)+H2S(g) one of the byproducts of this reaction will be gas Hydrogen Sulfide, H2S
To determine the amount of cadmium sulfide (CdS) precipitate formed, you would need to calculate the limiting reagent between (NH4)2S and CdSO4. Once you have the limiting reagent, use stoichiometry to calculate the amount of CdS formed. Given the balanced chemical equation CdSO4 + (NH4)2S -> CdS + (NH4)2SO4 and the molar mass of CdS, calculate the mass of CdS precipitated.
Cadmium sulfate
CdSO4
Cadmium bisulfate is a chemical compound with the formula CdSO4. It is a white solid that is soluble in water. Cadmium bisulfate is used in the production of cadmium pigments and as a reagent in analytical chemistry.
The formula for cadmium hydrogen sulfate is Cd(HSO4)2.
Man..... I gotta say Chemistry is really hard once you're in college and this highschool questions is really easy so I don't know what you're thinking of searching it on the web...
CdS(s)+H2SO4(aq)--> Cd2SO4(aq)+H2S(g) one of the byproducts of this reaction will be gas Hydrogen Sulfide, H2S
To determine the amount of cadmium sulfide (CdS) precipitate formed, you would need to calculate the limiting reagent between (NH4)2S and CdSO4. Once you have the limiting reagent, use stoichiometry to calculate the amount of CdS formed. Given the balanced chemical equation CdSO4 + (NH4)2S -> CdS + (NH4)2SO4 and the molar mass of CdS, calculate the mass of CdS precipitated.
Yes, Cadmium Sulfate (CdSO4) is soluble. Sulfate (SO4) is always soluble, except with a heavy metal. Luckily, Cadmium is not a heavy metal, and therefore, it is soluble.
CdSO4 is camium sulfate.
Ca(AlH4)2 calcium tetrahydroaluminate CaAl2O4 calcium aluminate CaB6 calcium boride CaBr2 calcium bromide Ca(CHO2)2 calcium formate Ca(CN)2 calcium cyanide CaCN2 calcium cyanamide CaCO3 calcium carbonate CaC2 calcium carbide Ca(C2HO2)2 calcium fumarate Ca(C2H3O2)2 calcium acetate CaC2O4 calcium oxalate Ca(C3H5O2)2 calcium propionate Ca(ClO3)2 calcium chlorate Ca(ClO4)2 calcium perchlorate CaCl2 calcium chloride CaCl2•6H2O calcium chloride hexahydrate CaCl2O2 calcium hypochlorite CaCr2O7 calcium chromate CaF2 calcium fluoride CaHPO4 calcium hydrogenorthophosphate CaH2 calcium hydride Ca(H2PO2)2 calcium hypophosphite Ca(IO3)2 calcium iodate CaI2 calcium iodide Ca(MnO4)2 calcium permanganate CaMoO4 calcium molybdate Ca(NO2)2 calcium nitrite Ca(NO3)2 calcium nitrate CaO calcium oxide Ca(OH)2 calcium hydroxide CaO2 calcium peroxide CaRe2O8 calcium perrhenate CaS calcium sulfide CaSO4 calcium sulfate CaSe calcium selenide CaSiO3 calcium metasilicate CaSi2 calcium silicide CaTe calcium telluride CaTiO3 calcium titanate CaWO4 calcium tungstate Ca2P2O7 calcium pyrophosphate Ca2SiO4 calcium silicate Ca3(AsO4)2 calcium arsenate Ca3(C6H15O7)2 calcium citrate Ca3N2 calcium nitride Ca3(PO4)2 calcium phosphate Ca3P2 calcium phosphide CdBr2 cadmium bromide Cd(CN)2 cadmium cyanide CdCO3 cadmium carbonate Cd(C2H3O2)2 cadmium acetate CdC2O4 cadmium oxalate CdCl2 cadmium chloride CdCrO4 cadmium chromate CdF2 cadmium fluoride Cd(IO3)2 cadmium iodate CdI2 cadmium iodide CdMoO4 cadmium molybdate Cd(NO3)2 cadmium nitrate Cd(N3)2 cadmium azide CdO cadmium oxide Cd(OH)2 cadmium hydroxide CdS cadmium sulfide CdSO4 cadmium sulfate CdSb cadmium antimonide CdSe cadmium selenide CdSiO3 cadmium silicate CdTe cadmium telluride CdTiO4 cadmium titanate CdWO4 cadmium tungstate Cd2Nb2O7 cadmium niobate Cd3As2 cadmium arsenide Cd3P2 cadmium phosphide Cd3N2 cadmium nitride