306875 3.92 g of ferrous ammonium sulphate crystals are dissolved in 100 mL of water. 20 ml of this solution requires 18 mL of potassium permanganate during titration for complete oxidation. The weight of \({\rm{KMn}}{{\rm{O}}_{\rm{4}}}\) present in one litre of the solution of
306876 If \({{\rm{m}}_{\rm{1}}}\) gram of a metal A displaces \({{\rm{m}}_{\rm{2}}}\) gram of another metal B from its salt solution and if the equivalent weights are \({{\rm{E}}_{\rm{1}}}{\mkern 1mu} {\mkern 1mu} {\rm{and}}{\mkern 1mu} {\mkern 1mu} {{\rm{E}}_{\rm{2}}}\) respectively then the equivalent weight of A can be expressed by
306875 3.92 g of ferrous ammonium sulphate crystals are dissolved in 100 mL of water. 20 ml of this solution requires 18 mL of potassium permanganate during titration for complete oxidation. The weight of \({\rm{KMn}}{{\rm{O}}_{\rm{4}}}\) present in one litre of the solution of
306876 If \({{\rm{m}}_{\rm{1}}}\) gram of a metal A displaces \({{\rm{m}}_{\rm{2}}}\) gram of another metal B from its salt solution and if the equivalent weights are \({{\rm{E}}_{\rm{1}}}{\mkern 1mu} {\mkern 1mu} {\rm{and}}{\mkern 1mu} {\mkern 1mu} {{\rm{E}}_{\rm{2}}}\) respectively then the equivalent weight of A can be expressed by
306875 3.92 g of ferrous ammonium sulphate crystals are dissolved in 100 mL of water. 20 ml of this solution requires 18 mL of potassium permanganate during titration for complete oxidation. The weight of \({\rm{KMn}}{{\rm{O}}_{\rm{4}}}\) present in one litre of the solution of
306876 If \({{\rm{m}}_{\rm{1}}}\) gram of a metal A displaces \({{\rm{m}}_{\rm{2}}}\) gram of another metal B from its salt solution and if the equivalent weights are \({{\rm{E}}_{\rm{1}}}{\mkern 1mu} {\mkern 1mu} {\rm{and}}{\mkern 1mu} {\mkern 1mu} {{\rm{E}}_{\rm{2}}}\) respectively then the equivalent weight of A can be expressed by
306875 3.92 g of ferrous ammonium sulphate crystals are dissolved in 100 mL of water. 20 ml of this solution requires 18 mL of potassium permanganate during titration for complete oxidation. The weight of \({\rm{KMn}}{{\rm{O}}_{\rm{4}}}\) present in one litre of the solution of
306876 If \({{\rm{m}}_{\rm{1}}}\) gram of a metal A displaces \({{\rm{m}}_{\rm{2}}}\) gram of another metal B from its salt solution and if the equivalent weights are \({{\rm{E}}_{\rm{1}}}{\mkern 1mu} {\mkern 1mu} {\rm{and}}{\mkern 1mu} {\mkern 1mu} {{\rm{E}}_{\rm{2}}}\) respectively then the equivalent weight of A can be expressed by