zinc + ethanol + water + chloroform + copper sulphate solution
The balanced equation for the reaction where methane is obtained by the reduction of chloroform is: 2CHCl3 + 6Zn -> 2CH4 + 6ZnCl2. This reaction involves the reduction of chloroform (CHCl3) using zinc (Zn) metal to produce methane (CH4) and zinc chloride (ZnCl2).
CHCl3 + 6 H2 -> CH4 + 3 HCl
The balanced equation is: 2Ag + 2HgNO3 -> Hg + Hg(NO3)2 + 2AgNO3. This is obtained by balancing the number of atoms on both sides of the equation.
The reaction is:AgNO3 + NaCl = NaNO3 + AgCl(s).
Chloroform is obtained from acetone through a series of chemical reactions known as the haloform reaction. In this reaction, acetone is treated with a strong base like sodium hypochlorite, resulting in the chlorination of the methyl groups to form chloroform. The byproducts of this reaction are sodium acetate and sodium chloride.
No, chloroform is a controlled substance and can only be obtained with special permissions for research or medical purposes. It is not sold over the counter at local chemists.
Chloroform is a controlled substance and should only be obtained by licensed professionals for specific approved uses, like in research or medical settings. Unauthorized use or handling of chloroform can be dangerous and illegal.
Iron (Fe)
ordinary differential equation is obtained only one independent variable and partial differential equation is obtained more than one variable.
Calfornium metal is obtained by the reduction of the oxide Cf2O3 with lanthanum.
In stoichiometry, the balanced chemical equation is used to determine the mole ratios between reactants and products. By converting the given amount of reactant to moles and using the mole ratios from the balanced equation, the amount of product produced can be calculated. This helps in understanding how much product can be obtained based on the quantities of reactants used in a chemical reaction.
To find the grams of aluminum hydroxide from 15.7 grams of aluminum sulfide, you first need to balance the chemical equation. The balanced equation is 2Al2S3 + 6H2O -> 4Al(OH)3 + 3H2S. Next, calculate the molar mass of aluminum sulfide (Al2S3) and aluminum hydroxide (Al(OH)3), then use the stoichiometry from the balanced equation to find the grams of aluminum hydroxide produced.