The systematic name for COSO3 is carbonyl sulfite.
The systematic name of K2SeO4 is potassium selenate.
The systematic name for IF3 is iodine trifluoride.
The systematic name for gypsum is calcium sulfate dihydrate.
First, balance the chemical equation: Hg + Br2 → HgBr2. Calculate the molar amount of each reactant using their respective molar masses. Identify the limiting reactant (the one that produces the least amount of product). Calculate the theoretical yield of HgBr2 based on the limiting reactant.
Mercury (II) Bromide
Mercury(II) bromide
HgBr2 is mercury II bromide or mercuric bromide.
Take the FW weight of the HgBr2-360.398g/moldivide it by the atomic weight of Mercury=200.59g/mol1g Hg in relation to FW of HgBr2 = 360.398/200.59 = 1.7966898gTo make 1000ppm of Hg, dissolve 1.79669g of HgBr2 in 1000ml of waterGet in touch if you are stuckIsaac Kiplagat
HgBr2
Take the FW weight of the HgBr2-360.398g/moldivide it by the atomic weight of Mercury=200.59g/mol1g Hg in relation to FW of HgBr2 = 360.398/200.59 = 1.7966898gTo make 1000ppm of Hg, dissolve 1.79669g of HgBr2 in 1000ml of waterGet in touch if you are stuckIsaac Kiplagat
HgBr2
It is HgBr2.
The dissociation equation for mercury(II) bromide (HgBr2) in water is: HgBr2(s) -> Hg2+(aq) + 2Br-(aq)
The systematic name for COSO3 is carbonyl sulfite.
The systematic name of K2SeO4 is potassium selenate.
The systematic name for IF3 is iodine trifluoride.