No. Mg(NO3)2, which is magnesium nitrate, is an ionic compound.
Magnesium nitrate (Mg(NO₃)₂) is soluble in water. It readily dissolves due to the ionic nature of the compound, allowing it to dissociate into magnesium ions (Mg²⁺) and nitrate ions (NO₃⁻) in solution. This solubility makes it useful in various applications, such as fertilizers and chemical reactions.
This is a 'Sngle Displacement' reaction ( A + BC --> AC + B
Mg(NO3)2 is soluble in water because nitrate (NO3-) salts are generally soluble, including magnesium nitrate.
No. GeH2 is a methylene analog and is not well characterised. It has been stabilised in complexes and this idicates that it is a covaent molecule. The best characterised hydride of Germanium is GeH4 germane, and related GenH2n+2 alkane analogs , where n=2 - 5. these ar all covalent molecules.
This compound is the chromium phosphate.
The compound name for Mg(NO3)2 is magnesium nitrate.
Magnesium nitrate (Mg(NO₃)₂) is soluble in water. It readily dissolves due to the ionic nature of the compound, allowing it to dissociate into magnesium ions (Mg²⁺) and nitrate ions (NO₃⁻) in solution. This solubility makes it useful in various applications, such as fertilizers and chemical reactions.
Since you already have the chemical formula of the compound, it is not difficult to make up what elements it is made up from. The elements are magnesium (Mg), nitrogen (N) and oxygen (O). The hard part comes when you are given a more unfamiliar chemical name like tetrachloromethane, names like limestone and trade names.
This is a 'Sngle Displacement' reaction ( A + BC --> AC + B
Mg(NO3)2 is soluble in water because nitrate (NO3-) salts are generally soluble, including magnesium nitrate.
No. GeH2 is a methylene analog and is not well characterised. It has been stabilised in complexes and this idicates that it is a covaent molecule. The best characterised hydride of Germanium is GeH4 germane, and related GenH2n+2 alkane analogs , where n=2 - 5. these ar all covalent molecules.
It is a compound.
Water is a compound
Since Mg(NO3)2 dissociates into Mg^2+ ions and NO3^- ions in solution, the concentration of nitrate ions in a 0.25 M Mg(NO3)2 solution will also be 0.25 M.
Compound.
Compound
compound