The chemical equation for the laboratory preparation of ammonia is: N2(g) + 3H2(g) → 2NH3(g)
The trans isomer of potassium dioxalatodiaquachromate (III) is prepared by treating the cis isomer with ammonia gas in a concentrated ammonia solution. The chemical equation for the preparation is: Cr(C2O4)(H2O)2(NH3)2 + NH3 → Cr(C2O4)(H2O)2(NH3) + H2O + NH4NO3
The chemical equation for the formation of ammonia is N2 + 3H2 → 2NH3. This equation represents the reaction between nitrogen gas (N2) and hydrogen gas (H2) to produce ammonia (NH3). The balanced equation shows that one molecule of N2 reacts with three molecules of H2 to form two molecules of NH3.
The chemical equation for aqueous ammonia (NH3) in water is NH3 + H2O -> NH4+ + OH-.
Ammonia gas is collected by upward displacement of air in the laboratory preparation. This involves passing the gas over water and collecting it by downward displacement because ammonia is lighter than air. The gas is then bubbled through water to dissolve any remaining gas before use.
The equation for making ammonia is N2 + 3H2 -> 2NH3. This chemical reaction involves the combination of nitrogen gas and hydrogen gas to form ammonia gas.
The trans isomer of potassium dioxalatodiaquachromate (III) is prepared by treating the cis isomer with ammonia gas in a concentrated ammonia solution. The chemical equation for the preparation is: Cr(C2O4)(H2O)2(NH3)2 + NH3 → Cr(C2O4)(H2O)2(NH3) + H2O + NH4NO3
The chemical equation for the formation of ammonia is N2 + 3H2 → 2NH3. This equation represents the reaction between nitrogen gas (N2) and hydrogen gas (H2) to produce ammonia (NH3). The balanced equation shows that one molecule of N2 reacts with three molecules of H2 to form two molecules of NH3.
The chemical equation for aqueous ammonia (NH3) in water is NH3 + H2O -> NH4+ + OH-.
Ammonia gas is collected by upward displacement of air in the laboratory preparation. This involves passing the gas over water and collecting it by downward displacement because ammonia is lighter than air. The gas is then bubbled through water to dissolve any remaining gas before use.
The equation for making ammonia is N2 + 3H2 -> 2NH3. This chemical reaction involves the combination of nitrogen gas and hydrogen gas to form ammonia gas.
The formula for the decomposition for ammonia would be 2NH3 --> N2 + 3H2
NH3 or ammonia is the hydride of nitrogen.
OPLPOPP
hydrogen gas combines with nitrogen to form ammonia
The balanced chemical equation for the reaction between ammonia (NH3) and nitric acid (HNO3) is: NH3 + HNO3 → NH4NO3
The chemical equation showing the reaction of ammonia and water is: NH3 + H2O -> NH4+ + OH-. This reaction results in the formation of ammonium ion (NH4+) and hydroxide ion (OH-).
Sulfuric acid just adds a proton to ammonia to give ammonium: H+ + NH3 -> NH4+ or H2SO4 + NH3 -> NH4+ + HSO4-