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- https://chem.libretexts.org/Bookshelves/Inorganic_Chemistry/Supplemental_Modules_and_Websites_(Inorganic_Chemistry)/Descriptive_Chemistry/Elements_Organized_by_Block/2_p-Block_Elements/Group_15%3A_The_Nitrogen_Family/Z007_Chemistry_of_Nitrogen_(Z7)Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple b...Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple bond with itself and other elements. Thus, there is a lot of energy in the compounds of nitrogen. Before 100 years ago, little was known about nitrogen. Now, nitrogen is commonly used to preserve food and as a fertilizer.
- https://chem.libretexts.org/Bookshelves/Inorganic_Chemistry/Inorganic_Chemistry_(LibreTexts)/08%3A_Chemistry_of_the_Main_Group_Elements/8.09%3A_The_Nitrogen_Family/8.9.02%3A_Chemistry_of_Nitrogen_(Z7)Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple b...Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple bond with its self, and other elements. Thus, there is a lot of energy in the compounds of nitrogen. Before 100 years ago, little was known about nitrogen. Now, nitrogen is commonly used to preserve food, and as a fertilizer.
- https://chem.libretexts.org/Courses/Westminster_College/CHE_180_-_Inorganic_Chemistry/14%3A_Chapter_14_-_p-Block_Elements/14.3%3A_Group_15/Chemistry_of_Nitrogen_(Z%3D7)Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple b...Nitrogen is present in almost all proteins and plays important roles in both biochemical applications and industrial applications. Nitrogen forms strong bonds because of its ability to form a triple bond with its self, and other elements. Thus, there is a lot of energy in the compounds of nitrogen. Before 100 years ago, little was known about nitrogen. Now, nitrogen is commonly used to preserve food, and as a fertilizer.
- https://chem.libretexts.org/Ancillary_Materials/Demos_Techniques_and_Experiments/Chemical_Safety/Reagent_Specific_Hazards/AmmoniumIn the lab it is encountered in many salts, some of the most common are ammonium chloride and ammonium sulfate. Ammonium hydroxide is a solution of ammonia in water. Solutions of ammonium salts can re...In the lab it is encountered in many salts, some of the most common are ammonium chloride and ammonium sulfate. Ammonium hydroxide is a solution of ammonia in water. Solutions of ammonium salts can release free ammonia when mixed with strong bases. Ammonium hydroxide is almost constantly releasing free ammonia to the atmosphere. The major hazard associated with ammonia is its noxious choking vapors which can severely irritate the eyes and respiratory system.
- https://chem.libretexts.org/Bookshelves/Analytical_Chemistry/Supplemental_Modules_(Analytical_Chemistry)/Qualitative_Analysis/Characteristic_Reactions_of_Select_Metal_Ions/Characteristic_Reactions_of_Ammonium_Ion_(NH)Ammonium ion is formed by the reaction between acids and aqueous ammonia:. The ammonium ion behaves chemically like the ions of the alkali metals, particularly potassium ion, which is almost the same ...Ammonium ion is formed by the reaction between acids and aqueous ammonia:. The ammonium ion behaves chemically like the ions of the alkali metals, particularly potassium ion, which is almost the same size. All ammonium salts are white and soluble.
- https://chem.libretexts.org/Bookshelves/General_Chemistry/General_Chemistry_Supplement_(Eames)/Chemistry_Basics/NomenclatureThese include toxic cyanide ion, CN – , common hydroxide ion, OH – , and peroxide ion, O 2 2 – . Other important anions include acetate ion (C 2 H 3 O 2 – ), which is in vinegar, the chlorate ion (ClO...These include toxic cyanide ion, CN – , common hydroxide ion, OH – , and peroxide ion, O 2 2 – . Other important anions include acetate ion (C 2 H 3 O 2 – ), which is in vinegar, the chlorate ion (ClO 3 – ), the perchlorate ion (ClO 4 – ) which is often explosive, the nitrate ion (NO 3 – ), the carbonate ion (CO 3 2 – ) found in shells, the sulfate ion (SO 4 2 – ), and the phosphate ion (PO 4 3 – ).