What is Al2S7? Important knowledge about Al2S7.

Definition of Al2S7 Al2S7, or aluminium sulfide(VII), is a chemical substance belonging to the group of metal sulfides, which can be formed from the reaction between aluminum and sulfur. 1.1 Names 1.1.1 Common name: Aluminium sulfide(VII) 1.1.2 English name: Aluminium sulfide 1.2 Atomic mass: 306.07 g/mol 1.3 Atomic structure 1.3.1 Molecular structure: The Al2S7 molecule … Read more

The chemical equation Al2O3 + 2NH4SO4 -> 2(NH4)3AlO3 + 2SO2 + 3H2O

Detailed information about the equation Al2O3 + 2NH4SO4 -> 2(NH4)3AlO3 + 2SO2 + 3H2O: The compounds on the left side of the equation are Al2O3 (aluminum oxide) and NH4SO4 (ammonium sulfate). The compounds on the right side of the equation are (NH4)3AlO3 (aluminium ammonium sulfate), SO2 (sulfur dioxide or sulfur (IV) oxide) and H2O (water). … Read more

What is Al2Te6? Important knowledge about Al2Te6.

Definition of Al2Te6 Al2Te6 is a chemical compound consisting of 2 aluminum atoms (Al) and 6 tellurium atoms (Te). The common name of Al2Te6 is Aluminum hexatellurite, also known as Aluminium telluride in English. The atomic mass of Al2Te6 is 593.04 atomic mass units (u). The molecular structure of Al2Te6 includes 2 aluminum ions (Al3+) … Read more

What is Al2Se6? Important knowledge about Al2Se6.

Definition of Al2Se6 Al2Se6 is a chemical compound, also known as a compound of Aluminium and Selenium. In English, it is called Aluminium Selenide. The molar mass of Al2Se6 is 454.47 g/mol. It consists of 2 Aluminium (Al) atoms and 6 Selenium (Se) atoms, so its molecular structure is quite complex. This substance does not … Read more

The equation Al2O3 + 2NH4NO3 -> 2(NH4)3AlO3 + 2N2O + 3H2O

Chemical equation: Al2O3 + 2NH4NO3 -> 2(NH4)3AlO3 + 2N2O + 3H2O Reaction conditions: This reaction needs to be carried out at high temperatures and appropriate pressure to ensure complete reaction of the raw materials and produce the desired products. Reaction process: When aluminium oxide and ammonium nitrate are combined under suitable conditions, they react with … Read more

What is Al2Te5? Important knowledge about Al2Te5.

Definition of Al2Te5 Al2Te5, also known as Alumini Telluride or Aluminum Telluride in English, is a very rare chemical substance in nature. Its atomic mass consists of 5 Tellur atoms and 2 Aluminum atoms. The atomic mass of Al2Te5 is about 536.38 g/mol. The molecular structure of Al2Te5 contains two Al3+ ions and five Te2- … Read more

What is Al2S6? Important knowledge about Al2S6.

Definition of Al2S6: 1.1 Names: Al2S6, also known as the chemical compound between aluminum and sulfur, is called Aluminum Sulfide in English. 1.2 Molecular weight: The molecular weight of Al2S6 is 150.158 g/mol. 1.3 Molecular structure: A molecule of Al2S6 consists of 2 aluminum atoms and 6 sulfur atoms. 1.4 Ion structure: Al2S6 does not … Read more

The equation Al2O3 + 2NH4NO3 -> 2(NH4)2AlO2 + 2N2O + 3H2O

Detailed information about the chemical equation: Al2O3 + 2NH4NO3 -> 2(NH4)2AlO2 + 2N2O + 3H2O This chemical equation describes the reaction process between aluminum oxide (Al2O3) and ammonium nitrate (NH4NO3) to produce ammonium aluminate ((NH4)2AlO2), nitrous oxide (N2O), and water (H2O). Chemical balance is ensured when each type of element appears with the same quantity … Read more

What is Al2Se5? Important knowledge about Al2Se5.

Definition of Al2Se5 1.1 Name: The chemical compound Al2Se5 is called Aluminium Selenide in English. 1.2 Atomic composition: The compound Al2Se5 consists of 2 Aluminium atoms and 5 Selenium atoms, so the atomic mass will be the sum of these. 1.3 Atomic mass: The atomic mass of Al2Se5 can be calculated by taking the atomic … Read more

The equation Al2O3 + 2NH4Cl -> 2(NH4)3AlO3 + 2HCl

Detailed information about the equation Al2O3 + 2NH4Cl -> 2(NH4)3AlO3 + 2HCl Substance equation: Al2O3 is Aluminum oxide, NH4Cl is Ammonium chloride, (NH4)3AlO3 is Ammonium aluminate and HCl is Hydrochloric acid. Reaction ratio: To completely react, 1 mol of Al2O3 and 2 mol of NH4Cl are required to create 2 mol of (NH4)3AlO3 and 2 … Read more