What is K2MoO4? Important Knowledge About K2MoO4.

Definition of K2MoO4 K2MoO4, also known as potassium salt of molybdic acid, or potassium molybdate, is a chemical compound with the molecular formula K2MoO4. In English, this substance is called Potassium molybdate. This compound consists of two potassium atoms, one molybdenum atom, and four oxygen atoms. The atomic mass of molybdenum is 95.94, the atomic … Read more

The chemical equation CaO + H2O -> Ca(OH)2

Detailed Information about the Equation CaO + H2O -> Ca(OH)2 The above chemical equation depicts the reaction between calcium oxide (CaO), commonly known as quicklime, and water (H2O) to produce calcium hydroxide (Ca(OH)2), also known as slaked lime. Reaction Conditions This reaction occurs under normal temperature and pressure conditions. Quicklime reacts with water to produce … Read more

What is K2S2O6? Important knowledge about K2S2O6

Definition of K2S2O6 K2S2O6, commonly known as Potassium persulfate or Dipotassium persulfate in English, is a chemical compound. This compound consists of two potassium atoms (K), two sulfur atoms (S) and six oxygen atoms (O). The molecular weight of K2S2O6 is 270.322 g/mol. The molecule of K2S2O6 includes two potassium ions K+ and one persulfate … Read more

The equation MgO + H2O -> Mg(OH)2

Detailed information about the equation MgO + H2O -> Mg(OH)2: On the left side of the equation are the reactants, which include MgO (Magnesium Oxide) and H2O (water). On the right side of the equation is the product of the reaction, which is Mg(OH)2 (Magnesium Hydroxide). The equation is currently unbalanced. The balanced equation will … Read more

What is K2C2H3O2? Important knowledge about K2C2H3O2.

Definition of K2C2H3O2 K2C2H3O2, also known as Potassium Acetate, is a chemical compound with a molar mass of 98.142 g/mol. The molecule of potassium acetate is made up of two potassium (K) atoms, two carbon (C) atoms, three hydrogen (H) atoms, and two oxygen (O) atoms. In this compound, potassium and acetate form an ion, … Read more

The equation BeO + CuSO4 -> BeSO4 + Cu

Detailed information about the equation BeO + CuSO4 -> BeSO4 + Cu: The above equation is a chemical equation representing the displacement between BeO and CuSO4 to form BeSO4 and Cu. BeO is Beryllium Oxide, CuSO4 is Copper(II) Sulfate, BeSO4 is Beryllium Sulfate, and Cu is Copper. Reaction conditions: For this displacement reaction, the necessary … Read more

What is K2Cr2O7? Important knowledge about K2Cr2O7.

Definition of K2Cr2O7 K2Cr2O7, also known as Potassium dichromate or Dicromat kali in Vietnamese, is an inorganic chemical compound. Its molecular structure consists of two potassium (K) atoms, two chromium (Cr) atoms, and seven oxygen (O) atoms. It has a molar mass of 294.2 g/mol. In water, K2Cr2O7 ionizes into 2K+ and Cr2O7-2. Properties: K2Cr2O7 … Read more

The equation CaO + CuSO4 -> CaSO4 + Cu

Detailed information about the reaction CaO + CuSO4 -> CaSO4 + Cu: In this reaction, calcium oxide (CaO) reacts with copper (II) sulfate (CuSO4) to produce calcium sulfate (CaSO4) and copper (Cu). Equilibrium equation: CaO + CuSO4 = CaSO4 + Cu Reaction conditions: The reaction occurs under standard conditions with the presence of temperature and … Read more

What is K2HAsO4? Important knowledge about K2HAsO4.

Definition of K2HAsO4 K2HAsO4, also known as Dipotassium hydrogen arsenate or Dipotassium arsenate in English, is a chemical compound belonging to the class of alkali salts. The molecular mass of K2HAsO4 is made up of two Potassium (K) atoms, one Hydrogen (H) atom, one Arsenic (As) atom, and four Oxygen (O) atoms. The molar mass … Read more

The chemical equation MgO + CuSO4 -> MgSO4 + Cu is translated to English as follows: Magnesium Oxide plus Copper Sulphate gives Magnesium Sulphate and Copper.

Detailed information about the equation MgO + CuSO4 -> MgSO4 + Cu The above chemical equation represents the chemical reaction between magnesium oxide (MgO) and copper(II) sulfate (CuSO4) to form magnesium sulfate (MgSO4) and copper (Cu). Reaction conditions For the reaction to occur, sufficient temperature and pressure are required. Additionally, the reactants need to be … Read more