the formula of potassium carbonate is k2co3 because the valency of potassium (k1+) valency of carbonate is (co32-) interchange the valencies and don't put the signs then it will become (k2co3) so the formulae of potassium carbonate is k2co3
Potassium oxide is a compound. Compounds are pure substances that contain more than one type of atom. Since potassium oxide contains potassium and oxygen atoms, it is a compound. Elements are pure substances that contain only one type of atom, such as oxygen gas.
K2CO3 + 2 benzoic acid -> 2 potassium benzoate + H2CO3
0.0137 mol
A single molecule of water consists of two hydrogen atoms and one oxygen atom.
K= 2 C= 1 O=3 K2CO3= 6 atoms
There are 2 potassium atoms, 1 carbon atom and 3 oxygen atoms - K2CO3
the formula of potassium carbonate is k2co3 because the valency of potassium (k1+) valency of carbonate is (co32-) interchange the valencies and don't put the signs then it will become (k2co3) so the formulae of potassium carbonate is k2co3
The chemical formula for potassium carbonate, commonly referred to as potash, is K2CO3.
To prepare a 0.50 by volume (v/v) K2CO3 solution, you need 0.50 liters of K2CO3 per 100 mL of solution. For 150 mL, this means you need 0.75 mL of K2CO3. The density of K2CO3 is approximately 2.43 g/cm³. Therefore, the mass of K2CO3 needed is calculated as follows: 0.75 mL × 2.43 g/mL = 1.83 grams.
K+1 CO3-2 ------> these are the ions and their charges K+1 K+1 CO3-2 ------> the charges have to add up to zero, so one positive K atom is added to cancel out the -2 negative CO3 ion K2CO3 ------> simplify Name: Potassium carbonate
Potassium oxide is a compound. Compounds are pure substances that contain more than one type of atom. Since potassium oxide contains potassium and oxygen atoms, it is a compound. Elements are pure substances that contain only one type of atom, such as oxygen gas.
it depends on what type of atom you are analyzing
The number of electrons depends on what type of atom it is.
K2CO3 + 2 benzoic acid -> 2 potassium benzoate + H2CO3
There are 3 atoms. 2 potassium (K) atoms and 1 oxygen (O) atom.
There are 3 ions present in K2CO3: 2 K+ ions and 1 CO3^2- ion. To calculate the total number of ions in 30.0 mL of 0.600 M K2CO3 solution, first determine the number of moles of K2CO3 using the molarity and volume. Then, use the stoichiometry to find the number of ions produced per mole of K2CO3.