The reaction is:
2 K + 2 H2O = 2 KOH + H2
NaNO + Kcl =Nacl + KNO3 Further answer But the formula for sodium nitrate is NaNO3, not NaNO.
KClO3 --> KCl +O2 - hence the use in explosives chlorate normally made by action of Cl2 on KOH. Another contributor says:- KCl + O2 gives rise to KClO3
A skeleton equation in chemistry contains obviously the abbreviations of the elements you are being asked to represent. it may contain the exponents also known as subscripts but it does not include coefficients.
The balanced equation for the reaction is: 3H2SO4 + 2Al(OH)3 -> Al2(SO4)3 + 6H2O. From the balanced equation, the mole ratio of H2SO4 to H2O is 3:6, which simplifies to 1:2.
A skeleton equation shows the correct formulas of the reactants and products but does not have balanced coefficients. It provides a basic outline of the chemical reaction without specifying the exact amounts of each substance involved. Balancing the equation ensures that the number of atoms of each element is the same on both sides of the reaction.
The chemical equation for the reaction between sodium and water to form sodium hydroxide and hydrogen gas is: 2Na(s) + 2H2O(l) -> 2NaOH(aq) + H2(g). This balanced equation shows that two moles of sodium react with two moles of water to produce two moles of sodium hydroxide and one mole of hydrogen gas. The state symbols (s), (l), and (aq) represent solid, liquid, and aqueous phases, respectively.
NaNO + Kcl =Nacl + KNO3 Further answer But the formula for sodium nitrate is NaNO3, not NaNO.
Skeleton: FeCl3 + NaOH ----> Fe(OH)3 + NaCl Balanced: FeCl3 + 3NaOH ----> Fe(OH)3 + 3NaCl :) good luck!
KClO3 --> KCl +O2 - hence the use in explosives chlorate normally made by action of Cl2 on KOH. Another contributor says:- KCl + O2 gives rise to KClO3
A skeleton equation in chemistry contains obviously the abbreviations of the elements you are being asked to represent. it may contain the exponents also known as subscripts but it does not include coefficients.
The subscript in the equation tells you how many atoms of that element there are in the reaction. For example: H20 --> H2 + O2 Before the reaction there are 2 hydrogen atoms and 1 oxygen (the subscript 1 isn't shown). After the reaction there are 2 hydrogen atoms and 2 oxygen atoms. Keep in mind that this is a skeleton equation and isn't balanced yet.
The skeleton equation for the reaction between barium and bromine would be: Ba + Br2 -> BaBr2.
The balanced equation for the reaction is: 3H2SO4 + 2Al(OH)3 -> Al2(SO4)3 + 6H2O. From the balanced equation, the mole ratio of H2SO4 to H2O is 3:6, which simplifies to 1:2.
A skeleton equation shows the correct formulas of the reactants and products but does not have balanced coefficients. It provides a basic outline of the chemical reaction without specifying the exact amounts of each substance involved. Balancing the equation ensures that the number of atoms of each element is the same on both sides of the reaction.
A skeleton equation does not show the specific reactants and products involved in a chemical reaction. It only provides a general outline of the reaction without indicating the actual chemical formulas.
The correct skeleton equation for the reaction is 4P(s) + 5O2(g) → P4O10(s).
hydrocarbon