Hydrogen and oxygen are both diatomic, existing naturally as H2 and O2. Since water has twice as many hydrogen atoms as oxygen atoms, the equation is: 2H2 + O2 = 2H2O. Of course the numbers to the right of the element names should be subscripted.
To balance the equation SO2 + H2S = S + H2O, we need to ensure that there are equal numbers of each type of atom on both sides of the equation. Begin by placing coefficients in front of the compounds to balance the number of sulfur and hydrogen atoms, then balance the oxygen atoms last by adjusting the coefficient for H2O. The balanced equation is SO2 + 2 H2S = 3 S + 2 H2O.
The balanced equation for hydrogen gas reacting with oxygen gas to produce water is: 2H2(g) + O2(g) → 2H2O(l)
To balance the chemical equation Br2 + H2O + SO2 = H2SO4 + HBr, you need to start by balancing the elements that appear in the equation. First, balance the bromine atoms on each side, then balance the hydrogen, oxygen, sulfur, and finally the oxygen atoms, making sure the same number of each type of atom is present on both sides of the equation. The balanced equation is 2Br2 + 2H2O + 3SO2 = H2SO4 + 4HBr.
To balance equations in acidic solutions effectively, follow these steps: Write down the unbalanced chemical equation. Balance the atoms of each element except hydrogen and oxygen. Balance the oxygen atoms by adding water molecules. Balance the hydrogen atoms by adding H ions. Balance the charge by adding electrons. Make sure the number of atoms on both sides of the equation is equal. Check that the equation is balanced in terms of mass and charge. By following these steps, you can effectively balance equations in acidic solutions.
oxygen and hydrogen makes electricity and water
Hydrogen + oxygen → water2H2 + O2 → 2H2ORemember to balance the equation
The chemical equation is 2H2(g) + O2 → 2H2O(l). Two moles of hydrogen reacts with one mole of oxygen to form two moles of water.
To balance the equation SO2 + H2S = S + H2O, we need to ensure that there are equal numbers of each type of atom on both sides of the equation. Begin by placing coefficients in front of the compounds to balance the number of sulfur and hydrogen atoms, then balance the oxygen atoms last by adjusting the coefficient for H2O. The balanced equation is SO2 + 2 H2S = 3 S + 2 H2O.
The balanced equation for hydrogen gas reacting with oxygen gas to produce water is: 2H2(g) + O2(g) → 2H2O(l)
Hydrogen + Oxygen = Hydrogen Oxide
hydrogen + oxygen -> water 2H2 + O2 -> 2H2O hydrogen + oxygen -> hydrogen peroxide H2 + O2 -> H2O2
To balance the chemical equation Br2 + H2O + SO2 = H2SO4 + HBr, you need to start by balancing the elements that appear in the equation. First, balance the bromine atoms on each side, then balance the hydrogen, oxygen, sulfur, and finally the oxygen atoms, making sure the same number of each type of atom is present on both sides of the equation. The balanced equation is 2Br2 + 2H2O + 3SO2 = H2SO4 + 4HBr.
To balance equations in acidic solutions effectively, follow these steps: Write down the unbalanced chemical equation. Balance the atoms of each element except hydrogen and oxygen. Balance the oxygen atoms by adding water molecules. Balance the hydrogen atoms by adding H ions. Balance the charge by adding electrons. Make sure the number of atoms on both sides of the equation is equal. Check that the equation is balanced in terms of mass and charge. By following these steps, you can effectively balance equations in acidic solutions.
oxygen and hydrogen makes electricity and water
C2h2+3o2=2c02+2h2o+2c
The chemical equation for the reaction of oxygen reacting with hydrogen to yield water is 2H2 + O2 → 2H2O.
Well 2 atoms of hydrogen and 1 atom of oxygen equals water. Equal parts H and O equals hydrogen peroxide.