![]() ![]() Using the appropriate drop-down menu one can choose an output format for the balanced chemical equation: They are also converted automatically to the ‘normal’ form.Ī single electron can be denoted as e – (e-) or e⁻ (with ‘tiny’ minus). SO 4 -2, or denoted using the ‘tiny’ symbols, e.g. Note, that both indices and charges can be denoted in the source document using and html tags, e.g. All the spaces are ignored and symbol → is converted to =. ![]() When entering a chemical equation manually or pasting the copied equation it converts automatically to the ‘normal’ form according to the above rules. Using Chemical Equation Balancer Calculator Do not enter the state of compounds such as solids (s), liquids (l) or gases (g).Parentheses ( ), square brackets and braces (curly brackets) =Fe.H2O for a water molecule or (NH4)2SO4 for ammonium sulfate. ![]() Indices should be entered as normal numbers after the appropriate elements or groups, e.g.There should be no a numerical coefficient before the formula. The formula of a substance should be entered using the upper case for the first character in the element’s name and the lower case for the second character (compare: Co – cobalt and CO – carbon monoxide).The substances are separated by a plus sign (+). Reactants and products in a chemical reaction are separated by an equal sign (=).The method is modified for finding integer coefficients. Our chemical equation balancer calculator uses the Gauss-Jordan elimination algorithm for solving set of linear equations. But in case of complex reactions involving many compounds, it is preferable to balance equations using algebraic methods, based on solving set of linear equations. There are a number of methods for balancing chemical equations. In case of ionic reactions, the same electric charge must be present on both sides of the equation. Thus, each side of the equation must represent the same quantity of atoms of any chemical element. This is important because in a chemical reaction, the quantity of each element does not change (the law of conservation of mass). The chemical equation is the symbolic representation of a chemical reaction, with reactants on the left and products on the right hand side of the equation.īalancing chemical equations means looking for stoichiometric coefficients for the reactants and products. ![]()
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