The subscript numbers give you the chemical composition of the compound. Hence it cannot be changed.
E.G.
water is H2O and cannot be written as anything else.
likewise, carbon dioxide is always CO2.
I hope this answers your question
1. You cannot change the subscript just to help you balance the equation. You can only balance an equation by using whole-number coefficients written at the beginning of a substance. 2. If no subscript is present, you can't just add one to help you balance the equation for same reason listed above.
Subscripts state how many atoms and Coefficients state how many molecules there are. So when balancing an equation you always adjust the coefficients. When this equation is balanced, what is the coefficient for Ni(NOËÄ)ËÄ? 4
Changing a subscript in a chemical formula or equation alters the identity of the element or compound being referred to. For example, changing the subscript in H2O to H2O2 changes the compound from water to hydrogen peroxide, signifying a different chemical composition and properties. It is important to follow the correct subscript ratios to accurately represent chemical formulas.
Using a balanced chemical equation ensures that the mole ratio between reactants and products is accurate. This allows for precise calculations of the quantity of a product formed in a chemical reaction. Without a balanced equation, incorrect conclusions may be drawn regarding the amount of product produced.
You can't change the subscript. The subscripts show how the elements/molecules are bonded.--------------------------------------------------------------------------------------------------------The subscripts represent the number of atoms of each element in each chemical formula-if you change the subscripts, you change the compounds the formulas are describing.Source: (e2020)
Subscripts in a chemical formula represent the number of each atom present in a compound. Changing a subscript without changing the corresponding coefficients in a balanced chemical equation would alter the chemical formula and lead to an unbalanced equation. To balance the equation, adjust the coefficients in front of the compounds rather than changing the subscripts.
It is important never to change a subscript {note correct spelling} in a chemical formula when balancing a chemical equation, because changing a subscript produces a formula that specifies a chemical substance different from the one in the original equation.
The next logical step in balancing the equation would be to change the subscript of the nitrogen molecule to a one.
1. You cannot change the subscript just to help you balance the equation. You can only balance an equation by using whole-number coefficients written at the beginning of a substance. 2. If no subscript is present, you can't just add one to help you balance the equation for same reason listed above.
True. Subscripts represent the number of atoms of each element in a compound and changing them would change the chemical formula, possibly making it unbalanced in the equation. By adjusting the coefficients of the compounds involved in the reaction, the equation can be balanced without modifying the subscripts.
Subscripts state how many atoms and Coefficients state how many molecules there are. So when balancing an equation you always adjust the coefficients. When this equation is balanced, what is the coefficient for Ni(NOËÄ)ËÄ? 4
Changing a subscript in a chemical formula or equation alters the identity of the element or compound being referred to. For example, changing the subscript in H2O to H2O2 changes the compound from water to hydrogen peroxide, signifying a different chemical composition and properties. It is important to follow the correct subscript ratios to accurately represent chemical formulas.
An analogous equation is one that can be applied to different components with the change of component symbol eg if A has been subscripted but now your looking at it wrt to B then it will switch places in the subscript.
when I balance an equation, I do the right thing with the subscripts, which is far more complicated than "multiply" would indicate. Under certain special conditions, multiplication (and only multiplication) is the proper procedure, but not always (or even generally).
It is important to never change the subscript in a chemical formula when balancing a chemical equation because subscripts represent the number of atoms of each element in the compound. Changing subscripts would alter the chemical formula and consequently change the identity of the compounds involved in the reaction. Balancing equations involves adjusting coefficients, not subscripts.
This equation is not balanced as given. To balance it, you need to change the coefficients of the reactants and products. The balanced equation is 4Al + 3O2 -> 2Al2O3.
Subscribe can be change