When a reaction reaches equilibrium, it means the rates of the forward and reverse reactions are equal. If there are more products present than reactants at equilibrium, it suggests that the equilibrium position favors the formation of products over reactants. This could be due to factors such as temperature, pressure, concentration, or the nature of the reaction itself.
False. Reactants are consumed during a chemical reaction and are transformed into products, not into more reactants.
The reactants tend to be simple substances, while the product is more complex.
Increasing the concentration of reactants will shift the equilibrium towards the products. The equilibrium will always shift to reduce the change you caused. If you add more products, it shifts toward reactants. This is known as the Le Chatelier Principle.See the Web Links to the left of this answer for more about this.
need not be..equilibrium constant is just a ratio of relative concentrations of products (multiplication of concentration in case of more than one products) to the concentration of reactants (multiplication of concentrations of reactants in case of more than one reactants)..the equilibrium concentration can be a very small number or can be a very number as well depending upon the relative concentrations of reactants and products..Unity equilibrium constants is just a special case which shows that the concentrations of products and reactants are equal..
The reactants (gasoline vapors) are more dangerous in a gasoline fire, as they are highly flammable and can ignite easily. The products of combustion (carbon dioxide, water vapor, carbon monoxide) are a byproduct of the burning process and are less hazardous in terms of fire risk.
False. Reactants are consumed during a chemical reaction and are transformed into products, not into more reactants.
Kinetic energy has more energy than products.
The reactions in which the products can recombine to form reactants are called reversible reactions. These reactions never go to completion. They are represented by a double arrow between reactants and products.
yes they have more energy
The reactants tend to be simple substances, while the product is more complex.
A dissociation constant (K) value of 1.0 suggests that the reactants and products are present in roughly equal concentrations at equilibrium. This means that about half of the reactants are converted to products.
The concentration of reactants is less than the concentration of reactants at equilibrium. The concentration of products is greater than the concentration of products at equilibrium.
If the equilibrium constant (Kₑq) is greater than 1, it indicates that the concentration of products is higher than the reactants at equilibrium. This suggests that the forward reaction is favored and the equilibrium lies to the right, meaning more products are being formed.
In a chemical reaction, reactants are typically separated from products by a plus sign (+) rather than an arrow. The arrow is used to indicate the direction of the reaction, showing the conversion of reactants to products.
Increasing the concentration of reactants will shift the equilibrium towards the products. The equilibrium will always shift to reduce the change you caused. If you add more products, it shifts toward reactants. This is known as the Le Chatelier Principle.See the Web Links to the left of this answer for more about this.
This is because the reactants are being used up to make products. Unless you add more reactants to the solution, the rate at which products will be made will start to diminish until there is an equilibrium. At this point products will be converted to reactants and reactants will be converted to products and the equilibrium will not shift however the forward rxn and the reverse rxn will be occurring at the same rate
Elements and compounds involved in the reaction, the arrow means "yields" and points to products, and the plus signs indicate two or more reactants or products. ... both reactants and products are written as formulas. Reactants are placed on the left of the reaction arrow, and the other is on the righ