# of immigrants/ total population x 1000
This is the ratio volume/time.
The net increase or decrease of individuals over time is determined by comparing the birth rate and immigration rate to the death rate and emigration rate. A positive difference indicates a net increase, while a negative difference indicates a net decrease in the population.
To calculate the rate constant (k) from initial concentrations, you would typically use the rate law equation for the reaction, which is expressed as ( \text{Rate} = k[A]^m[B]^n ), where ( [A] ) and ( [B] ) are the initial concentrations of the reactants, and ( m ) and ( n ) are their respective reaction orders. By measuring the initial rate of the reaction and substituting the initial concentrations into the rate law, you can rearrange the equation to solve for the rate constant ( k ).
Force equals the mass times the rate of change of the velocity.
To determine the rate constant of a reaction, you need additional information, such as the order of the reaction and the concentrations of the reactants. The rate equation is typically expressed as ( \text{Rate} = k[\text{A}]^n ), where ( k ) is the rate constant, ( [\text{A}] ) is the concentration of the reactant, and ( n ) is the reaction order. Without knowing the concentration and order, we cannot calculate the rate constant from the given rate of 0.2.
You can calculate a country's immigration rate in a manner similar to the calculation of birth and death rates. The immigration rate for Canada is 7/1000 (0.7%)
Take the rate of EMIGRATION away from the rate of IMMIGRATION. Remember: They're NOT THE SAME THING, so don't get confused. Hope that helps! =]
immigration
immigration rate + emigration rate.
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The immigration rate in Australia is around 210,000 at the end of 2010. The immigration seem to of had a decrease since the previous year was about 340,000. The decline in immigration rates creates a shortage of workers.