It is important to only change one variable at a time when doing an experiment, because if you change more than one, there will be uncertainty as to which one affected the result.
manipulated variable
A variable does and must change, but you can only have one variable, otherwise the experiment becomes biased and unfair
if you change more than one variable, you will not know which one has had an effect on the experiment. If the outcome changes when one variable is altered, then the change can only be due to the one variable, by logical deduction.
If you change more than one variable at a time, you will not be able to tell which variable is responsible for what change. Scientists need to know exactly which variable caused the observed experimental results.It is advantageous for scientists to test only one variable at a time during an experiment because if you change all variables at once, you will not be able to tell which variable is responsible for the observed results.
It is important to only change one variable at a time when doing an experiment, because if you change more than one, there will be uncertainty as to which one affected the result.
Because if you change more than one variable at a time, you can't tell which is affecting the results.
You only change one variable in an investigation because if you change more than one you won't know which change affected the data.
manipulated variable
The dependent variable is the variable that can change in an experiment.
No. It will only do that if the other variable is dependent on it.
A variable does and must change, but you can only have one variable, otherwise the experiment becomes biased and unfair
if you change more than one variable, you will not know which one has had an effect on the experiment. If the outcome changes when one variable is altered, then the change can only be due to the one variable, by logical deduction.
If you change more than one variable at a time, you will not be able to tell which variable is responsible for what change. Scientists need to know exactly which variable caused the observed experimental results.It is advantageous for scientists to test only one variable at a time during an experiment because if you change all variables at once, you will not be able to tell which variable is responsible for the observed results.
It means that you can change one variable (the independent variable) freely, but that the other variable (the dependent variable) depends on the independent variable. For example, to calculate kinetic energy, the energy (for a given object) depends on the speed; if you change the speed, you change the kinetic energy. You can't change the kinetic energy directly, only indirectly by changing the speed.
If you change more than one independent variable and your dependent variable changes, you wont know which independent variable caused the change to occur. eg - If I change something will I run 100m faster. So your dependent variable is the time it takes to run 100m If you have 2 independent variables (shoes and surface run on), you might run first in tennis shoes on grass then in football boots on tarmac. Now say you ran faster the second time, you wont know if you ran faster because you were wearing boots, or if you ran faster because it was on tarmac or because of some boots-tarmac combination. That's why you only change one independent variable. Aim: Does changing X effect Y (only change X; only measure Y)
If you change more than one variable at a time, you will not be able to tell which variable is responsible for what change. Scientists need to know exactly which variable caused the observed experimental results.