
How do you write an equation that equals 36?
Answer
497.7k+ views
Hint: We first try to make the given written statement in its mathematical form. We assume the variable $ x $ to as the required number. Then we form the relationship. We then solve the given linear equation by simplifying the equation with the help of the binary operation. We get the value of the variable as the solution.
Complete step by step answer:
The given statement is about the required equation which gives the value of 36.
Let’s assume the required number is $ x $. We can directly assign the variable to the value of 36 which gives the impression of the variable being of value 36. This means the equation is of $ x $ being equal to 36.
We form the mathematical statement as $ x=36 $ .
We can also use two variables instead of one variable where the value of those variables is 36 for both. Let’s assume the variables are $ x $ and $ y $ .
Values for both variables are 36. The equation will be $ x=y=36 $ .
Note:
We can also create an equation of one variable where we have to solve the equation to get the final solution as $ x=36 $ . We subtract 3 from both sides of the equation $ x=36 $ and get $ x-3=36-3 $ which gives $ x-3=33 $ . The written statement about the equation $ x-3=33 $ is that the variable $ x $ is 3 greater than the number 33. This can also be represented as $ x+3=39 $ .
Complete step by step answer:
The given statement is about the required equation which gives the value of 36.
Let’s assume the required number is $ x $. We can directly assign the variable to the value of 36 which gives the impression of the variable being of value 36. This means the equation is of $ x $ being equal to 36.
We form the mathematical statement as $ x=36 $ .
We can also use two variables instead of one variable where the value of those variables is 36 for both. Let’s assume the variables are $ x $ and $ y $ .
Values for both variables are 36. The equation will be $ x=y=36 $ .
Note:
We can also create an equation of one variable where we have to solve the equation to get the final solution as $ x=36 $ . We subtract 3 from both sides of the equation $ x=36 $ and get $ x-3=36-3 $ which gives $ x-3=33 $ . The written statement about the equation $ x-3=33 $ is that the variable $ x $ is 3 greater than the number 33. This can also be represented as $ x+3=39 $ .
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