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to be able to create a right angle on a piece of metal

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12y ago

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What is a real life application of the square root function?

Electrical engineers use it in calculating power factor and electrical load distribution when dealing with 3 phase power connections.


What does an engineers square do?

it measures the right angled way of a square or any other shapes (90 degrees )


What do mathematicians call square -1?

The square root of -1 is "i". However engineers use "j", but it's essentially the same thing.


Is the inverse of a quadratic function is square root function?

yes


The larger the perimeter of a square the larger the area of that square?

The area of a square is a function of the perimeter of the square.


How does inverse function work?

Let's illustrate with an example. The square function takes a number as its input, and returns the square of a number. The opposite (inverse) function is the square root (input: any non-negative number; output: the square root). For example, the square of 3 is 9; the square root of 9 is 3. The idea, then, is that if you apply first a function, then its inverse, you get the original number back.


What is the parent function of a square root?

x


Do engineers study cars?

There are many types of engineers such as:aerospace engineers,canal engineers,chemical engineers,civil engineers,electrical engineers,environmental engineers,genetic engineers,industrial engineers,materials engineers,mechanical engineers,structural engineers,systems engineers,just to name a few.Some of which do study cars.


What is completing the square used for?

Completing the square is a method used to solve a quadratic function. This is a handy method when there are two instances of the same variable in the function.


Is the square root of 5 a function?

Yes, if your equation is f(x) = sqrt5(x). The square root is also a function itself, if that's what you mean.


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To calculate the inverse of a square root function, you can start by expressing the square root function as ( y = \sqrt{x} ). To find the inverse, you swap ( x ) and ( y ), resulting in ( x = \sqrt{y} ). Then, solve for ( y ) by squaring both sides, giving you ( y = x^2 ). Thus, the inverse of the square root function is the square function, ( f^{-1}(x) = x^2 ).


Why do architects and engineers use so many triangles in construction?

Triangles are rigid, quadrilaterals are not - a square can be "squashed" into rhombus.