Q: How are the two graphs related what transformation occurs?

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Its easy its like the most popular graphs u usually hear.

This question cannot be answered without the circle graphs provided.

If the slopes are the same on both graphs, they are parallel, and will never touch.

They are unspecified. They are invisible.

when a two dimensional object is transformed by either translation,rotation,scaling,shearing etc on a plane ,it is called two dimensional transformation..

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because the numbers in the graph are available to work on mostly on maths .like subtraction how many more and adding the two graphs

They show a comparison between the two graphs. They can show the intersection of the two graphs.

Bar graphs and line graphs.

Represent two variables on two axes.

i searched this and got nothing so... srry try something else please

i searched this and got nothing so... srry try something else please

The most common unintentional energy transformation is the conversion of mechanical energy into thermal energy through processes like friction, which occurs when two surfaces rub against each other and generate heat. This transformation is often seen in everyday activities such as walking, driving a car, or using electronic devices.

Two dimensional graphs have two dimensions: x and y. Three dimensional graphs add a third dimension: z. These give the illusion of depth, while two dimensional graphs do not.

Its easy its like the most popular graphs u usually hear.

They illustrate the relationship between two (or more) variables.

This question cannot be answered without the circle graphs provided.

Bar graphs can compare two sets of data, as well as line graphs and circle graphs. To better improve my answer, double line graphs and double bar graphs compare two sets of data. Circle graphs cannot however, because they compare parts of a whole instead of, as a bar graph would, the amount of something. A circle graph is also incapable of showing data growth over a period of time, as line graphs do. All in all, circle graphs cannot compare to sets of data, and bar graphs and line graphs must be doubled to do so.