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Vector addition derives a new vector from two or more vectors, and vector resolution is breaking a vector down into its two or more components.

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Q: Why is Vector resolution the opposite of vector addition?
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Related questions

What is the opposite to vector addition?

the opposite to vector addition is vector subtraction.


What is the reverse process of vectors addition?

reverse process of vector addition is vector resolution.


What is difference in resultant vector and vector resolution?

the difference between resultant vector and resolution of vector is that the addition of two or more vectors can be represented by a single vector which is termed as a resultant vector. And the decomposition of a vector into its components is called resolution of vectors.


What is resolution of vector?

decomposition of a vector into its components is called resolution of vector


What the difference between vector and resultant vector?

Equilibrant vector is the opposite of resultant vector, they act in opposite directions to balance each other.


What is the process of breaking a vector into its components is called?

resolution of vector


What mathematical operation do you do when two vectors point in opposite directions?

You do vector addition.


What is the vector equal but opposite to the resultant vector?

equilibrant


What is an opposite vector?

It is a vector with the same magnitude (size) but acting in the opposite direction.


What is different between negative vector and null vector?

A null vector has no magnitude, a negative vector does have a magnitude but it is in the direction opposite to that of the reference vector.


What is meant by negative vector?

It is a vector that has the opposite direction to the reference positive direction. (A vector is one point in space relative to another.) Negative vector is the opposite direction


What is the purpose of vector resolution in adding vectors?

Vector addition does not follow the familiar rules of addition as applied to addition of numbers. However, if vectors are resolved into their components, the rules of addition do apply for these components. There is a further advantage when vectors are resolved along orthogonal (mutually perpendicular) directions. A vector has no effect in a direction perpendicular to its own direction.