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The parallelogram law states that the sum of squares must equal the sum of its four sides. These equations are very complex and hard to understand.

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What is parallelogram law of vectors?

"If two vector quantities are represented by two adjacent sides or a parallelogram then the diagonal of parallelogram will be equal to the resultant of these two vectors."


What are the applications of Parallelogram law of vectors?

The law is used to add vectors to find the resultant of two or more vectors acting at a point.


How may the resultant of two vectors be computed analytically from a vector parallelogram?

The resultant of two vectors can be computed analytically from a vector parallelogram by determining the diagonal of the parallelogram. The diagonal represents the resultant vector, which can be found by adding the two vectors tip-to-tail. This method is based on the parallelogram law of vector addition.


What is parallelogram law of vector addition?

The parallelogram law of vector addition states that if two vectors are represented as two adjacent sides of a parallelogram, the resultant vector can be obtained by drawing a diagonal from the point where the two vectors originate. Mathematically, this law can be expressed as ( R^2 = A^2 + B^2 + 2AB \cos(\theta) ), where ( R ) is the magnitude of the resultant vector, ( A ) and ( B ) are the magnitudes of the two vectors, and ( \theta ) is the angle between them. This law illustrates how vectors can be combined geometrically and is fundamental in understanding vector addition in physics and mathematics.


What is Gravesand apparatus?

Gravesand apparatus is used to determine weight of body using parallelogram law of vectors.


What is triangle law in vectors?

The triangle law states that if two vectors are represented as two sides of a triangle, then the resultant of the vectors is represented by the third side of the triangle, drawn from the initial point of the first vector to the terminal point of the second vector. It is used to calculate the resultant of two vectors by parallelogram law.


Does law of vectors mean triangle law of vectors?

law of vectors also include the parallellogram law .


What is parallelogram method?

The parallelogram method is a graphical technique used in vector addition. It involves constructing a parallelogram using the two vectors to be added, with the diagonal of the parallelogram representing the resultant vector. The magnitude and direction of the resultant vector can be determined from the properties of the parallelogram.


How many vectors can be formed by joining the vertices of a given quadrilateral?

12 vectors, unless it is a parallelogram (13 if you include the null vector). If the quadrilateral is a parallelogram there will be two fewer.


What is the sum of the vectors called?

The sum of two or more vectors is called the resultant vector. It represents the combined effect of the individual vectors acting together. The resultant vector can be determined using vector addition methods, such as the head-to-tail method or the parallelogram law.


What is the difference between parallelogram law of vector addition n triangle law of vector addition?

There is basically no difference. They are nothing more than 2 different visualizations of how we can graphically add two vectors.strictly if we say there is one and only difference is that---Triangle law of vector addition states that when 2 vectors r acting as the adjacent sides of a triangle taken in order. third side of the triangle will give the magnitude of th resultant 7 direction is in opposite order.Parallelogram law of vector addition states that if 2 vectors r acting as the adjacent sides of a parallelogram, then the diagonal of parallelogram from the point of intersection of two vectors represent their resultant magnitude & direction.


How do you find the area of a parallelogram using 2 vectors?

Given two vectors a and b, the area of a parallelogram formed by these vectors is:a x b = a*b * sin(theta) where theta is the angle between a and b, and where x is the norm/length/magnitude of vector x.