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nexus9112 [7]
3 years ago
13

How to express a vector as a product of its length and direction?

Mathematics
1 answer:
Stella [2.4K]3 years ago
6 0

Answer:

So the way to  express a vector( v =  2i - 2j - 2k) as a product of its length and direction is

        v  =    |v| u =  \sqrt{12} (\frac{2}{ \sqrt{12} } , -\frac{2}{ \sqrt{12} }, - \frac{2}{ \sqrt{12} })

 

Step-by-step explanation:

Generally a vector  is  expressed as a product of its length and direction using the formula below  

           v  =  |v|\cdot u

Here v is the vector

        |v| is its magnitude (length)

         u is its unit vector (direction)

Now let take an example

Let  

     v =  2i - 2j - 2k

The magnitude is mathematically evaluated as

          |v| =  \sqrt{ 2^2  + (-2)^2 +  (-2)^2 }

         |v| =  \sqrt{12}

The unit vector is mathematically represented as

        u  =  \frac{v}{|v|}

        u  =  \frac{ }{\sqrt{12} }

    u =  \frac{2}{ \sqrt{12} } , -\frac{2}{ \sqrt{12} }, - \frac{2}{ \sqrt{12} }

So

    v  =    |v| u =  \sqrt{12} (\frac{2}{ \sqrt{12} } , -\frac{2}{ \sqrt{12} }, - \frac{2}{ \sqrt{12} })

 

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