The required magnitude of the vector is √13. Option D is correct.
A graph is given, that shows the vector, the magnitude of the vector is to be determined.
Vector form is defined as representing any point in space that has both magnitude and direction. A point k in space is represented as a vector OKi + OKj, which denotes the vector line, OK joining the line from the origin O to the point k. The vector form is used to define a line or a plane in a 3D space.
From the figure,
given vector can be expressed as,
now the magnitude of vactor,
Thus, the required magnitude of the vector is √13. Option D is correct.
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Answer:
D. sqrt 13
Step-by-step explanation:
took on edge :)
2) (2,10)
3) (-2,-10)
4) (1,-5)
The expression used is the circumference of a circle which is 80π
The circumference of a circle is the distance around the circle which is 2πr.
The diameter of a circle is the largest chord that passes through the center of a circle it is 2r.
Given, A circular skating rink has a radius of 40 feet.
∴ The expression can be used to find the circumference of the
skating rink is 2π(40) = 80π feet.
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Answer:
x = 6y
Step-by-step explanation:
x = 3z and z=2y
Substitute the second equation into the first
x = 3 (2y)
x = 6y
The remainder theorem is an easy way of calculating the remainder from polynomial division.
The conclusion of remainder theorem, here is that:
We have:
and a remainder of 17
The general rule of the remainder theorem is that:
For and a remainder of b
It means:
By comparing
and
It means:
and
So:
becomes
Hence, the conclusion is that:
Read more about remainder theorems at:
Answer:
f(-5)=17
Step-by-step explanation:
Took the quiz.