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Trigonometric Form of Complex Numbers

Trigonometric Form of Complex Numbers. Summary of U4 L2 I1. Graphical Representation of a Complex Number. Graph in coordinate plane Called the complex plane Horizontal axis is the real axis Vertical axis is the imaginary axis. 3 + 4 i •. -2 + 3 i •. • -5 i.

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Trigonometric Form of Complex Numbers

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  1. Trigonometric Form of Complex Numbers Summary of U4 L2 I1

  2. Graphical Representation of a Complex Number • Graph in coordinate plane • Called the complex plane • Horizontal axisis the real axis • Vertical axis is the imaginaryaxis 3 + 4i• -2 + 3i• • -5i

  3. Absolute Value of a Complex Number • Defined as the length of the line segment • From the origin • To the point • Calculated byusing PythagoreanTheorem 3 + 4i•

  4. Find That Value, Absolutely • Try these • Graph the complex number • Find the absolute value

  5. Trig Form of Complex Number • Consider the graphical representation • We note that a righttriangle is formed a + bi• r b θ a How do we determine θ?

  6. Trig Form of Complex Number • Now we use and substitute into z = a + bi • Result is • Abbreviation is often

  7. Try It Out • Given the complex number -5 + 6i • Write in trigonometric form • r = ? • θ = ? • Given z = 3 cis 315° • Write in standanrd form • r = ? • a = ? • b = ?

  8. Product of Complex Numbers in Trig Form • Given • It can be shown that the product is • Multiply the absolute values • Add the θ's

  9. Quotient of Complex Numbers in Trig Form • Given • It can be shown that the quotient is

  10. Try It Out • Try the following operations using trig form • Convert answers to standard form

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