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Write the values of x and y if (3-4i) (x...

Write the values of x and y if `(3-4i) (x + yi) =1 + i(0)`

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To solve the equation \((3 - 4i)(x + yi) = 1 + i(0)\), we will follow these steps: ### Step 1: Expand the left-hand side We start by expanding the left-hand side of the equation: \[ (3 - 4i)(x + yi) = 3x + 3yi - 4ix - 4i^2y \] ### Step 2: Substitute \(i^2\) with \(-1\) Recall that \(i^2 = -1\). Therefore, we can substitute \(i^2\) in the equation: \[ 3x + 3yi - 4ix + 4y \] This simplifies to: \[ (3x + 4y) + (3y - 4x)i \] ### Step 3: Set the real and imaginary parts equal Now, we equate the real and imaginary parts of both sides of the equation: \[ (3x + 4y) + (3y - 4x)i = 1 + 0i \] From this, we can derive two equations: 1. \(3x + 4y = 1\) (Real part) 2. \(3y - 4x = 0\) (Imaginary part) ### Step 4: Solve the system of equations We can solve these two equations simultaneously. From the second equation, we can express \(y\) in terms of \(x\): \[ 3y = 4x \implies y = \frac{4}{3}x \] ### Step 5: Substitute \(y\) in the first equation Now, substitute \(y\) in the first equation: \[ 3x + 4\left(\frac{4}{3}x\right) = 1 \] This simplifies to: \[ 3x + \frac{16}{3}x = 1 \] ### Step 6: Combine like terms To combine the terms, we can convert \(3x\) to a fraction: \[ \frac{9}{3}x + \frac{16}{3}x = 1 \] This gives: \[ \frac{25}{3}x = 1 \] ### Step 7: Solve for \(x\) Now, multiply both sides by \(\frac{3}{25}\): \[ x = \frac{3}{25} \] ### Step 8: Substitute \(x\) back to find \(y\) Now substitute \(x\) back into the equation for \(y\): \[ y = \frac{4}{3}\left(\frac{3}{25}\right) = \frac{4}{25} \] ### Final Result Thus, the values of \(x\) and \(y\) are: \[ x = \frac{3}{25}, \quad y = \frac{4}{25} \] ---
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ICSE-COMPLEX NUMBERS-Chapter Test
  1. Write the values of x and y if (3-4i) (x + yi) =1 + i(0)

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  2. Find the square root of 5-12i

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  3. Find the locus of a complex number z=x +yi, satisfying the relation |z...

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  4. Express (13i)/(2-3i) in the form A + Bi

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  5. If z= x +yi and (|z-1-i|+4)/(3|z-1-i|-2)=1, show that x^(2) + y^(2) -2...

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  6. If omega and omega^(2) are cube roots of unity, prove that (2- omega +...

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  7. If z(1), z(2) in C (set of complex numbers), prove that |z(1) + z(2)| ...

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  8. If z = x + yi, omega = (2-iz)/(2z-i) and |omega|=1, find the locus of ...

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  9. Simplify: (1- 3omega + omega^(2)) (1 + omega- 3omega^(2))

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  10. Find the locus of z satisfying |(z-3)/(z+1)|=3 in the complex plane.

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  11. Given that (2 sqrt3 cos 30^(@) - 2i sin 30^(@))/(sqrt2 (cos 45^(@) + i...

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  12. Simplify : (1- omega) (1- omega^(2)) (1- omega^(4)) (1- omega^(8))

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  13. Find the locus of a complex number z= x + yi, satisfying the relation ...

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  14. Find the real values of x and y satisfying the equality (x-2 + (y-3)i)...

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  15. If i= (sqrt-1), prove that following (x+1+i) (x+ 1-i) (x-1-i) (x-1+ i)...

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  16. If z= x + yi and |2z + 1| = |z- 2i|, show that 3(x^(2) + y^(2)) + 4(x-...

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  17. Find the amplitude of the complex number "sin" (6pi)/(5) + i (1- "cos"...

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  18. Express (1- 2i)/(2+i) + (3+i)/(2-i) in the form a + bi

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  19. Find the value of x and y given that (x + yi) (2-3i)=4+i

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  20. If the ratio (z-i)/(z-1) is purely imaginary, prove that the point z l...

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  21. If (-2 + sqrt-3) (-3 + 2 sqrt-3) = a + bi, find the real numbers a and...

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