Find the current in polar form

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Reference no: EM133064830

2010ODL-N Further Mathematics - Teesside University

Question 1. Convert the following into the number systems specified:

(a) 11011110110012 to octal and hexadecimal forms.

(b) 3B4E516 to denary and binary forms.

Question 2. Add the binary numbers, working in binary. Express the answer as an 8-bit number, clearly showing any carry bits.

110111102 + 011011012

Question 3. Follow the scenario and instructions clearly, and state the values as an exact value, or, correct to 2 decimal places accuracy:

(a) Given 2 complex numbers Z1, Z2 as:

Z1 = 4 - 5j, Z2 = -2 - 3j

Find: Z = 3Z1 + 2Z2 in Cartesian form a + bj.

(b) The current I in an a.c. circuit is given by I = j(0.5-2j)/7+5j

Find the current I in polar form r∠θ.

Question 4. Convert z = -2 + j to polar form and find z8 using De Moivre's theorem. Plot z and z8 on an Argand diagram.

Question 5. The total impedance of two impedances connected in parallel is given by

1/Z = 1/Z1 + 1/Z2

where Z is the total impedance and Z1 = 4 + 2j and Z2 = 2 - 3j are the branch impedances.

Determine the current and its phase angle relative to a 110V supply voltage.

Question 6. Perform the matrix operations based on the given matrices:

1331_matrix1.jpg

(a) BT + C

(b) 3E - 2DT

Question 7. Given the matrix 1981_matrix.jpg

(a) Find the inverse of the matrix A clearly showing all the steps leading to the inverse matrix.

(b) Show clearly using matrix multiplication that AA-1 = I and A-1A = I, where I is the identity matrix.

Question 8. The system of currents i1, i2 and i3 in a circuit satisfy these equations:

i1 + i2 + i3 = 0
6i1 - i3 = 24
7i2 - 2i3 = 9

Solve the system using:

(a) Matrix inversion

(b) Gaussian elimination

Give the answers correct to 3 decimal places accuracy.

Reference no: EM133064830

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