 
			 
			MCQOPTIONS
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				This section includes 16 Mcqs, each offering curated multiple-choice questions to sharpen your Network Theory knowledge and support exam preparation. Choose a topic below to get started.
| 1. | Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the value of C2 after performing the second Cauer form. | 
| A. | 3 | 
| B. | 3/10 | 
| C. | 3/100 | 
| D. | 3/1000 | 
| Answer» D. 3/1000 | |
| 2. | Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the value of R1 after performing the second Cauer form. | 
| A. | 9/10 | 
| B. | 10/9 | 
| C. | 8/9 | 
| D. | 9/8 | 
| Answer» C. 8/9 | |
| 3. | Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the first reminder obtained by taking the continued fraction expansion after performing the second Cauer form. | 
| A. | 10s/3+s2 | 
| B. | s/3+s2 | 
| C. | 10s/3+3s2 | 
| D. | s/3+3s2 | 
| Answer» B. s/3+s2 | |
| 4. | Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the value of C1 after performing the second Cauer form. | 
| A. | 1/2 | 
| B. | 3/8 | 
| C. | 1/4 | 
| D. | 1/8 | 
| Answer» C. 1/4 | |
| 5. | Consider the impedance functionZ(s)=(s2+6s+8)/(s2+3s). Find the value of C2 after performing the first Cauer form. | 
| A. | 1/6 | 
| B. | 1/12 | 
| C. | 1/24 | 
| D. | 1/48 | 
| Answer» D. 1/48 | |
| 6. | Consider the impedance functionZ(s)=(s2+6s+8)/(s2+3s). Find the value of C1 after performing the first Cauer form. | 
| A. | 1/4 | 
| B. | 1/3 | 
| C. | 1/2 | 
| D. | 1 | 
| Answer» C. 1/2 | |
| 7. | Consider the impedance functionZ(s)=(s2+6s+8)/(s2+3s). Find the value of R2 after performing the first Cauer form. | 
| A. | 4 | 
| B. | 3 | 
| C. | 6 | 
| D. | 9 | 
| Answer» E. | |
| 8. | Consider the impedance functionZ(s)=(s2+6s+8)/(s2+3s). Find the first reminder obtained by taking the continued fraction expansion after performing the first Cauer form. | 
| A. | s + 8 | 
| B. | 2s + 8 | 
| C. | 3s + 8 | 
| D. | 4s + 8 | 
| Answer» D. 4s + 8 | |
| 9. | Consider the impedance functionZ(s)=(s2+6s+8)/(s2+3s). Find the value of R1 after performing the first Cauer form. | 
| A. | 1 | 
| B. | 2 | 
| C. | 3 | 
| D. | 4 | 
| Answer» B. 2 | |
| 10. | THE_VALUE_OF_R1_IN_QUESTION_6_IS??$ | 
| A. | 10 | 
| B. | 1 | 
| C. | 100 | 
| D. | 1000 | 
| Answer» B. 1 | |
| 11. | THE_VALUE_OF_C2_IN_QUESTION_6_IS??$ | 
| A. | 3 | 
| B. | 3/10 | 
| C. | 3/100 | 
| D. | 3/1000 | 
| Answer» D. 3/1000 | |
| 12. | Consider the impedance function Z(s)=( s2+6s+8)/( s2+3s). Find the value of C1 after performing the second Cauer form. | 
| A. | 1/2 | 
| B. | 3/8 | 
| C. | 1/4 | 
| D. | 1/8 | 
| Answer» C. 1/4 | |
| 13. | The value of C1 in question 1 is? | 
| A. | 1/4 | 
| B. | 1/3 | 
| C. | 1/2 | 
| D. | 1 | 
| Answer» C. 1/2 | |
| 14. | Find the value of R2 in question 1. | 
| A. | 4 | 
| B. | 3 | 
| C. | 6 | 
| D. | 9 | 
| Answer» E. | |
| 15. | Find the first reminder obtained by taking the continued fraction expansion in question 1. | 
| A. | s + 8 | 
| B. | 2s + 8 | 
| C. | 3s + 8 | 
| D. | 4s + 8 | 
| Answer» D. 4s + 8 | |
| 16. | Consider the impedance functionZ(s)=( s2+6s+8)/( s2+3s). Find the value of R1 after performing the first Cauer form. | 
| A. | 1 | 
| B. | 2 | 
| C. | 3 | 
| D. | 4 | 
| Answer» B. 2 | |