GATE Networks, Signals and Systems: Circuit Analysis – Previous Year Questions
15 GATE previous year questions on Circuit Analysis (Networks, Signals and Systems, Electronics and Communication Engineering) with answers and explanations, from every paper.
- GATE 2015 EC Q17 – In the network shown in the figure, all resistors are identical with R = 300\ . The resistance R ab (in ) of the network is .
- GATE 2015 EC Q18 – In the given circuit, the values of V 1 and V 2 respectively are
- GATE 2016 EC Q43 – An AC voltage source V = 10(t) volts is applied to the following network. Assume that R 1 = 3\ k, R 2 = 6\ k and R 3 = 9\ k, and that the diode is…
- GATE 2016 EC Q44 – In the circuit shown in the figure, the maximum power (in watt) delivered to the resistor R is
- GATE 2018 EC Q63 – Consider the network shown below with R 1=1\ , R 2=2\ and R 3=3\ . The network is connected to a constant voltage source of 11 V. The magnitude of the…
- GATE 2020 EC Q19 – In the circuit shown below, the Thevenin voltage V TH is
- GATE 2021 EC Q28 – Consider the circuit shown in the figure. The current I flowing through the 7\ resistor between P and Q (rounded off to one decimal place) is A.
- GATE 2021 EC Q29 – Consider the circuit shown in the figure. The value of v 0 (rounded off to one decimal place) is V.
- GATE 2022 EC Q13 – The current I in the circuit shown is .
- GATE 2022 EC Q14 – Consider the circuit shown in the figure. The current I flowing through the 10\ resistor is .
- GATE 2023 EC Q32 – In the circuit shown below, the current i flowing through the 200 Ω resistor is mA (rounded off to two decimal places).
- GATE 2024 EC Q31 – In the given circuit, the current I x (in mA) is .
- GATE 2024 EC Q62 – In the network shown below, maximum power is to be transferred to the load R L. The value of R L (in Ω) is .
- GATE 2025 EC Q19 – Consider a part of an electrical network as shown below. Some node voltages, and the current flowing through the 3 Ω resistor are indicated. The…
- GATE 2026 EC Q30 – The output voltage V o (in Volt) for the network given in the Figure is . (rounded off to two decimal places)