Topicwise Tests | |||||||
---|---|---|---|---|---|---|---|
Tests | Test Activation Date | Test Closing Date | Test Syllabus | No. of Ques. | Marks | Timing | Negative Marks |
1 | 10-04-2019 | 05-01-2020 | Networks-1: Network solution methods: nodal and mesh analysis, Wye Delta transformation. Network theorems: superposition, Thevenin and Norton's, maximum power transfer. Steady state sinusoidal analysis using phasors. | 17 | 25 | 45 min | 1/3 Marks |
2 | Networks-2: Frequency domain analysis of RLC circuits. Time domain analysis of simple linear circuits. Solution of network equations using Laplace transform. Linear 2 port network parameters: driving point and transfer functions. | 17 | 25 | 45 min | 1/3 Marks | ||
3 | Control Systems-1: Basic control system components, feedback principle, transfer function, block diagram representation, signal flow graph. Transient and steady-state analysis of LTI systems. Routh-Hurwitz; Root-locus plots. | 17 | 25 | 45 min | 1/3 Marks | ||
4 | Control Systems-2: Frequency response, Nyquist stability criteria and Bode plot. Lag, lead and lag-lead compensation, PID controllers. State variable model and solution of state equation of LTI systems. | 17 | 25 | 45 min | 1/3 Marks | ||
5 | Electronic Devices-1: Energy bandsin intrinsic and extrinsic silicon, Carrier transport: diffusion current, drift current, mobility and resistivity. Generation and recombination of carriers. Poisson and continuity equations. P-N junction, Zener diode. | 17 | 25 | 45 min | 1/3 Marks | ||
6 | Electronic Devices-2: BJT, MOS capacitor, MOSFET, LED, photo diode and solar cell. Integrated circuit fabrication process: oxidation, diffusion, ion implantation, photolithography and twin-tub CMOS process. | 17 | 25 | 45 min | 1/3 Marks | ||
7 | Analog Circuits-1: Small signal equivalent circuits of diodes. Simple diode circuits: clipping, clamping and rectifiers. Biasing, bias stability of BJTs and MOSFETs. | 17 | 25 | 45 min | 1/3 Marks | ||
8 | Analog Circuits-2 : Small signal equivalent circuits of BJTs and MOSFETs, single-stage BJT and MOSFET amplifiers, mid-frequency small signal analysis. Frequency response of BJT and MOSFET amplifiers. Multi-stage, differential, feedback and power amplifiers. | 17 | 25 | 45 min | 1/3 Marks | ||
9 | Engineering mathematics-1: Linear Algebra, Calculus, Vector Analysis, Probability and Statistics. | 17 | 25 | 45 min | 1/3 Marks | ||
10 | Engineering mathematics-2: Differential Equations, Complex Analysis, Numerical Methods. | 17 | 25 | 45 min | 1/3 Marks | ||
11 | General Aptitude-1: Numerical Ability: Numerical computation, numerical estimation, numerical reasoning and data interpretation. | 17 | 25 | 45 min | 1/3 Marks | ||
12 | General Aptitude-2: Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction. | 17 | 25 | 45 min | 1/3 Marks | ||
13 | 10-05-2019 | 05-01-2020 | Analog Circuits-3:Operational amplifiers: Simple op-amp circuits, active filters. Sinusoidal oscillators: criterion for oscillation, single-transistor and op-amp configurations. Function generators, wave-shaping circuits and 555 timers. Voltage reference circuits; Power supplies: ripple removal and regulation. | 17 | 25 | 45 min | 1/3 Marks |
14 | Microprocessors: Semiconductor memories: ROM, SRAM, DRAM; 8-bit microprocessor (8085): architecture, programming, memory and I/O interfacing. | 17 | 25 | 45 min | 1/3 Marks | ||
15 | Digital Circuits-1: Number systems; Combinatorial circuits: Boolean algebra, minimization of functions using Boolean identities and Karnaugh map, logic gates and their static CMOS implementations, arithmetic circuits, code converters, multiplexers, decoders. | 17 | 25 | 45 min | 1/3 Marks | ||
1/3 Marks | Digital Circuits-2: Programmable logic devices. Sequential circuits: latches and flip flops, counters, shift registers and finite state machines. Data converters: sample and hold circuits, ADCs and DACs. | 17 | 25 | 45 min | 1/3 Marks | ||
17 | Signals and Systems-1: Continuous-time signals: Fourier series and Fourier transform representations, sampling theorem and applications. Continuous LTI systems: definition and properties, causality, stability, impulse response, convolution, poles and zeros, parallel and cascade structures, frequency response, group delay, phase delay. | 17 | 25 | 45 min | 1/3 Marks | ||
18 | Signals and Systems-2: Discrete-time signals: discrete-time Fourier transform (DTFT), DFT, FFT, Z-transform, interpolation of discrete-time signals. Discrete LTI systems: definition and properties, causality, stability, impulse response, convolution, poles and zeros, parallel and cascade structures, digital filter design techniques. | 17 | 25 | 45 min | 1/3 Marks | ||
19 | Communications-1: Analog communications: amplitude modulation and demodulation, angle modulation and demodulation, spectra of AM and FM, superheterodyne receivers, circuits for analog communications. | 17 | 25 | 45 min | 1/3 Marks | ||
20 | Communications-2: Random processes: autocorrelation and power spectral density, properties of white noise, filtering of random signals through LTI systems. Information theory: entropy, mutual information and channel capacity theorem. | 17 | 25 | 45 min | 1/3 Marks | ||
21 | Communications-3: Digital communications: PCM, DPCM, digital modulation schemes, amplitude, phase and frequency shift keying (ASK, PSK, FSK), QAM, MAP and ML decoding, matched filter receiver, calculation of bandwidth, SNR and BER for digital modulation; Fundamentals of error correction, Hamming codes; Timing and frequency synchronization, inter-symbol interference and its mitigation; Basics of TDMA, FDMA and CDMA. | 17 | 25 | 45 min | 1/3 Marks | ||
22 | Electromagnetics-1: Electrostatics; Maxwell's equations: differential and integral forms and their interpretation, boundary conditions, wave equation, Poynting vector. | 17 | 25 | 45 min | 1/3 Marks | ||
23 | Electromagnetics-2: Plane waves and properties: reflection and refraction, polarization, phase and group velocity, propagation through various media, skin depth. Waveguides: modes, boundary conditions, cut-off frequencies, dispersion relations. | 17 | 25 | 45 min | 1/3 Marks | ||
24 | Electromagnetics-3: Transmission lines: equations, characteristic impedance, impedance matching, impedance transformation, S-parameters, Smith chart. Antennas: antenna types, radiation pattern, gain and directivity, return loss, antenna arrays. Basics of radar; Light propagation in optical fibers. | 17 | 25 | 45 min | 1/3 Marks | ||
Single Subject Tests | |||||||
25 | 10-06-2019 | 05-01-2020 | Networks | 33 | 50 | 90 min | 1/3 Marks |
26 | Control Systems | 33 | 50 | 90 min | 1/3 Marks | ||
27 | Electronic Devices | 33 | 50 | 90 min | 1/3 Marks | ||
28 | Analog Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
29 | Engineering Mathematics | 33 | 50 | 90 min | 1/3 Marks | ||
30 | General Aptitude | 33 | 50 | 90 min | 1/3 Marks | ||
31 | 10-07-2019 | 05-01-2020 | Signals & Systems | 33 | 50 | 90 min | 1/3 Marks |
32 | Analog Communication Systems | 33 | 50 | 90 min | 1/3 Marks | ||
33 | Digital Communication Systems | 33 | 50 | 90 min | 1/3 Marks | ||
34 | Digital Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
35 | Electromagnetics | 33 | 50 | 90 min | 1/3 Marks | ||
36 | Microprocessors | 33 | 50 | 90 min | 1/3 Marks | ||
Multiple Subject Tests | |||||||
37 | 10-08-2019 | 05-01-2020 | Networks + Control Systems | 33 | 50 | 90 min | 1/3 Marks |
38 | Electronic Devices + Analog Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
39 | Digital Circuits + Microprocessors | 33 | 50 | 90 min | 1/3 Marks | ||
40 | Communications | 33 | 50 | 90 min | 1/3 Marks | ||
41 | Electromagnetics + Signals & Systems | 33 | 50 | 90 min | 1/3 Marks | ||
42 | Engineering Mathematics + General Aptitude | 33 | 50 | 90 min | 1/3 Marks | ||
Full Syllabus Tests | |||||||
43 | 10-09-2019 | 05-01-2020 | Full Syllabus Test-1 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks |
44 | Full Syllabus Test-2 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
45 | Full Syllabus Test-3 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
46 | Full Syllabus Test-4 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
47 | 30-09-2019 | 05-01-2020 | Full Syllabus Test-5 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks |
48 | Full Syllabus Test-6 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
49 | Full Syllabus Test-7 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
50 | Full Syllabus Test-8 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
Candidate has to upload GATE-2020 Admit Card to access below mentioned tests | |||||||
51 | -NA- | -NA- | GATE Mock Test 1 | 65 | 100 | 180 min | 1/3 Marks |
52 | GATE Mock Test 2 | 65 | 100 | 180 min | 1/3 Marks | ||
53 | GATE Mock Test 3 | 65 | 100 | 180 min | 1/3 Marks | ||
54 | GATE Mock Test 4 | 65 | 100 | 180 min | 1/3 Marks |
Topicwise Tests | |||||||
---|---|---|---|---|---|---|---|
Tests | Test Activation Date | Test Closing Date | Test Syllabus | No. of Ques. | Marks | Timing | Negative Marks |
1 | 29-03-2019 | 05-01-2020 | Networks-1: Network solution methods: nodal and mesh analysis, Wye‐Delta transformation. Network theorems: superposition, Thevenin and Norton's, maximum power transfer. Steady state sinusoidal analysis using phasors. | 17 | 25 | 45 min | 1/3 Marks |
2 | Networks-2: Frequency domain analysis of RLC circuits. Time domain analysis of simple linear circuits. Solution of network equations using Laplace transform. Linear 2‐port network parameters: driving point and transfer functions. | 17 | 25 | 45 min | 1/3 Marks | ||
3 | Control Systems-1: Basic control system components, feedback principle, transfer function, block diagram representation, signal flow graph. Transient and steady-state analysis of LTI systems. Routh-Hurwitz; Root-locus plots. | 17 | 25 | 45 min | 1/3 Marks | ||
4 | Control Systems-2: Frequency response, Nyquist stability criteria and Bode plot. Lag, lead and lag-lead compensation, PID controllers. State variable model and solution of state equation of LTI systems. | 17 | 25 | 45 min | 1/3 Marks | ||
5 | Electronic Devices-1: Energy bands in intrinsic and extrinsic silicon, Carrier transport: diffusion current, drift current, mobility and resistivity. Generation and recombination of carriers. Poisson and continuity equations. P-N junction, Zener diode. | 17 | 25 | 45 min | 1/3 Marks | ||
6 | Electronic Devices-2: BJT, MOS capacitor, MOSFET, LED, photo diode and solar cell. Integrated circuit fabrication process: oxidation, diffusion, ion implantation, photolithography and twin-tub CMOS process. | 17 | 25 | 45 min | 1/3 Marks | ||
7 | Analog Circuits-1: Small signal equivalent circuits of diodes. Simple diode circuits: clipping, clamping and rectifiers. Biasing, bias stability of BJTs and MOSFETs. | 17 | 25 | 45 min | 1/3 Marks | ||
8 | Analog Circuits-2 : Small signal equivalent circuits of BJTs and MOSFETs, single-stage BJT and MOSFET amplifiers, mid-frequency small signal analysis. Frequency response of BJT and MOSFET amplifiers. Multi-stage, differential, feedback and power amplifiers. | 17 | 25 | 45 min | 1/3 Marks | ||
9 | Engineering mathematics-1: Linear Algebra, Calculus, Vector Analysis, Probability and Statistics. | 17 | 25 | 45 min | 1/3 Marks | ||
10 | Engineering mathematics-2: Differential Equations, Complex Analysis, Numerical Methods. | 17 | 25 | 45 min | 1/3 Marks | ||
11 | General Aptitude-1: Numerical Ability: Numerical computation, numerical estimation, numerical reasoning and data interpretation. | 17 | 25 | 45 min | 1/3 Marks | ||
12 | General Aptitude-2: Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction. | 17 | 25 | 45 min | 1/3 Marks | ||
13 | 29-03-2019 | 05-01-2020 | Analog Circuits-3: Operational amplifiers: Simple op-amp circuits, active filters. Sinusoidal oscillators: criterion for oscillation, single-transistor and op-amp configurations. Function generators, wave-shaping circuits and 555 timers. Voltage reference circuits; Power supplies: ripple removal and regulation. | 17 | 25 | 45 min | 1/3 Marks |
14 | Microprocessors: Semiconductor memories: ROM, SRAM, DRAM; 8-bit microprocessor (8085): architecture, programming, memory and I/O interfacing. | 17 | 25 | 45 min | 1/3 Marks | ||
15 | Digital Circuits-1: Number systems; Combinatorial circuits: Boolean algebra, minimization of functions using Boolean identities and Karnaugh map, logic gates and their static CMOS implementations, arithmetic circuits, code converters, multiplexers, decoders. | 17 | 25 | 45 min | 1/3 Marks | ||
16 | Digital Circuits-2: Programmable logic devices. Sequential circuits: latches and flip‐flops, counters, shift‐registers and finite state machines. Data converters: sample and hold circuits, ADCs and DACs. | 17 | 25 | 45 min | 1/3 Marks | ||
17 | Signals and Systems-1: Continuous-time signals: Fourier series and Fourier transform representations, sampling theorem and applications. Continuous LTI systems: definition and properties, causality, stability, impulse response, convolution, poles and zeros, parallel and cascade structures, frequency response, group delay, phase delay. | 17 | 25 | 45 min | 1/3 Marks | ||
18 | Signals and Systems-2: Discrete-time signals: discrete-time Fourier transform (DTFT), DFT, FFT, Z-transform, interpolation of discrete-time signals. Discrete LTI systems: definition and properties, causality, stability, impulse response, convolution, poles and zeros, parallel and cascade structures, digital filter design techniques. | 17 | 25 | 45 min | 1/3 Marks | ||
19 | Communications-1: Analog communications: amplitude modulation and demodulation, angle modulation and demodulation, spectra of AM and FM, superheterodyne receivers, circuits for analog communications. | 17 | 25 | 45 min | 1/3 Marks | ||
20 | Communications-2: Random processes: autocorrelation and power spectral density, properties of white noise, filtering of random signals through LTI systems. Information theory: entropy, mutual information and channel capacity theorem. | 17 | 25 | 45 min | 1/3 Marks | ||
21 | Communications-3: Digital communications: PCM, DPCM, digital modulation schemes, amplitude, phase and frequency shift keying (ASK, PSK, FSK), QAM, MAP and ML decoding, matched filter receiver, calculation of bandwidth, SNR and BER for digital modulation; Fundamentals of error correction, Hamming codes; Timing and frequency synchronization, inter-symbol interference and its mitigation; Basics of TDMA, FDMA and CDMA. | 17 | 25 | 45 min | 1/3 Marks | ||
22 | Electromagnetics-1: Electrostatics; Maxwell's equations: differential and integral forms and their interpretation, boundary conditions, wave equation, Poynting vector. | 17 | 25 | 45 min | 1/3 Marks | ||
23 | Electromagnetics-2: Plane waves and properties: reflection and refraction, polarization, phase and group velocity, propagation through various media, skin depth. Waveguides: modes, boundary conditions, cut-off frequencies, dispersion relations. | 17 | 25 | 45 min | 1/3 Marks | ||
24 | Electromagnetics-3: Transmission lines: equations, characteristic impedance, impedance matching, impedance transformation, S-parameters, Smith chart. Antennas: antenna types, radiation pattern, gain and directivity, return loss, antenna arrays. Basics of radar; Light propagation in optical fibers. | 17 | 25 | 45 min | 1/3 Marks | ||
Single Subject Tests | |||||||
25 | 29-03-2019 | 05-01-2020 | Networks | 33 | 50 | 90 min | 1/3 Marks |
26 | Control Systems | 33 | 50 | 90 min | 1/3 Marks | ||
27 | Electronic Devices | 33 | 50 | 90 min | 1/3 Marks | ||
28 | Analog Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
29 | Engineering Mathematics | 33 | 50 | 90 min | 1/3 Marks | ||
30 | General Aptitude | 33 | 50 | 90 min | 1/3 Marks | ||
31 | 29-03-2019 | 05-01-2020 | Signals & Systems | 33 | 50 | 90 min | 1/3 Marks |
32 | Analog Communication Systems | 33 | 50 | 90 min | 1/3 Marks | ||
33 | Digital Communication Systems | 33 | 50 | 90 min | 1/3 Marks | ||
34 | Digital Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
35 | Electromagnetics | 33 | 50 | 90 min | 1/3 Marks | ||
36 | Microprocessors | 33 | 50 | 90 min | 1/3 Marks | ||
Multiple Subject Tests | |||||||
37 | 29-03-2019 | 05-01-2020 | Networks + Control Systems | 33 | 50 | 90 min | 1/3 Marks |
38 | Electronic Devices + Analog Circuits | 33 | 50 | 90 min | 1/3 Marks | ||
39 | Digital Circuits + Microprocessors | 33 | 50 | 90 min | 1/3 Marks | ||
40 | Communications | 33 | 50 | 90 min | 1/3 Marks | ||
41 | Electromagnetics + Signals & Systems | 33 | 50 | 90 min | 1/3 Marks | ||
42 | Engineering Mathematics + General Aptitude | 33 | 50 | 90 min | 1/3 Marks | ||
Full Syllabus Tests | |||||||
43 | 29-03-2019 | 05-01-2020 | Full Syllabus Test-1 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks |
44 | Full Syllabus Test-2 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
45 | Full Syllabus Test-3 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
46 | Full Syllabus Test-4 (Basic Level) | 65 | 100 | 180 min | 1/3 Marks | ||
47 | 29-03-2019 | 05-01-2020 | Full Syllabus Test-5 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks |
48 | Full Syllabus Test-6 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
49 | Full Syllabus Test-7 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
50 | Full Syllabus Test-8 (Advance Level) | 65 | 100 | 180 min | 1/3 Marks | ||
Candidate has to upload GATE-2019 Admit Card to access below mentioned tests | |||||||
51 | 29-03-2019 | 05-01-2020 | GATE Mock Test 1 | 65 | 100 | 180 min | 1/3 Marks |
52 | GATE Mock Test 2 | 65 | 100 | 180 min | 1/3 Marks | ||
53 | GATE Mock Test 3 | 65 | 100 | 180 min | 1/3 Marks | ||
54 | GATE Mock Test 4 | 65 | 100 | 180 min | 1/3 Marks |