Prepare for NTA UGC NET Electronic Science examination with our free mock test question paper.
This NTA UGC NET exam is divided into two parts (i.e) Part I and Part II. You need to qualify in both papers to pass the UGC NET Electronic Science exam.
| Exam Highlights | Details |
|---|---|
| Test Duration | 120 minutes |
| Total Questions | 100 |
| Marks per question | 2 |
| Total Marks | 200 |
| Negative Marking | N/A |
| Unit | Details |
|---|---|
| Electron transport in semiconductors | External powers which drive the framework out of balance; excitation of electrons from their ground to energized states because of high recurrence optical excitation. |
| Norton and maximum power transfer theorems | Explain how the maximum measure of energy will be dispersed by a heap resistance in the event that it is equivalent to the Norton protection of the system providing power. |
| Phase locked loop | Understanding the control framework that creates a yield signal whose phase is identified with the period of control system. |
| Open-loop System and Open-loop Control Systems | Learn about how an Open-circle System and Open-circle Control Systems work and how they can be utilized as a major aspect of a process control system. |
| Optical sources | Understanding how optical light sources change over electrical signs into optical signals and dispatch them. |
| Multiplexing and coding | Ensemble of TV stations which are gathered together with a specific end goal to fit productively into the channel data transmission controlled by the recurrence design. |
| Stepper and synchronous motors | Multi-phase AC synchronous motor. |
| Basic principles of Amplitude | Learn standards of communication amplitude balance; basics of correspondence designing. |
| High level programming language | Learn how software engineer compose programs that are pretty much autonomous of a specific sort of computer. |
| Architecture manufacturing | Study of the fundamental design structures and their utilization inside a deliberate outline process for assembling frameworks; succession of handling ventures in the creation of coordinated circuits. |
| Rectifiers | Important use of the diode. |