S5 EEE
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Course Outcomes of all subjects are to be rated in a scale of 5( 5-Excellent, 4-very good, 3-good, 2-average & 1-poor)

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University Registration Number *
Student Name *
Email ID *
EET301 POWER SYSTEMS I *
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2
1
Identify the power generating system appropriate for a given area.
Evaluate the electrical performance of any transmission line
Compute the various characteristics Underground cables and transmission systems
Select appropriate switchgear for protection schemes.
Design a simple electrical distribution system as per the standards
EET303 MICROPROCESSORS AND MICROCONTROLLERS *
5
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Describe the architecture and timing diagram of 8085 microprocessor
Develop assembly language programs in 8085 microprocessor
Identify the different ways of interfacing memory and I/O with 8085 microprocessor
Understand the architecture of 8051 microcontroller and embedded systems
Develop assembly level and embedded C programs in 8051 microcontroller
EET305 SIGNALS AND SYSTEMS *
5
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3
2
1
Explain the basic operations on signals and systems
Apply Fourier Series and Fourier Transform concepts for continuous time signals
Analyse the continuous time systems with Laplace Transform
Analyse the discrete time system using Z Transform.
Apply Fourier Series and Fourier Transform concepts for Discrete time domain
EET305 SIGNALS AND SYSTEMS *
5
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3
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1
Explain the basic operations on signals and systems
Apply Fourier Series and Fourier Transform concepts for continuous time signals
Analyse the continuous time systems with Laplace Transform
Analyse the discrete time system using Z Transform.
Apply Fourier Series and Fourier Transform concepts for Discrete time domain
EET307 SYNCHRONOUS AND INDUCTION MACHINES *
5
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1
Analyse the performance of different types of alternators
Analyse the performance of a synchronous motor.
Analyse the performance of different types of induction motors.
Describe operating principle of induction machine as generator.
Explain the types of single phase induction motors and their working principle.
HUT310 MANAGEMENT FOR ENGINEERS
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Students would be able to critically analyse and evaluate a variety of management practices in the contemporary context
Students would be able to understand and apply a variety of management and organisational theories in practice
Students would be able to mirror existing practices or to generate their own innovative management competencies, required for today's complex and global workplace
Students would be able to critically reflect on ethical theories and social responsibility ideologies to create sustainable organizations
Students will know about the role of managers in an organisation
Clear selection
MCN301 DISASTER MANAGEMENT
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1
Define and use various terminologies in use in disaster management parlance and organise each of these terms in relation to the disaster management cycle.
Distinguish between different hazard types and vulnerability types and do vulnerability assessment.
Identify the components and describe the process of risk assessment, and apply appropriate methodologies to assess risk.
Explain the core elements and phases of Disaster Risk Management and develop possible measures to reduce disaster risks across sector and community.
Explain the various legislations and best practices for disaster management and risk reduction at national and international level.
Clear selection
EEL331 MICROPROCESSORS AND MICROCONTROLLERS LAB *
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Students will be able to develop and execute assembly language programs for solving arithmetic and logical problems using 8085
Students will be able to develop and execute assembly language programs for solving arithmetic and logical problems using 8086
Students will be able to design and Implement systems with interfacing circuits for various applications
Students will be able to acquire basic knowledge on Arduino
Students will be able to execute projects as a team using Arduino for real life applications.
EEL333 ELECTRICAL MACHINES LAB II *
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Analyse the performance of single phase and three phase induction motors by conducting suitable tests.
Analyse the performance of three phase synchronous machine from V and inverted V curves.
Analyse the performance of a three phase alternator by conducting suitable tests.
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