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IGNOU MRWE 2 Solved Assignment 2024
Rs.
Rs. 50

IGNOU MRWE 2 Energy Storage Solved Assignment 2024

IGNOU MRWE 2 Energy Storage Solved Assignment 2024
Rs.
Rs. 50

Last Date of Submission of IGNOU MRWE-02 (MSCRWEE) 2024 Assignment is for January 2024 Session: 30th September, 2024 (for December 2024 Term End Exam).
Semester Wise
January 2024 Session:
30th March, 2024 (for June 2024 Term End Exam).
July 2024 Session: 30th September, 2024 (for December 2024 Term End Exam).

Title NameIGNOU MSCRWEE MRWE 2 2024 Solution
TypeSoft Copy (E-Assignment) .pdf
UniversityIGNOU
DegreeMASTER DEGREE PROGRAMMES
Course CodeMSCRWEE
Course NameMaster of Science (Renewable Energy and Environment)
Subject CodeMRWE 2
Subject NameEnergy Storage
Year2024
Session-
LanguageEnglish Medium
Assignment CodeMRWE-02/Assignmentt-1//2024
Product DescriptionAssignment of MSCRWEE (Master of Science (Renewable Energy and Environment)) 2024. Latest MRWE 02 2024 Solved Assignment Solutions
Last Date of IGNOU Assignment Submission
Last Date of Submission of IGNOU MRWE-02 (MSCRWEE) 2024 Assignment is for January 2024 Session: 30th September, 2024 (for December 2024 Term End Exam).
Semester Wise
January 2024 Session:
30th March, 2024 (for June 2024 Term End Exam).
July 2024 Session: 30th September, 2024 (for December 2024 Term End Exam).

Assignment CodeMRWE 2/2024
Rs.
Rs. 50
Questions Included in this Help Book

Ques 1.

What are the challenges and opportunities associated with integrating energy storage systems into the electrical grid?

Ques 2.

Explain the design considerations for a flywheel rotor, including material selection, shape, and balancing techniques. Discuss the factors that affect the maximum achievable energy storage capacity

Ques 3.

Discuss the concept of redox flow batteries and their advantages over other battery technologies.

Ques 4.

Discuss the safety aspects associated with hydrogen energy storage. Explain the measures, regulations, and best practices implemented to ensure safe storage, handling, and transportation of hydrogen.

Ques 5.

Compare different fuel cells based upon efficiency, operating temperature and fuel used.

Ques 6.

What are the main components of a fuel cell? How does a fuel cell generate electricity?

Ques 7.

What are the factors need to be considered while designing PCM? What are the different applications of PCM?

Ques 8.

Explain the innovative strategies used for Thermal Solar Energy Storage in buildings to achieve 3E goals.

Ques 9.

Compare and contrast the capital costs and operational costs of pumped-storage hydroelectricity and lithium-ion battery storage systems. What factors contribute to the cost differences between these two technologies?

Ques 10.

Discuss the economic viability of implementing sensible heat storage systems in different sectors. Analyze the factors that influence the cost- effectiveness and return on investment of such systems, considering both the initial capital costs and long-term operational benefits.

Ques 11.

What are the challenges or limitations associated with implementing LHTES systems?

Ques 12.

Provide examples of real-world applications or case studies where LHTES systems have been successfully implemented.

Rs.
Rs. 50

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