IGNOU BEY 4 SOLVED ASSIGNMENT
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BEY 4: Zero Emission Vehicles
| Title Name | IGNOU BEY 4 SOLVED ASSIGNMENT |
|---|---|
| Type | Soft Copy (E-Assignment) .pdf |
| University | IGNOU |
| Degree | BACHELOR DEGREE PROGRAMMES |
| Course Code | BSCAEY |
| Course Name | Bachelor of Science (Applied Science-Energy) |
| Subject Code | BEY 4 |
| Subject Name | Zero Emission Vehicles |
| Year | 2026 |
| Session | - |
| Language | English Medium |
| Assignment Code | BEY 4/Assignment-1/2026 |
| Product Description | Assignment of BSCAEY (Bachelor of Science (Applied Science-Energy)) 2026. Latest BEY 004 2026 Solved Assignment Solutions |
| Last Date of IGNOU Assignment Submission | Last Date of Submission of IGNOU BEGC-131 (BAG) 2025-26 Assignment is for January 2026 Session: 30th September, 2026 (for December 2025 Term End Exam). Semester Wise January 2025 Session: 30th March, 2026 (for June 2026 Term End Exam). July 2025 Session: 30th September, 2025 (for December 2025 Term End Exam). |
| Format | Ready-to-Print PDF (.soft copy) |
📅 Important Submission Dates
- January 2026 Session: 30th April, 2026
- July 2026 Session: 30th September, 2026
Why Choose Our Solved Assignments?
• Guidelines: Strictly follows 2025-26 official word limits.
• Scoring: Designed to help students achieve 90+ marks.
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BEY 004 (January 2026 - July 2026) - ENGLISH
Assignment -1
(To be done after studying the course material)
Course Code: BEY-004
Course Title: Zero Emission Vehicles
Assignment Code: BEY-004/TMA/2026
Maximum Marks: 100
Last Date of Submission: May 31, 2026 (For June TEE), September 30, 2026 (For December TEE)
Note:
1. All questions are compulsory.
2. Each answer should be 300-400 words and include examples, illustrations, or case references.
Q.1 Analyze the challenges and benefits of India's target to achieve 30% EV sales penetration by 2030.
Q.2 Explain how modern emission control technologies (EGR, TWC, SCR, DPF) have transformed vehicle emission standards globally.
Q.3 Discuss the significance of fuel-air mixture preparation and ignition control in achieving low-emission combustion.
Q.4 Analyze how hydrogen-based propulsion compares with battery-electric systems in terms of efficiency and sustainability.
Q.5 Discuss the major factors affecting battery performance, life cycle, and sustainability.
Q.6 Analyze how battery management systems (BMS) contribute to battery safety and long-term reliability.
Q.7 Explain the role of inverters, converters, and motor control units (MCUs) in optimizing EV performance.
Q.8 Discuss how hybrid vehicle architecture bridges the gap between conventional and fully electric vehicles.
Q.9 Evaluate how regenerative braking improves the overall energy efficiency of hybrid vehicles.
Q.10 Examine the integration of EVs with smart grid technology and its role in sustainable energy systems.
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