تفاصيل العمل

project involved three key phases:

Preparation: Calculating the required 120 turns and wire length while selecting a PVC pipe as the coil base.

Assembly: Winding the coil in a motor winding workshop to ensure precise construction.

Testing: Measuring the inductance in different lab environments. The recorded values (1.03mH, 1.04mH, and 1.17mH) remained within the expected range, validating the theoretical calculations and assembly accuracy.

? This project was a great learning experience that reinforced both theoretical knowledge and practical skills. Here are some key takeaways:

1️⃣ Theoretical Validation – Applying formulas to calculate inductance and wire length helped me understand the importance of precise design.

2️⃣ Practical Implementation – Gaining hands-on experience in coil winding and assembly highlighted the role of precision in execution.

3️⃣ Testing & Analysis – Conducting tests in different lab environments showed how measurement variations occur and how to interpret results accurately.

4️⃣ Error Management – Learning to account for potential miscalculations and assembly imperfections helped in developing a structured approach.

5️⃣ Bridging Theory & Practice – Seeing how theoretical concepts translate into real-world applications strengthened my understanding of inductor behavior.

6️⃣ Lab Equipment Usage – Working with precision measurement tools in physics and high-voltage labs improved my ability to analyze electrical properties.

This project highlighted the importance of combining theoretical analysis with hands-on application to achieve accurate results. Excited to apply these insights in future projects! ?

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