Blending curiosity and creativity to dive into the fascinating world of physics and renewable energy.
Renewable energy is not just about harnessing power—it’s about refining the science behind it. Whether developing high-efficiency photovoltaic cells or integrating sustainable methods into nuclear waste management, my research is driven by a vision for a cleaner, more efficient future. Through a physics-driven approach, I aim to bridge the gap between theoretical insights and real-world applications
I have a deep passion for physics, driven by curiosity and a desire to understand the fundamental principles that shape our world. My interests span a broad range of topics within the field, including renewable energy, where I explore how physics can contribute to sustainable and efficient technologies. I am excited by the potential of physics to solve real-world problems and look forward to applying my knowledge in innovative ways, whether through research, development, or collaboration on impactful projects.
I believe every innovation must align with long-term ecological balance and responsible use of resources.
My approach is driven by constant curiosity, questioning, and a commitment to deeper scientific understanding.
Advancing renewable energy is key to a sustainable future. My research explores innovative ways to enhance solar technology and improve nuclear waste management for a cleaner environment.
I’m focused on improving solar tech by enhancing photovoltaic cells and finding new ways to capture solar energy more efficiently.
I’m interested in sustainable solutions for nuclear waste, aiming to integrate renewable energy for safer, eco-friendly management.
Analysing aerodynamics and material science to optimise wind energy capture and durability.