Research Publications Team Resources
The Lab
Open Positions
We use cutting-edge simulations to drive real-world solutions
As a scientific simulation lab focused on precision in multi-physics simulations and large-scale computational engineering, we are committed to fostering a research environment built on integrity, innovation, and inclusivity. Our policies reflect our values and guide our interactions, research activities, and collaborations.
Research Ethics and Integrity
Maintaining the highest standards of ethical conduct and integrity is our priority.
Any breach of ethical standards will be addressed through our lab’s disciplinary measures and may lead to institutional action. Our team is committed to:
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Conducting all research activities with honesty, transparency, and accountability.
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Acknowledging all sources, and collaborators accurately in our publications and projects.
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Avoiding plagiarism, data fabrication, falsification, and any form of academic misconduct.
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Respecting intellectual property rights, including those of software and datasets.
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Lab Policies and Guidelines
FAQs
These FAQs are intended to clarify common questions about lab policies and provide guidance for successful collaboration
What are the lab attendance expectations, and is remote work allowed?
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What are the expectations for communication and availability during work hours
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Are lab members allowed to have discussions in the lab?
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What are the expectations for meeting deadlines and managing project timelines?
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What is the process for requesting letters of recommendation?
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Our Vision
We are driven by a shared mission to harness the power of coding, advanced simulations, and computational science to create innovative solutions for some of the world’s most pressing challenges.
By harnessing the power of computer simulations and coding, we can unlock new possibilities, accelerate innovation, and design technologies that reshape our world for the better.
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Our lab is built on a foundation of curiosity, rigorous scientific inquiry, and a deep commitment to understanding the fundamental principles of physics. We strive to combine this understanding with advanced mathematical techniques and high-performance computing to model complex real-world phenomena with precision and accuracy.
What projects we do?
Our projects span industry-scale applications, where we aim to bridge the divide between theoretical research and impactful, practical solutions. By engaging in large-scale, computationally intensive projects, we prepare our team to contribute meaningfully to sectors such as energy, materials science, infrastructure, and more. These projects are more than technical exercises; they are opportunities to make a difference in society, pushing the boundaries of what can be achieved through computational mechanics.
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What is our vision for each lab member?
We envision every lab member as a well-rounded problem-solver and innovator, equipped not only with technical expertise but also with the creativity, adaptability, and critical thinking skills necessary to address complex, interdisciplinary challenges.

We foster a collaborative, inclusive environment where members support one another, continuously learn, and strive for excellence.

Our goal is to build a lab community where everyone feels empowered to take initiative, pursue their ideas, and contribute to breakthrough advancements.

Together, we are building a future where coding, simulations, and mathematical models are the tools that shape sustainable solutions, improve industry practices, and lead to discoveries that make a lasting impact on our world.
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Our ambitious goal is to develop innovative computational solutions that push the boundaries of engineering and materials science.
M.Tech. Projects
FEM, Solid Mechanics, Numerical methods
We offer exciting Master’s project opportunities for students passionate about computational mechanics. Basic theoretical knowledge of numerical methods, finite element methods, and solid mechanics are prerequisites.
PhD
FEM, Continuum Mechanics, Numerical methods
We offer exciting PhD opportunities for highly motivated individuals passionate about computational mechanics, providing cutting-edge research, industry collaborations, and real-world problem-solving in large-scale simulations.
PostDoc
Computational Mechanics, Fracture Mechanics, Corrosion, Hydrogen Embrittlement
We frequently have dedicated project funding for postdocs and can write research proposals together for postdoc fellowships from the institute, DST, or other government and industry-funded programs.
Industry collaborations
FEA, Fracture Mechanics, Hydrogen Embrittlement, Corrosion
We seek industry collaborations for large-scale research, offering industry-funded internships, Master's, PhD, and Postdoc opportunities to solve real-world challenges with scientifically optimized solutions.
Undergraduate Projects and Internships
FEM, Solid Mechanics, Numerical methods
We offer exciting UG final-year projects and internships on cutting-edge topics, providing hands-on experience in computational research, real-world problem-solving, and scientific innovation.