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Jamia Millia launches new self-financed B Tech and M Tech Programmes

Faculty of Engineering and Technology, Jamia Millia Islamia (JMI) has announced the launch of several innovative self-financed programs in B.Tech and M.Tech for the academic year 2024-25.

Quince Therapeutics to Present at Upcoming Scientific Meetings

Quince Therapeutics to Present at Upcoming Scientific Meetings
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Opportunities in Experimental High-Throughput Materials Research

Note: Please email Mini Thomas, minit@princeton.edu, for meeting password. The adoption of data-sciences within chemical engineering and materials science is primed to accelerate materials discovery and developments in molecular understanding. Yet, this movement is still dominated by information originating from molecular modelling, or from physical data that is acquired from legacy sources (e.g. databases, literature mining) accumulating decades of careful experimental work. In order to advance data-driven materials developments into the future, high-throughput experimentation (HTE) and automation throughout the complete laboratory workflow must also be developed and widely adopted to accelerate rates of experimental data production. In this talk I will outline examples and experiences showcasing how researchers in our group (and others) are developing and adapting hardware and software infrastructure to accelerate the pace of molecular discovery in soft-matter systems for applicati

IIC-JMI conduct workshops to train students for startups and entrepreneurship ecosystem

The institution’s Innovation Council (IIC), Centre for Innovation and Entrepreneurship (CIE), Jamia Millia Islamia (JMI) has conducted a number of workshops to train students about various intricacies of the startup and entrepreneurship ecosystem.

Using biomimetic polymers to understand and control sequence/structure/function relationships and achieve rational design of biomineralization

Note: Please email Mini Thomas, minit@princeton.edu, for meeting password Peptoids, or n-substitued glycines, are complex and diverse oligomeric structures which have been explored for a number of biomimetic applications including drug delivery, surfactants, and catalysts. In contrast to their peptide counterparts, on peptoids the sidechain is bonded to the backbone nitrogen resulting in a flexible omega backbone dihedral that is able to isomerize into both stable cis- and trans- backbone conformations. This unique feature of peptoids allows for these structures to potentially span a significantly larger configurational space of chemical and structural functionality through the careful tuning of their side chains. This vast chemical and structural space has created significant challenges for rational design of new structures and functions as the underlying molecular scale driving forces that give rise to sequence/structure/function relationships have proven difficult to uncover. This

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