| Title | Research Area | Implementing Organisations | Funding Organisations | Start Year | Status |
|---|---|---|---|---|---|
| Development Polymers of intrinsic microporosity (Pims) as solid matrix for separations of hydrocarbons | Chemical Sciences | Tezpur University | Department of Science and Technology (DST) | 2020 | Completed |
| Computational investigations towards designing of main group & transition metal based systems for Dinitrogen activation | Chemical Sciences | Tezpur University | Department of Science and Technology (DST) | 2020 | Completed |
| Tuning metal oxide clusters for selective catalytic hydrogenation of Co2 to organic acids using quantum chemical methods | Chemical Sciences | Tezpur University | Department of Science and Technology (DST) | 2020 | Completed |
| Rotavirus Nsp1 degrades Interferon receptors (Ifnrs) through A Pkr-dependent pathway | Medical Sciences | Tezpur University | Department of Science and Technology (DST) | 2020 | Completed |
| Design of zeolite-Y supported heterogeneous catalyst for C-C bond coupling reactions | Chemical Sciences | Tezpur University | Council of Scientific and Industrial Research (CSIR) | 2020 | Completed |
| Point & interval estimation of some functional of the distribution function of identically distributed random variables & their sums with applications | Mathematical Sciences | Tezpur University | Department of Science and Technology (DST) | 2019 | Completed |
| On pareto Eigen value of distance Matrix of connected graphs | Mathematical Sciences | Tezpur University | Department of Science and Technology (DST) | 2019 | Completed |
| Development of catalytic reaction strategies for the synthesis & functionalization of potential bioactive heterocyclic molecules | Chemical Sciences | Tezpur University | Department of Science and Technology (DST) | 2019 | Completed |
| Climate change impact mitigation for a climate resilient habitat | Earth, Atmosphere & Environment Sciences | Tezpur University | Department of Science and Technology (DST) | 2019 | Completed |
| A study on laser-driven Ion acceleration from plasma target & generation of large scale magnetic field in relativistic laser plasma interaction | Physical Sciences | Tezpur University | Department of Science and Technology (DST) | 2019 | Completed |