
Dr. Jay Mant Jha
Assistant Professor
Google Scholar: https://scholar.google.com/citations?user=4ka1cPsAAAAJ
Scopus: https://www.scopus.com/authid/detail.uri?authorId=55660579500
ORCID: https://orcid.org/0000-0001-6495-2631
Vidwan: https://vidwan.inflibnet.ac.in/profile/160204
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U.G |
Transport Phenomena |
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Heat Transfer |
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Fluid Mechanics |
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Chemical Engineering Thermodynamics |
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Industrial pollution abatement |
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Chemical Reaction Engineering |
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Process Modeling and Simulation |
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P.G |
Thermodynamics for chemical processes |
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Water Pollution |
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Air Pollution |
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Transport Phenomena |
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Organization |
Start Date |
End Date |
Designation |
Nature of Work |
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Maulana Azad National Institute of Technology, Bhopal. |
28/01/2019 |
Till Date |
Assistant Professor grade-1 | Regular Teaching Position |
| BIT Mesra, Ranchi | 04/01/2018 | 04/01/2019 | Assistant Professor | Teaching and Research |
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Name of the Student |
Topic |
Year of Award |
Co-Supervisor (if any) |
| Dhiraj Kishor Tatar | Synthesis of Nanoparticles and its Different Application | 2025 |
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Title |
Sponsoring Agency |
Duration |
Amount |
Co-PI (if any) |
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Title |
Sponsoring Agency |
Duration |
Amount |
Co-Investigator (if any) |
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Authors |
Title |
Journal |
VOL. NO., PAGE NO |
YEAR |
SCI/ Scopus |
IMPACT FACTOR |
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Kapoor L., Jha J.M., Pandey D.K., Balsora H.K. |
Parametric optimization by Box-Behnken design in the pyrolysis of spent coffee grounds and kinetic study |
Biofuels |
1-14 |
2025 |
SCIE/Scopus |
2.6 |
|
Dhiraj Kishor Tatar, Jay Mant Jha
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Utilization of synthesized copper oxide nanoparticles (CuO-NPs) in the spray impingement cooling of a hot steel plate |
Inorganic Chemistry Communications |
169, 113087 |
2024 |
SCI |
5.4 |
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DK Tatar, JM Jha
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Jet impingement quenching of a hot steel plate using a surfactant added CuO nanofluid
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Materials Letters |
372, 137085
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2024 |
SCIE/Scopus |
2.7 |
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Shantam Warkad, Jay Mant Jha, Iram Malik, Gaurav Saini, Gaurav Dwivedi, Sundarmurti Suresh |
Experimentation and cfd modeling of a single slope solar still
|
Journal of Enhanced Heat Transfer |
31, 39-61 |
2024 |
SCIE/Scopus |
1.5 |
|
Dhiraj Kishor |
Wet chemical synthesis and |
Journal of |
617 , 127305 |
2023 |
SCI |
2.0 |
|
Dhiraj Kishor |
Biosynthesis and characterization of |
Journal of |
605 , 127063 |
2023 |
SCI |
2.0 |
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J.M. Jha, S.V. |
Heat transfer from a hot moving steel |
Experimental |
30:6 , 500- |
2017 |
SCI |
2.9 |
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J .M. Jha, S.V. |
Jet impingement cooling of a hot |
Experimental |
29:5 , 615- |
2016 |
SCI |
2.9 |
|
J.M. Jha, S.V. |
Heat transfer from a hot moving steel |
Experimental |
29:1 , 78-96 |
2015 |
SCI |
2.9 |
|
J.M. Jha, S.V. |
Ultrafast cooling of a hot moving steel |
Applied |
75, 738- |
2015 |
SCI |
6.9 |
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J.M. Jha, S.V. |
Ultrafast cooling processes with |
Experimental |
68 , 135- |
2015 |
SCI |
3.3 |
|
Leena Kapoor, |
Biofuel production using fast pyrolysis |
International |
46 , 19278- |
2022 |
SCI |
4.2 |
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S. Suresh, |
Sonocatalytic removal of naphthalene |
Journal of |
71, 1002– |
2022 |
SCI |
1.328 |
|
Deen Dayal |
Waste seeds of Mangifera indica, |
Biomass |
5, 1-10 |
2022 |
SCI |
4.1 |
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Deen Dayal |
Sustainable removal of arsenic from |
Chemosphere |
287, 132308 |
2022 |
SCI |
8.1 |
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Preety Gupta, S |
Sonochemical degradation of |
Environmental |
19 , 2663– |
2021 |
SCI |
15 |
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N Anoop, |
Plasma catalysis: a feasible solution |
Clean |
23 , 2789– |
2021 |
SCI |
3.9 |
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Dan Bahadur |
Low-cost biochar adsorbents |
Bioresource |
339 , 125606 |
2021 |
SCI |
9.0 |
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Deen Dayal |
Java plum and amaltash seed |
Environmental |
280 , 116890 |
2021 |
SCI |
7.3 |
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Kumar Amit, |
Gas-liquid downward flow through |
International |
19, 655- |
2021 |
SCI |
1.4 |
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Ishita Sarkar, |
Application of binary mixed surfactant |
Heat Mass |
55, 3413– |
2019 |
SCI |
2.0 |
|
Ishita Sarkar, |
Ultrafast cooling of a hot steel plate |
International |
116, 52-62 |
2017 |
SCI |
5.0 |
|
Ishita Sarkar, |
Effect of polymer additive on the |
Experimental |
70, 105- |
2016 |
SCI |
3.3 |
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Satya V. |
Heat transfer enhancement using air |
International |
96 , 85-93 |
2015 |
SCI |
5.0 |
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Satya V. |
Surfactant-Based Cu–Water Nanofluid |
ASME. J. Heat |
137, 051504 |
2015 |
SCI |
1.8 |
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S. S. |
Effect of Oxide Layer in the Ultra Fast |
Experimental |
28:2, 156- |
2015 |
SCI |
2.9 |
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S. V. |
Ultrafast cooling of medium carbon |
Ironmaking & |
41:7, 529- |
2014 |
SCI |
2.2 |
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Satya V. |
Experimental Investigation of Effect of |
ASME. J. Heat |
136, 072102 |
2014 |
SCI |
1.8 |
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Soumya S |
Ultra fast cooling of hot steel plate by |
Heat Mass |
50, 587– |
2014 |
SCI |
2.0 |
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Satya V. |
Mixed-surfactant additives for |
Experimental |
55, 210- |
2014 |
SCI |
3.3 |
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Satya V. |
Experimental investigation of air |
International |
72, 362- |
2014 |
SCI |
5.8 |
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Satya V. |
Enhancement of heat transfer rate in |
Applied |
64, 64-75 |
2014 |
SCIE |
6.9 |
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S. S. |
Enhancement of Cooling Rate for a |
Experimental |
27:1, 72-90 |
2014 |
SCI |
2.9 |
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Satya V. |
Influence of Ultrafast Cooling on |
Steel research |
84, 1157- |
2013 |
SCI |
2.5 |
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Satya V |
Experimental study of the effect of |
Heat Mass |
49, 1509– |
2013 |
SCI |
2.0 |
|
Satya V. |
Achievement of ultrafast cooling rate |
Experimental |
50, 79-89 |
2013 |
SCI |
3.3 |
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Title |
Year |
Agency |
Co-Investigator(if any) |
Published/Granted |
