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A. Indra, Basu, S., Kulkarni, D. G., Gopinath, C. S., Bhaduri, S., and Lahiri, G. Kumar, MCM-41-supported ruthenium carbonyl cluster-derived catalysts for asymmetric hydrogenation reactions, Applied Catalysis A-General, vol. 344, no. 1-2, pp. 124-130, 2008.
S. Basu, Mapa, M., Gopinath, C. S., Doble, M., Bhaduri, S., and Lahiri, G. Kumar, MCM-41-supported platinum carbonyl cluster-derived catalysts for asymmetric and nonasymmetric hydrogenation reactions, Journal of Catalysis, vol. 239, no. 1, pp. 154-161, 2006.
S. Basu, Paul, H., Gopinath, C. S., Bhaduri, S., and Lahiri, G. Kumar, MCM-41-supported platinum carbonyl cluster-derived asymmetric hydrogenation catalyst, Journal of Catalysis, vol. 229, no. 2, pp. 298-302, 2005.
S. S. Sakate, Kamble, S. B., Chikate, R. C., and Rode, C. V., MCM-41-supported phosphotungstic acid-catalyzed cleavage of C-O bond in allyl aryl ethers, New Journal of Chemistry, vol. 41, no. 12, pp. 4943-4949, 2017.
N. Maity, Rajamohanan, P. R., Ganapathy, S., Gopinath, C. S., Bhaduri, S., and Lahiri, G. Kumar, MCM-41-supported organometallic-derived nanopalladium as a selective hydrogenation catalyst, Journal of Physical Chemistry C, vol. 112, no. 25, pp. 9428-9433, 2008.
A. Jha, Garade, A. C., Mirajkar, S. P., and Rode, C. V., MCM-41 supported phosphotungstic acid for the hydroxyalkylation of phenol to phenolphthalein, Industrial & Engineering Chemistry Research, vol. 51, no. 10, pp. 3916-3922, 2012.
A. Gupta, Nandanwar, S. U., Niphadkar, P., Simakova, I., and Bokade, V., Maximization of furanic compounds formation by dehydration and hydrogenation of xylose in one step over SO3-H functionalized H-beta catalyst in alcohol media, Biomass & Bioenergy, vol. 139, p. 105646, 2020.
A. A. Melvin, Illath, K., Das, T., Raja, T., Bhattacharyya, S., and Gopinath, C. S., M-Au/TiO2 (M = Ag, Pd, and Pt) nanophotocatalyst for overall solar water splitting: role of interfaces, Nanoscale, vol. 7, no. 32, pp. 13477-13488, 2015.
S. McNeil, Matter of Size, Scientist, vol. 28, pp. 24-25, 2014.
N. Bhattacharya, Singh, A., Ghanate, A., Phadke, G., Parmar, D., Dhaware, D. G., Basak, T., Sengupta, S., and Panchagnula, V., Matrix-assisted laser desorption/ionization mass spectrometry analysis of dimethyl arginine isomers from urine, Analytical Methods, vol. 6, no. 13, pp. 4602-4609, 2014.
D. Nyayanit and Gadgil, C. J., Mathematical modeling of combinatorial regulation suggests that apparent positive regulation of targets by miRNA could be an artifact resulting from competition for mRNA, RNA-A Publication of the RNA Society, vol. 21, no. 3, pp. 307-319, 2015.
M. M. Upkare, Rajurkar, K. B., Gupta, P. R., and Jaganathan, R., Mathematical modeling and simulation of bubble column reactor for aerial liquid phase cyclohexane oxidation, in International Conference on Modeling, Optimization, and Computing, 2 Huntington Quadrangle, STE 1no1, Melville, NY 11747-4501 USA, 2010, vol. 1298, pp. 151-159.
A. Sreejan, Gadgil, M., and Gadgil, C. J., Mathematical model of the multi-amino acid multi-transporter system predicts uptake flux in CHO cells, Journal of Biotechnology, vol. 344, pp. 40-49, 2022.
S. Gokhale and Gadgil, C. J., Mathematical model identifies conditions for 'unexpected' increase in target protein levels due to miRNA regulation, Mol. BioSyst., vol. 8, no. 3, pp. 760-765, 2012.
G. Subramanian, Ranade, V., Nagarkar, S., and Lele, A. C., Matched asymptotic solution for flow in a semi-hyperbolic die, Chemical Engineering Science, vol. 60, no. 11, pp. 3107-3110, 2005.
A. A. Kulkarni, Mass transfer in bubble column reactors: effect of bubble size distribution, Industrial & Engineering Chemistry Research, vol. 46, no. 7, pp. 2205-2211, 2007.
A. Sharma, Julcour, C., Kelkar, A. A., Deshpande, R. Madhukar, and Delmas, H., Mass transfer and solubility of CO and H-2 in ionic liquid. case of [Bmim][PF6] with gas-inducing stirrer reactor, Industrial & Engineering Chemistry Research, vol. 48, no. 8, pp. 4075-4082, 2009.
M. C. Dange, Bhonsle, H. S., Godbole, R. K., More, S. K., Bane, S. M., Kulkarni, M. J., and Kalraiya, R. D., Mass spectrometry based identification of galectin-3 interacting proteins potentially involved in lung melanoma metastasis, Molecular Biosystems, vol. 13, no. 11, pp. 2303-2309, 2017.
S. Gulam Dastager and Damare, S., Marine actinobacteria showing phosphate-solubilizing efficiency in Chorao Island, Goa, India, Current Microbiology, vol. 66, no. 5, pp. 421-427, 2013.
L. K. Preethi, Mathews, T., Walczak, L., and Gopinath, C. S., Marginally hydrogenated triphasic titania nanotubes for effective visible-light photocatalytic hydrogen generation, Energy Technology, vol. 6, no. 2, pp. 280-288, 2018.
K. Prabhakar Reddy, Mhamane, N. B., Ghosalya, M. Kumar, and Gopinath, C. S., Mapping valence band and interface electronic structure changes during the oxidation of Mo to MoO3 via MoO2 and MoO3 reduction to MoO2: A NAPPES study, Journal of Physical Chemistry C, vol. 122, no. 40, pp. 23034-23044, 2018.
R. Kumthekar, Rana, S., Ughade, S., and Bhambure, R., Mapping time dependent disulfide bond formation during in-vitro refolding of recombinant peptibody: a Fc-fusion protein, Biochemical Engineering Journal, vol. 197, p. 108969, 2023.
A. H. Maneri, Singh, C. Pratap, Kumar, R., Maibam, A., and Krishnamurty, S., Mapping the finite-temperature behavior of conformations to their potential energy barriers: case studies on Si6B and Si5B clusters, ACS Omega, vol. 7, no. 7, pp. 6167-6173, 2022.
A. J. Hussain, Ali, J., Siddiq, E. A., Gupta, V. S., Reddy, U. K., and Ranjekar, P. K., Mapping of tms8 gene for temperature-sensitive genic male sterility (TGMS) in rice (Oryza sativa L.), Plant Breeding, vol. 131, no. 1, pp. 42-47, 2012.
S. J. M. Gowda, Radhika, P., Mhase, L. B., Jamadagni, B. M., Gupta, V. S., and Kadoo, N. Y., Mapping of QTLs governing agronomic and yield traits in chickpea, Journal of Applied Genetics, vol. 52, no. 1, pp. 9-21, 2011.
N. A. Mali and Bhagwat, S. S., Mapping of optimum operating condition for LiBr-water refrigeration cycles, Sadhana: Academy Proceedings in Engineering Sciences, vol. 42 , no. 2, pp. 257-269, 2017.
J. Kowalska and Gopinath, C. S., Mapping of copper oxidation state using high pressure x-ray photoelectron spectroscopy, Acta Physica Polonica A, vol. 125, no. 4, pp. 1065-1066, 2014.
S. S. Patil, Venugopal, E., Bhat, S. K., Mahadik, K. R., and Paradkar, A. R., Mapping ion-induced mesophasic transformation in lyotropic in situ gelling system and its correlation with pharmaceutical performance, Pharmaceutical Research, vol. 30, no. 7, pp. 1906-1914, 2013.
R. Patil, Torris, A., Bhat, S., and Patil, S., Mapping fusogenicity of ciprofloxacin-loaded liposomes with bacterial cells, AAPS Pharmscitech, vol. 20, no. 5, p. 180, 2019.
A. Singh, Gotherwal, V., Junni, P., Vijayan, V., Tiwari, M., Ganju, P., Kumar, A., Sharma, P., Fatima, T., Gupta, A., Holla, A., Kar, H. K., Khanna, S., Thukral, L., Malik, G., Natarajan, K., Gadgil, C. J., Lahesmaa, R., Natarajan, V. T., Rani, R., and Gokhale, R. S., Mapping architectural and transcriptional alterations in non-lesional and lesional epidermis in vitiligo, Scientific Reports, vol. 7, no. Article Number: 9860, 2017.
D. S. Sidhaye and Prasad, B. L. V., Many manifestations of digestive ripening: monodispersity, superlattices and nanomachining, New Journal of Chemistry, vol. 35, no. 4, pp. 755-763, 2011.
M. K. Dongare, Chandorkar, J. G., and Rode, C. V., Manufacturing of tinidazole by recovering and recycling catalyst, Asian Journal of Chemistry, vol. 20, no. 4, pp. 3289-3291, 2008.
A. Khan, Bhide, A. J., and Gadre, R. V., Mannitol production from glycerol by resting cells of Candida magnoliae, Bioresource Technology, vol. 100, no. 20, pp. 4911-4913, 2009.
D. Phase, Choudhary, R. Janay, Ganesan, V., V. Reddy, R., Gupta, A., Selvi, N., Kulkarni, S., and Ogale, S., Manipulation of magnetic nanostructures through low temperature metal-oxygen chemistry: Co/CoO exchange biased nanodonuts and Co nanotips, Solid State Communications, vol. 149, no. 7-8, pp. 277-280, 2009.
P. R. Patel, Pandey, K., Killi, N., and Gundloori, R. Venkata Na, Manipulating hydrophobicity of polyester nanofiber mats with egg albumin to enhance cell interactions, Polymer Engineering and Science, vol. 61, no. 10, pp. 2496-2510, 2021.
A. Mondal, Subaramanian, M., Avanashiappan, N., and Balaraman, K., Manganese-catalyzed direct conversion of ester to amide with liberation of H 2, Organic Letters, vol. 20, no. 11, pp. 3381-3384, 2018.
J. Rana, Gupta, V., and Balaraman, E., Manganese-catalyzed direct C-C coupling of -C-H bonds of amides and esters with alcohols via hydrogen autotransfer, Dalton Transactions, vol. 48, no. 21, pp. 7094-7099, 2019.
S. K. Verma and Punji, B., Manganese-catalyzed C(sp(2))-H alkylation of indolines and arenes with unactivated alkyl bromides, Chemistry-an Asian Journal, vol. 17, no. 9, p. e202200103, 2022.
V. Yadav, Landge, V. G., Subaramanian, M., and Balaraman, E., Manganese-catalyzed alpha-olefination of nitriles with secondary alcohols, ACS Catalysis, vol. 10, no. 2, pp. 947-954, 2020.
T. Surve and Gadgil, M., Manganese increases high mannose glycoform on monoclonal antibody expressed in cho when glucose is absent or limiting: implications for use of alternate sugars, Biotechnology Progress, vol. 31, no. 2, pp. 460-467, 2015.
S. D. Nale, Manganese incorporated on glucose as an efficient catalyst for the synthesis of adipic acid using molecular O2 in aqueous medium, Applied Catalysis A: General, vol. 546, pp. 122-125, 2017.
V. G. Landge, Mondal, A., Kumar, V., Nandakumar, A., and Balaraman, E., Manganese catalyzed N-alkylation of anilines with alcohols: ligand enabled selectivity, Organic and biomolecular chemistry , vol. 16, no. 43, pp. 8175-8180, 2018.
V. K. Shinde and Vamkudoth, K. Rao, Maltooligosaccharide forming amylases and their applications in food and pharma industry, Journal of Food Science and Technology-Mysore, vol. 59, no. 10, pp. 3733-3744, 2022.
P. Shankar, Kulkarni, V. M., and Kumar, L. Sunil, Male biased gene flow in banana pseudostem weevil (Odoiporus longicollis Oliver) as revealed by analysis of the COI-tRNA(Leu) COII region, Genetica, vol. 143, no. 1, pp. 85-92, 2015.
S. Kyung Yang, Ambade, A. V., and Weck, M., Main-chain supramolecular block copolymers, Chemical Society Reviews, vol. 40, no. 1, pp. 129-137, 2011.
T. Ranganathan, Gowd, E. B., Ramesh, C., and Kumar, A., Main chain thermotropic liquid crystalline polyurethanes containing biphenyl mesogens based on novel AB-type self-polycondensation route: FT-IR and XRD studies, Journal of Polymer Science Part A-Polymer Chemistry, vol. 43, no. 9, pp. 1903-1912, 2005.
S. D. Bhame, Bhapkar, A., Shirolkar, M. M., and Joy, P. A., Magnetostriction studies on transition metal substituted cobalt ferrite, Journal of the Indian Chemical Society, vol. 99, no. 8, p. 100599, 2022.
S. D. Bhame and Joy, P. Alias, Magnetoelastic properties of terbium substituted cobalt ferrite, Chemical Physics Letters, vol. 685, pp. 465-469, 2017.
L. Ravichandran, Vaval, N., and Pal, S., Magnetizability of doublet radicals using fock space multi-reference coupled cluster method, International Journal of Quantum Chemistry, vol. 109, no. 10, pp. 2191-2198, 2009.
A. Kale, Kale, S., Yadav, P., Gholap, H., Pasricha, R., Jog, J. Prakash, Lefez, B., Hannoyer, B., Shastry, P., and Ogale, S. B., Magnetite/CdTe magnetic-fluorescent composite nanosystem for magnetic separation and bio-imaging, Nanotechnology, vol. 22, no. 22, p. Article No. 225101, 2011.
G. K. Raj and Joy, P. Alias, Magnetism in disordered carbon as a function of the extent of graphitization, Solid State Communications, vol. 177, pp. 89-94, 2014.
K. Gupta, Dadwal, A., Joy, P., and Ballav, N., Magnetism in bimetallic NiII-CoII coordination polymer, AIP Conference Proceedings, vol. 2265. American Institute of Physics Inc., 2020.
S. Vinayasree, Nitha, T. S., Tiwary, C. S., Ajayan, P. M., Joy, P. A., and Anantharaman, M. R., Magnetically tunable liquid dielectric with giant dielectric permittivity based on core-shell superparamagnetic iron oxide, Nanotechnology, vol. 29, no. 26, p. Article Number: 265707, 2018.
A. Jha, Patil, C. R., Garade, A. C., and Rode, C. V., Magnetically separable single-site Ti-Fe3O4@MCM-41 catalyst for selective epoxidation of olefins, Industrial & Engineering Chemistry Research, vol. 52, no. 29, pp. 9803-9811, 2013.
K. Tarade, Shinde, S., and Rode, C., Magnetically separable catalyst for condensation of renewable aldehydes and 2-methylfuran to saturated cyclic oxygenates, Fuel Processing Technology, vol. 197, p. 106191, 2020.
P. Poddar, Srinath, S., Gass, J., Prasad, B. L. V., and Srikanth, H., Magnetic transition and large magnetocaloric effect associated with surface spin disorder in Co and CocoreAgshell nanoparticles, Journal of Physical Chemistry C, vol. 111, no. 38, pp. 14060-14066, 2007.
M. V. Limaye, Magnetic studies of SiO2 coated CoFe2O4 nanoparticles, Journal of Magnetism and Magnetic Materials, vol. 441, pp. 683-690, 2017.
F. Halouane, Oz, Y., Meziane, D., Barras, A., Juraszek, J., Singh, S. K., Kurungot, S., Shaw, P. K., Sanyal, R., Boukherroub, R., Sanyal, A., and Szunerits, S., Magnetic reduced graphene oxide loaded hydrogels: highly versatile and efficient adsorbents for dyes and selective Cr(VI) ions removal, Journal of Colloid and Interface Science, vol. 507, pp. 360-369, 2017.
A. B. Nawale, Kanhe, N. S., Patil, K. R., Bhoraskar, S. V., Mathe, V. L., and Das, A. K., Magnetic properties of thermal plasma synthesized nanocrystalline nickel ferrite (NiFe2O4), Journal of Alloys and Compounds, vol. 509, no. 12, pp. 4404-4413, 2011.
C. R. Sankar and Joy, P. Alias, Magnetic properties of the self-doped lanthanum manganites La1-xMnO3, Physical Review B, vol. 72, no. 2, p. 024405, 2005.
S. Mohan and Joy, P. A., Magnetic properties of sintered CoFe2O4-BaTiO3 particulate magnetoelectric composites, Ceramics International, vol. 45, no. 9, pp. 12307-12311, 2019.
S. A. Ghodake, Ghodake, U. R., Sawant, S. R., Suryavanshi, S. S., and Bakare, P. P., Magnetic properties of NiCuZn ferrites synthesized by oxalate precursor method, Journal of Magnetism and Magnetic Materials, vol. 305, no. 1, pp. 110-119, 2006.
Y. B. Khollam, Dhage, S. R., Verma, S., Potdar, H. S., Deshpande, S. B., Joy, P. Alias, and Date, S. K., Magnetic properties of nanosized ferrite powders synthesized by microwave-hydrothermal method, in Ninth International Conference on Ferrites (ICF-9), San Francisco, CA, 2005, pp. 143-148.
A. B. Nawale, Kanhe, N. S., Patil, K. R., Reddy, V. R., Gupta, A., Kale, B. B., Bhoraskar, S. V., Mathe, V. L., and Das, A. K., Magnetic properties of nanocrystalline CoFe2O4 synthesized by thermal plasma in large scale, Materials Chemistry and Physics, vol. 137, no. 2, pp. 586-595, 2012.
S. B. Zaware, Dagade-Waghmode, S., Gonnade, R. G., Srinivas, D., and Rane, S. Y., Magnetic phase transition in valence tautomers as polymorphs of 3-iodolawsone: Single crystal X-ray structure, DSC and EPR studies, Journal of Molecular Structure, vol. 938, no. 1-3, pp. 328-335, 2009.
H. M. Shashanka, Anantharamaiah, P. N., and Joy, P. A., Magnetic parameters of SrFe12O19 sintered from a mixture of nanocrystalline and micron-sized powders, Ceramics International, vol. 45, no. 10, pp. 13592-13596, 2019.
M. Abdul E. Jamal, Joy, P. Alias, Kurian, P., and Anantharaman, M. R., On the magnetic, mechanical and rheological properties of rubber-nickel nanocomposites, Polymer Bulletin, vol. 64, no. 9, pp. 907-923, 2010.
P. P. Hankare, Patil, R. P., Sankpal, U. B., Garadkar, K. M., Sasikala, R., Tripathi, A. K., and Mulla, I. S., Magnetic, dielectric and complex impedance spectroscopic studies of nanocrystalline Cr substituted Li-ferrite, Journal of Magnetism and Magnetic Materials, vol. 322, no. 18, pp. 2629-2633, 2010.
S. Vijayanand, Mahajan, M. B., Potdar, H. S., and Joy, P. Alias, Magnetic characteristics of nanocrystalline multiferroic BiFeO3 at low temperatures, Physical Review B, vol. 80, no. 6, p. 064423, 2009.
M. A. Soloman, Kurian, P., Anantharaman, M. R., and Joy, P. Alias, Magnetic and processability studies of nitrile rubber vulcanisates containing barium ferrite and carbon black, Indian Journal of Chemical Technology, vol. 12, no. 5, pp. 582-587, 2005.
V. Sreeja, Vijayanand, S., Deka, S., and Joy, P. Alias, Magnetic and Mossbauer spectroscopic studies of NiZn ferrite nanoparticles synthesized by a combustion method, Hyperfine Interactions, vol. 183, no. 1-3, pp. 99-107, 2008.
P. N. Anantharamaiah and Joy, P. A., Magnetic and magnetostrictive properties of aluminium substituted cobalt ferrite synthesized by citrate-gel method, Journal Of Materials Science, vol. 50, no. 19, pp. 6510-6517, 2015.
N. Somaiah, Jayaraman, T. V., Joy, P. Alias, and Das, D., Magnetic and magnetoelastic properties of Zn-doped cobalt-ferrites-CoFe2-xZnxO4 (x=0, 0.1, 0.2, and 0.3), Journal of Magnetism and Magnetic Materials, vol. 324, no. 14, pp. 2286-2291, 2012.
S. D. Bhame, Shirolkar, M. M., and Joy, P. A., Magnetic and magnetoelastic properties of Ni-substituted cobalt ferrite, IEEE Magnetics Letters, vol. 12, p. 2504205, 2021.
M. Vats, Kumar, R., Sharma, J., and Luwang, M. Niraj, Magnetic and luminescent multifunctional nanohybrid: Fe3O4@CaF2:Tb3+: a facile synthesis and characterization, Indian Journal of Pure & Applied Physics, vol. 58, no. 1, pp. 31-35, 2020.
N. N. Reddy, Y. Mohan, M., Varaprasad, K., Ravindra, S., Joy, P. Alias, and K. Raju, M., Magnetic and electric responsive hydrogel-magnetic nanocomposites for drug-delivery application, Journal of Applied Polymer Science, vol. 122, no. 2, pp. 1364-1375, 2011.
M. Abdul E. Jamal, Joy, P. Alias, Kurian, P., and Anantharaman, M. R., On the magnetic and dielectric properties of nickel-neoprene nanoconaposites, Materials Chemistry and Physics, vol. 121, no. 1-2, pp. 154-160, 2010.
P. P. Hankare, Patil, R. P., Sankpal, U. B., Jadhav, S. D., Mulla, I. S., Jadhav, K. M., and Chougule, B. K., Magnetic and dielectric properties of nanophase manganese-substituted lithium ferrite, Journal of Magnetism and Magnetic Materials, vol. 321, no. 19, pp. 3270-3273, 2009.
A. Jaiswal, Das, R., Vivekanand, K., Maity, T., Abraham, P. Mary, Adyanthaya, S. D., and Poddar, P., Magnetic and dielectric properties and Raman spectroscopy of GdCrO3 nanoparticles, Journal of Applied Physics, vol. 107, no. 1, p. 013912, 2010.
D. M. Schaetzl, Li, P., Chaudhari, N., Bernstein, G. H., and Fullerton-Shirey, S. K., Magnetic alignment of gamma (core)-alpha (shell) Fe2O3 nanorods in a solid polymer electrolyte for Li-Ion batteries, Journal of Physical Chemistry C, vol. 118, no. 33, pp. 18836-18845, 2014.
V. R. Choudhary and Dumbre, D. K., Magnesium oxide supported nano-gold: a highly active catalyst for solvent-free oxidation of benzyl alcohol to benzaldehyde by TBHP, Catalysis Communications, vol. 10, no. 13, pp. 1738-1742, 2009.
P. M. More, Jagtap, N., Kulal, A. B., Dongare, M. K., and Umbarkar, S. B., Magnesia doped Ag/Al2O3 - sulfur tolerant catalyst for low temperature HC-SCR of NOx, Applied Catalysis B-Environmental, vol. 144, pp. 408-415, 2014.
N. S. Chaudhari, Warule, S. S., Muduli, S., Kale, B. B., Jouen, S., Lefez, B., Hannoyer, B., and Ogale, S. B., Maghemite (hematite) core (shell) nanorods via thermolysis of a molecular solid of Fe-complex, Dalton Transactions, vol. 40, no. 31, pp. 8003-8011, 2011.
R. Kushwaha, Jain, C., Shekhar, P., Rase, D., Illathvalappil, R., Mekan, D., Camellus, A., Vinod, C. Prabhakara, and Vaidhyanathan, R., Made to measure squaramide COF cathode for zinc dual-ion battery with enriched storage via redox electrolyte, Advanced Energy Materials, vol. 13, no. 34, 2023.
I. Bhushan, Parshad, R., Qazi, G. N., Ingavle, G. C., Jamalpure, T. M., Rajan, C. R., Ponrathnam, S., and Gupta, V. K., Macroporous beads for lipase immobilization: kinetic resolution of a racemic drug intermediate, Journal of Bioactive and Compatible Polymers, vol. 22, no. 2, pp. 174-194, 2007.
N. Choudhary, Kushwaha, O. Singh, Bhattacharjee, G., Chakrabarty, S., and Kumar, R., Macro and molecular level insights on gas hydrate growth in the presence of hofmeister salts, Industrial & Engineering Chemistry Research, vol. 59, no. 47, pp. 20591-20600, 2020.
P. Singh, Ujjainiya, R., Prakash, S., Naushin, S., Sardana, V., Bhatheja, N., Singh, A. Pratap, Barman, J., Kumar, K., Gayali, S., Khan, R., Rawat, B. Singh, Tallapaka, K. Bharadwaj, Anumalla, M., Lahiri, A., Kar, S., Bhosale, V., Srivastava, M., Mugale, M. Nilakanth, Pandey, C. P., Khan, S., Katiyar, S., Raj, D., Ishteyaque, S., Khanka, S., Rani, A., Promila,, Sharma, J., Seth, A., Dutta, M., Saurabh, N., Veerapandian, M., Venkatachalam, G., Bansal, D., Gupta, D., Halami, P. M., Peddha, M. Serva, Veeranna, R. P., Pal, A., Singh, R. Kumar, Anandasadagopan, S. Kumar, Karuppanan, P., Rahman, S. Nasar, Selvakumar, G., Venkatesan, S., Karmakar, M. Kumar, Sardana, H. Kumar, Kothari, A., Parihar, D. Singh, Thakur, A., Saifi, A., Gupta, N., Singh, Y., Reddu, R., Gautam, R., Mishra, A., Mishra, A., Gogeri, I., Rayasam, G., Padwad, Y., Patial, V., Hallan, V., Singh, D., Tirpude, N., Chakrabarti, P., Maity, S. Krishna, Ganguly, D., Sistla, R., Balthu, N. Kumar, Kumar, K. A., Ranjith, S., B. Kumar, V., Jamwal, P. Singh, Wali, A., Ahmed, S., Chouhan, R., Gandhi, S. G., Sharma, N., Rai, G., Irshad, F., Jamwal, V. Lakshmi, Paddar, M. Ahmad, Khan, S. Ullah, Malik, F., Ghosh, D., Thakkar, G., Barik, S. K., Tripathi, P., Satija, Y. Kumar, Mohanty, S., Khan, M. Tauseef, Subudhi, U., Sen, P., Kumar, R., Bhardwaj, A., Gupta, P., Sharma, D., Tuli, A., Chaudhuri, S. Ray, Krishnamurthi, S., Prakash, L., V. Rao, C., Singh, B. N., Chaurasiya, A., Chaurasiya, M., Bhadange, M., Likhitkar, B., Mohite, S., Patil, Y., Kulkarni, M., Joshi, R., Pandya, V., Mahajan, S., Patil, A., Samson, R., Vare, T., Dharne, M., Giri, A., Mahajan, S., Paranjape, S., G. Sastry, N., Kalita, J., Phukan, T., Manna, P., Romi, W., Bharali, P., Ozah, D., Sahu, R. K., Dutta, P., Singh, M. Goutam, Gogoi, G., Tapadar, Y. Begam, Babu, E. V. S. S. K., Sukumaran, R. K., Nair, A. R., Puthiyamadam, A., Valappil, P. Kooloth, Prasannakumari, A. Velayudhan, Chodankar, K., Damare, S., Agrawal, V. Varun, Chaudhary, K., Agrawal, A., Sengupta, S., and Dash, D., Machine learning-based approach to determine infection status in recipients of BBV152 (Covaxin) whole-virion inactivated SARS-CoV-2 vaccine for serological surveys, Computers in Biology and Medicine, vol. 146, p. 105419, 2022.
S. Bose, Dhawan, D., Nandi, S., Sarkar, R. Rup, and Ghosh, D., Machine learning prediction of interaction energies in rigid water clusters, Physical Chemistry Chemical Physics , vol. 20, no. 35, pp. 22987-22996, 2018.
M. Karthikeyan and Vyas, R., Machine learning methods in chemoinformatics for drug discovery, in Practical Chemoinformatics, Springer, 2014, pp. 133-194.
N. K. Gaur, Goyal, V. Durani, Kulkarni, K., and Makde, R. D., Machine learning classifiers aid virtual screening for efficient design of mini-protein therapeutics, Bioorganic & Medicinal Chemistry Letters, vol. 38, p. 127852, 2021.
M. S. Shashidhar and Periasamy, M., M. V. Bhatt (1924-2016), Current Science, vol. 110, no. 10, pp. 2026-2028, 2016.
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