Journal Articles

4931)    Gawhane, R.D., Rao, P.S.P., Budhavant, K.B., Waghmare, V., Meshram, D.C., Safai, P.D. (2017). Seasonal variation of chemical composition and source apportionment of PM2.5 in Pune, India. Environmental Science and Pollution Research, 24 (26), 21065-21072. Google Scholar Citations: 7, WoS Citations: 20, ISSN(print/online): 0944-1344/1614-7499, URL/DOI: http://dx.doi.org/10.1007/s11356-017-9761-3
4932)    Sangode, S.J., Meshram, D.C., Rawat, S., Suresh, N., Srivastava, P. (2017). Sedimentary and Geomorphic observations along Pangong Strand of the Karakorum fault (NW Himalaya) depicting Holocene Uplift. Himalayan Geology, 38 (2), 111-128. Google Scholar Citations: 2, WoS Citations: 3, ISSN(print/online): 0971-8966, URL/DOI: https://www.researchgate.net/profile/Priyeshu_Srivastava/publication/319526122_Sedimentary_and_Geomorphic_observations_along_Pangong_strand_of_the_Karakorum_fault_NW_Himalaya_depicting_Holocene_Uplift/links/59b0e518458515a5b48726c6/Sedimentary-and-Geomorphic-observations-along-Pangong-strand-of-the-Karakorum-fault-NW-Himalaya-depicting-Holocene-Uplift.pdf
4933)    Sangode, S.J., Meshram, D.C., Rawat, S., Kulkarni, Y., Chate, D.M., Gudadhe, S.S (2017). Sedimentary and Geomorphic Signatures of a Cloud burst and triggered flash floods in the Indus valley of Ladakh Himalaya. Himalayan Geology, 38 (1), 12-29. Google Scholar Citations: 1, WoS Citations: 2, ISSN(print/online): 0971-8966, URL/DOI: https://d1wqtxts1xzle7.cloudfront.net/55441603/Cloud_burst_Himgeo38-1-2017-with-cover-page-v2.pdf?Expires=1664353725&Signature=HBdtGyC1O5QuGq5W1MiITh37hNx4WoMsu2wXC2We9GfngKXLD48iLzAQnvney6Xn-NLBA44nB5Whpmm8FiOMRmZNveT35WN65Y96ReN1~KvchYYCZY65sXk~SSARePJA0MEr1NoYqe9TccTMrFqm2LiLPq12OCRpEuSTi6rh5kauqoHGr5v12ZB-aTH9~zQ6djiSWu2sUrpRdFtzTHuX8fIrw5oKXRtoka-ogSGdlQcP1RrTy0JrxIaxK00YgSNbIwMeD7jalcDqipPkj~Vkh~kR34xpLYrk1ABDsVZ~JwCmiU9pFpMaJK~MxgBcMf7teWIVwphLvmhl3GAM-JfwnQ__&Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA
4934)    Hamza, F., Vaidya, A., Apte, M., Kumar, A.R., Zinjarde, S. (2017). Selenium nanoparticle-enriched biomass of Yarrowia lipolytica enhances growth and survival of Artemia salina. Enzyme and Microbial Technology, 106, 48-54. Google Scholar Citations: 30, WoS Citations: 21, ISSN(print/online): 0141-0229/1879-0909, URL/DOI: http://dx.doi.org/10.1016/j.enzmictec.2017.07.002
4935)    Burade, S.S., Saha, T., Bhuma, N., Kumbhar, N., Kotmale, A., Rajamohanan, P.R., Gonnade, R.G., Talukdar, P., Dhavale, D.D. (2017). Self-Assembly of Fluorinated Sugar Amino Acid Derived α,γ-Cyclic Peptides into Transmembrane Anion Transport. Organic Letters, 19 (21), 5948-5951. WoS Citations: 21, ISSN(print/online): 1523-7060/1523-7052, URL/DOI: http://dx.doi.org/10.1021/acs.orglett.7b02942
4936)    Shinde, V.R., Warkhede, P.S. (2017). Self-concept among students of informal and formal educational system. International Journal of Indian Psychology, 4, 75-80. ISSN(print/online): 2349-3429/2348-5396, URL/DOI: http://www.ijip.in/Archive/v4i3/18.01.308.20170403.pdf
4937)    Ebrahim, A., Gharpure, D.C. (2017). Self-Organizing Map based Extended Fuzzy C-Means (SEEFC)algorithm for image segmentation. Applied Soft Computing, 54, 347–363. WoS Citations: 25, ISSN(print/online): 1568-4946/1872-9681, URL/DOI: http://dx.doi.org/10.1016/j.asoc.2017.01.003
4938)    Hanagal, D.D., Pandey, A., Sankaran, P.G. (2017). Shared frailty model based on reversed hazard rate for left censored data. Communications in Statistics-Simulation and Computation, 46 (1), 230-243. Google Scholar Citations: 3, WoS Citations: 7, ISSN(print/online): 0361-0918/1532-4141, URL/DOI: http://dx.doi.org/10.1080/03610918.2014.960092
4939)    Hanagal, D.D., Pandey, A. (2017). Shared Frailty Models Based on Reversed Hazard Rate for Modified Inverse Weibull Distribution as Baseline Distribution. Communications in Statistics-Theory and Methods, 46 (1), 234-246. Google Scholar Citations: 1, WoS Citations: 6, ISSN(print/online): 0361-0926/1532-415X, URL/DOI: http://dx.doi.org/10.1080/03610926.2014.990102
4940)    Hanagal, D.D., Bhambure, S.M. (2017). Shared Gamma Frailty Models Based on Reversed Hazard Rate for Modeling Australian Twin Data. Communications in Statistics-Theory and Methods, 46 (12), 5812-5826. Google Scholar Citations: 2, WoS Citations: 6, ISSN(print/online): 0361-0926/1532-415X, URL/DOI: http://dx.doi.org/10.1080/03610926.2015.1116581