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1

Chryssides, George. "Sacred Biography in the Buddhist Traditions of South and Southeast Asia. Edited by Juliane Schober." Buddhist Studies Review 21, no. 1 (2004): 89–91. http://dx.doi.org/10.1558/bsrv.v21i1.14252.

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Sacred Biography in the Buddhist Traditions of South and Southeast Asia. Edited by Juliane Schober. University of Hawai'i Press, Honolulu 1997. xi, 366 pp. ISBN 0-8248-1699-4; Motilal Banarsidass, Delhi 2002. Rs 495. ISBN 81-208-1812-1.
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2

Badmaev, V. N. "BUDDOLOGICAL STUDIES AT KALMYK STATE UNIVERSITY." BUDDHIST STUDIES 1, no. 8 (2024): 24–35. https://doi.org/10.30792/2949-5768-2024-8-24-35.

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The paper examines the main areas of Buddhist studies at the Department of Philosophy and Cultural Studies of Kalmyk State University. Particular attention is paid to the results of scientific projects implemented by the department’s staff.
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3

J., C.TREHAN, R.K.SHARMA, KUMAR N., P. SHARMA C., S. GARG B. та P. SINGH R. "Spectroscopic Studies of some New Diorganotin(IV)- β-diketonate Complexes". Journal of Indian Chemical Society Vol. 62, Oct 1985 (1985): 777–78. https://doi.org/10.5281/zenodo.6324692.

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National Physical Laboratory, Hillside Road, New Delhi-110 012 Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 26 June 1984, revised 30&nbsp;April 1985, accepted 29 October 1985</em> Spectroscopic Studies of some New Diorganotin(IV)- <em>&beta;</em>-diketonate Complexes &nbsp;
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4

Anup, Banerjee, and Banerjee Keya. "Studies on non-traditional seed oil of Boswellia serrata." Journal of Indian Chemical Society Vol. 86, Mar 2009 (2009): 296–97. https://doi.org/10.5281/zenodo.5808904.

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Department of Chemistry, Dr. H. S. Gour University, Sagar-470 003, Madhya Pradesh, India Chemistry Department, Gargi College, Delhi University (South Campus), New Delhi-110 049, India&nbsp; <em>Manuscript received 23 April 2008, revised 9 September 2008, accepted 12 November 2008</em> The saponifiable part of the seed oil apart from usual fatty acids, contained two unusual fatty acids - which have been identified as methyl hexadecanoic (1) and octa decadienoic (2) acids, on the basis of mass spectral study of their piconyl ester derivatives. The unsaponifiable part contained stigmastadiene.
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5

SATYA, PAL SINGH, K. BHOON Y., B. PANDEYA K., and P. SINGH R. "Studies on Some Polydentate Ligands-II." Journal of Indian Chemical Society Vol. 62, Feb 1985 (1985): 93–95. https://doi.org/10.5281/zenodo.6302554.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 30 May 1983, revised 18 September 1983, accepted 18 January 1985</em> Copper(II), cobalt(II) and nickel(II) complexes of two newly synthesised sexa&shy;dentate ligands have been prepared and characterised by magnetic susceptibility, ir and electronic spectral measurements.
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6

Anup, Banerjee, and Banerjee Keya. "Studies on Phyllantus emblica seed oil." Journal of Indian Chemical Society Vol. 86, Mar 2009 (2009): 293–95. https://doi.org/10.5281/zenodo.5808889.

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Department of Chemistry, Dr. H. S. Gour University, Sagar-470 003, Madhya Pradesh, India Chemistry Department, Gargi College, Delhi University (South Campus), New Delhi-110 049, India <em>Manuscript received 23 April 2008, revised 9 September 2008, accepted 12 November 2008</em> GLC has been used to determine the fatty acid profile. The oils due to its saturated/unsaturated fatty acids combine and nutritional properties, have been tried for its possible utility in confectionary (chocolate making) as an alternative to traditional cocoa fat. <sup>13</sup>C&nbsp;NMR has been used to evaluate the
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7

RAKESH, KUMAR SHARMA, JOSEPH SHERLY, and KIDWAI M. "Metal Ion-Nalidixic Acid Antibiotic Interaction : Formation Constants, Molecular Modelling and pH Metric Studies." Journal of Indian Chemical Society Vol. 75, Feb 1998 (1998): 93–94. https://doi.org/10.5281/zenodo.5915338.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 6 November 1995, revised 31 December 1996, accepted 8 February 1997</em> Metal Ion-Nalidixic Acid Antibiotic Interaction : Formation Constants, Molecular Modelling and pH Metric Studies.
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8

Ishwar, Das, Sewak Mishra Shio, P. Rastogi R., Sharma Archana, and Shukla Saroj. "Non-equilibrium growth patterns and kinetic studies during electrodeposition of metals from CuSO4-ZnSO4 solutions." Journal of Indian Chemical Society Vol. 78, Sep 2001 (2001): 460–63. https://doi.org/10.5281/zenodo.5912777.

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Department of Chemistry, DDU Gorakhpur University. Gorakhpur-273 009, India <em>Fax: 91-0551-342880</em> Department of Chemistry, Lucknow University, Lucknow-226 001, India NISCOM, Dr. K. S. Krishnan Marg, New Delhi-110 012. India University Science &amp; Instrumentation Centre, Delhi University, Delhi-110 007, India <em>Manuscript&nbsp;received 24 March 2000. revised 8 March 2001. accepted 22 March 2001</em> 2D Electrodeposits from aqueous solutions of copper sulfate, zinc sulfate and mixture of copper sulfate-zinc sulfate in different proportions and experimental conditions have been investi
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9

Shallu, Sachdeva, Nandan Kumar Deo, K. Sharma R., and S. Garg Bhagwan. "Chemical speciation and computer modelling studies on interaction of an antioxidant 7 ,8-dihydroxy-4-methylcoumarin with bivalent metal ions." Journal of Indian Chemical Society Vol. 83, Apr 2006 (2006): 356–60. https://doi.org/10.5281/zenodo.5836028.

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Department of Chemistry, Acharya Narendra Dev College, University of Delhi, Delhi-110 007, India Department of Chemistry, University of Delhi, Delhi-110 007, India E-mail : deonandan2002@yahoo.co.in <em>Manuscript received 16 May 2005, revised 28 October 2005, accepted 3 January 2006</em> The stability constants of bivalent metal complexes with 7,8-dihydroxy-4-methylcoumarin, an antioxidant are reported. The variation of stability constant with different ionic strengths,temperatures&nbsp;percentage of solvents,dielectric constants have been studied by potentiometric estimation of H<sup>+</sup>
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10

G., S. SODHI. "Fluorescence Studies on some Bimetallic Tetradithiocarbamate Complexes." Journal of Indian Chemical Society Vol. 68, Apr 1991 (1991): 236–37. https://doi.org/10.5281/zenodo.6135762.

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Department of Chemistry. S.G.T.B. Khalsa College, University of Delhi, Delhi-110 007 <em>Manuscript received 16 August 1989,&nbsp;revised 1 February 1991,&nbsp; accepted 8 April 1991</em> FLUORESCENCE<strong>&nbsp;</strong>studies on some bimetallic tetra&shy;dithiocarbamate complexes<sup>1</sup>&nbsp;of the type MCuL4 (M=Zn<sup>II</sup>, Cd<sup>II</sup>, Hg<sup>II</sup> ; L=N-ethyl cyclohexyldithio-carbamate) have been carried out. A number of photochemical parameters have been elucidated.
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11

CHANDRA, HAS, S. SAHARIA G., SHARMA D.P., and R. SHARMA H. "Studies in Heterocyclic Compounds. Part-XLII. Synthesis and Antibacterial Activity of some New 1,3-Diaryl-2-(arylazo)propan-1,3-diones." Journal of Indian Chemical Society Vol. 73, Nov 1996 (1996): 614–15. https://doi.org/10.5281/zenodo.5918188.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 18 December 1992. revised 19 December 1994, accepted 8 March 1995</em> Studies in Heterocyclic Compounds. Part-XLII. Synthesis and Antibacterial Activity of some New 1,3-Diaryl-2-(arylazo)propan-1,3-diones. &nbsp;
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12

SAHADBV., R. K. SHARMA, and K. SINDHWANI S. "Potentiometric Studies on Complexation Equilibria between some Transition Metal Ions and 2-Hydroxy-1-naphthaldehyde Thiosemicarbazone in Dioxane -Water Medium." Journal of Indian Chemical Society Vol. 70, Jan 1993 (1993): 68–70. https://doi.org/10.5281/zenodo.6032020.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received&nbsp;26 August 1991, revised&nbsp;13&nbsp;October&nbsp;1992, accepted&nbsp;5 November&nbsp;1993</em> Potentiometric Studies on Complexation Equilibria between some Transition Metal Ions and 2-Hydroxy-1-naphthaldehyde Thiosemicarbazone in Dioxane -Water Medium
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13

VIRINDER, S. PARMAR, KUMAR AJAY, K. PRASAD ASHOK, et al. "Novel Enzymatic De-esterification Studies on Substituted Polyacetoxybenzamides." Journal of Indian Chemical Society Vol. 75, Oct-Dec 1998 (1998): 810–22. https://doi.org/10.5281/zenodo.5923677.

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Department of Chemistry, University of Delhi, Delhi-110 007 Chemistry Department, Royal Veterinary and Agricultural University, DK-1871 Frederiksberg C, Copenhagen, Denmark <em>Manuscript received 7 October 1998</em> The regioselective capabilities of porcine pancreatic lipase in tetrahydrofuran and <em>Candida rugosa </em>lipase in diisopropyl ether have been investigated for selective deacetylation of peracetates of primary,<em> </em>secondary and tertiary amides of 2-hydroxy-, 2,4-dihydroxy-, 2,5&shy;dihydroxy-, 3,5-dihydroxy- and 3,4,5-trihydroxybenzoic acids. The lipases exhibit random se
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14

Bhattacharyya, Rituparna. "Life Under Lockdown: Lived Experiences and Lessons Learnt, Sanjai Bhatt, 2021, Papyrus Scrolls Publication, ISBN: 9788195385102 , INR 999, Ebook: $14.99." Space and Culture, India 9, no. 4 (2022): 43–50. http://dx.doi.org/10.20896/saci.v9i4.1234.

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This article is dedicated to doing a detailed review of the aforementioned book entitled Life Under Lockdown: Lived Experiences and Lessons Learnt by Professor Sanjai Bhatt, Department of Social Work, University of Delhi,3, University Road, Delhi 110007, India; Immediate Past President, National Association of Professional Social Workers in India; Immediate Past President,(South Asia), International Council on Social Welfare, Alliance Ambassador, GSSWA.
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15

BHAGWAN, S. GARG, JAYAPAL REDDY M, KUMAR VlNOD, and B. AGGARWAL MANJU. "Synthesis and Characterisation of some Transition Metal Complexes of N,N'-Bis(2-aminobenzoyl)ethylenediamine." Journal of Indian Chemical Society Vol. 70, Nov-Dec 1993 (1993): 1017–21. https://doi.org/10.5281/zenodo.5948719.

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Department of Chemistry, University of Delhi, Delhi-11 0 007 <em>Manuscript received 12 August 1993</em> Novel complexes of <em>N,N&#39;</em>-bis(2-aminobenzoyl)ethylenediamine with some bivalent and trivalent transition metal ions have been synthesised. All the compounds have been characterised using elemental analysis, magnetic, ir, electronic and epr spectral studies.
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16

HANS, RAJ SlNGH, L. MAURY P., and V. AGARWALA B. "Oxobridged Dimeric Complexes of Hydrazones." Journal of Indian Chemical Society Vol. 69, Dec 1992 (1992): 858–60. https://doi.org/10.5281/zenodo.6032838.

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Department of Chemistry, N. S. College, Chakghat Indian Institute of Technology, New Delhi-110 016 Department of Post-graduate Studies and Research in Chemistry, R. D. University, Jabalpur-482 001 <em>Manuscript received 7 July 1984, revised 25 August 1992, accepted 25 August 1992</em> Oxobridged Dimeric Complexes of Hydrazones. &nbsp;
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17

HANS, RAJ SlNGH, L. MAURYA P., and V. AGARWALA B. "Oxobridged Dimeric Complexes of Hydrazones." Journal of Indian Chemical Society Vol. 69, Dec 1992 (1992): 858–60. https://doi.org/10.5281/zenodo.6118571.

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Department of Chemistry, N. S. College, Chakghat Indian Institute of Technology, New Delhi-110 016 Department of Post-graduate Studies and Research in Chemistry, R. D. University, Jabalpur-482 001 <em>Manuscript received 7 July 1984, revised 25 August 1992, accepted 25 August 1992</em> Oxobridged Dimeric Complexes of Hydrazones. &nbsp;
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18

Pramesh, N. Kapoor, K. Sharma Harish, K. Bhagi Ajay, and Sharma Malti. "Heterobimetallic mixed metal oxide (HMMO) nanoparticles and their applications." Journal of Indian Chemical Society Vol. 81, Apr 2004 (2004): 273–81. https://doi.org/10.5281/zenodo.5830673.

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Chemistry Department, Delhi University, Delhi-11 0 007, India 3 <em>E-mail:</em> prameshn@yahoo.com; pnkapoor@himalaya.du.ac.in Chemistry Department, Kurukshetra University, Kurukshetra-136 119, India The chemistry of HMMO (heterobimetallic mixed metal oxide) nanoparticles of the type ABO<sub>3</sub> (perovskite), ABO<sub>2</sub>O<sub>4</sub>&nbsp;(spinel and antispinel) and AB<sub>2</sub>O<sub>5</sub> (pseudobrookite) has been discussed. Their preparation by the sol-gel route using mixtures of alkoxides, heterobimetallic alkoxides and heterobimetallic-&micro;-oxo alkoxides are described. Phys
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19

Narendra, Nath Ghosh, Gupta Dipti, Chaudhary Jyoti, Chand Sulekh, K. Dass Sujata, and Chandra Ramesh. "Advances in the chemistry of thiazolidinediones as antidiabetic agents." Journal of Indian Chemical Society Vol. 80, Nov 2003 (2003): 1045–55. https://doi.org/10.5281/zenodo.5839802.

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Dr. B. R. Ambedkar Center for Biomedical Research, University of Delhi, Delhi-110 007, India <em>E-mail : </em>acbrdu@hotmail.com&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; <em>Fax : </em>91-11-27666248 Dr. Zakir Hussain College, University of Delhi, Delhi-110 002, India Department of Medicine, V. P. Chest Institute, University of Delhi, Delhi-10 007, India <em>Manuscript received 5 September 2003</em> Several thiazolidinedione classes of compounds (drugs) found to he very effective
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20

Pramesh, N. Kapoor, K. Sharma Harish, K. Bhagi Ajay, and Sharma Malti. "Heterobimetallic mixed metal oxide (HMMO) nanoparticles and their applications." Journal Of Indian Chemical Society Vol. 81, Apr 2004 (2004): 273–81. https://doi.org/10.5281/zenodo.5785916.

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chemistry Department, Delhi University, Delhi-11 0 007, India E-mail: prameshn@yahoo.com; pnkapoor@himalaya.du.ac.in Chemistry Department, Kurukshetra University, Kurukshetra-136 119, India The chemistry of <strong>HMMO</strong> (heterobimetallic mixed metal oxide) nanoparticles of the type <strong>ABO<sub>3</sub></strong> (perovskite), <strong>AB<sub>2</sub>O<sub>4</sub></strong> (spinel and antispinel) and <strong>AB<sub>2</sub>O</strong><sub><strong>5</strong> </sub>(pseudobrookite} has been discussed. Their preparation by the sol-gel route using mixtures of alkoxides, heterobimetallic alko
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21

R., K. GAUTAM, KANNAN S., S. SAHARIA G., and P. TYAGI M. "Studies in the Cyclo-octane Series. Part-IX. Friedel-Crafts Reaction of the Anhydride of 1-Carboxycyclo-octane1-acetic Acid with some Aromatic Substrates and Synthesis of 2,3-Benzo/ substituted-benzospiro[5,7 ]tridecanes." Journal of Indian Chemical Society Vol. 66, Dec 1989 (1989): 891–92. https://doi.org/10.5281/zenodo.6010577.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript received 4 May 1982 revised&nbsp;30 June&nbsp;1989, accepted 11 August&nbsp;1989</em> The Friedel-Crafts condensation of the anhydride of 1-carboxycyclooctane-1- acetic acid with a number of aromatic substrates gave the keto acids (1a &mdash; i) which, except 1f&nbsp;and 1i, on catalytic reduction yielded the respective reduced acids. These on cyclisation with PPA followed by<em> </em>Clemmensen reduction furnished the title hydrocarbons. &nbsp;
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22

J., Kaur, S. Marwaha S., and S. Sodhi G. "Organomercury(II)-dithiocarbamate complexes : synthesis, characterization and fungicidal activity." Journal of Indian Chemical Society Vol. 76, Apr 1999 (1999): 185–87. https://doi.org/10.5281/zenodo.5848132.

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college of Applied Sciences for Women (Delhi University), Jhilmil Colony, Vivek Vihar, Delhi-11 0 095, India Punjab State Council fo~ Science and Technology, Chandigarh-160 022, India Department of Chemistry, SGTB Khalsa College, University of Delhi, Delhi-11 0 007, India <em>Manuscript received 2 July 1998, revised 16 November 1998, accepted 8 December 1998</em> A number of organomercury(II)-dithiocarbamate complexes of the types, p-XC<sub>6</sub>H<sub>4</sub>HgL<sup>1</sup> (I) and p-XC<sub>6</sub>H<sub>4</sub>HgL<sup>2</sup><strong> </strong>(II), where X= Me, MeO, NO<sub>2</sub>; L<sup>1</
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23

Sulekh, Chandra, and Sangeetika. "EPR and electronic spectral studies on copper(II) complexes of some N-O donor ligands." Journal of Indian Chemical Society Vol. 81, Mar 2004 (2004): 203–6. https://doi.org/10.5281/zenodo.5830391.

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Department of Chemistry, Zakir Husain College (University of Delhi), J. L Nehru Marg, New Delhi-110 002, India <em>E-mail:</em> schandra_00@yahoo.com <em>Manuscript received 16 October 2001, revised 24 June 2003, accepted 12 September 2003</em> Complexes, [Cu(ligand-H)<sub>2</sub>] of copper(II) with bidentate nitrogen-oxygen donor ligands, viz. 2-hydroxynaphthaldehydeoxime[hnoH<sub>2</sub>], 2-hydroxyacetophenoneoxime [haOH<sub>2</sub>], salicyladoxime [saIH<sub>2</sub>] and 2-hydroxypropiophenoneoxime [hmpH<sub>2</sub>] hate. been prepared. The complexes have square-planar geometry. The effe
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24

Sulekh, Chandra, Jain Deepali, Sarkar Anjana, and Anupama. "Spectroscopic studies and characterization of Nill and Cull complexes with a nitrogen donor new azamacrocyclic ligand with pendent arms." Journal of Indian Chemical Society Vol. 86, Mar 2009 (2009): 220–24. https://doi.org/10.5281/zenodo.5808679.

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Department of Chemistry, Zakir Husain College (University of Delhi), JLN Marg, New Delhi-110 002, India <em>E-mail</em>: schandra_00@yahoo.com Department of Chemistry, D. N. College, Meerut, Uttar Pradesh. India <em>E-mail</em> : deepali 101@yahoo.com NSIT (University of Delhi), Sector-3, Dwarka, Uttar Pradesh, India <em>Manuscript received 17 June 2008. revised 23 September 2008, accepted 12 November 2008</em> The newly synthesised azamacrocyclic ligand L [2,6,12,16,21,22-hexaaza-3,4,5, 13,14, 15-hexamethyltricyclo- [15,3,1,1<sup>7-11</sup>]-docasa-1(2,10,2,5, 7,9,11(22),12,15, 17, 19-decene]
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25

Sulekh, Chandra, Shukla Deepak, and Kumar Gupta Lokesh. "Synthesis and spectroscopic studies of cobalt(II), nickel(II) and copper(II) complexes with N-donor (N4) macrocyclic ligand (DSLF)." Journal of Indian Chemical Society Vol. 85, Aug 2008 (2008): 800–806. https://doi.org/10.5281/zenodo.5819448.

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Department of Chemistry. Zakir Husain College (University of Delhi), JLN Marg, New Delhi-110 002, India <em>E-mail :</em> schandra _ 00@yahoo .com&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;Fax : 91-11-23215906 <em>Manuscript received 21 January 2008. revised 13 May 2008, accepted 16 May 2008</em> Complexes of Co<sup>II</sup> , Ni<sup>II</sup> and Cu<sup>ll</sup> containing a tetradentate macrocyclic nitrogen ligand have been prepared via template reaction of 2,3-pentanedione, <em>m</em>-phenylenediamine and transition metal ions. The complexes have been characterized on the basis of elemental an
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26

Podder, Saumak. "কলকাতা বিশ্ববিদ্যালয়ে পালি সাহিত‍্যচর্চা ও উদ‍্যোগী উপাচার্য স‍্যার আশুতোষ". International Journal of Science and Social Science Research 1, № 3 (2023): 45–50. https://doi.org/10.5281/zenodo.13511643.

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The &lsquo;Tiger of Bengal&rsquo; Sir Ashutosh Mukhopadhyay not only achieved fame as an educationist and jurist, but his unforgettable role in the spread and expansion of Buddhism in Bengal is wort mentioning in this context.Being associated with the Calcutta Mahabodhi Society of India and the Buddhist Dharmankur Sambha, Sir Ashutosh was one of the inevitable figures not only in organizational activities but also in mobilizing Buddhism and cultural activities among the masses. The paper discusses the unforgettable role of Buddhist monk Anagarika Dharmapala, Kripasaran Mahasthavir and most imp
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27

Podder, Saumak. "কলকাতা বিশ্ববিদ্যালয়ে পালি সাহিত‍্যচর্চা ও উদ‍্যোগী উপাচার্য স‍্যার আশুতোষ". International Journal of Science and Social Science Research 1, № 3 (2023): 45–50. https://doi.org/10.5281/zenodo.13511643.

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The &lsquo;Tiger of Bengal&rsquo; Sir Ashutosh Mukhopadhyay not only achieved fame as an educationist and jurist, but his unforgettable role in the spread and expansion of Buddhism in Bengal is wort mentioning in this context.Being associated with the Calcutta Mahabodhi Society of India and the Buddhist Dharmankur Sambha, Sir Ashutosh was one of the inevitable figures not only in organizational activities but also in mobilizing Buddhism and cultural activities among the masses. The paper discusses the unforgettable role of Buddhist monk Anagarika Dharmapala, Kripasaran Mahasthavir and most imp
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28

Podder, Saumak. "কলকাতা বিশ্ববিদ্যালয়ে পালি সাহিত‍্যচর্চা ও উদ‍্যোগী উপাচার্য স‍্যার আশুতোষ". International Journal of Science and Social Science Research 1, № 3 (2023): 45–50. https://doi.org/10.5281/zenodo.13511643.

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The &lsquo;Tiger of Bengal&rsquo; Sir Ashutosh Mukhopadhyay not only achieved fame as an educationist and jurist, but his unforgettable role in the spread and expansion of Buddhism in Bengal is wort mentioning in this context.Being associated with the Calcutta Mahabodhi Society of India and the Buddhist Dharmankur Sambha, Sir Ashutosh was one of the inevitable figures not only in organizational activities but also in mobilizing Buddhism and cultural activities among the masses. The paper discusses the unforgettable role of Buddhist monk Anagarika Dharmapala, Kripasaran Mahasthavir and most imp
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29

Podder, Saumak. "কলকাতা বিশ্ববিদ্যালয়ে পালি সাহিত‍্যচর্চা ও উদ‍্যোগী উপাচার্য স‍্যার আশুতোষ". International Journal of Science and Social Science Research 1, № 3 (2023): 45–50. https://doi.org/10.5281/zenodo.13511643.

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The &lsquo;Tiger of Bengal&rsquo; Sir Ashutosh Mukhopadhyay not only achieved fame as an educationist and jurist, but his unforgettable role in the spread and expansion of Buddhism in Bengal is wort mentioning in this context.Being associated with the Calcutta Mahabodhi Society of India and the Buddhist Dharmankur Sambha, Sir Ashutosh was one of the inevitable figures not only in organizational activities but also in mobilizing Buddhism and cultural activities among the masses. The paper discusses the unforgettable role of Buddhist monk Anagarika Dharmapala, Kripasaran Mahasthavir and most imp
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30

Shivanna, Kundaranahalli R., and Rajesh Tandon. "Developmental biology of dispersed pollen grains." International Journal of Developmental Biology 64, no. 1-2-3 (2020): 7–19. http://dx.doi.org/10.1387/ijdb.190166ks.

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Professor Panchanan Maheshwari served as Professor and Head of the Department of Botany, University of Delhi, from 1950 to 1966 and built an internationally reputed School of integrated plant embryology. Studies carried out during and after Maheshwari’s period from this School have enormously advanced our knowledge of the structural, developmental and functional aspects of embryological processes. This review covers studies carried out at the Delhi School on the developmental biology of dispersed pollen grains which operate from pollen dispersal from the anthers until pollen tubes discharge th
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31

Sulekh, Chandra, and Gautam Archana. "Schiff base macrocyclic ligand derived from thiosemicarbazone with their spectroscopic and antimicrobial studies." Journal of Indian Chemical Society Vol. 90, Aug 2013 (2013): 1053–59. https://doi.org/10.5281/zenodo.5782867.

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Department of Chemistry, Zakir Husain Delhi College, University of Delhi, J.L.N. Marg, New Delhi-110 002, India <em>E-mail </em>: schandra _00@yahoo.com, archanagautam _00@yahoo.com <em>Manuscript received online 17 April 2012, revised 04 August 2012, accepted 26 September 2012</em> Complexes of Mu<sup>ll</sup>, Co<sup>II,</sup> Ni<sup>II</sup>, Pd<sup>II</sup>, Cu<sup>II</sup>&nbsp;of general composition M(L)CI<sub>2</sub> and Pt(L)CI<sub>4</sub> with a novel azamacrocyclic ligand viz. 1,3,4,8,9,11-hexaaza-5, 7,12,14-tetraphenyl-2,10-dithiocyclo tetradecane, (L) have been synthesized and char
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32

H., C. Malhotra, Chopra Haritma, Rattan Shalu, and Singh Vaishaii. "Complexation of nickel-, cobalt- and copper(II) with L-3,4-dihydroxyphenylalanine - Kinetic studies." Journal of Indian Chemical Society Vol. 77, May 2000 (2000): 228–31. https://doi.org/10.5281/zenodo.5867424.

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Department of Chemistry, University of Delhi, Delhi: 110&nbsp;007, India <em>Manuscript received 15 July 1999. revised 14 October 1999, accepted 28 December 1999</em> Kinetic study on the interaction of Ni<sup>II</sup>, Co<sup>II</sup> and Cu<sup>II</sup> with L-3,4-dihydroxyphenylalanine (L-dopa) has been carried out under first order condition as a function of pH and temperature at <em>I</em> = 0.1 <em>M</em> (KNO<sub>3</sub>). A reaction scheme consistent with the results that at p<em>K</em> 8.64 both amino and hydroxyl groups undergo deprotonation, has been proposed. The overall rate const
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Ayed, S. Al-Shihri, Kalam Abul, G. Al-Sehemia Abdullah, Du Gaohui, and Ahmad Tokeer. "One pot synthesis of cobalt ferrites nanoparticles via hydrothermal method and their optical studies." Journal of Indian Chemical Society Vol. 91, Oct 2014 (2014): 1861–66. https://doi.org/10.5281/zenodo.5733824.

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Department of Chemistry, Faculty of Science, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia <em>E-mail</em> : abul_k33@yahoo.com Unit of Science and Technology, Faculty of Science, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia Center of Excellence for Advanced Materials Research, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia Zhejiang Key Laboratory for Reactive Chemistry on Solid Surfaces, Institute of Physical Chemistry, Zhejiang Normal University, Jinhua 321004, China Nanochemistry Laboratory, Department of Chemistry, Jamia Millia Islamia,
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Sulekh, Chandra, and Tyagi Monika. "Spectroscopic and biochemical studies of chromium(III) and manganese(II) complexes with p-vanillin containing thiosemicarbazone and semicarbazone ligands." Journal of Indian Chemical Society Vol. 85, Jan 2008 (2008): . 42–47. https://doi.org/10.5281/zenodo.5808510.

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Department of Chemistry, Zakir Husain College (University of Delhi), JLN-Marg, New Delhi-110 002, India <em>E-mail :</em> schandra_OO@yahoo.com, mnk02tyg@yahoo.co.in <em>Manuscript received 3 July 2007, revised 5 October 2007, accepted 8 October 2007</em> A new series of chromium(Ill) and manganese(ll) complexes with <em>p</em>-vanillin thiosemicarbazone (L<sup>1</sup>) and pvanillin semicarbazone (L<sup>2</sup>) have been synthesized and characterized. The nature of bonding and stereochemistry of the complexes have been deduced from elemental analysis, conductivity measurements, mass, magneti
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35

C., P. SHARMA, KUMAR N., K. SHARMA R., and S. GARG B. "Preparation and Characterisation of Dithiocarbamato Complexes of Tri-n-butyltin(Iv)." Journal of Indian Chemical Society Vol. 63, Aug 1986 (1986): 711–13. https://doi.org/10.5281/zenodo.6294671.

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National Physical Laboratory, Hillside Road, New Delhi-110 012 Department of Chemistry, University of Delhi, Delhi-110 007 Manuscript <em>received 24 January 1983, revised 25 March. 1986, accepted 2 </em>August <em>1986</em> Tri-n-butyltin(Iv) dithiocarbamato complexes of the type R<sub>2</sub>SnS<sub>2</sub>CNR<em>&#39;</em>R<em>&quot; </em>and R<sub>3</sub>SnS<sub>2</sub>CNR<em>&quot;</em>, where R=n-butyl ; R<em>&#39; </em>=Me. Et, i-Pr ; R&quot;=benzyl ; R&#39;<em>&quot;</em>---morpholine, 4,6-dimethylmorpholine, 4-methylpiperazine or 4-metbylpiperidine, have been prepared by the reaction
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36

Fleming, Benjamin. "Buddhist Stupas in South Asia. Edited by Jason Hawkes and Akira Shimada. New Delhi: Oxford University Press, 2009. 348 pp. $60.00 (cloth)." Journal of Asian Studies 69, no. 4 (2010): 1276–77. http://dx.doi.org/10.1017/s0021911810002640.

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Bibhesh, K. Singh, and S. Garg Bhagwan. "Spectral and kinetic studies of thermal decomposition of complexes of biologically active glutathione with ZnII and CdII ions." Journal of Indian Chemical Society Vol. 82, Dec 2005 (2005): 1191–95. https://doi.org/10.5281/zenodo.5824445.

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Department of Chemistry, University of Delhi, Delhi-110 007, India <em>E-mail</em> : bibheshksingh@yahoo.co.in&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;<em>Fax</em> : 91-766-6250 <em>Manuscript received 6 June 2005</em> The Zn<sup>II</sup> and Cd<sup>II</sup> complexes of reduced glutathione (GSH) of general composition [M(L)(X)].nH<sub>2</sub>O (where LH<sub>2</sub> = GSH; X = CI<sup>-</sup>, NO<sup>-</sup><sub>3</sub>/CH<sub>3</sub>CO<sup>-</sup><sub>2</sub>, and n = 1-2) have been synthesized and characterized by elemental analysis, infrared spectra,
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38

Sulekh, Chandra, Jain Deepali, and Ratnam Bindiya. "Synthesis and spectroscopic characterizations of some copper(II) complexes containing a 15 membered pentaaza (N5) bis(macrocyclic) ligands." Journal of India Chemical Society Vol. 87, Nov 2010 (2010): 1379–83. https://doi.org/10.5281/zenodo.5805808.

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Department of Chemistry, Zakir Husain College, University of Delhi, JLN Marg, New Delhi-110 002, India <em>E-mail:</em> schandra_OO@yahoo.com Fax : 91-11-23215906 Department of Chemistry, D. N. College, Meerut, Uttar Pradesh, India <em>Manuscript received 15 September 2009, revised 28 April 2010, accepted 5 May 2010</em> Copper(ll) complexes of types [(ML)<sub>2</sub>R<sub>1</sub>]X<sub>4</sub> and [(ML)<sub>2</sub>R<sub>2</sub>]Y<sub>4</sub> [M = Cu<sup>II</sup>; L = 1.1&#39;-diphenyl- and 1,1&#39;diphenylmethane- bis(1,3,7,10,14-pentaazacyclopentadeca-7,10-dlene); R<sub>1</sub> = (C<sub>6</s
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Sulekh, Chandra, Jain Deepali, and Anupma. "Synthesis, spectral and antimicrobial studies of NiII and CuII complexes with a nitrogen donor new azamacrocyclic ligand with pendent arms." Journal of Indian Chemical Society Vol. 87, Oct 2010 (2010): 1245–49. https://doi.org/10.5281/zenodo.5805028.

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Department of Chemistry, Zakir Husain College (University of Delhi), J. L. N. Marg, New Delhi-110 002, India <em>E-mail:</em> schandra_OO@yahoo.com Department of Chemistry, D. N. College, Meerut, Uttar Pradesh, India <em>Manuscript received 14 May 2009, revised 19 April 2010, accepted 28 April 2010</em> The complexes of Ni<sup>II</sup> and Cu<sup>II</sup> were synthesized with the new azamacrocyclic ligand. The ligand [1,5,8,12&middot; tetraaza-3,10-diethyl&middot;2,4,9,11-tetramethyl-6(7), 13(14)-di(bromopyridine)] was prepared by the reaction of 3-ethyl-2,4- pentadione and 5-bromo-2,6-diamin
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Sulekh, Chandra, and Sharma Sangeeta. "Synthesis and spectral studies of transition metal complexes with dibenzo-[b,i]- 8,10, 19,21-tetramethyl-[1,5,8, 12]-tetraazatetradeca-1,3,5, 7 ,10, 12, 14,16,18,21- decene a fourteen membered tetradentate macrocyclic ligand." Journal of Indian Chemical Society Vol. 83, Oct 2006 (2006): 988–92. https://doi.org/10.5281/zenodo.5830856.

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Department of Chemistry. Zakir Husain College, University of Delhi, J. L. N. Marg, New Delhi-110 002, India E-mail : schandra OO@yahoo.com; mrs. sangeetasharma@yahoo.co. in <em>Manuscript received 17 July 2006, accepted 20 July 2006</em> Complexes of Cr<sup>III</sup>, Mo<sup>ll</sup>, Fe<sup>III</sup>, Co<sup>II</sup>, Ni<sup>ll</sup>, Cu<sup>ll</sup>, Pd<sup>II</sup>, Pt<sup>ll</sup>, Ru<sup>III</sup> and Jr<sup>III</sup> with a fourteen membered macrocyclic ligand have been synthesized. These complexes are characterized by magnetic moment, infrared, electronic and EPR spectral studies. All o
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H., C. Tandon, and Tandon Asha. "Molecular orbital study of fluoroaryl-substituted aminoalane dimers : Geometry and energetics." Journal of Indian Chemical Society Vol. 83, Feb 2006 (2006): 151–55. https://doi.org/10.5281/zenodo.5816720.

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Department of Chemistry, Sri Venkateswara College (University of Delhi), Dhaula kuan, New Delhi-110 021, India&nbsp; <em>E-mail</em> : hctwave@yahoo.co.in Daulat Ram College (University of Delhi), Maurice Nagar, Delhi-110 007, India <em>Manuscript received 1 July 2005, revised 14 September 2005, accepted 26 October 2005</em> A large number of aluminium-nitrogen compounds obtained from the reactions of organoaluminium complexes with amines continually proved to be of great importance in material science, as precursors, for the deposition of thin films of aluminium nitride. In the present work,
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42

Deepak, Bansal, and Gupta Rajeev. "Nickel and copper complexes of a pyridyl-appended tetra-amide ligand : Syntheses and characterization." Journal of Indian Chemical Society Vol. 92, Dec 2015 (2015): 1823–32. https://doi.org/10.5281/zenodo.5599451.

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Department of Chemistry, University of Delhi, Delhi-110 007, India <em>E-mail </em>: rgupta@chemistry.du.ac.in Fax : 91-11-27666605 This work presents the synthesis and characterization of Ni<sup>2+</sup> (1) and Cu<sup>2+</sup> (2) complexes of a tetra-amide ligand containing appended 3-pyridyl rings. Both complexes have been crystallographically characterized and exhibit a square-planar geometry around the metal ion. Both complexes display an interesting solid-state packing between complex anions and Na<sup>+</sup> ions involving O<sub>amide</sub> groups and appended 3-pyridyl rings generati
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43

V., K. Sharma. "Polarographic behaviour of Cull-2,4,6-trihydroxy-deoxy-benzoin ethanol-water (65%) media complexes in." Journal of Indian Chemical Society Vol. 89, Oct 2012 (2012): 1431–34. https://doi.org/10.5281/zenodo.5771342.

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Department of Chemistry, Shyam Lal College (University of Delhi), Shahdara, Delhi-I 10 032, India <em>E-mail</em> :&nbsp;drvinodsharma57 @yahoo. com <em>Manuscript . received 16 August 201 J, revised 09 January 2012. accepted 10 January 2012</em> Polarographic behaviour of 2,4,6-trihydroxy-deoxy-benzoin with <strong>Cu<sup>II</sup></strong> ion in 65% ethanol-water media has been investigated. Crow&#39;s mean diffusion coefficient (utilizing diffusion current values) and DeFord-Home&#39;s (using halfwave potential values) methods were applied to determine the stability constant values of compl
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Sulekh, Chandra, and Sharma Sangeeta. "Synthesis and spectroscopic studies of transition metal complexes with 1,5:10,14-dimetheno-[1,4,8,11]-tetraazatetradeca-l,3,5,6,8,10,12,14,15,17- decane a fourteen membered tetradentate macrocyclic ligand." Journal of Indian Chemical Society Vol. 84, Mar 2007 (2007): 223–26. https://doi.org/10.5281/zenodo.5814919.

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Department of Chemistry, Zakir Husain College (University of Delhi), JLN Marg, New Delhi-110 002, India <em>E-mail </em>: schandra_OO@yahoo.com <em>Manuscript received 21 August 2006, revised 7 December 2006, accepted 3 January 2007</em> Complexes of Cr<sup>III</sup> , Mn<sup>II</sup> , Fe<sup>III</sup>, Co<sup>II</sup>, Ni<sup>II</sup> , Cu<sup>II</sup> , Pd<sup>II</sup> , Pt<sup>II</sup> , Ru<sup>II</sup> and Ir<sup>II</sup> with a fourteen membered 1,5: 10, 14-dimetheno-[1 ,4,8, 11]-tetraazatetradeca-1,3,5,6,8, 10, 12,14,15,17-decane macrocyclic ligand have been synthesized. These complexes
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45

Sulekh, Chandra, and Kumar Rajiv. "Synthesis, cyclic voltammetry, spectral studies and magnetic moment on copper(II) complexes with N2S3 and N4 donor macrocyclic ligands." Journal of Indian Chemical Society Vol. 82, Aug 2005 (2005): 693–96. https://doi.org/10.5281/zenodo.5827750.

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Department of Chemistry, Zakir Husain College (University of Delhi), Jawahar Lal Nehru Marg, New Delhi-110 002, India <em>E-mail</em> : schandra_00@yahoo.com;&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; chemistry_rajiv@hotmail.com <em>Manuscript received 26 September 2003, revised 5 April 2005, accepted 19 May 2005&nbsp;</em> Copper(II) complexes with general formula Cu(L)X<sub>2</sub> (where L = ligand L<sub>1</sub> or L<sub>2</sub>, X = CH<sub>3</sub>COO<sup>-</sup>Cl<sup>-</sup>, NO<sup>-</sup><sub>3</sub> and 1/2 SO<sup>-</sup><sub>4</sub>) have been synthesized with N<sub>4</su
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46

Rodrigues, Hillary. "Comptes rendus / Reviews of books: The Philosophy of Religion: A Buddhist Perspective Arvind Sharma Delhi and New York: Oxford University Press, 1995. ii + 213 p." Studies in Religion/Sciences Religieuses 26, no. 1 (1997): 116–18. http://dx.doi.org/10.1177/000842989702600110.

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47

Umendra, Komar, and Chandra Sulekh. "Synthesis, physical characterization of bivalent cobalt and copper complexes of 12-membered quadridentate [N4] macrocyclic ligand." Journal of Indian Chemical Society Vol. 88, Jun 2011 (2011): 853–57. https://doi.org/10.5281/zenodo.5770219.

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Department of Chemistry, J. V College (C. C. S. University, Meerut), Baraut (Baghpat), Uttar Pradesh, India <em>E-mail</em> : uchemkhokhar@gmail.com Department of Chemistry, Zakir Husain College (University of Delhi), JLN Marg, New Delhi-110 002, India <em>E-mail</em>: schandra_00@yahoo.com Fax: 91-11-23215906 <em>Manuscript received 26 July 2010, revised 18 November 2010, accepted 13 December 2010</em> The structures of new cobalt(ll) an copper(ll) complexes derived from 12-membered tetraaza macrocyclic ligand namely dibenzo-[b,g]-5,6,11,12-tetramethyl-1,4, 7,10-tetraazacyclododeca-4, 7-10,12
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48

Young, James. "Reviewer Acknowledgements." International Journal of Social Science Studies 7, no. 2 (2019): 104. http://dx.doi.org/10.11114/ijsss.v7i2.4097.

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International Journal of Social Science Studies (IJSSS) would like to acknowledge the following reviewers for their assistance with peer review of manuscripts for this issue. Many authors, regardless of whether IJSSS publishes their work, appreciate the helpful feedback provided by the reviewers. Their comments and suggestions were of great help to the authors in improving the quality of their papers. Each of the reviewers listed below returned at least one review for this issue.Reviewers for Volume 7, Number 2Abdul Azim Akhtar, Independent Academic &amp; Researcher, Delhi, IndiaAntónio Calha,
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B., S. Garg, та Dwivedi Poonam. "Solution studies on ternary complex formation of bivalent metal ions with cephalexine and amino acids, β-alanine and cysteine". Journal of Indian Chemical Society Vol. 81, Mar 2004 (2004): 239–41. https://doi.org/10.5281/zenodo.5830562.

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Department of Chemistry, University of Delhi, Delhi-110 007, India <em>E-mail </em>: dubeyr@mantraonline.com&nbsp; &nbsp; &nbsp; &nbsp; &nbsp;<em>Fax</em>: 91-11-27666250 <em>Manuscript received 5 July 2002, revised 4 July 2003, accepted 22 August 2003</em> Studies on ternary complexes of Cu<sup>II</sup>&nbsp;, Pb<sup>II</sup>&nbsp;, Ni<sup>II</sup>, Zn<sup>II</sup>&nbsp;, Co<sup>II</sup>&nbsp;, Cd<sup>II</sup>, Mn<sup>II</sup>&nbsp;, Mg<sup>II</sup>&nbsp;and Ca<sup>II</sup>&nbsp;, with cephalexine (HCEX) and some amino acids, viz. &beta;-alanine (&beta;-Ala) and cysteine (Cys), in the ratio 1
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SANJAY, SENGUPTA, R. BANERJEE N., and P. GOEL D. "Polarographic Studies on Complexation Behaviour of 2,3-Dihydroxypyridine with some First Transition Metal Cations in Aqueous Ethanol (50%) Media." Journal of Indian Chemical Society Vol. 65, Nov 1988 (1988): 755–57. https://doi.org/10.5281/zenodo.6076761.

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Department of Chemistry, University of Delhi, Delhi-110 007 <em>Manuscript&nbsp;received&nbsp;26&nbsp;October&nbsp;1981, revised&nbsp;1 June 1988, accepted 29 July&nbsp;1988</em> Crow&#39;s man diffusion coefficient&nbsp;method applied&nbsp;to diffusion&nbsp;currents or the complexes of Mn<sup>II</sup>&nbsp;Co<sup>II</sup>, Ni<sup>II</sup>, Cu<sup>ll </sup>and Zn<sup>ll</sup> with 2.3-dihydroxypyridine has yielded the following log <em>K</em>, and log&nbsp;<em>K</em><sub>2</sub>&nbsp;values (298 K): Mn<sup>ll</sup>, 4.40, 3.18; Co<sup>II</sup>. 4.78,&nbsp;3.17; Ni<sup>II</sup>, 5.50, 3.65; Cu<
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