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Articles: 2'487'895
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29 March 2024
 
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Results 1 to 20 of 275 for query "O.N.Srivastava". (0.02 sec.)

[    1    2    3    4    5    10    ]   Next
1.
Efficient $widetilde{O}(n/epsilon)$ Spectral Sketches for the Laplacian and its Pseudoinverse
Arun Jambulapati; Aaron Sidford;
2 Nov 2017
- - -
2.
Impact of Zn substitution on phase formation and superconductivity of Bi1.6Pb0.4 Sr2Ca2Cu3-xZnxO10 with x = 0.0, 0.015, 0.03, 0.06, 0.09 and 0.12
R.B. Saxena; Rajiv Giri; V.P.S. Awana; H.K. Singh; M.A. Ansari; B.V. Kumaraswamy; Anurag Gupta; Rashmi Nigam1; K.P. Singh; H. Kishan; O.N. Srivastava;
19 May 2005
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3.
Synthesis of Carbon Nanotubes
Kalpana Awasthi; Anchal Srivastava; O.N.Srivastava;
21 May 2005
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4.
Nucleation and growth of catalyst-free ZnO nanostructures
Jai Singh; Anchal Srivastava; R.S. Tiwari; O.N.Srivastava;
19 May 2005
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5.
Investigations on synthesis and characterization of functionalized graphene sheets-polyacrylamide composites
Ratnesh Pandey; Kalpana Awasthi; R.S.Tiwari; O.N.Srivastava;
24 Apr 2010
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6.
Formation and stability of icosahedral phase in Al65Ga5Pd17Mn13 alloy
T. P. Yadav; M.A.Shaz; R. S. Tiwari; O. N. Srivastava;
Rating  5/5
14 Jun 2008
- - -
7.
Global Convergence of Hessenberg Shifted QR III: Approximate Ritz Values via Shifted Inverse Iteration
Jess Banks; Jorge Garza-Vargas; Nikhil Srivastava;
13 May 2022
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8.
Covariance Estimation for Distributions with 2+epsilon Moments
Nikhil Srivastava; Roman Vershynin;
14 Jun 2011
- - -
9.
Measurement of the $W o e u$ and $Z/gamma^* o e^+e^-$ Production Cross Sections at Mid-rapidity in Proton-Proton Collisions at $sqrt{s}$ = 500 GeV
STAR Collaboration; G. Agakishiev; M. M. Aggarwal; Z. Ahammed; A. V. Alakhverdyants; I. Alekseev; J. Alford; B. D. Anderson; C. D. Anson; D. Arkhipkin; G. S. Averichev; J. Balewski; Banerjee; Z. Barnovska; D. R. Beavis; R. Bellwied; M. J. Betancourt; R. R. Betts; A. Bhasin; A. K. Bhati; H. Bichsel; J. Bielcik; J. Bielcikova; L. C. Bland; I. G. Bordyuzhin; W. Borowski; J. Bouchet; A. V. Brandin; S. G. Brovko; E. Bruna; S. Bueltmann; I. Bunzarov; T. P. Burton; J. Butterworth; X. Z. Cai; H. Caines; M. Calderón de la Barca Sánchez; D. Cebra; R. Cendejas; M. C. Cervantes; P. Chaloupka; S. Chattopadhyay; H. F. Chen; J. H. Chen; J. Y. Chen; L. Chen; J. Cheng; M. Cherney; A. Chikanian; W. Christie; P. Chung; M. J. M. Codrington; R. Corliss; J. G. Cramer; H. J. Crawford; X. Cui; A. Davila Leyva; L. C. De Silva; R. R. Debbe; T. G. Dedovich; J. Deng; R. Derradi de Souza; S. Dhamija; L. Didenko; F. Ding; P. Djawotho; X. Dong; J. L. Drachenberg; J. E. Draper; C. M. Du; L. E. Dunkelberger; J. C. Dunlop; L. G. Efimov; M. Elnimr; J. Engelage; G. Eppley; L. Eun; O. Evdokimov; R. Fatemi; J. Fedorisin; R. G. Fersch; P. Filip; E. Finch; Y. Fisyak; C. A. Gagliardi; D. R. Gangadharan; F. Geurts; S. Gliske; Y. N. Gorbunov; O. G. Grebenyuk; D. Grosnick; S. Gupta; W. Guryn; B. Haag; O. Hajkova; A. Hamed; L-X. Han; J. W. Harris; J. P. Hays-Wehle; S. Heppelmann; A. Hirsch; G. W. Hoffmann; D. J. Hofman; S. Horvat; B. Huang; H. Z. Huang; P. Huck; T. J. Humanic; L. Huo; G. Igo; W. W. Jacobs; C. Jena; J. Joseph; E. G. Judd; S. Kabana; K. Kang; J. Kapitan; K. Kauder; H. W. Ke; D. Keane; A. Kechechyan; A. Kesich; D. Kettler; D. P. Kikola; J. Kiryluk; A. Kisiel; V. Kizka; S. R. Klein; D. D. Koetke; T. Kollegger; J. Konzer; I. Koralt; L. Koroleva; W. Korsch; L. Kotchenda; P. Kravtsov; K. Krueger; L. Kumar; M. A. C. Lamont; J. M. Landgraf; S. LaPointe; J. Lauret; A. Lebedev; R. Lednicky; J. H. Lee; W. Leight; M. J. LeVine; C. Li; L. Li; W. Li; X. Li; X. Li; Y. Li; Z. M. Li; L. M. Lima; M. A. Lisa; F. Liu; T. Ljubicic; W. J. Llope; R. S. Longacre; Y. Lu; X. Luo; G. L. Ma; Y. G. Ma; D. P. Mahapatra; R. Majka; O. I. Mall; S. Margetis; C. Markert; H. Masui; H. S. Matis; D. McDonald; T. S. McShane; S. Mioduszewski; M. K. Mitrovski; Y. Mohammed; B. Mohanty; B. Morozov; M. G. Munhoz; M. K. Mustafa; M. Naglis; B. K. Nandi; Md. Nasim; T. K. Nayak; L. V. Nogach; G. Odyniec; A. Ogawa; K. Oh; A. Ohlson; V. Okorokov; E. W. Oldag; R. A. N. Oliveira; D. Olson; M. Pachr; B. S. Page; S. K. Pal; Y. Pandit; Y. Panebratsev; T. Pawlak; H. Pei; C. Perkins; W. Peryt; P. Pile; M. Planinic; J. Pluta; D. Plyku; N. Poljak; J. Porter; A. M. Poskanzer; C. B. Powell; D. Prindle; C. Pruneau; N. K. Pruthi; P. R. Pujahari; J. Putschke; H. Qiu; R. Raniwala; S. Raniwala; R. L. Ray; R. Redwine; R. Reed; C. K. Riley; H. G. Ritter; J. B. Roberts; O. V. Rogachevskiy; J. L. Romero; L. Ruan; J. Rusnak; N. R. Sahoo; I. Sakrejda; S. Salur; J. Sandweiss; E. Sangaline; A. Sarkar; J. Schambach; R. P. Scharenberg; A. M. Schmah; N. Schmitz; T. R. Schuster; J. Seele; J. Seger; P. Seyboth; N. Shah; E. Shahaliev; M. Shao; B. Sharma; M. Sharma; S. S. Shi; Q. Y. Shou; E. P. Sichtermann; R. N. Singaraju; M. J. Skoby; N. Smirnov; D. Solanki; P. Sorensen; U. G. deSouza; H. M. Spinka; B. Srivastava; T. D. S. Stanislaus; S. G. Steadman; J. R. Stevens; R. Stock; M. Strikhanov; B. Stringfellow; A. A. P. Suaide; M. C. Suarez; M. Sumbera; X. M. Sun; Y. Sun; Z. Sun; B. Surrow; D. N. Svirida; T. J. M. Symons; A. Szanto de Toledo; J. Takahashi; A. H. Tang; Z. Tang; L. H. Tarini; T. Tarnowsky; D. Thein; J. H. Thomas; J. Tian; A. R. Timmins; D. Tlusty; M. Tokarev; T. A. Trainor; S. Trentalange; R. E. Tribble; P. Tribedy; B. A. Trzeciak; O. D. Tsai; T. Ullrich; D. G. Underwood; G. Van Buren; G. van Nieuwenhuizen; J. A. Vanfossen Jr.; R. Varma; G. M. S. Vasconcelos; F. Videbæk; Y. P. Viyogi; S. Vokal; S. A. Voloshin; A. Vossen; M. Wada; F. Wang; G. Wang; H. Wang; J. S. Wang; Q. Wang; X. L. Wang; Y. Wang; G. Webb; J. C. Webb; G. D. Westfall; C. Whitten Jr.; H. Wieman; S. W. Wissink; R. Witt; W. Witzke; Y. F. Wu; Z. Xiao; W. Xie; K. Xin; H. Xu; N. Xu; Q. H. Xu; W. Xu; Y. Xu; Z. Xu; L. Xue; Y. Yang; Y. Yang; P. Yepes; Y. Yi; K. Yip; I-K. Yoo; M. Zawisza; H. Zbroszczyk; J. B. Zhang; S. Zhang; W. M. Zhang; X. P. Zhang; Y. Zhang; Z. P. Zhang; F. Zhao; J. Zhao; C. Zhong; X. Zhu; Y. H. Zhu; Y. Zoulkarneeva;
13 Dec 2011
- - -
10.
Pseudospectral Shattering, the Sign Function, and Diagonalization in Nearly Matrix Multiplication Time
Jess Banks; Jorge Garza Vargas; Archit Kulkarni; Nikhil Srivastava;
18 Dec 2019
- - -
11.
Upper critical field, critical current density and thermally activated flux flow in CaFFe0.9Co0.1As superconductor
Chandra Shekhar; Amit Srivastava; Pramod Kumar; Pankaj Srivastava; O. N. Srivastava;
7 Feb 2012
- - -
12.
On Eigenvalue Gaps of Integer Matrices
Aaron Abrams; Zeph Landau; Jamie Pommersheim; Nikhil Srivastava;
14 Dec 2022
- - -
13.
Support of Closed Walks and Second Eigenvalue Multiplicity of Regular Graphs
Theo McKenzie; Peter M. R. Rasmussen; Nikhil Srivastava;
25 Jul 2020
- - -
14.
Graph Sparsification by Effective Resistances
Daniel A. Spielman; Nikhil Srivastava;
6 Mar 2008
- - -
15.
Magnetotransport and thermal properties characterization of 55 K superconductor SmFeAsO0.85F0.15
Amit Srivastava; Anand Pal; Saurabh Singh; C. Shekhar; H.K. Singh; V.P.S. Awana; O.N. Srivastava;
4 Jul 2013
- - -
16.
Signal of heavy Majorana neutrinos at hadron colliders
O. Panella; M. Cannoni; C. Carimalo; Y. N. Srivastava;
30 Jul 2001   /  Phys.Rev. D65 (2002) 035005
- - -
17.
Content Based Document Recommender using Deep Learning
Nishant Nikhil; Muktabh Mayank Srivastava;
23 Oct 2017
- - -
18.
Synthesis of nanocrystalline Spinel phase by Mechanical Milling of Al-Cu-Fe and Al-Cu-Cr-Fe Quasicrystalline alloys
T. P. Yadav; N. K. Mukhopadhyay; R. S. Tiwari; O. N. Srivastava;
14 Jun 2008
- - -
19.
On the Evolution of Quasicrystalline and Crystalline Phases in Rapidly Quenched Al-Co-Cu-Ni Alloy
T.P. Yadav; N.K. Mukhopadhyay; R.S.Tiwari; O.N.Srivastava;
Rating  5/5
12 Oct 2006
- - -
20.
Synthesis of nanocrystalline (Co,Ni)Al2O4 spinel powder by mechanical milling of quasicrystalline material
T.P. Yadav; N.K. Mukhopadhyay; R.S.Tiwari; O.N.Srivastava;
Rating  5/5
7 Oct 2006
- - -

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