R
R. Ramakrishna Reddy
Researcher at Sri Krishnadevaraya University
Publications - 101
Citations - 3683
R. Ramakrishna Reddy is an academic researcher from Sri Krishnadevaraya University. The author has contributed to research in topics: Aerosol & Electronegativity. The author has an hindex of 36, co-authored 101 publications receiving 3151 citations.
Papers
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Journal ArticleDOI
Wintertime aerosol characteristics over the Indo‐Gangetic Plain (IGP): Impacts of local boundary layer processes and long‐range transport
Vijayakumar S. Nair,K. Krishna Moorthy,Denny P. Alappattu,P. K. Kunhikrishnan,Susan K. George,Prabha R. Nair,S. Suresh Babu,B. Abish,Sathianeson Satheesh,Sachchida Nand Tripathi,K. Niranjan,B. L. Madhavan,V. Srikant,C. B. S. Dutt,K. V. S. Badarinath,R. Ramakrishna Reddy +15 more
TL;DR: In this article, the authors investigated the effects of mesoscale processes associated with changes in the local atmospheric boundary layer (ABL), and examined the changes as the season changes over to spring and summer.
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Spectroscopic studies of Nd3+-doped alkali fluoroborophosphate glasses
TL;DR: A new family of three optical glasses of the following chemical composition with 1 mol% of Nd3+ were prepared to examine the effects of alkali fluorides in unmixed form: 40(NaPO3)6+10BaF2+9ZnF2+,20B2O3+20RF+1NdF3, where RF=LiF, NaF and KF.
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Optical electronegativity and refractive index of materials
TL;DR: In this article, simple correlations between the energy gap, optical electronegativity and the refractive index are given for various classes of materials such as semiconductors, insulators and oxides.
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Correlation between optical electronegativity and refractive index of ternary chalcopyrites, semiconductors, insulators, oxides and alkali halides
R. Ramakrishna Reddy,K. Rama Gopal,K. Narasimhulu,L. Siva Sankara Reddy,K. Raghavedra Kumar,C.V. Krishna Reddy,Syed Nisar Ahmed +6 more
TL;DR: In this paper, an excellent agreement has been obtained from modified Herve and Vandamme relation and the literature values for the relationship between energy gap, optical electronegativity and refractive index.
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A study on the Moss relation
TL;DR: In this paper, a simple empirical relationship has been established for the estimation of refractive indices for various materials directly from their energy gaps and its validity is tested in various classes of materials such as semiconductors, insulators and oxides.