159,231 research outputs found
Bibliographics for the 983 eprints in the live archives of E-LIS : trends and status report up to 7th July 2004, based on author-self-archiving metadata
The priority for ideas and philosophy related to "Network Theory" have been traced back and documented by Braun(2004),and credit goes to Karinthy(1929).The IT has empowered to realise it, as the most practical phenomena and it is no more a humour. The OAI (Open Archives Initiatives)and ACIS (Academic Contributor Information System)are progressive in the direction ,which may lead to realise the "Collective Genius" at global level. Focus of present study is on Author-Self-Archiving (A-S-A)Metadata of the 983 Eprints in the Live Archives of the E-LIS (EPrints of Library and Information Science),which were approved till 7th July 2004.The A-S-A Metadata was used for librametric analysis. Self-explanatory bibliographics are illustrated.The highlights include: Conference papers (34%); highest approval, June 2004 (28%); published archives (76%);not refereed (52%); not in public domain (60%); highest self-archiving-author (De Robbio, Antonella).The Nos. of EPrints having single JITA domain specifications were: Theoretical and general aspects of libraries and information(27); Information use and sociology of information(80);Users,literacy and reading(13);Libraries as physical collections(30);Publishing and legal issues(57);Management(13);Industry, profession and education(36);Information sources, supports, channels(113) ; Information treatment for information services, Information functions and techniques (101); Technical services libraries, archives and museums(25); Housing technologies(1); Information technology and library technology(92); and Inter-domainery (395) i.e. having specifications of two or more than two JITA classes
Dr S Pavan Kumar
Dr S Pavan Kumar is an Associate Professor in the School of Humanities, Social Sciences and Management, NITK Surathkal, Karnataka. His educational qualifications include Diploma in Electrical & Electronics Engineering from Govt. Polytechnic affiliated to SBTET, Hyderabad. B.E. in Computer Science & Engineering from Amravati University. M.Tech. in Human Resource Development & Management from IIT Kharagpur in 2006. Doctorate in Human Resource Development & Management from IIT Kharagpur in 2011. He has done several other modern-day courses to keep himself updated with the technology and trend. It includes a certificate course in Business Analytics from Manipal global university and a P.G. Diploma in Geo-spatial technologies for rural development from NIRDPR, Govt of India etc. Dr Kumar has gained rich experience of approximately 25 years in academic institutions as academician, consultancy organizations as a consultant, a Govt. enterprise as a trainee etc. His notable experiences, to name a few, are as follows: He has served as Vice-principal for Kshatriya college of engineering, affiliated with JNT University Hyderabad, before joining NITK Surathkal. Dr Kumar joined NITK Surathkal in 2012 and has been serving to date. In his tenure to date, he played several academic and administrative roles. He served as Head of the department during 2018-2021. He is also serving as the secretary for NITK English medium school run by the professors of the NITK Surathkal. Regarding academic achievements, Dr S P Kumar has received many best research paper awards for his contribution in several national and international conferences. So far, he has published approximately forty research papers in referred journals. He had presented approximately 35 papers at conferences of repute. Dr Kumar completed 3 PhD guidance as on date, and six scholars are currently doing PhD under his supervision. Around 25 MBA students have completed their project work under his guidance. Dr Kumar visited international universities located in countries like Switzerland, Spain for research interaction. Dr Kumar regularly conducts workshops on contemporary topics in various universities as part of outreach activities. A few universities where Dr Kumar has conducted events are Kongu engineering college, Rajagiri college of social sciences, IIT Kharagpur extension center etc. He also serves as a member of the board of studies for management programs as an academic expert. A few notable ones are S.R. University Warangal, PSG Coimbatore etc. He is a reviewer for a few journals for repute. He is also on the advisory board of a few start-up companies. He acted as an examiner for several PhD thesis evaluations. Dr Kumar regularly sets question papers for various premier universities of the country. Dr Kumar’s research interests include organizational development, Human resource management & development, Organizational behavior etc.https://www.interscience.in/mentors/1110/thumbnail.jp
Syzygium chemunjianum Shareef, E. S. S. Kumar & Roy 2013, sp. nov.
Syzygium chemunjianum Shareef, E.S. S.Kumar & Roy sp. nov. (Figs. 1 & 2) Type:— INDIA. Kerala: Thiruvananthapuram district, Chemunji hills, 1200 m, 25 October 2012 (with flowers), S . M. Shareef 72499 (holotype TBGT! isotypes MH! TBGT!). Shrub to small evergreen tree, ca. 7 m high; bark smooth, grayish-white, blaze dark reddish brown; twigs at first quadrangular, later terete, grayish-brown on drying. Leaves opposite, coriaceous, obovate or narrowly obovate, 4–7 × 2–4 cm, apex obtuse or obtusely acuminate, base tapering, margin entire and recurved, gland dotted on both sides, brown beneath on drying; midrib channeled above and raised beneath; lateral nerves ca. 32 pairs on either side, obscure above and prominent below; tertiaries reticulated; intramarginal vein one tiered, ca. 0.5 mm from margins. Petiole 0.7–1 cm long, thick and robust, black on drying. Inflorescence terminal cymes, much branched, ca. 7 cm long; peduncle and inflorescence branches quadrangular and sulcate; branches often leafy; bracts obtuse, ca. 1.2 × 1.75 mm, caducous; bracteoles obtuse, ca. 1.5 × 2 mm, aducous; Flowers creamy-white, ca. 1.8 cm across, sessile or pedicellate, pedicel ca. 1 mm long. Calyx turbinate, ca. 5 × 4.5 mm; lobes 4, broadly ovate, 2–2.5 mm long, apex rounded. Petals orbicular to suborbicular, 3–4 mm across, calyptrate. Stamens numerous, filaments, 4–7.3 mm long, bent inwards in bud. Ovary 2-celled with multiple ovules; style ca. 4.5 mm long, stigma acute. Fruit globose to ellipsoid, 1.5–3.1 × 1. 3–2.8 cm, greenish-yellow to yellowish-white, crowned by calyx lobes or absent, pericarp white, succulent. Seed 1, rarely 2, smooth, globose to subglobose, 1.3–2.8 x 1.0– 2.6 cm. Phenology, distribution and habitat:— To date Syzygium chemunjianum is known only from the montane evergreen forests of Pongalappara, the Chemunji hills and Pandipath of the Agasthyamala Biosphere Reserve in the Thiruvananthapuram district of Kerala at an elevation between 1100–1430 m. The species also occurs along streams and marshes in lower elevation montane evergreen forests. The present three populations each comprise c. 50 mature individuals and numerous seedlings. The populations are associated with Eugenia discifera Gamble (1918: 239), E. thwaitesii Duthie (1879: 506), Cullenia exarillata A. Robynson (1970: 249), Salacia agasthiamalana Udayan, Regy Yohannan & Pradeep (2012: 255) and Cinnamomum filipedicellatum Kostermans (1983:92). Flowering and fruiting occurs from October to March. Ripe fruits are sweet and eaten. Additional specimens examined:— INDIA. Kerala: Thiruvananthapuram district, Pongalappara, 1430 m, 11 January 2011 (with flowers and fruits), S. M . Shareef 70608 (TBGT); Chemunji hills, 1200 m, 25 October 2012 (with flowers), S. M . Shareef 72500 (TBGT); ibid, 27 December 2012 (with fruits) S. M . Shareef 76124 (TBGT); ibid, 10 January 2013 (with fruits) S. M . Shareef 76125 (TBGT); Way to Chemunji hills, 1100 m, 12 March 2013 (with fruits) S. M . Shareef 76127 (TBGT); Pandipath, 1200 m, 12 March 2013 (with fruits) S. M . Shareef 76128 (TBGT). Etymology:— Syzygium chemunjianum is named after its type locality Chemunji hills, Kerala. Interrelationships:— Syzygium chemunjianum is similar to S. tamilnadensis, but is distinguished by the shrubby to small tree habit, smooth and greyish-white bark with dark reddish brown blaze, light orange red young leaves and strictly obovate to narrowly obovate leaves with tapering bases and obtuse apices. The number of intramarginal nerves and lateral nerves in their leaves, position of inflorescence, turbinate calyx, and shape, colour and size of fruits and size of seeds distinguish the new species from the latter. The new species has 1-tiered intra-marginal nerve and ca. 32 pairs of lateral nerves which are very close to each other and are faint on the adaxial side and prominent on the abaxial surfaces. Diagnostic morphological characters of S. chemunjianum and the related species are provided in Table 1.Published as part of S. M. Shareef & Kumar, E. S. Santhosh, 2013, A new species of Syzygium (Myrtaceae) from Kerala, India, pp. 34-38 in Phytotaxa 129 (1) on pages 34-37, DOI: 10.11646/phytotaxa.129.1.2, http://zenodo.org/record/508561
FIGURE 2. Syzygium palodense Shareef, E. S. S in A new species of Syzygium (Myrtaceae) from the southern Western Ghats of Kerala, India
FIGURE 2. Syzygium palodense Shareef, E. S. S. Kumar & Shaju, sp. nov. a. Habit, b. Flowering twig; c. Fruiting twig.Published as part of Shareef, S. M., Santhosh Kumar, E. S. & Shaju, T., 2012, A new species of Syzygium (Myrtaceae) from the southern Western Ghats of Kerala, India, pp. 28-33 in Phytotaxa 71 (1) on page 30, DOI: 10.11646/phytotaxa.71.1.5, http://zenodo.org/record/506634
Band Alignment and Electrical Investigations of Ultra-Thin Al2O3 on Si by E-beam Evaporation
The continuous downscaling leads the search of high-gate dielectrics. The films amorphous in nature offered good mechanical flexibility, smooth surfaces and better uniformity associated with low leakage current density. In this work, 16 nm thick amorphous Al2O3 films on silicon substrate are fabricated by E-beam evaporation. The high value of refractive index (1.76) extracted from ellipsometry analysis directs the deposition of compact film. The AFM analysis reveal a flat surface with small RMS surface roughness 1.5 angstrom. The band gap is extracted from O-1s electron loss spectra and was found 6.7 eV and band alignment of Al2O3/Si is derived from the UPS measurements. The films are incorporated in Metal Insulator -Semiconductor (MIS) capacitor to perform the electrical measurement. The flat band voltage (V-FB), dielectric constant () and oxide trapped charges (Q(ot)) extracted from high frequency (1 MHz) C-V curve are - 0.4 V, 8.4 and 2 x 10(11) cm(-2), respectively. The small flat band voltage - 0.4 V, narrow hysteresis and very little frequency dispersion suggest an exceptional good Al2O3/Si interface with small quantity of trapped charges in the oxide. The leakage current density was 4.27 x 10(-8) A/cm(2) at 1 V. The moderate dielectric constant and low leakage current density with ultra-smooth surface is quite useful towards its application in future CMOS and memory devices
Architecture and security issues in fog computing applications Advances in computer and electrical engineering (ACEE) book series./ [edited by] Sam Goundar, S. Bharath Bhushan, Praveen Kumar Rayani.
Includes bibliographical references and index.As the progression of the internet continues, society is finding easier, quicker ways of simplifying their needs with the use of technology. With the growth of lightweight devices, such as smart phones and wearable devices, highly configured hardware is in heightened demand in order to process the large amounts of raw data that are acquired. Connecting these devices to fog computing can reduce bandwidth and latency for data transmission when associated with centralized cloud solutions and uses machine learning algorithms to handle large amounts of raw data. The risks that accompany this advancing technology, however, have yet to be explored. Architecture and Security Issues in Fog Computing Applications is a pivotal reference source that provides vital research on the architectural complications of fog processing and focuses on security and privacy issues in intelligent fog applications. While highlighting topics such as machine learning, cyber-physical systems, and security applications, this publication explores the architecture of intelligent fog applications enabled with machine learning. This book is ideally designed for IT specialists, software developers, security analysts, software engineers, academicians, students, and researchers seeking current research on network security and wireless systems.1. Fog resource allocation through machine learning algorithm / Gowri A. S., Shanthi Bala P. -- 2. A novel resource management framework for fog computing by using machine learning algorithm / Shanthi Thangam Manukumar, Vijayalakshmi Muthuswamy -- 3. [Retracted] Security issues in fog computing for Internet of Things / D.N. Kartheek, Bharath Bhushan -- 4. Analysis of identity-based cryptography in Internet of Things (IoT) / Aravind Karrothu, Jasmine Norman -- 5. Cloud security architecture based on fully homomorphic encryption / Vaishali Ravindra Thakare, K. John Singh -- 6. Object detection in fog computing using machine learning algorithms / Peyakunta Bhargavi, Singaraju Jyothi -- 7. Distributed intelligence platform to the edge computing / Xalphonse Inbaraj -- 8. Internet of Things and fog computing applications in intelligent transportation systems / Korupalli V. Rajesh Kumar, K. Dinesh Kumar, Ravi Kumar Poluru, Syed Muzamil Basha, M. Praveen Kumar Reddy -- 9. Agribot / Ravi Kumar Poluru, M. Praveen Kumar Reddy, Rajesh Kaluri, Kuruva Lakshmanna, G. Thippa Reddy -- 10. Towards efficient resource management in fog computing : a survey and future directions / M. Sudhakara, K. Dinesh Kumar, Ravi Kumar Poluru, R. Lokesh Kumar, S. Bharath Bhushan.1 online resource (205 pages)
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