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Raman, R.
- Use of Structural Equation Modeling to Empirically Study the Turnover Intentions of Information Technology Professionals in Pune City
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1 Symbiosis International University, Symbiosis Centre for Information Technology, Pune, Maharashtra, IN
2 Freelance Management Consultant, Chennai, Tamil Nadu, IN
1 Symbiosis International University, Symbiosis Centre for Information Technology, Pune, Maharashtra, IN
2 Freelance Management Consultant, Chennai, Tamil Nadu, IN
Source
Indian Journal of Science and Technology, Vol 6, No 12 (2013), Pagination: 5612–5624Abstract
Organizations are still finding strategies to retain good workforce, and understand the turnover intentions of employees. Software companies in India are providing good salary packages, excellent performance based bonus and incentives, but all this does not prevent employees from quitting. This paper provides an indepth understanding on the effect of various factors like work–family life conflict, work stress, role ambiguity, job satisfaction and organizational commitment, on the turnover intentions of an IT employee. This study was carried out in Pune, Maharashtra. The study revealed the clarity of role and adequacy of resources, nurturing employee loyalty, organizational inspiration as the key drivers against turnover intentions. Interestingly, the study found that work–family–conflict and work stress did not lead to turnover intentions.Keywords
Organizational Commitment, Job Satisfaction, Turnover Intentions, Work–Family Conflict, Work Stress, Role Ambiguity, Information TechnologyReferences
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- Petrography and Petrochemistry of the Cordierite Bearing Metapelites of Nartamalai Area, Pudukkottai District, Tamil Nadu
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Authors
Affiliations
1 Geological Survey of India, Op : Tamil Nadu & Pondicherry, Madras - 600032, IN
1 Geological Survey of India, Op : Tamil Nadu & Pondicherry, Madras - 600032, IN
Source
Journal of Geological Society of India (Online archive from Vol 1 to Vol 78), Vol 46, No 5 (1995), Pagination: 477-483Abstract
Occurrence of cordierite bearing metapelites of Khondalitic suite of rocks is reported from Nartamalai area, Pudukkottai district for the first time. The cordierite bearing gneiss occurs in close association with chamockite and pyroxene granulite in the vicinity of the Nartamalai granites. The mineral assemblages seen in the metapelites are cordierite-almandine-sillimanite-plagioclase-K-feldspar- biotite and quartz. Zircon, magnetite and spinel are the accessory minerals. The texture of the metapelites is generally gneissose except in the eastern part of the area where it simulates a hornfels. The Nartarnalai cordierite contains 59% Mg-cordierite and 41 % Fe-cordierite. The Fe+2/Fe+2+Mg ratio of the Nartamalai cordierite is 0.414 which is strikingly higher than that of the cordierites of regional metamorphism and it is comparable with the Fe2/Fe+2+Mg ratios of the cordieritcs described from hornfels assemblage. The coexisting garnet is an almandine-pyrope with very minor andradite and spessartitc, which is comparable with the garnets of regional metamorphic assemblage. The tie-line joining the composition of the coexisting cordierite and garnet indicates a regional metamorphic environment. An overprint of thermal metamorphism, attributable to the intrusion of Nartamalai granites, on the pre-existing regional metamorphic fabric is suggested.Keywords
Petrography, Petrochemistry, Cordierite, Nartamalai, Tamil Nadu.- Analysis of Complementary Beam Structured RF MEMS Switch for Wireless Applications
Abstract Views :279 |
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Authors
Affiliations
1 Department of Electronics Engineering, Pondicherry University, IN
1 Department of Electronics Engineering, Pondicherry University, IN
Source
ICTACT Journal on Microelectronics, Vol 2, No 4 (2017), Pagination: 329-332Abstract
This paper analysis the performance of a RF MEMS switch having a complementary beam structure operating at frequency ranging from 0 to 12GHz, which facilitates its application in the field of wireless mobile communication. This design is a modified cantilever beam forming a complementary structure with an easy fabrication process to implement. The switch is designed in form of a meander beam spring type in order to lower the spring constant there by achieving a relatively less pull-in voltage for actuation. The simulated results show a pull-in voltage of about 4V with the complementary cantilever beam structure. RF analysis shows a negligible insertion loss of -0.113dB and -7.181dB in the up-state of the switch from 0 to 12GHz. The isolation in the up-state was -57.62dB at 12GHz.Keywords
RF MEMS, Switch, Cantilever Beam, Pull-in Voltage, Electrostatic Actuation, Coplanar Waveguide.References
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