1,722,063 research outputs found

    Engineering interactions by collective coupling of atom pairs to cavity photons for entanglement generation

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    Data set supporting the content of the article &#34;Engineering interactions by collective coupling of atom pairs to cavity photons for entanglement generation&#34;Authors: Sankalp Sharma, Jan Chwedeńczuk, and Tomasz Wasak.The research data consists of the dynamics of the system provided by the quantum Fisher information and the Bell correlator, as presented in the main text of the manuscript. Additionally, the data includes the plots provided in the supplementary material, organized under the following sections:Dynamics of Coherent StateEntanglement After PumpOptimal MeasurementFinite Tunneling Rate (Mandel-Q)Please refer to the accompanying readme.txt file for a detailed description of the data structures included in the data set.</p

    CMFRI puts pedal on 'Viksit Krishi Sankalp Abhiyan' programme Hans India dated 29th May 2025

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    The scientists of the ICAR-Central Marine Fisheries Research Institute have embarked on a two-week-long outreach programme to directly engage with fish farmers and fishermen across the country as part of the 'Viksit Krishi Sankalp Abhiyan' programme of the Central government. 'Viksit Krishi Sankalp Abhiyan' is a nationwide campaign by the Ministry of Agriculture and Farmers Welfare and the Indian Council of Agricultural Research (ICAR) in association with state governments

    Viksit Krishi Sankalp Abhiyan to enhance productivity in the coming seasons: ICAR Sakshi Post dated 4th July 2025

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    Raghavendra Bhatta, Deputy Director General (Animal Science) of ICAR, has said that the Central government is committed to enhancing farmers’ income by increasing production across crops in agriculture and allied sectors. The ongoing ‘lab to land’ initiative under the Viksit Krishi Sankalp Abhiyan would significantly enhance productivity in the coming seasons. A substantial rise in output is expected across crops, animal husbandry and fisheries, he said. He was speaking at a special session of the Viksit Krishi Sankalp Abhiyan (VKSA) campaign at ICAR-Central Marine Fisheries Research Institute

    Viksit Krishi Sankalp Abhiyan to enhance productivity in the coming seasons: ICAR Social News XYZ dated 4th July 2025

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    Raghavendra Bhatta, Deputy Director General (Animal Science) of ICAR, has said that the Central government is committed to enhancing farmers’ income by increasing production across crops in agriculture and allied sectors. The ongoing ‘lab to land’ initiative under the Viksit Krishi Sankalp Abhiyan would significantly enhance productivity in the coming seasons. A substantial rise in output is expected across crops, animal husbandry and fisheries, he said. He was speaking at a special session of the Viksit Krishi Sankalp Abhiyan (VKSA) campaign at ICAR-Central Marine Fisheries Research Institute

    Science Behind Sankalp or Tying the Red Sacred Thread on Hand in any Puja

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    Science Behind Sankalp or Tying the Red Sacred Thread on Hand in any Puj

    An investigation into adaptive power reduction techniques for neural hardware

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    In light of the growing applicability of Artificial Neural Network (ANN) in the signal processing field [1] and the present thrust of the semiconductor industry towards low-power SOCs for mobile devices [2], the power consumption of ANN hardware has become a very important implementation issue. Adaptability is a powerful and useful feature of neural networks. All current approaches for low-power ANN hardware techniques are ‘non-adaptive’ with respect to the power consumption of the network (i.e. power-reduction is not an objective of the adaptation/learning process). In the research work presented in this thesis, investigations on possible adaptive power reduction techniques have been carried out, which attempt to exploit the adaptability of neural networks in order to reduce the power consumption. Three separate approaches for such adaptive power reduction are proposed: adaptation of size, adaptation of network weights and adaptation of calculation precision. Initial case studies exhibit promising results with significant power reduction

    Building social enterprise ecosystems in India: lessons from Sankalp

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    Why are some places more entrepreneurial than others? The answer might lie in entrepreneurship ‘ecosystems’ – the wider structures that support innovation and entrepreneurial activity in an area – a topic discussed at this year’s Global Sankalp Summit in Delhi. Florence Engasser and Madeleine Gabriel discuss the components that feed into successful ecosystems and raise questions about developing them in different contexts

    Component-wise analysis of thermal management systems for electric aircraft

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    Submission original under an indefinite embargo labeled 'Open Access'. The submission was exported from vireo on 2025-10-20 without embargo termsThe student, Sai Sankalp Shekar, accepted the attached license on 2025-07-22 at 11:14.The student, Sai Sankalp Shekar, submitted this Thesis for approval on 2025-07-22 at 11:21.This Thesis was approved for publication on 2025-07-23 at 14:56.DSpace SAF Submission Ingestion Package generated from Vireo submission #22690 on 2025-10-20 at 20:15:38The efficient removal of waste heat generated by electrical losses is essential to maximizing electromechanical system performance—particularly electric aircraft operating at megawatt power levels. This study explores how thermal management system design impacts battery performance and life in a 19-seat passenger regional electric aircraft. Using physics-based modeling, three key subsystems are sized: the heat acquisition network within each battery module, a fuselage-integrated heat exchanger that rejects heat to the atmosphere, and all associated auxiliary components. The power consumption of each thermal management system component throughout all flight phases is quantified and, by establishing the aircraft's maximum achievable range. Realistic projections for metropolitan air mobility are provided. Alternative thermal management system sizing strategies are expanded to highlight the repercussions of oversizing a thermal management system while maintaining cell temperatures within safe limits and mitigating performance fade. This analysis accounts for system-level interactions: thermal management system mass itself increases propulsion power demand, which in turn draws more current from the battery. By performing Latin Hypercube sampling across multiple configurations, variations in thermal and electrical profiles driving battery degradation are mapped. Sensitivity studies reveal that although reservoir volume primarily governs system weight, the integrated thermal management system has a significant, coupled effect on battery life. These findings offer clear guidance for designing thermal management architectures that optimally balance weight against heat-rejection capacity to extend pack life

    Enhanced household automation through robotic manipulation

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    Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2027-05-01The student, Sankalp Yamsani, accepted the attached license on 2025-05-09 at 14:07.The student, Sankalp Yamsani, submitted this Thesis for approval on 2025-05-09 at 14:11.This Thesis was approved for publication on 2025-05-09 at 14:38.DSpace SAF Submission Ingestion Package generated from Vireo submission #22290 on 2025-10-19 at 19:17:16General-purpose manipulators are becoming increasingly common in both industrial and academic settings, with the long-term goal of integrating them into household environments to enhance everyday automation. However, existing systems still require significant effort for seamless integration. To demonstrate the potential of advanced household automation, we retrofitted two common household appliances—a robotic vacuum and a tea table—with a 6 DoF manipulator and perception modules. The enhanced robotic vacuum is equipped with purposeful navigation and the ability to remove obstructions, making it more effective in cluttered environments. Meanwhile, the tea table setting showcases a specific task—chess gameplay—highlighting how careful planning can enable successful task execution, even with kinematic constraints

    Viksit Bharat Sankalp 2047

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    The "Viksit Bharat Sankalp 2047" initiative aims to position India as a developed nation by the centenary of its independence. This research examines the Perceptions, aspirations, and envisioned roles of Indian youth in contributing to this ambitious vision. By employing a mixed-methods approach, including Comprehensive surveys and qualitative interviews, the study identifies key themes that resonate with the younger generation, such as the importance of quality education, meaningful employment, and environmental sustainability. Findings reveal that Indian youth view themselves as critical stakeholders in national development, emphasizing the need for the active participation in policy making and governance. They highlight challenges such as socioeconomic disparities, limited access to quality infrastructure, and environmental concerns that must be addressed to achieve the initiative's objectives. The study concludes by underscoring the transformative potential of youth-led efforts in shaping a progressive and sustainable future for India, advocating for policies that integrate youth perspectives in strategic planning and implementation. Their search provides valuable insights for policymakers to align national Priorities with the aspirations of the youth, ensuring inclusive and participatory developmen
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