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praveen-kumar--g
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Feasibility of using bulk metallic glass for self-expandable stent applications | Praveen Kumar, G. | 2017 |
Finite element analysis.
Biomaterials. Finite element method. Metals. Molecular dynamics. Stents. Crimping. Molecular dynamics simulations. Nitinol. Self-expandable. Metallic glass. Bulk metallic glass. Glass. Unclassified drug. Zirconium. Carotid artery stenting. Cava valve implantation. Mitral valve replacement. Self expanding stent. Transcatheter aortic valve implantation. Transcatheter mitral valve replacement. Vascular surgery. |
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| 2 | کتاب | Customer Relationship Management : Concept, Strategy, and Tools Customer Relationship Management | Kumar, V. | Springer, | 2018 |
Customer Relations -- Management.
Business & Economics -- Customer Relations. |
HF 5415 .5 .K859 2018
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| 3 | مقاله | Exergy and economic analysis of solar chimney in iran climate: tehran, semnan, and bandar abbas | Ahmadi, M. H. | International Information and Engineering Technology Association, | 2020 |
Exergy.
Optimization. Solar chimney. Solar radiation intensity. |
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| 4 | پایان نامه | طراحی و مدیریت آگاه از کیفیت خدمات سیستم های نهفته بحرانی - مختلط Quality-of-Service Aware Design and Management of Embedded Mixed-Criticality Systems | رنجبر، بهناز Ranjbar, Behnaz | صنعتی شریف، با همکاری دانشگاه صنعتی درسدن آلمان | 1402 | سامانه های نهفته بحرانی - مختلط Mixed-Criticality Emdedded Systems / کیفیت خدمات Service Quality / زمان بندپذیری Schedulability / کاربردی سازی Utilization / بهرهوری سیستم Resource Utilization / سربارهای زمانی Timing Overheads |
19-57344
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| 5 | مقاله | Thermal process computing in nanofluid using dissipation and squeezing constraints | Kumar Mishra, N. | 2024 |
Heat transfer coefficients.
Shear flow. Fluid phasis. Heat transfer applications. Nanofluids. Nanoparticle concentrations. Physical constraints. Thermal. Thermal mechanisms. Thermal process. Viscous dissipation. Thermal modeling. |
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| 6 | مقاله | SUT at semeval-2023 task 1: prompt generation for visual word sense disambiguation | Ghahroodi, O. | Association for Computational Linguistics, | 2023 |
Word sense disambiguation systems.
Visual word. Word Sense Disambiguation. |
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| 7 | مقاله | Sutnlp at semeval-2023 task 4: lg-transformer for human value detection | Hematian Hemat, H. | Association for Computational Linguistics, | 2023 |
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| 8 | مقاله | Sutnlp at semeval-2023 task 10: rlat-transformer for explainable online sexism detection | Hematian Hemati, H. | Association for Computational Linguistics, | 2023 |
Detection system.
English languages. Generalisation. Language model. Novel methods. Online interaction. Performance. Simple++. Subtask. Test sets. |
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| 9 | مقاله | Online peak power and maximum temperature management in multi-core mixed-criticality embedded systems | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2019 |
Dynamic Slacks.
Mixed-Criticality System. Multi-Core System. Peak Power Consumption. Run-Time Phase. Cooling systems. Criticality (nuclear fission) Dynamic frequency scaling. Electric power utilization. Embedded systems. Energy utilization. Heuristic methods. Systems analysis. Voltage scaling. Cooling Capacity. Dynamic voltage and frequency scaling. Maximum temperature. Mixed criticalities. Mixed-criticality systems. Multi-core systems. Runtimes. Slack assignment. Online systems. |
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| 10 | مقاله | Power-Aware run-time scheduler for mixed-criticality systems on multi-core platform | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2020 |
Dynamic Slack.
Multi-Core Platform. Multicore processing. Power demand. Run-Time Management. Runtime. Scheduling. Task analysis. Timing. Timing Overhead. Vehicle dynamics. Criticality (nuclear fission) Dynamic frequency scaling. Electric power utilization. Online systems. Voltage scaling. Deadline constraint. Heterogeneous Multi-Cores. Maximum frequency. Maximum temperature. Mixed criticalities. Mixed-criticality systems. Multi-core platforms. Parallel executions. Heuristic methods. |
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| 11 | مقاله | Reliability centered maintenance for rolling stock: a case study in coaches' wheel sets of passenger trains of Iranian railway | Rezvanizaniani, M. | 2008 |
Industrial engineering.
Locomotives. Railroad cars. Reliability. Safety factor. Wheels. Cost effectives. Maintenance optimizations. Maintenance plans. Maintenance productivities. Maintenance strategies. Maintenance tasks. Maintenance works. Passenger coaches. Passenger train coaches. RCM. Reliability centered maintenances. Rolling stocks. Significant factors. Wheel set. Preventive maintenance. |
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| 12 | مقاله | Learning-Oriented QoS- and drop-aware task scheduling for mixed-criticality systems | Ranjbar, B. | MDPI, | 2022 |
Drop rate.
Dynamic slack. Machine-Learning. Mixed-Criticality. Quality-of-Service (QoS) Run-time management. |
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| 13 | مقاله | Power-Aware runtime scheduler for mixed-criticality systems on multicore platform | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2021 |
Criticality (nuclear fission)
Dynamic frequency scaling. Electric power utilization. Online systems. Scheduling. Voltage scaling. Deadline constraint. Heterogeneous Multi-Cores. Maximum frequency. Maximum temperature. Mixed criticalities. Mixed-criticality systems. Multi-core platforms. Parallel executions. Heuristic methods. |
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| 14 | مقاله | Toward the design of fault-tolerance-and peak-power-aware multi-core mixed-criticality systems | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2021 |
Criticality (nuclear fission)
Electric power utilization. Fault tolerance. Forestry. Integrated circuit design. Interactive computer systems. Power management. Catastrophic consequences. Cooling Capacity. Maximum temperature. Mixed criticalities. Mixed-criticality systems. Real-life applications. Single platform. State-of-the-art approach. Real time systems. |
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| 15 | مقاله | Toward the design of fault-tolerance-aware and peak-power-aware multicore mixed-criticality systems | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2022 |
Fault tolerance.
Mixed-criticality (MC) Multicore platforms. Peak-power management. Scheduling. Criticality (nuclear fission) Electric power utilization. Forestry. Integrated circuit design. Interactive computer systems. Power management. Catastrophic consequences. Cooling Capacity. Maximum temperature. Mixed criticalities. Mixed-criticality systems. Real-life applications. Single platform. State-of-the-art approach. Real time systems. |
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| 16 | مقاله | BOT-MICS: Bounding time using analytics in mixed-criticality systems | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2022 |
Mixed-criticality (MC)
optimization. resource utilization. worst case execution times (WCETs) analysis. Cost benefit analysis. Criticality (nuclear fission) Distribution functions. Economic and social effects. Embedded systems. Interactive computer systems. Quality of service. Response time (computer systems) Switching. Time switches. Analyse. Bad-case execution time’. Mixed criticalities. Mode switching probability. Mode-switching. Optimisations. Quality-of-service. Real - Time system. Resources utilizations. Schedulability. Switching probability. Systems operation. Task analysis. Tight execution time bound. Time bound. Timing. Worst-case execution time. Real time systems. |
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| 17 | مقاله | BOT-MICS: Bounding time using analytics in mixed-criticality systems | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2021 |
Cost benefit analysis.
Criticality (nuclear fission) Distribution functions. Economic and social effects. Embedded systems. Interactive computer systems. Job analysis. Quality control. Quality of service. Time switches. Analyse. Bad-case execution time’. Mixed criticalities. Mode switching probability. Mode-switching. Optimisations. Quality-of-service. Real - Time system. Resources utilizations. Schedulability. Switching probability. Systems operation. Task analysis. Tight execution time bound. Time bound. Worst-case execution time. Real time systems. |
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| 18 | مقاله | Improving the timing behaviour of mixed-criticality systems using chebyshev's theorem | Ranjbar, B. | Institute of Electrical and Electronics Engineers Inc, | 2021 |
Economic and social effects.
Quality of service. Time switches. Timing circuits. Mixed criticalities. Mixed-criticality systems. Mode-switching. Processor utilization. State of the art. System operation modes. Worst case scenario. Worst-case execution time. Criticality (nuclear fission) |
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| 19 | مقاله | SinaAI at semeval-2023 task 3: a multilingual transformer language model-based approach for the detection of news genre, framing and persuasion techniques | Sadeghi, A. | Association for Computational Linguistics, | 2023 |
Augmentation techniques.
Data augmentation. Fine tuning. Genre detection. Language model. Model based approach. Multiple languages. News articles. Performance. Subtask. |
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| 20 | مقاله | Statistical method to assess Tachypleus gigas and Carcinoscorpius rotundicauda (Xiphosura) allometry | Meilana, L. | 2024 |
Arthropod.
Linear. Morphology. Population. Size. |
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