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    Thermal degradation kinetics and modeling study of ultra high molecular weight polyethylene (Uhmwp)/graphene nanocomposite

    , Article Molecules ; Volume 26, Issue 6 , 2021 ; 14203049 (ISSN) Jafari, I ; Shakiba, M ; Khosravi, F ; Ramakrishna, S ; Abasi, E ; Teo, Y. S ; Kalaee, M ; Abdouss, M ; Ahmad Ramazani, S. A ; Moradi, O ; Ghomi, E. R ; Sharif University of Technology
    MDPI AG  2021
    Abstract
    The incorporation of nanofillers such as graphene into polymers has shown significant improvements in mechanical characteristics, thermal stability, and conductivity of resulting polymeric nanocomposites. To this aim, the influence of incorporation of graphene nanosheets into ultra-high molecular weight polyethylene (UHMWPE) on the thermal behavior and degradation kinetics of UHMWPE/graphene nanocomposites was investigated. Scanning electron microscopy (SEM) analysis revealed that graphene nanosheets were uniformly spread throughout the UHMWPE’s molecular chains. X-Ray Diffraction (XRD) data posited that the morphology of dispersed graphene sheets in UHMWPE was exfoliated. Non-isothermal... 

    Power-law compensator design for plants with uncertainties: Experimental verification

    , Article Electronics (Switzerland) ; Volume 10, Issue 11 , 2021 ; 20799292 (ISSN) Kapoulea, S ; Psychalinos, C ; Elwakil, A. S ; Tavazoei, M. S ; Sharif University of Technology
    MDPI AG  2021
    Abstract
    A power-law compensator scheme for achieving robust frequency compensation in control systems including plants with an uncertain pole, is introduced in this work. This is achieved through an appropriate selection of the compensator parameters, which guarantee that the Nyquist diagram of the open-loop system compensator-plant crosses a fixed point independent of the plant pole variations. The implementation of the fractional-order compensator is performed through the utilization of a curve-fitting-based technique and the derived rational integer-order transfer function is realized on a Field-Programmable Analog Array device. The experimental results confirm that the the phase margin is well... 

    Network autoregressive model for the prediction of covid-19 considering the disease interaction in neighboring countries

    , Article Entropy ; Volume 23, Issue 10 , 2021 ; 10994300 (ISSN) Sioofy Khoojine, A ; Shadabfar, M ; Hosseini, V. R ; Kordestani, H ; Sharif University of Technology
    MDPI  2021
    Abstract
    Predicting the way diseases spread in different societies has been thus far documented as one of the most important tools for control strategies and policy-making during a pandemic. This study is to propose a network autoregressive (NAR) model to forecast the number of total currently infected cases with coronavirus disease 2019 (COVID-19) in Iran until the end of December 2021 in view of the disease interactions within the neighboring countries in the region. For this purpose, the COVID-19 data were initially collected for seven regional nations, including Iran, Turkey, Iraq, Azerbaijan, Armenia, Afghanistan, and Pakistan. Thenceforth, a network was established over these countries, and the... 

    Exergy analysis of a bio-system: Soil–plant interaction

    , Article Entropy ; Volume 23, Issue 1 , 2021 , Pages 1-28 ; 10994300 (ISSN) Ledari, M. B ; Saboohi, Y ; Valero, A ; Azamian, S ; Sharif University of Technology
    MDPI AG  2021
    Abstract
    This paper explains a thorough exergy analysis of the most important reactions in soil– plant interactions. Soil, which is a prime mover of gases, metals, structural crystals, and electrolytes, constantly resembles an electric field of charge and discharge. The second law of thermodynamics reflects the deterioration of resources through the destruction of exergy. In this study, we developed a new method to assess the exergy of soil and plant formation processes. Depending on the types of soil, one may assess the efficiency and degradation of resources by incorporating or using biomass storage. According to the results of this study, during different processes from the mineralization process...