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D-Index & Metrics

Mathematics

D-Index
45
Citations
7312
World Ranking
1494
National Ranking
14

Engineering and Technology

D-Index
46
Citations
7950
World Ranking
5167
National Ranking
84

Overview

Snehashish Chakraverty is affiliated with the National Institute of Technology Rourkela in India. Their research spans predominantly the fields of Mathematics and Engineering, with a focus on Modeling and Simulation, Mechanics of Materials, Statistical and Nonlinear Physics, Statistics and Probability, and Control and Systems Engineering.

Their main research topics include Fractional Differential Equations Solutions, Fuzzy Systems and Optimization, Composite Structure Analysis and Optimization, Nonlocal and Gradient Elasticity in Micro/Nano Structures, Numerical Methods in Engineering, Probabilistic and Robust Engineering Design, and Nonlinear Waves and Solitons.

Frequent publication venues for Chakraverty's work include:

  • Mathematical Methods in the Applied Sciences
  • The European Physical Journal Plus
  • Journal of Vibration Engineering & Technologies
  • ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik
  • Mathematics and Computers in Simulation

Their collaborative network features several frequent co-authors, including:

  • Subrat Kumar Jena
  • Rajarama Mohan Jena
  • Arup Kumar Sahoo
  • Dhabaleswar Mohapatra
  • Uddhaba Biswal

Recent publications of Snehashish Chakraverty demonstrate involvement across diverse topics and methodologies. Selected recent papers are:

  • Application of shifted Chebyshev polynomial-based Rayleigh-Ritz method and Navier's technique for vibration analysis of a functionally graded porous beam embedded in Kerr foundation (2020), Engineering With Computers
  • On the solution of time-fractional dynamical model of Brusselator reaction-diffusion system arising in chemical reactions (2020), Mathematical Methods in the Applied Sciences
  • Hygro-Magnetic Vibration of the Single-Walled Carbon Nanotube with Nonlinear Temperature Distribution Based on a Modified Beam Theory and Nonlocal Strain Gradient Model (2020), International Journal of Applied Mechanics
  • Analysis of axially temperature-dependent functionally graded carbon nanotube reinforced composite plates (2021), Engineering With Computers
  • Vibration and buckling characteristics of nonlocal beam placed in a magnetic field embedded in Winkler-Pasternak elastic foundation using a new refined beam theory: an analytical approach (2020), The European Physical Journal Plus

Chakraverty has contributed to several book publications with publishers including World Scientific, Synthesis lectures on mathematics and statistics, and Morgan & Claypool Publishers. Notable books authored include:

  • Applied Artificial Neural Network Methods for Engineers and Scientists (2020), World Scientific
  • Wave Dynamics (2021), World Scientific
  • Artificial Neural Networks (2020), World Scientific
  • Time-Fractional Order Biological Systems with Uncertain Parameters (2020), Synthesis lectures on mathematics and statistics
  • Affine Arithmetic Based Solution of Uncertain Static and Dynamic Problems (2020), Synthesis lectures on mathematics and statistics
  • Modeling and Simulation of Nanofluid Flow Problems (2020), Morgan & Claypool Publishers

Best Publications

  • Free vibration of Euler and Timoshenko functionally graded beams by Rayleigh–Ritz method

    K.K. Pradhan;S. Chakraverty

  • Vibration of Plates

    Snehashish Chakraverty

  • Free vibration of exponential functionally graded rectangular plates in thermal environment with general boundary conditions

    S. Chakraverty;K.K. Pradhan

  • Application of Legendre Neural Network for solving ordinary differential equations

    Susmita Mall;S. Chakraverty

  • Recent Developments and Applications in Quantum Neural Network: A Review

    S. K. Jeswal;S. Chakraverty

  • Chebyshev Neural Network based model for solving Lane-Emden type equations

    Susmita Mall;S. Chakraverty

  • Single Layer Chebyshev Neural Network Model for Solving Elliptic Partial Differential Equations

    Susmita Mall;S. Chakraverty

  • Effects of different shear deformation theories on free vibration of functionally graded beams

    K.K. Pradhan;S. Chakraverty

  • Numerical solution of nonlinear singular initial value problems of Emden-Fowler type using Chebyshev Neural Network method

    Susmita Mall;S. Chakraverty

  • Flexural Vibration of Skew Plates Using Boundary Characteristic Orthogonal Polynomials in Two Variables

    B. Singh;S. Chakraverty

  • Solving time-fractional Navier–Stokes equations using homotopy perturbation Elzaki transform

    Rajarama Mohan Jena;S. Chakraverty

  • FREE VIBRATION OF FUNCTIONALLY GRADED THIN RECTANGULAR PLATES RESTING ON WINKLER ELASTIC FOUNDATION WITH GENERAL BOUNDARY CONDITIONS USING RAYLEIGH–RITZ METHOD

    S. Chakraverty;K. K. Pradhan

  • Fault classification in structures with incomplete measured data using autoassociative neural networks and genetic algorithm

    Tshilidzi Marwala;S. Chakraverty

  • Concepts of Soft Computing

    Unknown

  • Advanced Numerical and Semi-Analytical Methods for Differential Equations

    Snehashish Chakraverty;Nisha Rani Mahato;Perumandla Karunakar;Tharasi Dilleswar Rao

  • Free vibration of rectangular nanoplates using Rayleigh–Ritz method

    S. Chakraverty;Laxmi Behera

  • Application of shifted Chebyshev polynomial-based Rayleigh–Ritz method and Navier’s technique for vibration analysis of a functionally graded porous beam embedded in Kerr foundation

    Subrat Kumar Jena;Snehashish Chakraverty;Mohammad Malikan

  • On the use of orthogonal polynomials in the rayleigh-ritz method for the study of transverse vibration of elliptic plates

    B. Singh;S. Chakraverty

  • Transverse vibration of simply supported elliptical and circular plates using boundary characteristic orthogonal polynomials in two variables

    B. Singh;S. Chakraverty

  • Functional Link Neural Network Learning for Response Prediction of Tall Shear Buildings With Respect to Earthquake Data

    Deepti Moyi Sahoo;Snehashish Chakraverty

  • A new method for solving real and complex fuzzy systems of linear equations

    Diptiranjan Behera;S. Chakraverty

  • Dynamic Response Analysis of Fractionally Damped Beams Subjected to External Loads using Homotopy Analysis Method

    Rajarama Mohan Jena;S. Chakraverty;Subrat Kumar Jena

  • Fuzzy Differential Equations and Applications for Engineers and Scientists

    S Chakraverty;Smita Tapaswini;Diptiranjan Behera

  • Residual Power Series Method for Solving Time-fractional Model of Vibration Equation of Large Membranes

    Rajarama Mohan Jena;S. Chakraverty

  • Artificial Neural Networks for Engineers and Scientists: Solving Ordinary Differential Equations

    Snehashish Chakraverty;Susmita Mall

Frequent Co-Authors

Tshilidzi Marwala
Tshilidzi Marwala United Nations University
Mohammad Malikan
Mohammad Malikan Gdańsk University of Technology
Dumitru Baleanu
Dumitru Baleanu Lebanese American University
Francesco Tornabene
Francesco Tornabene University of Salento
Hadi Rezazadeh
Hadi Rezazadeh Amol University of Special Modern Technologies
Hamid M. Sedighi
Hamid M. Sedighi Shahid Chamran University of Ahvaz
Hari M. Srivastava
Hari M. Srivastava University of Victoria
Thabet Abdeljawad
Thabet Abdeljawad Prince Sultan University
Mohamed A. Eltaher
Mohamed A. Eltaher King Abdulaziz University
Juan J. Nieto
Juan J. Nieto University of Santiago de Compostela

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