Ambrose Eze | Astrophysics | Excellence in Research

Mr. Ambrose Eze | Astrophysics | Excellence in Research

PHD at the University of Nigeria, Nigeria

Ambrose Chukwudi Eze is an academic professional currently pursuing a Ph.D. in Space Science/Astrophysics at the University of Nigeria, Nsukka. He holds a Master’s and Bachelor’s degree in Physics and Astronomy, alongside a Higher National Diploma in Science Laboratory Technology. Eze is a Lecturer at Godfrey Okoye University, Enugu State, where he also serves as a mentor to students. His research interests span astrophysics, space science, electronics, and computational techniques. A published researcher, Eze has contributed to several international journals and is an active member of various professional organizations, including the Nigerian Institute of Science Laboratory Technology.

Professional Profiles

Publications:

The 6.7 keV thermal emission lines in the stellar flare spectra of two chromospherically active Binaries: Algol and GT Mus, Publication date: 2022.

Contribution of GT-Mus to the 6.7 keV Emission Line from the Galactic Ridge, Publication date: 2019.

The 6.7 keV Line Emission from the Stellar Flare of Algol, Publication date: 2019.

The 6.7 keV Line Emission from the Stellar Flare of Algol, Publication date: 2019.

On the contribution of the 6.7 keV line emission of the Algol binary system to the 6.7 keV line emission from the galactic ridge, Publication date: 2017.

 

 

Gour Paul | Astrophysics | Best Researcher Award

Dr. Gour Paul | Astrophysics | Best Researcher Award

PHD at the University of Rajshahi, Bangladesh

Dr. Gour Chandra Paul is a distinguished Professor of Mathematics at the University of Rajshahi, Bangladesh. Born on November 20, 1974, he holds a Ph.D. from the same institution and has conducted postdoctoral research at Universiti Sains Malaysia. His research focuses on planetary evolution, numerical modeling of storm surges, and solving differential equations. Dr. Paul has been honored with several academic awards, including the SHEN Award for Excellence in Research and the Dean’s Award. He is also an experienced educator, supervising numerous M.Sc. theses and teaching courses in astronomy, astrophysics, and industrial mathematics.

Professional Profiles

Education

2010: Postdoctoral, School of Mathematical Sciences, University Sains Malaysia, 11800 Pulau Pinang, Malaysia (July 1, 2010 – July 31, 2011) 2005: Ph.D., Department of Mathematics, University of Rajshahi Thesis Title: Investigation of some aspects of protoplanetary model of planetary formation. 1995: M.Sc. in Applied Mathematics, Rajshahi University, First Class (First Position) (Held in 1998) 1994: B.Sc. in Mathematics, Rajshahi University, First Class (Second in Science Faculty) (Held in 1997) 1991: HSC, Rajshahi Board, Bogra Azizul Hoque College, First Division 1989: SSC, Rajshahi Board, Talora Altaf Ali High School, First Division astrophysics

Professional Experience

July 1, 2017 – Present: Professor (GRADE 2), Department of Mathematics, University of Rajshahi January 4, 2013 – Present: Professor, Department of Mathematics, University of Rajshahi March 30, 2008 – January 3, 2013: Associate Professor, Department of Mathematics, University of Rajshahi August 1, 2012 – August 21, 2012: Post-Doctoral Visiting Researcher, Universiti Sains Malaysia July 1, 2010 – July 31, 2011: Post-Doctoral Fellow, Universiti Sains Malaysia March 30, 2008 – June 30, 2010: Associate Professor, Department of Mathematics, University of Rajshahi March 28, 2003 – March 29, 2008: Assistant Professor, Department of Mathematics, University of Rajshahi March 28, 2000 – March 27, 2003: Lecturer, Department of Mathematics, University of Rajshahi astrophysics

Academic Awards

2021: SHEN AWARD, Excellence in Research 2015: Dean’s Award, Faculty of Science at University of Rajshahi for Excellent Research Work in Physical and Mathematical Sciences 1995: Sayed Amir Ali Award, Post Graduate Scholarship, RU 1994-1995: Graduate Talent Scholarship, RU 1989-1991: Board’s Scholarship astrophysics

Research Interest

Planetary Evolution, Earth Science, Numerical Method

Publications

  1. Exploring dynamic behaviors of diverse electrical soliton pulses in lossy nonlinear electrical transmission lines: Insights from analytical method and linear stability analysis, Publication date: 2024.
  2. Unveiling protoplanetary structure equations: semi-analytical solutions via the homotopy analysis method, Publication date: 2024.
  3. On the radius spectrum of solid grains settling in polytropic protoplanets, Publication date: 2024.
  4. SEVERE CYCLONIC STORM SITRANG: A METEOROLOGICAL ANALYSIS OF ITS FORMATION, INTENSITY, AND IMPACT ON BANGLADESHPublication date: 2024.
  5. On the solution of one-dimensional heat equation with higher-order non-central finite difference method of lines, Publication date: 2023.
  6. 1D-2D mathematical modeling of wave refraction and wave attenuation by mangrove forestsPublication date: 2023.
  7. Estimating water levels caused by a tropical storm along the Bangladesh coast: A numerical approach,  Publication date: 2023.
  8. Simulation of the tide–surge: super cyclone Sidr, Publication date: 2023.
  9. Assessing the Impact of Extensive Severe Cyclonic Storm Fani on the Coastal Communities of Bangladesh: A Case Study, Publication date: 2023.
  10. Exploring dynamic behaviors of soliton-like pulses in the lossy electrical transmission line model with fractional derivatives: a comparative study, Publication date: 2023.
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High-Energy Astrophysics

 

Introduction to High-Energy Astrophysics:

High-energy astrophysics is a branch of astronomy that focuses on the study of the universe's most energetic and extreme phenomena. It explores cosmic objects and events that emit X-rays, gamma rays, and other high-energy particles and radiation. High-energy astrophysics plays a crucial role in understanding the most violent and energetic processes in the cosmos, including black holes, supernovae, and quasars, and provides insights into the fundamental nature of the universe.

X-ray and Gamma-ray Astronomy:

Investigate the use of X-ray and gamma-ray telescopes and detectors to observe and study high-energy phenomena, such as accreting black holes, pulsars, and gamma-ray bursts, providing insights into extreme environments.

Black Hole Astrophysics:

Delve into the study of black holes, including their formation, dynamics, and the emission of X-rays and gamma rays from accretion disks and jets, shedding light on the behavior of matter under extreme gravitational conditions.

Supernovae and Supernova Remnants:

Focus on the explosive deaths of massive stars and the remnants they leave behind, studying the high-energy radiation and cosmic ray acceleration associated with these events and their impact on galactic evolution.

High-Energy Cosmic Particles:

Examine the origins and properties of high-energy cosmic particles, including cosmic rays and neutrinos, and their role in astrophysical processes and cosmic ray astronomy.

Active Galactic Nuclei (AGN):

Explore the physics of AGN, which include quasars and blazars, and their powerful emission of high-energy radiation, offering insights into the supermassive black holes at their cores and the surrounding environments.

 

 

 

  Introduction of Chiral spinors and helicity amplitudes Chiral spinors and helicity amplitudes are fundamental concepts in the realm of quantum field theory and particle physics    They play a
  Introduction to Chiral Symmetry Breaking: Chiral symmetry breaking is a pivotal phenomenon in the realm of theoretical physics, particularly within the framework of quantum chromodynamics (QCD) and the study
  Introduction to Effective Field Theory and Renormalization: Effective field theory (EFT) and renormalization are foundational concepts in theoretical physics, particularly in the realm of quantum field theory. They provide
  Introduction to Experimental Methods: Experimental methods are the backbone of scientific investigation, enabling researchers to empirically explore and validate hypotheses, theories, and concepts. These techniques encompass a wide array
  Introduction to Free Particle Wave Equations: Free particle wave equations are fundamental concepts in quantum mechanics, describing the behavior of particles that are not subject to external forces. These
  Introduction to High Energy Physics: High-energy physics, also known as particle physics, is a branch of science dedicated to the study of the most fundamental building blocks of the
  Introduction to Interactions and Fields: Interactions and fields form the foundation of modern physics, providing the framework for understanding how particles and objects interact with one another and the
  Introduction to Invariance Principles and Conservation Laws: Invariance principles and conservation laws are fundamental concepts in physics that play a pivotal role in understanding the behavior of the physical
  Introduction to Lepton and Quark Scattering and Conservation Laws: Lepton and quark scattering processes are fundamental phenomena in particle physics, allowing us to probe the structure and interactions of
  Introduction to Particle Physics and Cosmology: Particle physics and cosmology are two closely intertwined fields of scientific inquiry that seek to unravel the mysteries of the universe at both