ستافێ ئەکادیمی

Dec. 11, 2024, 12:42 p.m.
د. جلال محمد صالح ____________________________
ماموستا
Theoretical Physics (Functional Oxide Material) دا

فيزيك
كولیژا زانست
زانکۆیا دهۆك

2017 Ph.D. at the

school of Physics and Astronomy, University of Glasgow, UK

  • Postgraduate:
    • Ph.D – UoD
    • MSC – UoD
      • Research Methodology for the college of science departments including all departments such Physics, Computer science, Mathematics, Biology, and Chemistry departments. 2020 - 2021
      • Advance Quantum Mechanics: This course was for all M.SC. students at physics department. 2021 – 2021, 2023 – Continue
  • Undergraduate:
    • 2023 – Continue
      • Programming using Fortran language: this is one semester and it has both theoretical and practical sessions. It goes for semester 4 under Bologna System at the UoD/College of Science/Physics Dep.
    • 2019 – Continue
      • Introduction to quantum mechanics (theory) – UoD (3rd year students – department of physics).
      • Electrical measurements (practical) – UoD (3rd year students – department of physics).
    • 2019 – 2021
      • Physics (theory + practical) – uon (http://web.nawroz.edu.krd/) (1st year students – Engineering college/department of Computer and Communications).
    • 2018 – 2019
      • General physics (theory + practical) – dpu (https://www.dpu.edu.krd/) (2nd year students – department of petrochemical engineering).
      • Electronics (practical) – UoD (3rd year students – department of physics).
    • 2017 – 2018
      • Plasma physics (theory) – UoD (3rd year students – department of physics).
      • Optics (practical) – UoD (3rd year students – department of physics).
    • 2016 – 2017
      • Plasma physics (theory) – UoD (3rd year students – department of physics).
      • Mechanics and properties of matter (practical) – UoD (1st year students – department of physics).
    • 2010 – 2011
      • Fortran (theory) – UoD (2nd year students – department of physics).
      • fortran (practical) – UoD (2nd year students – department of physics).
    • 2009 - 2010
      • Electricity and magnetism (practical) – UoD (1st year students – department of physics).

البحث العلمي

  1. Dindar S. Bari, Jalal M. Salih, et al, Impact of Gender Differences and Body Mass Index on Skin Biophysical Parameters of Coronavirus Patients.https://doi.org/10.25271/sjuoz.2024.12.3.1306. (2024)
  2. Zozan Y. Mohammed§, Sarkawt A. Sami, Jalal M. Salih, First-Principles Calculation of Structural, and Electronic Properties of Cubic Perovskite CsPbF3https://doi.org/10.26565/2312-4334-2023-3-23. (2023)
  3. Dindar S. Bari, Jalal M. Salih, et al, Influence of sunscreen sun protection factor on moisture, oil and pH of the skin. P. 2599 from Issue: 7 at https://www.prt-parlar.de/download_feb_2023/. (2023)
  4. Jalal M. Salih, et al. Size-Specific Dose Estimation (SSDE) and its Relation with Patient Body Fat Using Bioelectrical Impedance Analysis. Conference: MEDICAL PHYSICS INTERNATIONAL. http://www.mpijournal.org/MPI-v11i0. Page:240. (2023)
  5. Salih, J.M. et al. The Effect of Humidity and Temperature on Indoor and Outdoor COVID-19 Infections – https://doi.org/10.1155/2022/4496679. (2022)
  6. Salih, J.M. et al. Monitoring the skin biophysical parameters among coronavirus patients for three days in a row: a preliminary study – https://doi.org/10.2478/joeb-2022-0004. (2022)
  7. Salih, J.M. et al. Maghemite-like regions at crossing of two antiphase boundaries in doped BiFeO3. At Materials Science and Technologyhttps://doi.org/10.1179/1743284715Y.0000000115. (2015)

  • Quantitative atomic resolution characterisation - Quantifications on functional oxide material that was made of the difference between high resolution TEM (HRTEM) and high resolution STEM (HRSTEM) for quantitative polarisation mapping around antiphase boundaries (APBs).
  • Theoretical condensed matter - Ab initio study of Electronic and optical properties of materials using such as Abinit software software.

Student Name: Zozan Yousif Mohammed

Degree: M.Sc. Thesis

Year of Award: 2022 – 2023

Thesis Title: First-Principles Calculation of Structural, Electronic, and Optical Properties of Cubic Perovskite CsPbF3