Staff

Dr. Olotu Olarenwaju Thomas

Dr. Olotu Olarenwaju Thomas

Post
Lecturer I
Department
Mathematics
Email
olotu.ot@unilorin.edu.ng
Office Address
Room 22, Ground Floor, Block 1, Department of Mathematics, University of Ilorin, Ilorin
Teaching and Research Area
Mathematics /Lecturer I

Qualifications

  • Ph. D. Mathematics
  • M. Sc. Mathematics
  • B. Sc. Mathematics
  • Nigeria Certificate of Education
  • West African School Certificate (WAEC)

Undergraduate Teaching

  • MAT 499 Project
  • MAT 413 Fluid Dynamics I
  • MAT 411 Analytical Dynamics II
  • MAT 407 Mathematical Methods III
  • MAT 402 Partial Differential Equations
  • MAT 335 Mathematical Package II
  • MAT 334 Total Differential Equations
  • MAT 328 Dynamics of a Rigid Body
  • MAT 323 Analytical Dynamics I
  • MAT 313 Geometry
  • MAT 208 Real Analysis I
  • MAT 206 Linear Algebra II
  • MAT 213 Linear Algebra I
  • MAT 201 Mathematical Methods I
  • MAT 115 Mathematics for Agriculture and Biosciences I
  • MAT 116 Mathematics for Agriculture and Biosciences II
  • MAT 114 Elementary Algebra and Trigonometry
  • MAT 113 Elementary Vectors, Geometry and Mechanics
  • MAT 112 Elementary Differential and Integral Calculus
  • MAT 111 Elementary Set Theory and Numbers
  • MTH 101 Elementary Mathematics I
  • MTH 102 Elementary Mathematics II

Research Interest

  • Natural Vibration of Tapered Rayleigh Beams with General Elastically Restrained Ends using Differential Transform Method. Unpublished Ph.D. Thesis, University of Ilorin, Ilorin 2017
  • The Effects of Centripetal and Coriolis Forces on the Dynamic Respond of Elastic Beams Traversed by Uniform Partially Distributed Moving Loads. Unpublished M.Sc. Dissertation, University of Ilorin, Ilorin 2008
  • Moment of Inertia of a Rigid Body. Undergraduate Project, University of Ilorin, Ilorin 2002
  • Free Vibration Analysis of Axially Functionally Graded Rotating Pinned-Free Tapered Rayleigh Beam by Differential Transform and Variational Iteration Methods.
  • Free Vibration Analysis of Axially Functionally Graded Tapered Rayleigh Beam resting on a Linearly Bi-Parametric Elastic Foundation.