Gurmukh Singh
SUNY Fredonia, Canisius College, Panjab University, Clarion University of Pennsylvania
About
Currently a faculty member in the Department of Computer and Information Sciences, Dr. Singh was born in a tiny village in the state of Punjab, North India. After completing a B.S. in physics, chemistry and mathematics from a countryside college, he joined the physics department at Punjab University, graduating with a B.S. Honors in Physics, followed by an M.S. Honors and Ph.D. in Nuclear and Astrophysics. After immigrating to the U.S. in 1985 as the recipient of a post-doctoral fellowship at the State University at Buffalo, Dr. Singh taught at several area colleges before joining the Fredonia faculty.
Dr. Singh has published over 200 scholarly articles, of which over 100 are in reputed American, European and Asian journals. His current research interests are in the fields of applications of information systems in science education, computer gaming, pattern recognition, computer graphics, networking, wavelets, computer simulations, multimedia, wavelets, pattern recognition, bioinformatics, computational biology, physics, chemistry, nuclear physics, astrophysics and space science, and elementary particle physics, involving computer modeling, data acquisition and its analysis. In his research, Dr. Singh performs extensive Monte Carlo simulations to investigate characteristics of singly-charged (hadrons) and multi-charged projectile fragments emerged in heavy-ion interactions at relativistic energies from experiments performed at national and international accelerator facilities like the Brookhaven National Laboratory (BNL) and the European Center for Nuclear Research (CERN) in Geneva, Switzerland. For computer modeling, he does extensive Monte Carlo simulations on high speed computers.
Dr. Singh has three very productive collaborations: (I) In genetics and bioinformatics with Dr. Satpal Singh, Associate Professor, Department of Pharmacology and Toxicology, University of Buffalo, USA, in Relativistic Energy Nuclear Physics (ii) with Dr. A. Mukhopadhyay, North Bengal University, India, and (iii) with Dr. B. K. Singh, Banaras Hindu University, India. He is a recent winner of Senior Lecturer Award and Robert W. Kasling Award that was conferred to him on the basis of outstanding work done on Computer Simulation and Relativistic Energy Nuclear Physics Experiments performed at Brookhaven National Lab, USA and CERN, Geneva, Switzerland.
Employment
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SUNY Fredonia Senior Lecturer2016 - Present
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SUNY Fredonia Faculty/Assistant Professor2005 - 2016
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Canisius College Faculty/Assistant Professor2003 - 2005
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Clarion University of Pennsylvania Faculty/Assistant Professor2001 - 2002
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SUNY Fredonia Faculty/Assistant Professor1999 - 2001
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Millard Fillmore Collge/SUNY at Buffalo Assistant Professor/Lecturer1992 - 2001
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University at Buffalo - The State University of New York Assistant Professor Research/Research Scientist/Visiting Scientist/Lecturer1985 - 2005
Education
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Panjab University PhD1972 - 1978
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Panjab University MSc Honors1970 - 1971
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Panjab University BSc Honors1969 - 1970
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Wavelet Analysis of Shower Track Distribution in High-Energy Nucleus-Nucleus Collisions Save
- Factorial correlator and short-range correlation of charged particles produced in 28 Si–Ag/Br interaction at 14.5 A GeV Save
- Limiting Fragmentation Behavior of Projectile Helium ($Z = 2$) Fragments in Nucleus–Nucleus Interactions at 14.6 A GeV Save
- Study of Projectile Helium ($Z = 2$) Fragments Produced in Nucleus–Nucleus Interactions at 14.6 A GeV Save
- Computer Simulations of Quantum Theory of Hydrogen Atom for Natural Science Education Students in a Virtual Lab Save
- Educational Technology Eroding National Borders Save
- Intermittency and erraticity of charged particles produced in 28 Si-Ag/Br interaction at 14.5 A GeV Save
- CENTRALITY DEPENDENCE OF NONSTATISTICAL FLUCTUATION IN SINGLE PARTICLE DENSITY DISTRIBUTION IN 32 S–Ag/Br INTERACTION AT 200A GeV/c Save
- Computer simulations to model Mendel's laws on inheritance in computational biology Save
- Modeling Bohr's theory of hydrogen atom for physics and chemistry education, and computer science graduates Save