COMPUTATIONAL BIOLOGY (2/1 Credits)
Learning Outcomes: On successful completion of this course, student will be able to: explain basic concept of Principle of Biology, Advances in Computational Biology, Genomics, Proteomics, Bioin...
Learning Outcomes: On successful completion of this course, student will be able to: explain basic concept of Principle of Biology, Advances in Computational Biology, Genomics, Proteomics, Bioin...
Learning Outcomes: Topics:
Learning Outcomes: Upon successful completion of this course, students are expected to be able to develop an understanding of techniques and concepts used in Computational Biology; apply computationa...
Learning Outcomes On successful completion of this course, students should have: A knowledge of Fliud Dynamics; A working knowledge of a variety of computational techniques that can be used for solvi...
Learning Outcomes On successful completion of this course, student will be able to: Describe the Coordinate-Free Geometry and basics of Differential Geometry; Discuss Coordinate-Free Geometric Comput...
Learning Outcomes After completing this course, the students will be able to describe fundamentals of geometry and algorithms to find information about objects and their relations of geometry Topics...
Learning Outcomes: On successful completion of this course, students will be able to: Explain the properties of geometric objects in geometric problems; Describe efficient algorithms for convex hull,...
Learning Outcomes: On successful completion of this course, student will be able to: Explain the properties of geometric objects in geometric problems; Describe efficient algorithms for convex hull, ...
Learning Outcomes On successful completion of this course, student will be able to: Explain Error Detection Code and its implementation; Explain the basis Error Correction Code concept through Hammin...
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