COMPUTATIONAL PHYSICS (2/1 Credits)
Learning Outcomes: On successful completion of this course, students will be able to: LO1 – solve problems in topics of Electric Charge and Electric Fields, Voltage and Current, Resistance and Capa...
Learning Outcomes: On successful completion of this course, students will be able to: LO1 – solve problems in topics of Electric Charge and Electric Fields, Voltage and Current, Resistance and Capa...
Learning Outcomes : On successful completion of this course, student will be able to: Solve problems in topics of Electric Charge and Electric Fields, Voltage and Current, Resistance and Capacitance,...
Learning Outcomes: On successful completion of this course, students will be able to: LO1 - solve problems in topics of Electric Charge and Electric Fields, Voltage and Current, Resistance and Capaci...
Learning Outcomes: Upon successful completion of this course, students are expected to be able to identify modern programming methods and describe the extent and limitations of computational methods ...
Learning Outcomes: Solve problems in Electric Charge and Electric Field, Voltage and Current, Capacitance and Resistance, Circuits Design & Analysis; Execute a planned simulation of Basic Resist...
Learning Outcomes : Describe Statistical Computing methods such as random number generation, Monte Carlo simulations, and numerical optimization, essential for solving complex statistical problem...
Learning Outcomes: On successful completion of this course, student will be able to: Create two-dimensional objects completely; Design AutoCAD drawing tools for two-dimensional Interior drawing proje...
Learning Outcomes: On successful completion of this course, student will be able to: Create two-dimensional objects completely; Compute AutoCAD drawing tools for two-dimensional Interior dra...
Learning Outcomes: On successful completion of this course, student will be able to: Create two-dimensional objects completely; Compute AutoCAD drawing tools for two-dimensional Interior drawing pro...
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