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Course Criteria
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4.00 Credits
Solutions and applications of ordinary differential equations including separable, exact, homogeneous and non-homogeneous linear equations and others. Numerical approximation methods as well as substitutions, the total differential, separation of variables, integrating factors, undetermined coefficients, variation of parameters, Laplace Transforms and power series methods are covered. Prerequisite: MAT 2280 with a grade of C or better or satisfactory score on Sinclair Community College mathematics placement test
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3.00 Credits
Systems of linear equations, matrices, determinants, linear transformations, Euclidean n-space, coordinate vectors, abstract vector spaces, dimension and rank, eigenvalues and eigenvectors. Prerequisite: MAT 2280 with a grade of C or better or satisfactory score on Sinclair Community College mathematics placement test
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5.00 Credits
Ordinary differential equations of first and second order including, the Laplace transform, numerical approximation methods and applications. Vectors in Rn, systems of linear equations, systems of differential equations, matrices, linear transformations, subspaces, dimension and rank, coordinate vectors, determinants, eigenvalues, eigenvectors and abstract vector spaces. Prerequisite: MAT 2290 with a grade of C or better or satisfactory score on Sinclair Community College mathematics placement test
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3.00 Credits
Vectorial treatment of forces and moments. Analysis of trusses and frames. Centroids, friction and moment of inertia. Internal shear and moment for beams. Virtual work. This calculus-based course is designed for Engineering University Transfer students. Two classroom, two lab hours per week.
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3.00 Credits
First and second laws of thermodynamics; thermodynamic properties of gases, vapors and gas-vapor mixtures; energy-systems analysis including power cycles, refrigeration cycles and air-conditioning processes. Introduction to thermodynamics of reacting mixtures. Prerequisite: MAT 2280
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0.50 - 9.00 Credits
Varied content offering of special interest to the discipline but not covered within existing courses; may be scheduled in a classroom/ seminar setting or in nontraditional format.
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3.00 Credits
Stress and deformations, torsions, shear and moments in beams, stresses in beams, beam deflections, combined stresses and eccentric loading. Two classroom, two lab hours per week.
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3.00 Credits
Kinematics of particles and rigid bodies; acceleration, work, energy, impulse and momentum of particles and rigid bodies. Two classroom, two lab hours per week. Prerequisite: MEE 2101
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2.00 Credits
Interpretation of engineering drawings. Includes principles of orthographic projection, drafting symbols, surface finish symbols, welding symbols and geometric dimensioning and tolerancing symbols. One classroom, two lab hours.
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3.00 Credits
Mathematics for engineering technology students to prepare them for critical thinking, analytical reasoning and problem solving. Students will apply math to typical engineering technology problems from a variety of fields. Two classroom, two lab hours per week. Prerequisite: MAT 1270
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