Engr 213

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An introduction of scales, plan reading, engineering graphics and computer aided designing. Weekly seminars presented by practicing engineers to help students gain a better understanding of various engineering fields and the attributes required to be a successful engineer. Introduction to the engineering profession and engineering disciplines; introduction to the engineering design process and team projects. Introduction to effective problem-solving techniques using various engineering applications with an emphasis on accuracy. Definition of fundamental concepts and components, including operational amplifiers.

Engr 213

Studies properties of structure materials. Analyzes stress and deformation in axially-loaded members, in circular shafts and beams and in statically indeterminate systems containing these components. Calculate average normal, shear, and bearing stresses on sections and connectors. Relate allowable stress, material strength and safety factor in component design. Calculate stresses for axial, torsion, beam bending, and combined loading on simple structural elements. Draw shear and bending moment diagrams, and write beam equilibrium equations. Calculate beam deflections using integration of the moment equation and the method of superposition. Define average normal, shear, and bearing stresses, and calculate for simple axially loaded components and pinned connectors. Define normal, shear, and thermal strain, and calculate for simple object deformations. Describe tension tests and stress-strain diagrams.

Engr 213 and use equations for shear stress and shear flow in monolithic and composite beams with typical symmetric cross-sectional geometries. Fundamental concepts of energy analysis and thermodynamic principles.

Explore Ecampus. Gain specialized skills quickly online, with the option to stack credits into a future degree. Explore microcredentials ». College of Engineering. Properties of structural materials; analysis of stress and deformation in axially loaded members, circular shafts, and beams, and in statically indeterminate systems containing these components.

Youmin Zhang. Associate Professor. Concordia University. E-mail: ymzhang encs. Office Hours:. Tuesdays and Thursdays pm - Ramin Motamedi Email: raminioo yahoo.

Engr 213

Topics covered include line types, drawing sheet layouts, sketching, orthographic projections, section views, isometric drawing, dimensioning, tolerances, and threads and fasteners. This course uses theory, laboratory investigation, and circuit simulation software to introduce basic electrical and circuit analysis principles. Emphasis is placed on direct current DC circuits containing voltage and current sources and resistor networks in series, parallel, and series-parallel configurations. This course also introduces the concepts of electric and magnetic fields in the context of capacitors and inductors and their transient responses in DC circuits. A section on basic alternating current AC resistive circuits with sinusoidal sources is included. In this course, both simulation and implementation of DC circuits will be conducted.

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Contact Info. Particle and rigid body mechanics for static force systems. Attributes: No Textbook Required. Single-phase ac power. This course may be subject to Enforced Prerequisites that restrict registration into the course. Request Info. Most Helpful Review No reviews have been written yet. Quick Navigation. Mathematical methods for analyzing and solving a range of engineering problems, including linear algebra, vector and multivariate calculus, complex variables calculus, and Fourier analysis. Textbook list available at osubeaverstore. Weekly seminars presented by practicing engineers to help students gain a better understanding of various engineering fields and the attributes required to be a successful engineer. This course is designed to provide the undergraduate engineering student with an opportunity to participate in engineering projects, research. Pre-req: CHM with a minimum grade of D.

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Analysis is applied to axially-loaded members, circular shafts, beams and columns. Or download a sample syllabus. Pre-req: MTH with a minimum grade of D. Upon successful completion of this course, the student will have satisfactorily accomplished the goals and objectives listed in this course content guide. Thank you for supporting us! Explore Ecampus. Search catalog. For Students Students. Textbooks [ Textbooks ] Syllabus: Available in Canvas to students enrolled in this course. Apply Now Apply.

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