ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 1 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics Bruce Mayer, PE Licensed Electrical.

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ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 1 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics Bruce Mayer, PE Licensed Electrical & Mechanical Engineer Engineering 25 Tutorial: Mass Moment of Inertia

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 2 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics TriAngular Prism I y  Determine the moment of inertia of the homogenous triangular prism with respect to the y axis. Express the result in terms of the mass m of the prism. Hint: For integration, use thin plate elements parallel to the x-y plane having a thickness of dz.

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 3 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 4 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 5 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 6 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics

ENGR36_Tutorial_Triangle-Prism_Mass_Moment_of_Inertia.pptx 7 Bruce Mayer, PE Engineering-36: Engineering Mechanics - Statics