CELE Strength of Materials — TorsionSlides
Presentation-style slides for Torsion — the fastest way to cover the chapter if you are reviewing on your phone between classes or shifts. Covers everything Professional Regulation Commission (PRC) — Board of Civil Engineering tests on this chapter in the CELE Strength of Materials subtest.
Exam context
For the Civil Engineer Licensure Examination, Professional Regulation Commission (PRC) — Board of Civil Engineering tests Strength of Materials under a "Core" label, with Torsion in the 2nd slot across 8 chapters. CELE candidates must clear the 70% weighted average, no sub-test below 50% cut on the 2026 paper, which draws about a meaningful share of Strength of Materials questions. Date to watch: May and November 2026.
Torsion - Slides
Slides
Torsion: Overview and Definition
Slide Id
S1
Torsion of Circular Shafts: Fundamental Assumptions
Slide Id
S2
Shear Stress Distribution in Circular Shafts
Slide Id
S3
Polar Moment of Inertia: Solid and Hollow Shafts
Slide Id
S4
Torsion Formulas: Maximum Shear Stress
Slide Id
S5
Worked Example 1: Maximum Shear Stress in Solid Shaft
Slide Id
S6
Angle of Twist in Circular Shafts
Slide Id
S7
Worked Example 2: Angle of Twist Calculation
Slide Id
S8
Power Transmission and Torque Relationship
Slide Id
S9
Worked Example 3: Shaft Sizing for Power Transmission
Slide Id
S10
Flanged Bolt Couplings: Torque Transmission
Slide Id
S11
Worked Example 4: Flanged Bolt Coupling Capacity
Slide Id
S12
Thin-Walled Closed Tubes Under Torsion
Slide Id
S13
Worked Example 5: Thin-Walled Circular Tube Under Torsion
Slide Id
S14
Combined Loading: Bending and Torsion
Slide Id
S15
Key Formulas Summary: Torsion
Slide Id
S16
Common Exam Pitfalls and Tips
Slide Id
S17
Chapter Summary and Learning Objectives Mastery
Slide Id
S18
Stored In
chapter_slides
Slide Count
18
Summary Only
true
Ready to practise for the CELE 2026?
Super Tutor's AI review plan adapts to your weak areas and builds a weekly practice schedule around your target CELE exam date.