『Engineering Exam Prep』のカバーアート

Engineering Exam Prep

Engineering Exam Prep

著者: Ran Chen EA CFP®
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Engineering Exam Prep is a free, daily podcast by OpenExamPrep covering the most in-demand engineering licensure exams — including FE Fundamentals of Engineering, FE Surveying, and the full PE catalog (Civil, Civil Geotechnical, Civil Construction, Civil Transportation, Civil Water Resources & Environmental, Mechanical, Electrical, Chemical, Architectural, Agricultural & Biological, Control Systems, and more). Each 5-minute episode breaks down one exam topic with worked-style examples, NCEES Reference Handbook callouts, common exam traps, unit-conversion gotchas, and memory tricks to help you pass on your first attempt. No fluff, no filler — just the concepts you need to know, explained the way the exam tests them. This podcast is made by Ran Chen, who holds an EA license, Insurance and Securities licenses (Series 6, 63, 65), and the CFP designation. He is passionate about opening access to high-quality exam preparation for everyone — from EITs studying for the FE to working engineers preparing for the PE. For free practice questions, AI-powered explanations, flashcards, and full study guides, visit https://open-exam-prep.com/ Subscribe and listen daily — your PE license is closer than you think.Copyright 2026 Ran Chen, EA, CFP® 日次
エピソード
  • FE Mechanical Exam Prep 34, Rigid Body Kinematics Translation and Rotation
    2026/09/03
    This podcast is made by Ran Chen, who holds an EA license, Insurance and Securities licenses (Series 6, 63, 65), and the CFP® designation. He is passionate about opening access to high-quality exam preparation resources and helping learners prepare more effectively for professional certification exams. In this episode you will learn: - How to correctly apply the relative velocity vector equation for general plane motion problems. - The critical condition for rolling without slipping and how to use the instantaneous center of zero velocity as a problem-solving shortcut. - The two essential components of relative acceleration: tangential (α x r) and normal (-ω²r). - Common exam traps, including sign convention errors with angular velocity and forgetting the normal acceleration term. - How to locate and apply the rigid body kinematics equations within the NCEES FE Reference Handbook. For more free exam prep tools, practice questions, and AI-powered explanations, visit https://open-exam-prep.com/ or YouTube Channel: https://www.youtube.com/@Open-exam-prep
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    3 分
  • FE Mechanical Exam Prep 33, Linear Impulse Momentum and Impact
    2026/09/02
    This podcast is made by Ran Chen, who holds an EA license, Insurance and Securities licenses (Series 6, 63, 65), and the CFP® designation. He is passionate about opening access to high-quality exam preparation resources and helping learners prepare more effectively for professional certification exams. In this episode you will learn: - The fundamental relationship between linear impulse and the change in momentum. - How to correctly define a system to apply the principle of conservation of momentum. - The role of the coefficient of restitution (e) in distinguishing between elastic and inelastic collisions. - A step-by-step approach for solving direct and oblique impact problems. - Common exam traps involving sign conventions, system boundaries, and USCS unit conversions. For more free exam prep tools, practice questions, and AI-powered explanations, visit https://open-exam-prep.com/ or YouTube Channel: https://www.youtube.com/@Open-exam-prep
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    3 分
  • FE Mechanical Exam Prep 32, Work Energy Power and Efficiency
    2026/09/01
    This podcast is made by Ran Chen, who holds an EA license, Insurance and Securities licenses (Series 6, 63, 65), and the CFP® designation. He is passionate about opening access to high-quality exam preparation resources and helping learners prepare more effectively for professional certification exams. In this episode you will learn: - The core work-energy equation is T1 + V1 + U_non-conservative = T2 + V2. - Non-conservative work (U) accounts for energy added or removed by external forces like friction or motors. - Potential energy for a spring (V = 1/2 * k * s^2) uses displacement 's' from its *unstretched* length, a common exam trap. - The work done by friction is always negative as it opposes the direction of motion, representing an energy loss. - Power is the time rate of doing work (P = F*v or T*ω), and efficiency is always Power Out / Power In. For more free exam prep tools, practice questions, and AI-powered explanations, visit https://open-exam-prep.com/ or YouTube Channel: https://www.youtube.com/@Open-exam-prep
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    4 分
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