【交流回路】インピーダンス後編(コイルやコンデンサによって位相がずれる理由)
Check out the first half of the video here♪ "About Coils and Capacitors" • 【交流回路】インピーダンス前編(コイルやコンデンサが電気抵抗になる理由) This video assumes you have some understanding of phase in AC. There are also videos about phase (↓), so please take a look if you're interested. "About AC Phase" • 【第2種電気工事士】15 交流の位相について "About Lagging Phase and Leading Phase" • 【第2種電気工事士】16 遅れ位相/進み位相について [AC Circuits] Series Playlist https://www.youtube.com/playlist?list... xBShM60BRM4W9IfldCFB_5n --------------------------------------------------------------------------------- "Why can we use 100V and 200V appliances?" "What is the difference between single-phase AC and three-phase AC?" "What is an alloy equilibrium phase diagram?" "I don't know how to draw SFD and BMD..." "I don't know how to calculate deflection curves..." "The calculation problems for the Class 2 electrician's license exam are difficult..." Your questions might be answered on our channel. We post videos related to mechanical engineering and electrical engineering, so if you're new to the channel, please take a look at our homepage. We hope you'll find a video that answers your questions behind the thumbnail! --------------------------------------------------------------------------------------------------------------------------------------- Ending Theme: "Todoketeyo" / tora • 【初音ミクDark】とどけてよ【オリジナル】 --------------------------------------------------------------------------------------------------------------------------------------------------------------------- #Impedance #Phase #TechnicalCollege
![[Certified Electrician Class 2] What are Active Power, Reactive Power, and Apparent Power? (AC Po...](https://i.ytimg.com/vi/UqfYok0qyKM/hqdefault.jpg?sqp=-oaymwEjCNACELwBSFryq4qpAxUIARUAAAAAGAElAADIQj0AgKJDeAE=&rs=AOn4CLCwDNHSN1MIhcMKijX53a5s3ihHNA)
[Certified Electrician Class 2] What are Active Power, Reactive Power, and Apparent Power? (AC Po...

【交流回路】インピーダンス前編(コイルやコンデンサが電気抵抗になる理由)

【交流回路】三相交流の中性線が無くてもいい理由

PS20 - DC CIRCUITS PROBLEM SET PART 3 (09-13)

【ホームセンターで役立つ!?】ねじの規格と寸法〜ミリねじとインチねじ〜

What is an Inductor? How it works.
![[Offset Cylinder] How it Works - Why Does Offsetting the Axis Improve Output?](https://i.ytimg.com/vi/CodUEZbRSsM/hqdefault.jpg?sqp=-oaymwEjCNACELwBSFryq4qpAxUIARUAAAAAGAElAADIQj0AgKJDeAE=&rs=AOn4CLA6cumUmYlRt9IYpSvB-XEOqj3zgg)
[Offset Cylinder] How it Works - Why Does Offsetting the Axis Improve Output?

【交流回路】複素数表示について

#10【第二種電気工事士】コイル・コンデンサ…なぜ遅れる?進む?

電圧を上昇させる不思議な回路「昇圧コンバータ」とは何? 動作原理を解説

【高周波】初心者必見!知らないとヤバい伝送線路の基礎知識

Why is a terminating resistor necessary? Explained using a printed circuit board and a wave machine.

【交流回路】100Vと200V両方の家電が使える秘密_初級編(単相2線式と単相3線式)

Brasilien – Marokko Highlights | Gruppe C, FIFA WM 2026 | sportstudio

【高校物理】交流回路のまとめ

An easy-to-understand explanation of three methods for converting three-phase AC to single-phase AC.

iインダクタの仕組みを徹底解説

電気回路でよく見かけるこの部品は何? 【コンデンサ, キャパシタ】【イチケン電子基礎シリーズ】

【交流回路】電圧が高いとロスが小さい理由〜送電電圧はなぜ高いのか?〜

