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How To Solve Second Order Differential Equations Using Laplace Transform 

AVITECHNOLOGIES
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Laplace transformation is a technique for solving differential equations. Here differential equation of time domain form is first transformed to algebraic equation of frequency domain form. After solving the algebraic equation in frequency domain, the result then is finally transformed to time domain form to achieve the ultimate solution of the differential equation. In other words it can be said that the Laplace transformation is nothing but a shortcut method of solving differential equation.
In this video you are going to learn;
1. How to prove the Laplace transform of the third derivative
2. How to transform derivatives
3. How to solve the Laplace transform
4. Step By Step technique of solving transform of derivatives
5. How to solve first order differential equations using Laplace transform
6. How to find the Laplace transform of the second derivative
7. How to find the Laplace transform of the first derivative
8. Introduction to transform of derivatives
9. How to prove Laplace transform of Derivatives
10. How to solve Laplace transform of derivatives proof
#differential
#laplacetransform
#laplace
#differentialequation
#electrical
#electricalengineering
#engineering
#engineeringmathematics
#differentialequations
#signal
#signalsandsystems
#signals_and_systems

Опубликовано:

 

13 окт 2024

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Комментарии : 29   
@DeBrown-v5t
@DeBrown-v5t Год назад
Your teaching is kind of seriousness and fun specially we love it ❤ without you I don't think I will ever understand alot
@AVITECHNOLOGIES
@AVITECHNOLOGIES Год назад
I'll find a way to frame this comment 😊
@prettyboyfx
@prettyboyfx Год назад
I feel the way you teach, you broke down Almighty Laplace, thanks
@freakturner6757
@freakturner6757 Год назад
I like the way you are fast. Saves time!
@emmanueldaniel4970
@emmanueldaniel4970 6 месяцев назад
Wow I came to RU-vid because of this particular question, here u are solving the same question.
@AVITECHNOLOGIES
@AVITECHNOLOGIES 6 месяцев назад
You're welcome 😊🤗
@markdilannyuykonge330
@markdilannyuykonge330 4 месяца назад
Your teaching is one of a kind 🎉
@AVITECHNOLOGIES
@AVITECHNOLOGIES 4 месяца назад
Thank you
@drivenfromjamaica876
@drivenfromjamaica876 6 месяцев назад
God bless you
@AVITECHNOLOGIES
@AVITECHNOLOGIES 6 месяцев назад
Amen
@NtaniElvis
@NtaniElvis 4 месяца назад
You are making this clear here sir❤
@AVITECHNOLOGIES
@AVITECHNOLOGIES 4 месяца назад
You're welcome
@SamuelWachira-k6n
@SamuelWachira-k6n 3 месяца назад
Waaaaao well understand Allah bless you
@AVITECHNOLOGIES
@AVITECHNOLOGIES 3 месяца назад
Amen
@Awwfulclasher
@Awwfulclasher Год назад
Really needed this
@ederaroprogress9066
@ederaroprogress9066 Год назад
Nice one Avitech Its really simplified
@AVITECHNOLOGIES
@AVITECHNOLOGIES Год назад
Thank you very much Sir
@gozie2153
@gozie2153 Год назад
Thank you so much
@olooalfredo
@olooalfredo 10 месяцев назад
Thank you charlie
@AVITECHNOLOGIES
@AVITECHNOLOGIES 10 месяцев назад
You're welcome 😊
@FUNAI-fu1ef
@FUNAI-fu1ef Год назад
Very nice but it wasn't clear on the board
@AVITECHNOLOGIES
@AVITECHNOLOGIES Год назад
It is clear. RU-vid automatically sets your viewing quality with the strength of your internet connection. You can adjust the quality of the video you're watching manually by clicking the settings icon at the top right hand corner of the video.
@thewise482
@thewise482 10 месяцев назад
I actually love the speed
@AVITECHNOLOGIES
@AVITECHNOLOGIES 10 месяцев назад
Thanks
@EmmanuelArday
@EmmanuelArday 5 месяцев назад
Please solve for the third order
@AVITECHNOLOGIES
@AVITECHNOLOGIES 5 месяцев назад
I have a video showing the Laplace transform of the third derivative. Once you know that, solving a problem is just by Algebraic processes. For now, I have no video solving a third order differential equation using Laplace transform.
@darling-t1o
@darling-t1o 7 месяцев назад
my african men always stands nice
@siphokunene8612
@siphokunene8612 6 месяцев назад
Thank you(•‿•)
@AVITECHNOLOGIES
@AVITECHNOLOGIES 6 месяцев назад
You're welcome 😊
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