Timeline for Derivation of Lagrange Equations from Newton's Second Law for a Non-holonomic System of Particles
Current License: CC BY-SA 4.0
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Nov 6, 2022 at 19:02 | history | edited | Hosein Rahnama | CC BY-SA 4.0 |
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Mar 25, 2020 at 11:28 | history | edited | Hosein Rahnama | CC BY-SA 4.0 |
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Apr 6, 2018 at 21:43 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Apr 5, 2018 at 12:02 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Apr 5, 2018 at 1:48 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Apr 5, 2018 at 1:35 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Apr 5, 2018 at 1:26 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Mar 27, 2018 at 17:01 | comment | added | Hosein Rahnama | @Qmechanic: This method has nothing to do with the type of constraints. You have just stuck in your old point of view. | |
Mar 26, 2018 at 14:39 | comment | added | Qmechanic♦ | $\uparrow$ The mentioned links in above 2 comments only deals with holononic constraints. | |
Feb 15, 2018 at 12:47 | vote | accept | Hosein Rahnama | ||
Apr 6, 2018 at 21:44 | |||||
Nov 25, 2017 at 12:01 | comment | added | Hosein Rahnama | @Qmechanic: Also, see equation E of the answer to this post by Valter Moretti and the explanations below that. | |
Nov 25, 2017 at 11:47 | comment | added | Hosein Rahnama | @Qmechanic: Take a look at chapter two and specifically section 2.2 and the equation above Eq. (2.21). | |
Nov 25, 2017 at 11:46 | history | edited | Hosein Rahnama | CC BY-SA 3.0 |
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Nov 25, 2017 at 11:39 | comment | added | Qmechanic♦ | This answer (v2) seems to conflate virtual displacements and $t$-differentiation. | |
Nov 25, 2017 at 10:28 | history | answered | Hosein Rahnama | CC BY-SA 3.0 |