converted links to standard md not the obsidian bodge

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Robin P. Clark 2026-05-07 16:54:23 +01:00
parent a0408e896a
commit e2d1890515
23 changed files with 72 additions and 72 deletions

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[[Human Biology]]
[Human Biology](Human%20Biology.md)

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![[Screenshot from 2026-02-18 13-17-53.png]]
See Ti Datasheet [[ti_SBOA226]] usng this the following python code can be used to configure the values for a given $f_c$ cut off frequency.
See Ti Datasheet [ti_SBOA226](ti_SBOA226.md) usng this the following python code can be used to configure the values for a given $f_c$ cut off frequency.
[[Code for Butterworth Low Pass Design]]
[Code for Butterworth Low Pass Design](Code%20for%20Butterworth%20Low%20Pass%20Design.md)

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[[buffs]]
[buffs](buffs.md)

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[[PID]]
[PID](PID.md)
## Feedback and Control Systems Book
![[Feedback Control of Dynamic Systems 7th Franklin [Text].pdf]]

2
DIV.md
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### Cartesian coordinate definition
In general, the definition of divergence using [[Cartesian coordinates]] are more commonly used and simpler than the coordinate-less definition which is defined at a point.
In general, the definition of divergence using [Cartesian coordinates](Cartesian%20coordinates.md) are more commonly used and simpler than the coordinate-less definition which is defined at a point.
Divergence

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| SIL 2 | 1e-7 to 1e-6 |
| SIL 3 | 1e-8 to 1e-7 |
| SIL 4 | 1e-9 to 1e-8 |
[[PFD_PFH_when_to_use]]
[PFD_PFH_when_to_use](PFD_PFH_when_to_use.md)
[[PFD_and_PFH]]]
[PFD_and_PFH](PFD_and_PFH.md)]
---

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[[Filters]]
[[mesh]]
[[ADCs]]
[[Transistors]]
[[Valves]]
[[Optics]]
[[CANbus]]
[[Control Engineering]]
[[Peak Detector]]
[Filters](Filters.md)
[mesh](mesh.md)
[ADCs](ADCs.md)
[Transistors](Transistors.md)
[Valves](Valves.md)
[Optics](Optics.md)
[CANbus](CANbus.md)
[Control Engineering](Control%20Engineering.md)
[Peak Detector](Peak%20Detector.md)
[[piezo amplifiers]]
[piezo amplifiers](piezo%20amplifiers.md)

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See Analog Filter Design by Valkenburg ISBN:4-8338-0091-3
[[Simple RC low pass filter]]
[[SingleOpampCap]]
[[Sallen Key]]
[Simple RC low pass filter](Simple%20RC%20low%20pass%20filter.md)
[SingleOpampCap](SingleOpampCap.md)
[Sallen Key](Sallen%20Key.md)

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![[imgp3389_20071053719_o.jpg_compressed 1.jpeg]]
[[Five Ball Exercises]]
[Five Ball Exercises](Five%20Ball%20Exercises.md)

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Also consider the step function, $1/s$. Differentiate what do you get? 1. Dirac impulse function!!!
[[Worked Example RC Low Pass]]
[Worked Example RC Low Pass](Worked%20Example%20RC%20Low%20Pass.md)

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[[Quaternions]]
[[Vector_Calculus]]
[[Eigen_values_vectors_states]]
[[Laplacian]]
[[Fourier Transforms]]
[[Laplace Transforms]]
[[Calculus]]
[[Trigonometry]]
[Quaternions](Quaternions.md)
[Vector_Calculus](Vector_Calculus.md)
[Eigen_values_vectors_states](Eigen_values_vectors_states.md)
[Laplacian](Laplacian.md)
[Fourier Transforms](Fourier%20Transforms.md)
[Laplace Transforms](Laplace%20Transforms.md)
[Calculus](Calculus.md)
[Trigonometry](Trigonometry.md)

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[[Photo Diode Amplifier]]
[[Phototransistor Amplifier]]
[Photo Diode Amplifier](Photo%20Diode%20Amplifier.md)
[Phototransistor Amplifier](Phototransistor%20Amplifier.md)
.

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[[ Schrodinger explained]]
[[DeBroglie PhD]]
[Schrodinger explained](Schrodinger%20explained.md)
[DeBroglie PhD](DeBroglie%20PhD.md)
[[Ideas]]
[Ideas](Ideas.md)
[[Complex_probabilities]]
[Complex_probabilities](Complex_probabilities.md)

4
QM.md
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[[Vector_Calculus]]
[Vector_Calculus](Vector_Calculus.md)
[[QM Kinetic energy]]
[QM Kinetic energy](QM%20Kinetic%20energy.md)

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[[ButterworthLowPass]]
[ButterworthLowPass](ButterworthLowPass.md)
[[General purpose python analyser]]
[General purpose python analyser](General%20purpose%20python%20analyser.md)

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This is useful because derivatives acting on exponentials bring down constants.
[[Quantum Phase Corkscrew]]
[Quantum Phase Corkscrew](Quantum%20Phase%20Corkscrew.md)

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This cut off frequency is defined as $$\omega_{c} = \frac{1}{\tau}, \; f_{c} =\frac{1}{2 \pi \tau}$$
For a Laplace transform derivation see [[Worked Example RC Low Pass]]
For a Laplace transform derivation see [Worked Example RC Low Pass](Worked%20Example%20RC%20Low%20Pass.md)
---

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** Every *×2* increase in frequency → 6 dB
But in this case its drop off from the Gain of the amplifier. High frequencies will have a theoretical lowest gain of one.
A double pole actual low pass filter configuration is the [[Sallen Key]].
A double pole actual low pass filter configuration is the [Sallen Key](Sallen%20Key.md).
## Example

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[[Git_workflows]]
[[Python General]]
[[Embedded C]]
[[Fortran77]]
[Git_workflows](Git_workflows.md)
[Python General](Python%20General.md)
[Embedded C](Embedded%20C.md)
[Fortran77](Fortran77.md)

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[[EN298]]
[[EN60730]]
[[EN61508]]
[EN298](EN298.md)
[EN60730](EN60730.md)
[EN61508](EN61508.md)
[[WG17_SIL_BURNER_STANDARDS_OVERVIEW]]
[WG17_SIL_BURNER_STANDARDS_OVERVIEW](WG17_SIL_BURNER_STANDARDS_OVERVIEW.md)

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[[Bipolar Junction Transistors]]
[[FETS]]
[[MOSFETS]]
[Bipolar Junction Transistors](Bipolar%20Junction%20%20Transistors.md)
[FETS](FETS.md)
[MOSFETS](MOSFETS.md)

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# Science Stuff
[[Electronics]]
[[Chemistry]]
[[Maths]]
[[Physics]]
[[Software]]
[[Biology]]
[[Standards]]
[[Conciouness]]
[Electronics](Electronics.md)
[Chemistry](Chemistry.md)
[Maths](Maths.md)
[Physics](Physics.md)
[Software](Software.md)
[Biology](Biology.md)
[Standards](Standards.md)
[Conciouness](Conciouness.md)
---
# Other Stuff
[[Clothing]]
[[Cycling]]
[[Juggling]]
[[Unicycling]]
[[Music]]
[Clothing](Clothing.md)
[Cycling](Cycling.md)
[Juggling](Juggling.md)
[Unicycling](Unicycling.md)
[Music](Music.md)
---

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[[Posters]]
[[DIV]]
[[GRAD]]
[[CURL]]
[Posters](Posters.md)
[DIV](DIV.md)
[GRAD](GRAD.md)
[CURL](CURL.md)