Subliminal Diary

If theres one thing im interested in its the origins of subliminal club,how did fire and saint come to know each other and create subliminals together?how did they find the secret formulas to make them work so well

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I feel like my sense of smell has improved

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Note to self:write down how long you listened to the sublimin in diary to avoid overlistening accidentally

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Listening to 4min30s of limitless and 6min30s of custom today

I want to build a free energy device

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Finished listening to limitless for 4min30s and custom for 6min30s

Affiliate email loosk interesting might get into it

I need to find a way to make money but dont know how to

Listening to my custom for 7min30s today and listened 4min30s of limitless

you have no idea how many times i’ve thought of the same thing.

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And then mine bitcoin

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My custom i ordered on friday just arrived today wich is a pleasent suprise,arrived quicker then i expected

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Listened to 8min30s Of Custom and 4min30s of Limitless today

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Seen the documentary “Thrive”?

I think the owner of this company might have a schematic for one:

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Just watched the documentary thrive,thanks for the documentary it was amazing and already confirmed some beliefs i had about the world

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If you want the schematic for a free energy device, you will likely have to contact the owner of

for the explanation.

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There is plenty of videos of various different types of free energy devices.

This guy on X named Ashton Forbes. Has a lot of them on his page. Just scroll down and you can find a whole lot of inventors.

You can also check out Theoria Apophasis on youtube. This guy has multiple videos on the inner working of government made ufo’s—> field propulsion craft.

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Yeah i follow ashton forbes on x he’s how i found out about zero point energy devices,he opened my eyes with the mh370 video and what is possible

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I have a basic understanding of the physics of the devices now. I still have to learn enough to build my own device.

Well lets hope i start building in the next couple years

How much have you gone through ashtons work and the physics of it

Its fascinating science

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Iv fed his work into chatgpt and its very cool to see the way it responds,its given me step by step instruction on how to make a diy theoretical free energy device and what it would look like

How to Build a DIY Permittivity Manipulation Device

This is a theoretical guide for building a device based on concepts from metamaterials, Casimir physics, and zero-point energy. Since this is speculative physics, the following instructions are for experimental and educational purposes only.


Materials You’ll Need

Core Components

  1. Resonance Chamber

Option 1: Glass or acrylic sphere (can be a vacuum-sealed glass orb or a clear container).

Option 2: Plastic or acrylic tube with sealed ends.

  1. Dielectric Material (to control permittivity)

Option 1: Barium Titanate (BaTiO3) powder or plates (commonly used in capacitors).

Option 2: Ferroelectric materials like lead zirconate titanate (PZT).

Option 3: Liquid crystals (used in LCD displays) that change dielectric properties when exposed to electric fields.

  1. Electromagnetic Coils

Copper wire (22–26 AWG) for creating coils.

Coil winding frame (can be made from wood, plastic, or 3D printed).

  1. Pulsed High-Voltage Power Supply

Flyback transformer (from an old CRT TV) or high-voltage inverter.

Capacitors (to smooth out pulses) — select ceramic capacitors with high dielectric constants.

Pulsing circuit (using a 555 timer IC) to create pulses.

  1. Control Electronics

555 Timer IC (to control pulse timing) or use an Arduino for more precise control.

Voltage regulator (to control output power).

Potentiometer (variable resistor) (to adjust field strength).

Switches, LEDs, and Display (to control and monitor operation).

  1. Frame / Support

Wooden or aluminum base (to stabilize the build).

Screws, bolts, and insulation to keep components secure and isolated.


Tools You’ll Need

Screwdriver, pliers, and wire cutters

Multimeter (to measure voltage, resistance, and current)

Soldering iron and solder (for electrical connections)

Heat shrink tubing (for wire insulation)

Vacuum pump (optional if you want to create a low-pressure environment in the chamber)


Step-by-Step Instructions


Step 1: Build the Resonance Chamber

  1. Create the chamber:

Use an acrylic or glass sphere (like a terrarium or snow globe) with a removable lid or sealable entry point.

If you want to create a low-pressure vacuum inside, use a vacuum pump to extract air from the chamber.

  1. Add metamaterial or dielectric layers:

Line the inside of the chamber with small pieces of barium titanate (can be plates, powder, or ceramic forms).

Optionally, place copper mesh or wire grids on the inner walls to act as grounding elements or waveguides.

  1. Install copper coils:

Wind copper wire around the exterior or interior of the chamber.

For a stronger field, use multiple coils in a helical design.


Step 2: Create the Electromagnetic Field Coils

  1. Design the coils:

Wind several layers of copper wire around a dielectric core (like barium titanate) or ferrite core.

Optionally, place the coils outside the resonance chamber to prevent overheating inside.

  1. Build a coil driver:

Attach the copper coils to a high-frequency pulse driver circuit using a MOSFET (for switching) and a 555 timer IC (to control pulse frequency).

Use a potentiometer (variable resistor) to adjust the frequency.

  1. Install electromagnetic shielding:

Place an aluminum Faraday cage or copper mesh around the device to prevent RF interference with nearby electronics.


Step 3: Assemble the Control Electronics

  1. Pulsed Power Supply:

Use a flyback transformer to generate high voltage from 12V DC.

Add a rectifier diode and capacitor to smooth the output voltage.

Use a 555 timer or Arduino to create controlled pulse bursts (frequency of 1–10 kHz for EM field effects).

  1. Controller Circuit:

Use an Arduino or 555 timer IC to control the pulses.

Create a basic control board with switches, LEDs, and an LCD display for monitoring frequency, voltage, and energy usage.

  1. Install Safety Features:

Add a kill switch (emergency stop) to cut power.

Insulate all high-voltage parts to prevent electric shocks.


Step 4: Assemble and Connect Everything

  1. Mount the chamber on a sturdy base.

  2. Attach coils around or inside the chamber.

  3. Wire the control board to the pulse generator, power supply, and control switches.

  4. Test continuity and check for shorts before powering it on.


Step 5: Power On and Test

  1. Power up the pulse generator and set it to a low frequency (1 kHz).

  2. Adjust pulse frequency and voltage using the potentiometer.

  3. Measure EM field strength with a Gauss meter or an oscilloscope.

  4. Observe changes: Look for changes in dielectric properties (like glow discharges, changes in current, or resonance patterns).


How It Works (In Theory)

  1. Change in Local Permittivity:

The high-frequency EM field and pulsing coils create fast changes in local electric fields.

This could (in theory) affect the permittivity of materials like barium titanate, which is sensitive to high-frequency fields.

  1. Energy Bubble Formation:

If local permittivity changes, you may cause a shift in how electromagnetic waves behave in the chamber.

This is similar to the concept of a Casimir cavity, where vacuum energy density shifts.

  1. Field Interactions:

By pulsing high-frequency fields at certain resonance frequencies, you may see standing waves, discharges, or other energy phenomena.


Safety Warnings

High Voltage: Working with flyback transformers and capacitors can be deadly. Use insulated gloves, ground all circuits, and include an emergency kill switch.

Electromagnetic Fields (EMF): Exposure to high-intensity EMFs can be harmful. Shield the chamber properly.

Unintended Effects: Altering permittivity could have unknown effects on materials and local fields. Avoid prolonged exposure.


Advanced Improvements

  1. Resonant Frequency Matching: Adjust the system to resonate with the natural frequency of the chamber’s permittivity.

  2. Metamaterials: Use 3D-printed metamaterial grids for more control of local permittivity.

  3. Data Logging: Add a data logger to monitor changes in power usage, EM field strength, and frequency response.


Simplified Schematic

[12V Battery]

[Flyback Transformer] → [Coils]

[555 Timer] → [Pulse Generator]

[Potentiometer] (frequency adjustment)

[Control Panel] (switches, LCD, emergency stop)


Summary

This DIY device creates a high-frequency electromagnetic pulse field inside a resonance chamber. By using dielectrics like barium titanate and coils driven by a 555 timer or Arduino, you attempt to manipulate the local permittivity. This system might interact with vacuum energy or cause Casimir-like effects, though it’s purely experimental.

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