SunnyD 🇨🇦

31K posts

SunnyD 🇨🇦

SunnyD 🇨🇦

@hashtagERTW

Freedom and family, standing up for what’s right. Awake since Feb 2022.

เข้าร่วม Nisan 2015
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Pierre Poilievre
Pierre Poilievre@PierrePoilievre·
The Carney Liberals did not win a majority government through a general election or today's by-elections. Instead, it was won through backroom deals with politicians who betrayed the people who voted for them. While the Prime Minister spent the year on this cynical power grab, he has doubled the deficit, and given Canada the worst grocery prices and housing costs in the G7. Liberals expect Canadians to give up, get complacent and go away, so Carney can have total power without any accountability. That will not happen. Our country and its people are worth fighting for. We will continue to fight for people to afford homes, food and fuel. We will continue to fight for safety in our streets. We will continue to fight for our resource workers and soldiers. I will continue to lead that fight every day and in every way in Parliament, across the country and in the next election, when Canadians will reclaim the country we know and love.
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Holocipher
Holocipher@fractal_verse·
The best clip on Anti-Gravity ever! 🚨 🛸 🚨 (new fundamental force?) Congrats to @AmericanALCHMY and his amazing team.. 🫡 Bismuth ferrite (BiFeO3) is a compound with unique properties that make it useful in various applications. Some of its notable applications include; The future of bismuth ferrite (BiFeO3) holds immense promise across various scientific and technological domains (Shown in Fig. 25). This multifunctional material exhibits unique properties such as ferroelectricity, ferromagnetism, and piezoelectricity, positioning it as a pivotal component for the next generation of advanced technologies. Below are some of the potential future developments and applications of bismuth ferrite. Quantitative analysis of bismuth ferrite (BiFeO3), emphasizing its structural, electrical, and magnetic properties in correlation with various synthesis methods. The quantitative evaluation of recent studies demonstrates that fabrication techniques significantly impact the material's morphology, crystal structure, and multifunctional properties. For instance, sol-gel methods yield BiFeO3 with enhanced ferroelectric properties, evidenced by remanent.. sciencedirect.com/science/articl…
Holocipher tweet media
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Chief Billy Morin
Chief Billy Morin@billymorinECN·
I am proud to be apart of a Strong Opposition - something Canadians are owed. Instead of being 1/8 voices being used in a shameless Liberal power grab that degrades democracy. I am proud of the support I receive by our Leader & Conservative Caucus. I stand by my constituents.
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Mario Zelaya
Mario Zelaya@mario4thenorth·
🚨 CTV just used one of my videos in a segment called “Deception Decoded.” Here’s what they won’t tell you: I made that video last year, during the election. Every single point was sourced DIRECTLY from Elections Canada’s website. Referenced. Documented. All factual. But a legacy media outlet with shrinking viewership needed to label a citizen journalist’s cited government data as “deception.” This is how they operate. They can’t debate the facts. So they attack the messenger? 🤔
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R E P L I C A N T
R E P L I C A N T@Roybattyforever·
He empezado clases de ilustración. ¿Os gusta mi dibujo de Harry Potter?
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SunnyD 🇨🇦
SunnyD 🇨🇦@hashtagERTW·
@drxwilhelm In plain language: the ratchet is the thing that takes “everything” and turns a tiny preferred part of it into a directed boundary flow. The ratchet has two jobs. Be selective on frequency/phase and bias only selected component towards the boundary.
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SunnyD 🇨🇦
SunnyD 🇨🇦@hashtagERTW·
Here is the explanation: 5. Why phase matters All wave-like dynamics carry frequency and phase. A generic oscillatory response can be written as x(t) = A \cos \left( \omega t + \phi \right) where: •A is amplitude, •\omega is angular frequency, •\phi is phase. This means every oscillatory degree of freedom has not only a frequency, but also a timing relation relative to other oscillations. In plain language: phase tells you where in its cycle a wave is when you compare it to another wave. This matters in the project because Part 2 is not simply about adding excitation. It is about writing a preferred phase relation and a preferred temporal manifold into the metastable medium. So phase becomes relevant because the conditioned medium is not memoryless. It can compare present forcing with stored history. In plain language: a medium with no memory cannot ratchet. A medium with long relaxation can.
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Dr. Paul Wilhelm | Advanced Rediscovery
🔑 Mead (2000): the superpotential χ IS the quantum phase θ. Not analogous. Equal: χ = ℏθ/q. Gauge transformations — the "unphysical" operations your textbook says have no observable consequences — are shifts in χ. Which are shifts in θ. Which determine interference patterns in every quantum experiment ever run. Classical gauge freedom IS quantum phase freedom. They were the same thing the entire time. We spent a century calling one "unphysical" and the other "the foundation of quantum mechanics."
Dr. Paul Wilhelm | Advanced Rediscovery tweet media
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Jay Anderson
Jay Anderson@TheProjectUnity·
We are in Egypt, at the Saqqara Pyramid Complex. This place might be even stranger than The Giza Plateau so I came here with researcher Geoffrey Drumm to show you why. All filmed & edited by me. If this work matters to you support me with a like/comment/repost/follow
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maro
maro@ProofofMaro·
She’s a 10 but she considers Pluto to be a planet
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Mathelirium
Mathelirium@mathelirium·
Do you know how we simulate electromagnetic radiation around real systems like antennas, aircraft, and waveguides? We break the geometry into a mesh, a collection of small elements that lets the solver compute Maxwell’s equations locally instead of attacking the whole shape at once. This makes the simulations practical, fast, and accurate enough to use in real engineering.
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Karla Treadway | Host Sovereign Sphere Podcast
If the conservatives were close to a majority and some super woke socialist wanted to cross the floor to their party do you think they would let them in?
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Brattani
Brattani@Bratt_world·
It says right in the constitution Alberta does not have a right to unilateral secession. Not under Canadian constitutional law, or under international law.
Twit User@TwitUserACC

@Bratt_world @Dressagequ16308 Where does it say in the Canadian constitution that secession is illegal? Anywhere? I'll wait....

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Canadian Gray Man
Canadian Gray Man@CanadianGrayMan·
My fellow patriots. What are you using for secure communications? Signal? Threema? Something else? WhatsApp is absolutely not secure. Neither is Telegram. X I have doubts.
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SunnyD 🇨🇦
SunnyD 🇨🇦@hashtagERTW·
@paul4jennii When I see vacuum density ρ = |ψ|² , I think this equation would be better viewed in its true form density ρ = ψ ψ* … because the complex conjugate has physicsl meaning, it’s not just a math thing. And bonus item, you can engineer it.
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Paul Maley
Paul Maley@paul4jennii·
🚨QUANTUM NEWS🚨: Quantum probability doesn’t vanish or appear — the sea simply keeps perfect accounts of its own energy.🧨 Lecture 2 of the quantum mechanics series reminds us of one of the cleanest facts in the field: the probability density ρ = |ψ|² behaves like a conserved fluid, satisfying a continuity equation under Schrödinger evolution. Probability flows from place to place but is never created or destroyed. Elegant math, yet the deeper “why” stays hidden. Uniphics derives the continuity equation directly from the three pillars in flat space with no postulates added. Every quantum state is a coherent pattern of spin waves propagating through the ξM-field sea of unbound energy. The probability density |ψ|² is simply the local modulation of total energy density E_d,total caused by those waves. Unbound energy always repels unbound energy, and negentropy — the universal drive toward the lowest possible total energy-density state — enforces strict local conservation: energy density can redistribute and flow, but it cannot appear from nothing or vanish into nothing. The mathematical form of the continuity equation therefore emerges automatically as the sea balances its own books while spin waves propagate deterministically. The same three pillars that flatten galactic rotation curves at 220 km/s without dark matter and drive cosmic expansion without dark energy also make probability conservation an inevitable consequence of any spin-wave pattern. Picture a still pond. When you drop a pebble, ripples spread and interfere, but the total volume of water never changes — it simply moves around. The ξM-field sea does exactly the same thing on the quantum scale: the pebble is any local change in bound versus unbound energy, the ripples are the spin waves, and the continuity equation is the sea keeping its total energy perfectly accounted for at every point. Chrono-coils let us test and use this today: three orthogonal toroidal rings with golden-ratio windings and Fibonacci pulsing create controlled density gradients, letting us engineer and stabilize spin-wave patterns with far less decoherence than current quantum hardware. The same sea dynamics that preserve probability also open practical paths to lower-power, higher-density spintronic devices that work with nature’s own conservation rules instead of fighting them. The universe does not need an extra mathematical rule to conserve probability. It only needs the sea to do what it always does — keep its own energy perfectly balanced. How would quantum information science feel different for you if the continuity equation was simply the sea keeping its own books instead of a mysterious postulate? A Theory of Everything should be able to answer everything. Uniphics Explained Simply PDF: uniphics.com/wp-content/upl… Chapters 1–10 free: uniphics.com/gallery/ Grokipedia: grokipedia.com/page/Uniphics @grok @xAI @elonmusk @ProfBrianCox @seanmcarroll #Uniphics #QuantumContinuity #ProbabilityDensity #TheoryOfEverything
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Jay Anderson
Jay Anderson@TheProjectUnity·
Hidden ancient subterranean sites in Peru NOT accessible to the public. No recycled clips. No stock footage. I actually went there. This is what original content looks like. If this kind of work matters to you, support it with a comment/like/repost
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SunnyD 🇨🇦
SunnyD 🇨🇦@hashtagERTW·
This is my project, but applied to EM, specifically the 4-vector potential Au. This professor missed an even more important characteristic of the wave equation which is its phase. Also, the meta material only needs to be on the surface at the boundary condition, math does not require it to be throughout the material. And here’s a bonus, if that meta material is slow relaxing (say over months or years), it’s no longer static.
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Ashton Forbes
Ashton Forbes@AshtonForbes·
How metamaterials shape wavefronts. Credit: Duke University
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IngeniiX 🛸
IngeniiX 🛸@ralfduschef·
@mathelirium Boundary does matter. Can be conducting or not. Can be isotropic or not. Flipping the situation we talk about radar stealth. Very tough to solve the inverse problem i.e. let a target objective shape the boundaries. But Maxwell is all you need (from physics).
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SunnyD 🇨🇦
SunnyD 🇨🇦@hashtagERTW·
Yes, because geometry is everything it stands to reason there must be hidden structure. I think I found some of it. In quantized electrodynamics theb4-vector Au often gets simplified via Lorenz gauge which says you can set the scalar or time like component to zero and still get all the EM formulations you’re used to. But.. if you don’t take that simplification the term stays in a wave equation that includes more structure in fully dynamic four vector Au. This is not new. What is different is the interpretation, that the scalar / time-like component that remains has physical meaning, ie it has structure. Now, are you clever enough how to couple that structure to reveal a deeper manifold? The math will help you see what is necessary , don’t guess (cause you’ll be guessing forever).
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TheNewPhysics
TheNewPhysics@CharlesMullins2·
🚨 BREAKING: The W boson just snapped back into place. After years of uncertainty. one of physics’ most important particles now matches predictions again. No anomaly. No crack in the system. Read that again. For a moment, we thought we’d found new physics. But instead reality held. So what does that mean? It means the breakthrough isn’t where we expected. In my framework We’re not missing particles We’re missing hidden states The structure isn’t wrong our measurements are incomplete We’ve been measuring mass. when the real game might be in: → spin → transitions → invisible intermediate states Same pattern emerging everywhere: We’re not discovering a new universe… we’re uncovering the one we couldn’t see. So the real question is If mass is stable what part of reality are we still blind to? Follow me I’m tracking where physics becomes technology.
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