Solid-State Fusion (@solidstatefe) 's Twitter Profile
Solid-State Fusion

@solidstatefe

Join us for the premier event to energize conversations and connections at the frontier of solid-state #fusion energy technology.
#LENR,#ColdFusion,#Nuclear

ID: 1401809481563004929

linkhttps://www.iccf24.org/ calendar_today07-06-2021 07:55:07

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At #ICCF26, Tomoki Kawarada shared his Investigation on whether anomalous heat generation is enhanced under laser irradiation, performing laser irradiation in addition to hydrogen absorption experiments. He reported that they observed excess heat but found the conditions for heat

At #ICCF26, Tomoki Kawarada shared his Investigation on whether anomalous heat generation is enhanced under laser irradiation, performing laser irradiation in addition to hydrogen absorption experiments. He reported that they observed excess heat but found the conditions for heat
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In his presentation on the second day of #ICCF26, Iwamura shared experimental results of heat generation in nanoscale multilayer materials, focusing on anomalously large heat generated in certain hot spots and high concentrations of oxygen in certain regions in unusual isotopic

In his presentation on the second day of #ICCF26, Iwamura shared experimental results of heat generation in nanoscale multilayer materials, focusing on anomalously large heat generated in certain hot spots and high concentrations of oxygen in certain regions in unusual isotopic
Anthropocene Institute (@anthrop_inst) 's Twitter Profile Photo

In his #ICCF26 presentation, Hagelstein shared his model for nuclear processes in solid state environments, discussing the exchange of energy and fusion rates in relation to phonon interactions. #Conference #LENR #SolidStateFusion #Fusion #FusionEnergy #ColdFusion #Nuclear

In his #ICCF26 presentation, Hagelstein shared his model for nuclear processes in solid state environments, discussing the exchange of energy and fusion rates in relation to phonon interactions.
 
#Conference #LENR #SolidStateFusion #Fusion #FusionEnergy #ColdFusion #Nuclear
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In Jonah Messinger's #ICCF26 talk, he discussed the nucleonics approach to LENR. Building on Dicke's superradiance concept, Messinger conceptualized coherent nuclear excitation transfer in solid-state systems as a kind of supertransfer.

In Jonah Messinger's #ICCF26 talk, he discussed the nucleonics approach to LENR. Building on Dicke's superradiance concept, Messinger conceptualized coherent nuclear excitation transfer in solid-state systems as a kind of supertransfer.
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At #ICCF26, David Nagel presented an overview of LENR experiments with Titanium, covering a range of loading and excitation methods including electrochemistry and thermal shocking. Over 30 studies have reported neutron emissions, and some have measured tritium. However, few

At #ICCF26, David Nagel presented an overview of LENR experiments with Titanium, covering a range of loading and excitation methods including electrochemistry and thermal shocking. Over 30 studies have reported neutron emissions, and some have measured tritium. However, few
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Our poster on display at the #ICCF26 poster session! Always an honor to share space with so many fascinating projects and brilliant researchers.

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In his talk at #ICCF26, Takuma Kado discussed his team’s research on anomalous temperature increases in copper nano-particles when exposed to colliding pulsed super-multi-jets of hydrogen gas.

In his talk at #ICCF26, Takuma Kado discussed his team’s research on anomalous temperature increases in copper nano-particles when exposed to colliding pulsed super-multi-jets of hydrogen gas.
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At #ICCF26, Masahiko Hasegawa presented on how excess heat from Cu-Ni/ZrOâ‚‚ samples varies with initial calcination conditions. He emphasized the need for deeper investigation into how sample history, processing, and nanostructure influence heat output.

At #ICCF26, Masahiko Hasegawa presented on how excess heat from Cu-Ni/ZrOâ‚‚ samples varies with initial calcination conditions. He emphasized the need for deeper investigation into how sample history, processing, and nanostructure influence heat output.
Anthropocene Institute (@anthrop_inst) 's Twitter Profile Photo

At #ICCF26, Giovanni Modanese presented theoretical and numerical work showing that protons in hydrogen-loaded metals with a cubic lattice can form coherent oscillating states tied to high-frequency electric fields—especially in micropowders. These robust states (1 eV per

At #ICCF26, Giovanni Modanese presented theoretical and numerical work showing that protons in hydrogen-loaded metals with a cubic lattice can form coherent oscillating states tied to high-frequency electric fields—especially in micropowders. These robust states (1 eV per
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In his talk at #ICCF26, Frank Gordon shared his team’s latest Lattice Energy Converter (LEC) updates. Their analysis and experiments revealed ways to boost power output, and showed that beyond gas, materials like water, gels, and solids can also work. He concluded that LEC

In his talk at #ICCF26, Frank Gordon shared his team’s latest Lattice Energy Converter (LEC) updates. Their analysis and experiments revealed ways to boost power output, and showed that beyond gas, materials like water, gels, and solids can also work. He concluded that LEC
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At #ICCF26, Jacques Ruer shared his team’s work on a No-Loss Air-Flow Calorimeter. Their transpiration screen design eliminates heat losses, works with various reactor shapes, and delivers reliable, linear results. He suggested that, with careful design and frequent calibration,

At #ICCF26, Jacques Ruer shared his team’s work on a No-Loss Air-Flow Calorimeter. Their transpiration screen design eliminates heat losses, works with various reactor shapes, and delivers reliable, linear results. He suggested that, with careful design and frequent calibration,
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At #ICCF26, Shunji Tsuji-Iio presented his team’s research on nuclear transmutations with magic numbers induced by deuterium permeation through Pd/CaO multilayer films. He shared findings on CaO layer requirements, transmutations from Cs-133 to Pr-141, and newly observed nuclear

At #ICCF26, Shunji Tsuji-Iio presented his team’s research on nuclear transmutations with magic numbers induced by deuterium permeation through Pd/CaO multilayer films. He shared findings on CaO layer requirements, transmutations from Cs-133 to Pr-141, and newly observed nuclear
Anthropocene Institute (@anthrop_inst) 's Twitter Profile Photo

At #ICCF26, Monu Kumawat presented his team’s research on transmutations during light water electrolysis and hydrogen gas loading. He found that light water electrolysis of Ni produces significant amounts of Fe, Mg, and Ce, while Cr is minimal and Zn is absent when a Gr anode was

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We’re starting our last day at #ICCF26 and what a great time it’s been! Our booth this year was looking better than ever with an extensive amount of swag–including a demo run of the SSFEx Elements Explained card deck we’ve been working on. #Conference #LENR #SolidStateFusion

We’re starting our last day at #ICCF26 and what a great time it’s been! Our booth this year was looking better than ever with an extensive amount of swag–including a demo run of the SSFEx Elements Explained card deck we’ve been working on.
 
#Conference #LENR #SolidStateFusion
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At #ICCF26, Raj Pala discussed hydrino mediated nuclear reactions, highlighting the search for experimental evidence and exploring their potential implications. #Conference #LENR #SolidStateFusion #Fusion #FusionEnergy #ColdFusion #Nuclear #nuclearenergy #cleanenergy #Research

At #ICCF26, Raj Pala discussed hydrino mediated nuclear reactions, highlighting the search for experimental evidence and exploring their potential implications.

#Conference #LENR #SolidStateFusion #Fusion #FusionEnergy #ColdFusion #Nuclear #nuclearenergy #cleanenergy #Research
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At #ICCF26, Mou-Yung Liao shared his team’s work on using Linear Flow Network Analysis (LFNA) as an assessment tool to help inform the design of LENR reactors. Their SRJ reactor series, designed to harness flow resonance and pressure amplification, showed potential for >1000x

At #ICCF26, Mou-Yung Liao shared his team’s work on using Linear Flow Network Analysis (LFNA) as an assessment tool to help inform the design of LENR reactors. Their SRJ reactor series, designed to harness flow resonance and pressure amplification, showed potential for >1000x
Anthropocene Institute (@anthrop_inst) 's Twitter Profile Photo

To close out #ICCF26, Florian Metzler presented his team’s work on a modular platform for Pd and Ti gas-loading experiments—featuring real-time radiation detection and detailed surface mapping. Florian also shared his perspective on why the field is still at a stalemate and what

To close out #ICCF26, Florian Metzler presented his team’s work on a modular platform for Pd and Ti gas-loading experiments—featuring real-time radiation detection and detailed surface mapping. Florian also shared his perspective on why the field is still at a stalemate and what
Anthropocene Institute (@anthrop_inst) 's Twitter Profile Photo

We had an amazing time at #ICCF26! We’re incredibly grateful for the chance to connect with so many brilliant minds and explore the latest in Solid State Fusion. Thank you to the organizers for another outstanding conference. May we soon enjoy a future with abundant, affordable,

We had an amazing time at #ICCF26! We’re incredibly grateful for the chance to connect with so many brilliant minds and explore the latest in Solid State Fusion. Thank you to the organizers for another outstanding conference. May we soon enjoy a future with abundant, affordable,
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Today’s card is on Quantum Coherence! (Quantum) coherence refers to a constant phase relationship between two quantum states resulting in a quantum system behaving as a whole rather than as a collection of independent parts. Coherent quantum systems display interference

Today’s card is on Quantum Coherence!
 
(Quantum) coherence refers to a constant phase relationship between two quantum states resulting in a quantum system behaving as a whole rather than as a collection of independent parts. Coherent quantum systems display interference
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Today’s card is on quantum entanglement! (Quantum) entanglement is when quantum systems become strongly correlated, making non-local effects possible.This means measuring a quantum property of one of the quantum systems is instantly correlated with the state of the other quantum

Today’s card is on quantum entanglement!

(Quantum) entanglement is when quantum systems become strongly correlated, making non-local effects possible.This means measuring a quantum property of one of the quantum systems is instantly correlated with the state of the other quantum