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Person 343: .Electro-Magnetic-Pulse-The-First-Juvenile-Release.
by Theusurpedmammarygland February 6, 2025
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The alchemical dream of creating critical materials—rare metals, advanced alloys, strategic minerals—from common elements, bypassing mines, supply chains, and geopolitical complications. If you could synthesize titanium as easily as plastic, or create rare earths from clay, or manufacture semiconductors from sand, the global balance of power would shift overnight. Nations that lack resources could become resource-independent; nations that have resources would lose their leverage. The science is real in principle—transmutation is possible, and advanced materials can be synthesized—but the economics are brutal. It's cheaper to dig things up than to make them from scratch, at least for now. Strategic resource synthesis is the dream of every resource-poor nation and the nightmare of every resource-rich one.
Synthesis of Strategic Resources and Related Materials Example: "The country had no oil, no rare earths, no strategic minerals. But it had smart scientists and a determination to synthesize what it needed. After decades of research, they could make anything from common elements—at ten times the cost of mining it. Strategic independence was achieved; economic sanity was not. The debate continues."
by Dumu The Void February 16, 2026
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The specific challenge of creating the 17 elements known as rare earths—along with their alloys and compounds—from more common materials. Rare earths aren't actually rare in the earth's crust; they're just rarely concentrated enough to mine economically. They're also essential for everything from smartphones to electric vehicles to missile guidance systems. Synthesizing them would end dependence on the few countries that control their mining and processing, potentially reshaping global power dynamics. The science is difficult because rare earths are chemically similar and hard to separate, but progress is being made. The dream is a world where rare earths are as common and cheap as aluminum, and no nation can hold the world hostage by controlling their supply.
Synthesis of Rare Earths and Related Materials Example: "The startup promised to synthesize rare earths from coal waste, freeing the West from dependence on foreign suppliers. Investors poured money in. The process worked—in the lab, at small scale, with pure inputs. Scaling up to industrial production with real-world waste proved harder. Years later, they were still scaling. Rare earths remained rare, just slightly less so."
by Dumu The Void February 16, 2026
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The principle that ad hoc constructions operate in two modes: absolute ad hocs (solutions or explanations that are so perfect for their specific case that they achieve a kind of universal validity within that case) and relative ad hocs (temporary fixes that work for now, in this context, but won't survive beyond it). The law acknowledges that some ad hoc solutions become permanent—the temporary fix that becomes the standard, the one-off explanation that becomes the theory. Others remain forever ad hoc, useful only in their original context. The law of absolute and relative ad hocs helps distinguish between the ad hoc that transcends its origins and the ad hoc that remains forever local.
Law of the Absolute and Relative Ad Hocs Example: "His ad hoc fix for the leaking pipe—a clamp and some rubber—worked so well it became the permanent solution. The law of absolute and relative ad hocs said: this ad hoc transcended its origins; it became absolute for this pipe. His later ad hoc fix for a relationship problem—flowers and an apology—remained relative: it worked once, for that fight, and couldn't be generalized. Both were valid in their way."
by Dumu The Void February 17, 2026
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The principle that fallacies operate in two modes: absolute fallacies (errors that are fallacious in all contexts, by any reasonable standard) and relative fallacies (errors that are fallacious in some contexts but may be acceptable or even valid in others). The law acknowledges that some fallacies are universally wrong—affirming the consequent, denying the antecedent, non sequiturs that genuinely don't follow. Other fallacies are context-dependent—appeals to emotion that are appropriate in some settings, ad hominem that is relevant, slippery slopes that sometimes happen. The law of absolute and relative fallacies reconciles the need for logical standards with the reality of contextual reasoning.
Law of the Absolute and Relative Fallacies Example: "They debated whether his emotional appeal was fallacious. Absolute fallacies: non sequiturs, formal errors—he hadn't committed those. Relative fallacies: emotional appeals can be fallacious in some contexts, appropriate in others. Here, asking for compassion was relevant. The law said: relatively, not absolutely fallacious. She accepted the nuance, which is rare in online arguments."
by Dumu The Void February 17, 2026
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The theory that science, in practice, often functions like a religion or ideology—providing a framework of ultimate beliefs, a community of believers, rituals of validation, mechanisms of exclusion, and claims to authority that exceed its actual epistemic warrant. The theory doesn't claim that science is just a religion; it claims that science can function like one, especially when it becomes a marker of identity, a source of meaning, or a basis for dismissing other ways of knowing. When "science says" is used as an unquestionable authority, when skepticism of scientific consensus is treated as heresy, when scientific institutions function as priesthoods—science has taken on religious characteristics. The theory is a critique of scientism, not of science—a warning against treating science as something it's not.
Theory of Science as a Religion and Ideology Example: "He treated every scientific consensus as infallible dogma, every skeptic as a heretic. The Theory of Science as a Religion and Ideology explained what he'd become: not a scientist, but a believer. Science wasn't his method; it was his faith."
by Abzugal March 9, 2026
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A specific application of the broader theory, focusing on how the idea of the scientific method can function as a religion or ideology—worshipped as a source of truth, treated as beyond criticism, used to exclude other ways of knowing. The theory argues that the scientific method, properly understood, is a fallible human tool, not a sacred ritual. But when it's treated as the path to truth, when its procedures are fetishized, when its limitations are ignored—it becomes ideological. The theory calls for treating the scientific method as what it is: a powerful but imperfect tool, not an object of worship.
Example: "He invoked 'the scientific method' as if it were a magic spell, guaranteed to produce truth. The Theory of the Scientific Method as a Religion and Ideology showed what he'd done: turned a tool into a totem, a method into a mantra. He wasn't doing science; he was worshipping it."
by Abzugal March 9, 2026
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