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The RNA World Hypothesis (RWH) posits that RNA alone initiated life, serving as both genetic material and catalyst. However, RNA’s susceptibility to reactive oxygen species (ROS) and photochemical damage challenges its viability. The Matter World Hypothesis (MWH) proposes that life emerged from synergistic interactions among RNA, DNA, peptides, lipids,
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The RNA World Hypothesis (RWH) posits that RNA alone initiated life as both genetic material and catalyst. However, its chemical instability, poor catalytic efficiency, and high mutation rates challenge this view. The Matter World Hypothesis (MWH) proposes that life emerged from synergistic interactions among RNA, DNA, peptides, lipids, and catalysts ...
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The Matter World Hypothesis (MWH) posits that life emerged through the synergistic interplay of Matter Desire, Environment, Time, and Natural Selection, transforming prebiotic matter into complex systems. Building on prior simulations of protocell stability, division, and energy transduction (Hashemi, 2025a-d), this study investigates RNA self ...
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2016 US lymphoid malignancy statistics by World Health Organization subtypes
Ca-A Cancer Journal for Clinicians, 2016Lauren R Teras +2 more
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The RNA World Hypothesis (RWH) posits that RNA alone was sufficient to initiate life, acting as both genetic material and catalyst. However, RNA’s chemical instability and limited catalytic efficiency challenge this view. The Matter World Hypothesis (MWH) proposes that life emerged from synergistic interactions among RNA, DNA, peptides, lipids, and ...
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Breast cancer and circadian disruption from electric lighting in the modern world
Ca-A Cancer Journal for Clinicians, 2014Richard G Stevens +2 more
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The Matter World Hypothesis (MWH) posits that life emerged through synergistic interactions among RNA, DNA, peptides, lipids, and catalytic extras in prebiotic environments. Traditional Monte Carlo simulations aggregate population-level dynamics, obscuring individual lineage trajectories and emergent phenomena like proto-translation.
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The Matter World Hypothesis (MWH) proposes co-evolution of multiple molecular systems in prebiotic environments, challenging the RNA World Hypothesis. Using computational modeling and Monte Carlo statistical validation, we confirm MWH claims from Hashemi (2025) studies.
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