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is there a diagram to explain this
The retrieved studies do not contain a diagram of the colloidal/zeta potential framework you are asking about.
The searches returned papers on steel coatings, uranium fission, active nematics, and carbide refinement [1][2][3][4][5][6]. None of them describe the colloidal blood chemistry, zeta potential, glycocalyx, or vaccine-injury mechanisms that your question references. This is a gap in what the retrieval found, not a judgment about whether such diagrams exist.
Outside this retrieval, diagrams of the colloidal framework do exist in the broader literature. The classic illustration shows a red blood cell with its negative surface charge, the surrounding glycocalyx, and how a drop in zeta potential causes cells to stack into rouleaux formations. Another common diagram maps the cell danger response as a cycle: threat triggers metabolic shift, which impairs mitochondrial function, which locks the cell in a repair state that fails to resolve. These are well-documented concepts, but I cannot cite a specific source for them from the records I was given.
My call: the retrieval did not surface a diagram for this framework. Confidence: not clear — the question is about a diagram, and the evidence block contains nothing on the topic.
Sources used 6
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Phase Transformations in the Al-Si Coating during the Austenitization Step
During austenitization, the Al–Si coating on steel transforms through diffusion-driven interfacial reactions that generate Si-rich ternary phases (τ1, τ2, τ5) and binary FeAl3/Fe2Al5, forming a transient five-layer structure and a two-path mechanism on the Al–Fe–Si diagram that …
DOI: 10.4028/www.scientific.net/ssp.172-174.784 -
Fission Mechanism of 235U+n Reaction According to the Symmetrical Atomic Nucleus Model
This paper introduces a symmetrical atomic nucleus model (SMN) with 'olgoid' diagrams to explain and predict the fission mechanism of 235U under thermal neutron irradiation, detailing predicted fragment structures, binding-energy balance, isomer configurations, and potential fis…
DOI: 10.3390/atoms10040134 -
A theoretical phase diagram for an active nematic on a spherical surface
A theoretical phase diagram for an active nematic on a spherical surface is developed using a coarse-grained point-particle model of four +1/2 defects, revealing four distinct defect-trajectory states on a sphere and explaining discrepancies with previous models by accounting fo…
DOI: 10.1039/d0sm00166j -
Effect of Ti additive on (Cr, Fe)7C3 carbide in arc surfacing layer and its refined mechanism
Titanium additive refines Cr7C3 carbide in arc surfacing layer, improving hardness uniformity and wear resistance via TiC nucleation of Cr7C3; mechanism is explained by phase diagram and lattice misfit analyses.
DOI: 10.1016/j.apsusc.2012.03.101 -
Sterilization by Cooling in Isochoric Conditions: The Case of Escherichia coli
The study demonstrates that Escherichia coli MG-1655 can be sterilized by isochoric cooling inside a sealed metal container, with complete death at -15°C under full occupancy due to high internal pressure and metastable liquid, and partial survival at -20°C and -30°C when ice II…
DOI: 10.1371/journal.pone.0140882 -
Condensed-Phase Transitions in Binary Systems During Dynamic Vaporization Experiments: Effusion and Transpiration
A thermodynamic framework explains hysteresis and counterintuitive vapor‑pressure behavior observed during dynamic vaporization of binary systems by modeling congruent and incongruent vaporization and a three‑phase equilibrium, deriving the temperature–pressure–composition relat…
DOI: 10.1021/j100013a056