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Journal ArticleDOI

Measurement of forces between two mica surfaces in aqueous electrolyte solutions in the range 0–100 nm

Jacob N. Israelachvili, +1 more
- 01 Jan 1978 - 
- Vol. 74, pp 975-1001
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TLDR
The main results and conclusions of experimental measurements of the forces between molecularly smooth mica surfaces in aqueous electrolyte solutions are as follows: as mentioned in this paper, and they are based on the following assumptions:
Abstract
The main results and conclusions of experimental measurements of the forces between molecularly smooth mica surfaces in aqueous electrolyte solutions are as follows:

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Characterizing Particle Characterization

TL;DR: The field of Particle Characterization is important to a broad range of commercial and academic activities, and it includes an extensive array of techniques, instruments, and applications as mentioned in this paper, and a framework for describing and assessing this complex field.
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Effect of water chemistry and aging on iron-mica interaction forces: implications for iron particle transport.

TL;DR: Force spectroscopy showed that aging caused variations in the adhesive force due to the changes in particle morphology and contact area, as a consequence of electrostatic attraction between the negatively charged mica and positively charged iron.
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Reversible switching of interfacial interactions

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Nanoscale adhesive forces between silica surfaces in aqueous solutions.

TL;DR: It is proposed that these nanoscale adhesive forces between mineral surfaces in aqueous solutions may arise from newly born cavities or persistent subnanometer bubbles, and may be responsible for the cavities.
Book ChapterDOI

Introduction—Measurement Techniques and Applications

TL;DR: In this paper, the definition and history of tribology and their industrial significance and origins and significance of an emerging field of micro/nanotribology are described, and various measurement techniques used in micro/notribological and micro-nanomechanical studies are described.
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