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Heat --- Phase rule and equilibrium --- Transmission --- Technique --- Congresses.
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Stress corrosion. --- Alloys --- Metallic alloys --- Metallic composites --- Metals --- Phase rule and equilibrium --- Amalgamation --- Microalloying --- Stress-corrosion cracking --- Corrosion and anti-corrosives --- Residual stresses --- Strains and stresses --- Fatigue
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Phase diagrams --- Physical metallurgy --- Phase rule and equilibrium --- Chemistry, Technical --- Diagrammes de phases --- Métallurgie physique --- Loi des phases et équilibre --- Chimie industrielle --- Periodicals --- Periodicals. --- Périodiques
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Ion bombardment --- Annealing of crystals --- Superconductors --- Materials --- Phase rule and equilibrium --- Congresses --- Effect of radiation on --- Superconducting materials --- Superconductive devices --- Cryoelectronics --- Electronics --- Solid state electronics --- Crystals --- Ion bombardment - Congresses --- Annealing of crystals - Congresses --- Superconductors - Effect of radiation on - Congresses --- Materials - Effect of radiation on - Congresses --- Phase rule and equilibrium - Congresses
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Materials sciences --- Solid state physics --- Metals. --- STEELS --- Alloys. --- Materials. --- Technology. --- Applied science --- Arts, Useful --- Science, Applied --- Useful arts --- Science --- Industrial arts --- Material culture --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Metallic alloys --- Metallic composites --- Metals --- Phase rule and equilibrium --- Amalgamation --- Microalloying --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Materials --- Monograph
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Statistical physics --- Phase transformations (Statistical physics) --- Renormalization group --- Transformations de phase (Physique statistique) --- 536.76 --- Relationships deduced from the two laws of thermodynamics. Phase transformations --- Renormalization group. --- Phase transformations (Statistical physics). --- 536.76 Relationships deduced from the two laws of thermodynamics. Phase transformations --- Group, Renormalization --- Quantum field theory --- Statistical mechanics --- Phase changes (Statistical physics) --- Phase transitions (Statistical physics) --- Phase rule and equilibrium
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Chemical equilibrium --- Chemical reaction [Rate of ] --- Chemisch evenwicht --- Chemische reactiesnelheid --- Equilibre chimique --- Réactions chimiques [Vitesse de ] --- 541.123 --- Solution (Chemistry) --- #WSCH:FYS3 --- Salt solutions --- Chemistry --- Chemistry, Physical and theoretical --- Matter --- Mixtures --- Cryoscopy --- Osmosis --- Equilibrium, Chemical --- Phase rule and equilibrium --- Equilibrium of heterogeneous systems --- Properties --- Chemical equilibrium. --- Solution (Chemistry). --- 541.123 Equilibrium of heterogeneous systems
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Gibbs' equation --- Nonequilibrium thermodynamics --- 536.75 --- Irreversible thermodynamics --- Non-equilibrium thermodynamics --- Thermodynamics of the steady state --- Irreversible processes --- Thermodynamics --- Equation, Gibbs' --- Differential equations --- Phase rule and equilibrium --- Entropy. Statistical thermodynamics. Irreversible processes --- Gibbs' equation. --- Nonequilibrium thermodynamics. --- 536.75 Entropy. Statistical thermodynamics. Irreversible processes
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Statistical physics --- Phase transformations (Statistical physics) --- 536.75 --- 536.76 --- 536.76 Relationships deduced from the two laws of thermodynamics. Phase transformations --- Relationships deduced from the two laws of thermodynamics. Phase transformations --- 536.75 Entropy. Statistical thermodynamics. Irreversible processes --- Entropy. Statistical thermodynamics. Irreversible processes --- Phase changes (Statistical physics) --- Phase transitions (Statistical physics) --- Phase rule and equilibrium --- Transformations de phase (Physique statistique)
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This work details the chemical changes that occur in deforming materials subjected to unequal compressions. While thermodynamics provides, at the macroscopic level, an excellent means of understanding & predicting the behaviour of materials in equilibrium & non-equilibrium states, much less is understood about nonhydrostatic stress & interdiffusion at the chemical level. Little is known, for example, about the chemistry of a state resulting from a cylinder of deforming material being more strongly compressed along its length than radially, a state of non-equilibrium that remains no matter how ideal the cylinder's condition in other respects. M. Brian Bayly here provides the outline of a comprehensive approach to gaining a simplified & unified understanding of such phenomena.
Deformations (Mechanics) --- Chemical equilibrium. --- Elastic solids --- Mechanics --- Rheology --- Strains and stresses --- Structural failures --- Equilibrium, Chemical --- Chemistry, Physical and theoretical --- Phase rule and equilibrium --- Geochemistry. --- Materials --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences --- Compression strength testing of materials --- Compression testing of materials --- Compressive strength testing of materials --- Compressive testing of materials --- Compression testing. --- Testing
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