Chemistry & Materials Science¶
17 domain-specific abstractions whose origin domain is Chemistry & Materials Science.
- Adsorption — Molecules partition out of a bulk fluid to concentrate on a solid surface bearing a finite population of binding sites, producing a saturating relationship between bulk concentration and surface loading captured by an adsorption isotherm.
- Adsorption Isotherm — At fixed temperature, trace how much adsorbate accumulates on a solid surface against its bulk concentration, then fit the curve to a functional form whose shape both extracts the surface's capacity and affinity and tests whether its sites are uniform, heterogeneous, or multilayer.
- Crystal Lattice — The infinite, translationally periodic arrangement of a crystalline solid — a few-atom unit cell tiled by three lattice vectors — whose symmetry, drawn from a finite catalog of space groups, deductively fixes which physical properties are allowed and which forbidden.
- Dislocation — A one-dimensional line defect in a crystal that carries plastic deformation by sweeping across a slip plane one atomic row at a time, letting a metal yield at stresses two to four orders of magnitude below what shearing the whole lattice at once would require.
- Kinetics — Describe how fast a chemical system moves among states by relating each species' rate of change to concentrations, temperature, and catalysts through rate laws — keeping the rate-and-path question separate from the thermodynamic endpoint the system is approaching.
- Normal Fault — A fracture in the crust where the hanging wall has dropped relative to the footwall along a plane dipping near 60°, whose hanging-wall-down dip-slip geometry is the diagnostic signature of horizontal extension in the crust.
- Orogenic Belt — Read a mountain range, its foreland basin, and its metamorphosed core as one datable record of a single sustained plate convergence — reconstruct the collision's direction, style, and timing from the belt's hinterland-to-foreland polarity and brittle-to-ductile depth gradient.
- Ostwald Ripening — Larger particles grow at the expense of smaller ones because higher surface curvature makes small particles more soluble (the Gibbs-Thomson effect), so material dissolves off them, diffuses through the matrix, and redeposits onto large ones — coarsening the population on a t^(⅓) law.
- Passivation — The phenomenon in which a reactive metal spontaneously grows a thin, dense oxide film from its own oxidation that throttles further corrosion by orders of magnitude — a self-limiting barrier that protects an underlying metal which remains thermodynamically unstable.
- Polymerization — The process by which many small monomer units are covalently linked into long chains whose bulk properties emerge from the chain-length distribution rather than from any single monomer's chemistry — the chain, not the monomer, being the unit of analysis.
- Precipitation — Separate a dissolved substance as a solid once its concentration is driven past the solvent's solubility limit and a nucleation pathway opens, turning a latent supersaturation into an abrupt, self-limiting phase change.
- Processing-Structure-Property Relationship — Explain a material's behavior by inserting a mandatory mediator — structure — between processing and properties, with one-way causal arrows so intervention enters only at the processing end and design reasons forward through the structure it reaches.
- Side Reaction — An alternative chemical transformation running in parallel with the desired one, competing for the same substrate through its own rate law, so that selectivity — the ratio of desired rate to the sum of all competing rates — governs yield rather than the desired reaction's absolute speed.
- Solubility — Specify the maximum amount of a solute that can dissolve in a solvent as a function of temperature, pressure, pH, and ionic strength — the equilibrium point where dissolved and undissolved chemical potentials equalize and net transfer ceases.
- Stoichiometry — Fix the exact amounts of reactants consumed and products formed from a balanced equation's integer molar ratio and conserved mass, so the reactant shortest in proportion — the limiting reagent — alone caps the theoretical yield.
- Tempering — Reheat a hardened, brittle quenched steel to a sub-critical temperature for a controlled time so carbon diffuses into fine carbides, trading a few hardness points for the toughness the quench alone cannot deliver — a chosen point on the hardness-toughness curve.
- Wettability — Summarise whether a liquid spreads across or beads off a solid into one measurable scalar — the contact angle set by adhesion versus cohesion — factored into surface chemistry and topography, with two discrete roughness regimes.