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Symbols

Outline

Latin Alphabet

Sign Name Link

 \mathbf{A} a generic atom Atoms

Aan amperic seedSeeds

 A a surface area Surfaces

 \mathcal{A} an asymmetric phase-component Photon Definitions

\mathscr{A} a cross-sectional area Atomic Models

โ’ถan acidic seedSeeds

\overline{a} the acceleration Acceleration

a a meson a โ€“ Mesons

  {\mathsf{a}}an amperic quarkAmperic Quarks

 \overline {\mathsf{a}}an amperic anti-quarkAmperic Quarks

  {\mathrm{a}}an acidic quarkAcidic Quarks

 \overline{\mathrm{a}}an acidic anti-quarkAcidic Quarks

 \mathbf{B} a generic atom Length

๐˜ฝ a meson ๐˜ฝ โ€“ Mesons

 B the baryon number Quantum Numbers

Ba bottom seedSeeds

 \mathcal{B} the central binding energy Bound Particles

 \mathbb{B} an atomic bond Atomic Bonds

โ’ทa basic seedSeeds

๐™— a meson ๐™— โ€“ Mesons

 {\mathsf{b}}a bottom quarkBottom Quarks

\overline {\mathsf{b}}a bottom anti-quarkBottom Quarks

{\mathrm{b}}a basic quarkBasic Quarks

\overline{\mathrm{b}}a basic anti-quarkBasic Quarks

Ca charmed seedSeeds

  {\mathsf{c}}a charmed quarkCharmed Quarks

  \overline {\mathsf{c}} a charmed anti-quarkCharmed Quarks

 \mathrm{cov}_{\alpha \beta} the covarianceMetrics

Da down seedSeeds

๐˜ฟ a meson ๐˜ฟ โ€“ Mesons

D_{\mathsf{o}} the bond dissociation energy Atomic Bonds

โ’นa dextro seedSeeds

๐Ÿ…“the minimum-number of core down-quarksNuclear Classification

{\mathsf{d}}a down quarkDown Quarks

\overline {\mathsf{d}}a down anti-quarkDown Quarks

{\mathrm{d}}a dextro quarkDextro Quarks

\overline{\mathrm{d}}a dextro anti-quarkDextro Quarks

 d \! \theta the phase angle increment Phase Angle

 d \! t the temporal increment Time

 d \! \bar{r} the displacement Displacement

Ean electric seedSeeds

 E the mechanical energy Mechanical Energy

 \mathtt{E} the gross energy Gross Energy

 \mathbb{E} Euclidean space Cartesian Coordinate Systems

  \widehat{E} the specific energy Size

   {\mathsf{e}}an electric quarkElectric Quarks

  \overline{\mathsf{e}} an electric anti-quark Electric Quarks

\mathsf{e^{-}} an electron The Electron

e an elementary electronic dipole Elementary Electronic Dipole

 \widehat{e} the electric-axis unit-vector Quark Space

F a reference frame Frames

\mathtt{F} an external environment Waves

\overline{F} the force Second Law of Motion

 \mathscr{F} a field quantum Fields

๐™› a meson ๐™› โ€“ Mesons

 \mathtt{f} a local environment Waves

Ga galvanic seedSeeds

 \mathsf{g}a galvanic quarkGalvanic Quarks

  \overline {\mathsf{g}}a galvanic anti-quarkGalvanic Quarks

 \mathbf{H} atomic hydrogen Atomic Hydrogen

 H the enthalpy Enthalpy

๐™ a meson ๐™ โ€“ Mesons

โ’พan ionic seedSeeds

  {\mathrm{i}}an ionic quarkIonic Quarks

\overline{\mathrm{i}}an ionic anti-quarkIonic Quarks

  \textsl{\textsf{J}}the total angular momentum quantum numberQuantum Numbers

๐™…/๐ a meson ๐™…/๐ โ€“ Mesons

 j the total atomic angular momentum quantum number Atoms

 {\mathrm{\overline{J}}} the total angular momentum vector Angular Momentum

 K the kinetic energy Dynamic Equilibrium

\widehat{K} the vis viva Urgency

ka generic constantConstants

k_{\alpha \beta}the terrestrial metricMetrics

Lthe lepton numberQuantum Numbers

 \text{\L} the Lamb quantum Excited Hydrogen

โ“a levo seedSeeds

 {\mathrm{l}}a levo quarkLevo Quarks

\overline{\mathrm{l}}a levo anti-quarkLevo Quarks

 \ell the azimuthal quantum number Atoms

 \,a length Length

Ma magnetic seedSeeds

 m the rest mass Mass

 m_{\mathrm{p}} the proton mass The Proton

 m_{s} the spin-projection quantum number Spin Vectors

   {\mathsf{m}}a magnetic quarkMagnetic Quarks

  \overline {\mathsf{m}}a magnetic anti-quarkMagnetic Quarks

 \widehat{m} the magnetic-axis unit-vector Quark Space

 N _{\! \mathsf{s}}the total number of seedsInternal Energy

 N _{\! \mathsf{q}}the total number of quarksCounting Quarks

 N^{\textcircled{\raisebox{.5pt}{\sf{\tiny{S}}}}}the total number of stereochemical quarksStereochemical Quarks

 \raisebox{-0.04cm}{\it{N}} ^{\hspace{-.15cm}^{\mdsmblkcircle}} \rule{0px}{6px}^{\hspace{1px} \mathbf{\Theta}}the time units conversion factorCounting Bundles

 \mathrm{n} the principal quantum number Excited Particles

 \widehat{\mathrm{n}} the rotary quantum number Rotation

  \widetilde{\mathrm{n}} the transition mean principal quantum number Fine Spectral Structure

  na quark coefficientCounting Quarks

Oan ordinary seedSeeds

Oan odd seedSeeds

  \mathsf{P}_{k} a generic event Events

  \mathsf{P} a generic particle Particles

 P the pressure Surfaces

 \overline{p} the momentum Momentum

 \mathsf{p^{+}} a proton The Proton

 \mathbb{Q} quark space Quark Space

  \mathsf{q}a generic quarkQuarks

  qthe chargeQuantum Numbers

 \mathtt{q}the induced chargeInduced Charge

R the orbital radius Spatial Extension

\mathcal{R} a spherical radius Radii

 \mathfrak{R} the Rydberg number Gross Hydrogen

Sa strange seedSeeds

๐˜š an elementary stereoisomer Stereoisomers

   {\mathsf{s}}a strange quarkStrange Quarks

  \overline {\mathsf{s}}a strange anti-quarkStrange Quarks

Sthe strangenessQuantum Numbers

 \mathscr{S} the action Planck’s Postulate

 \mathcal{S} a symmetric phase component Excited Particles

 \mathrm{\overline{S}} the spin angular momentum vector Rotation

 s the spin angular momentum quantum number Pointy Particles

Ta top seedSeeds

  T  \hspace{0.08cm}  ( ^{\circ} \mathsf{C} ) the Celsius temperature Temperature

 T \hspace{0.08cm} ( \mathsf{K} ) the thermodynamic temperature Temperature

  \mathsf{t} a top quarkTop Quarks

  \overline {\mathsf{t}}a top anti-quarkTop Quarks

 t the time of occurrence Time

Uan up seedSeeds

 \mathcal{U} a potential energy Potential Energy

 U the internal energy Internal Energy

{\widetilde{U}}^{\mathsf{D}}the mean internal energy of down quarksWhiteness

   {\mathsf{u}}an up quarkUp Quarks

  \overline {\mathsf{u}}an up anti-quarkUp Quarks

Vthe volumeSurfaces

  \widehat{V} a unit volume Fine Structure

  \widetilde{V} the transition volume Fine Structure

 \mathsf{v} the speed Velocity

 \overline{\mathsf{v}} the velocity Velocity

x the abscissa Cartesian Coordinates

 \widehat{x} the abscissa-axis unit-vector Spatial Axes

W the work Work

โ“Œan aqueous seedSeeds

  {\mathrm{w}}an aqueous quarkAqueous Quarks

  \overline{\mathrm{w}}an aqueous anti-quarkAqueous Quarks

 y the ordinate Cartesian Coordinates

 \widehat{y} the ordinate-axis unit-vector Spatial Axes

 \mathsf{Z}a generic seedSeeds

๐˜ก a lefty stereoisomer Stereoisomers

 \mathsf{z}a generic ordinary quarkCounting Quarks

 \overline{\mathsf{z}}a generic anti-quarkCounting Quarks

z the applicate Cartesian Coordinates

 \widehat{z} the central-axis unit-vector Quark Space

Greek Alphabet

Sign Name Link

๐ž“ a Delta baryon ๐ž“ โ€“ Baryons

  \Delta  n^{\sf{Z}}the net number of Z-type quarksCounting Quarks

  \Delta  U^{\sf{Z}} the conjugate difference Conjugate Symmetry

 \Delta \overline{\rho} the quark flux Quark Flux

 \Delta \! \left\| \, \overline{\rho} \, \right\| the change in a radius-vector norm Atomic Transitions

\delta^{*}the oddnessOddness

\delta_{\mathit{e}}the yellownessYellowness

\delta_{\widehat{e}} the electric polarity Electric Polarity

\delta_{\mathit{H}}the sournessSourness

\delta_{\theta}the phasePhase

\delta_{\mathit{I}}the saltinessSaltiness

\delta_{m}the mass-typeMass

\delta_{\widehat{m}} the magnetic polarity Magnetic Polarity

\delta_{\mathsf{o}} the chirality Chirality

\delta_{\! \concavediamond} the handedness Handedness

\delta_{r}the rednessRedness

\delta_{\mathit{S}}the sweetnessSweetness

\delta_{t} the temporal orientation Temporal Orientation

\delta_{\mathit{T}}the coldnessColdness

\delta_{\tau}the warmnessWarmness

\delta_{\mathit{w}}the whitenessWhiteness

  \epsilon_{\! A} the surface direction Surfaces

  \epsilon_{t} the direction of time Historical Order

 \varepsilon the audibility Audibility

 {\varepsilon _{\mathsf{o}}} the vacuum electric permittivity Yellowness

 \mathsf{\Gamma} a graviton Gravitons

  \varGamma the full width Lifetime

 \gamma the Lorentz factor Mechanical Energy

\boldsymbol{\gamma} a photon Photon Definitions

 \eta the index of refraction Refraction

๐žฐ an eta meson ๐žฐ โ€“ Mesons

 \mathbf{\Theta} a clock Clocks

\theta the phase angle Phase Angle

\overline{\kappa} the wavevector in situ The Wavevector

 \kappa the wavenumber in situ The Wavevector

\overline{\kappa}_{\mathsf{o}} the wavevector in vacuo Waves in Vacuo

 \kappa_{\mathsf{o}} the wavenumber in vacuo Waves in Vacuo

\overline{\varkappa} the areal flux density Quark Flux

๐žš a lambda baryon ๐žš โ€“ Baryons

 \lambda_{\mathsf{o}} the wavelength in vacuo Waves in Vacuo

 \lambda the wavelength in situ The Wavelength

\mu^{-} a muon The Muon

ฮผ an elementary muonic dipole Elementary Muonic Dipole

 {\mu _{\mathsf{o}}}the vacuum magnetic permeabilityRedness

 \nu the frequency Counting Bundles

 \boldsymbol{\nu} a neutrino Neutrinos

๐ž a xi baryon ๐ž โ€“ Baryons

 \xi the transition type Fine Structure

๐žบ a rho meson ๐žบ โ€“ Mesons

 \overline{\rho} a radius vector Radii

  \varrho the radial energy density Newtonian Particles

  \widetilde{\varrho} the transition energy density Fine Structure

๐žข a sigma baryon ๐žข โ€“ Baryons

 \sigma the standard deviation Quark Models

 \tau the mean life Lifetime

\widehat{\tau} the period Time

ฯ„ an elementary quadrupole Elementary Quadrupole

๐žค an upsilon meson ๐žค โ€“ Mesons

๐Ÿ‡ a phi meson ๐Ÿ‡ โ€“ Mesons

๐žฆ an uppercase chi-meson ๐žฆ โ€“ Mesons

๐ž† a lowercase chi-meson ๐ž† โ€“ Mesons

\Psia generic chain-of-eventsEvents

{\mathsf{\Omega}}^{\mathsf{P}}a generic orbit of particle POrbits

๐žจ an omega baryon ๐žจ โ€“ Baryons

๐Ÿ‚ an omega meson ๐Ÿ‚ โ€“ Mesons

\omega the angular speed Phase Angle

 \zeta the quark index Quark Index

Other Symbols

Sign Name Link

 \left\| \, \; \, \right\| the norm of a vector Norms

 \textsf{\ding{115}} an up roton Rotons

 \textsf{\ding{116}} a down roton Rotons

+ the elementary baryon Baryons

the elementary meson Mesons