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Nano-scale semiconductor particles
Quantum dots (QDs) or semiconductor nanocrystals are semiconductor particles a few nanometres in size with optical and electronic properties that differ
Quantum_dot
Type of display device
A quantum dot display is a display device that uses quantum dots (QDs), semiconductor nanocrystals which can produce pure monochromatic red, green, and
Quantum_dot_display
Semiconductor laser that uses quantum dots as the active laser medium
A quantum dot laser is a semiconductor laser that uses quantum dots as the active medium for stimulated emission of light. Due to quantum confinement
Quantum_dot_laser
Type of carbon nanoparticle
Carbon quantum dots also commonly called carbon nano dots or simply carbon dots (abbreviated as CQDs, C-dots or CDs) are carbon nanoparticles which are
Carbon_quantum_dot
Type of solar cell based on quantum dot devices
A quantum dot solar cell (QDSC) is a solar cell design that uses quantum dots as the captivating photovoltaic material. It attempts to replace bulk materials
Quantum_dot_solar_cell
Metal-free biologically compatible quantum dots with photoluminescence
Silicon quantum dots are metal-free biologically compatible quantum dots with photoluminescence emission maxima that are tunable through the visible to
Silicon_quantum_dot
Diode that emits light from an organic compound
when the electric current is applied. OLEDs can also be compared to Quantum Dot Light Emitting Diodes (QDLED), which can use aspects of OLEDs, but are
OLED
Region in carbon nanotube
A carbon nanotube quantum dot (CNT QD) is a small region of a carbon nanotube in which electrons are confined. A CNT QD is formed when electrons are confined
Carbon_nanotube_quantum_dot
Graphene nanoparticle with a size less than 100nm
Graphene quantum dots (GQDs) are graphene nanoparticles with a size less than 100 nm. Due to their exceptional properties such as low toxicity, stable
Graphene_quantum_dot
Practical physics application
used to produce different colors of light. Another type of LED uses a quantum dot which can have its properties and wavelength adjusted by its size. Light-emitting
Light-emitting_diode_physics
California and founded in 2001. The company develops and manufactures quantum dot materials for display products. On July 28, 2021, Bloomberg reported
Nanosys
Alternative to silicon-based photovoltaics
mechanisms and stability, quantum dot devices face technical and economic hurdles before widespread adoption. Perovskite quantum dot solar cells have achieved
Perovskite_solar_cell
Proposed semiconductor implementation of quantum computers
decoherence; accurate quantum gate operations and strong quantum measurements. A candidate for such a quantum computer is a lateral quantum dot system. Earlier
Spin_qubit_quantum_computer
Semiconductor light source
efficiency to hinge on ongoing improvements such as phosphor materials and quantum dots. The process of down-conversion (the method by which materials convert
Light-emitting_diode
Laser technology
A quantum dot single-photon source is based on a single quantum dot placed in an optical cavity. It is an on-demand single-photon source. A laser pulse
Quantum dot single-photon source
Quantum_dot_single-photon_source
Tunisian-American-French chemist (born 1961)
is known for his advances in the chemical production of high-quality quantum dots. For this work, he was awarded the Nobel Prize in Chemistry in 2023.
Moungi_Bawendi
DNA-functionalization of quantum dots is the attachment of strands of DNA to the surface of a quantum dot. Although quantum dots with cadmium (Cd) have
DNA-functionalized quantum dots
DNA-functionalized_quantum_dots
Quantum dot nanocrystal equation
energy of quantum dot semiconductor nanocrystals in terms of the band gap energy Egap, the Planck constant h, the radius of the quantum dot r, as well
Brus_equation
Display technology implementation
by the RGB color filters of the LCD panel. The quantum dots may be in a separate layer as a quantum dot enhancement film, or replace pigment-based green
LED-backlit_LCD
Type of recurrent neural network with random and non-trainable internal structure
computational power of naturally available systems, both classical and quantum mechanical, can be used to reduce the effective computational cost. The
Reservoir_computing
Vacuum tube used to display images
and mini-LED LCDs) are not available in high refresh rates, although quantum dot LCDs (QLEDs) are available in high refresh rates (up to 144 Hz) and are
Cathode_ray_tube
Device used to produce electricity from light
Beard, M. C. (2011). "Peak External Photocurrent Quantum Efficiency Exceeding 100% via MEG in a Quantum Dot Solar Cell". Science. 334 (6062): 1530–3. Bibcode:2011Sci
Solar_cell
timeline of quantum computing and communication. Erwin Schrödinger publishes a theorem setting the basis for quantum steering and the limits of quantum state
Timeline of quantum computing and communication
Timeline_of_quantum_computing_and_communication
Chemical element with atomic number 14 (Si)
applications in quantum dot displays and luminescent solar concentrators due to their limited self absorption. A benefit of using silicon based quantum dots over
Silicon
grade quantum dots (QDs), in particular cadmium-free quantum dots and other electronic grade nanomaterials. Growing industrial adoption of quantum dot technology
Nanoco
Electronic display technology
systems such as mobile phones, handheld game consoles and PDAs. QLED or quantum dot LED is a flat panel display technology introduced by Samsung under this
Flat-panel_display
Semiconductor nanoparticles
Quantum dots (QDs) are semiconductor nanoparticles with a size less than 10 nm. They exhibited size-dependent properties especially in the optical absorption
Cadmium-free_quantum_dot
Type of cellular automaton
Quantum dot cellular automata (QDCA, sometimes referred to simply as quantum cellular automata, or QCA) are a proposed improvement on conventional computer
Quantum dot cellular automaton
Quantum_dot_cellular_automaton
Type of magnetometer
A SQUID (superconducting quantum interference device) is a very sensitive magnetometer used to measure extremely weak magnetic fields, based on superconducting
SQUID
French physicist and professor
University of California Santa Barbara. His work includes studies on quantum dot laser, nonlinear optics, photonic chaos encryption, and optical communications
Frédéric_Grillot
Display that uses the light-modulating properties of liquid crystals
backlight and quantum dot sheets. LCDs with quantum dot enhancement film or quantum dot color filters were introduced from 2015 to 2018. Quantum dots receive
Liquid-crystal_display
A lateral quantum dot is a type of quantum dot made by imposing a small area of decreased potential in the two-dimensional electron gas (2DEG) by means
Lateral_quantum_dot
Japanese applied physicist (born 1950)
in a quantum dot using optical pulses. During the 2010s, his work has continued on exploring quantum dots as a platform for building both quantum repeaters
Yoshihisa Yamamoto (scientist)
Yoshihisa_Yamamoto_(scientist)
Russian physicist (born 1945)
nanomaterials research. He discovered the semiconductor nanocrystals known as quantum dots in 1981, while working at the Vavilov State Optical Institute. In 2023
Alexey_Ekimov
American chemist (1943–2026)
co-discoverer of the colloidal semi-conductor nanocrystals known as quantum dots. In 2023, he was awarded the Nobel Prize in Chemistry. Louis Eugene Brus
Louis_E._Brus
defined by advanced sub-types, including mini-LED backlighting for LCDs, quantum dot OLED (QD-OLED), and the emergence of micro LED as a high-performance
Comparison of CRT, LCD, plasma, and OLED displays
Comparison_of_CRT,_LCD,_plasma,_and_OLED_displays
Hexagonal lattice made of carbon atoms
graphene quantum dot (GQD) is a graphene fragment with a size less than 100 nm. The properties of GQDs are different from bulk graphene due to the quantum confinement
Graphene
statistics Plekton quantum computing qubit qutrit pure qubit state quantum dot Kane quantum computer quantum cryptography quantum decoherence quantum circuit universal
List of mathematical topics in quantum theory
List_of_mathematical_topics_in_quantum_theory
Application of quantum mechanics and chemistry to biology
macrophages was observed using small angle neutron scattering (SANS). Quantum dot solids also show increased magnetic ordering in SANS testing, and can
Quantum_biology
Mathematical model in quantum mechanics
energy gap of the quantum dot is inversely proportional to the square of the "length of the box", i.e. the radius of the quantum dot. Manipulation of the
Particle_in_a_box
Electronic device
the electrons flow through a tunnel junction between source/drain to a quantum dot (conductive island). Moreover, the electrical potential of the island
Single-electron_transistor
Basic unit of quantum information
In quantum computing, a qubit (/ˈkjuːbɪt/) or quantum bit is a basic unit of quantum information, the quantum version of the classic binary bit. A qubit
Qubit
The behavior of quantum dots (QDs) in solution and their interaction with other surfaces is of great importance to biological and industrial applications
Hydrogel encapsulation of quantum dots
Hydrogel_encapsulation_of_quantum_dots
Discrete device in an electronic system
Constant-current diode Step recovery diode Tunnel diode - very fast diode based on quantum mechanical tunneling Integrated Circuits can serve a variety of purposes
Electronic_component
Japanese physicist (born 1953)
physicist who is known for his research on gate-defined semiconductor quantum dots and spin qubits. Tarucha was born 1953 in Ehime Prefecture. He studied
Seigo_Tarucha
Optical instrument
Quantum-cascade lasers (QCLs) are semiconductor lasers that emit in the mid- to far-infrared portion of the electromagnetic spectrum and were first demonstrated
Quantum-cascade_laser
Sensors of light or other electromagnetic energy
low lag, low noise, high quantum efficiency, and low dark current, widely used in most CCD and CMOS image sensors. Quantum dot photoconductors or photodiodes
Photodetector
Maximum theoretical efficiency of a solar cell
Nozik, "Quantum Dot Solar Cells", National Renewable Energy Laboratory, October 2001 Semonin, O. E. (2011). "Peak External Photocurrent Quantum Efficiency
Shockley–Queisser_limit
Abstract model of quantum computation
refer to quantum dot cellular automata, which are a proposed physical implementation of "classical" cellular automata by exploiting quantum mechanical
Quantum_cellular_automaton
Mathematical description of quantum state
In quantum mechanics, a wave function (or wavefunction) is a mathematical description of the quantum state of an isolated quantum system. The most common
Wave_function
Semiconductor laser
the quantum well layer(s) to a layer(s) with quantum wires and especially quantum dots. In a quantum cascade laser, the difference between quantum well
Laser_diode
Type of second-generation solar cell
innovative thin-film technologies, such as perovskite, dye-sensitized, quantum dot, organic, and CZTS thin-film solar cells. Thin-film cells have several
Thin-film_solar_cell
Electronic component
Giovanni (2005). Quantum Theory of the Electron Liquid. Cambridge University Press. p. 111. ISBN 0-521-82112-6. Rammer, Jørgen (2007). Quantum Field Theory
Capacitor
American materials scientist
Clarivate Citation Laureate in 2020. He is known for his contributions to quantum dots and other nanoscale materials. Murray studied chemistry at St. Mary's
Christopher_B._Murray
Research of materials
2012.{{cite news}}: CS1 maint: deprecated archival service (link) "'Quantum dots' to boost performance of mobile cameras". BBC News. 22 March 2010. Retrieved
Materials_science
Concept in quantum mechanics
dimension that approaches a critical quantum measurement, called the exciton Bohr radius. In current application, a quantum dot such as a small sphere confines
Potential_well
Type of field-effect transistor
a thickness of around 1.2 nm (which in silicon is ~5 atoms thick) the quantum mechanical phenomenon of electron tunneling occurs between the gate and
MOSFET
Theory to explain the emergence of the classical world from the quantum world
claimed to provide preliminary supporting evidence of quantum Darwinism with scars of a quantum dot "becoming a family of mother-daughter states" indicating
Quantum_Darwinism
Chemical compound
a CdSe quantum dot. This discretization of energy states results in electronic transitions that vary by quantum dot size. Larger quantum dots have closer
Cadmium_selenide
Array of logic gates that are reprogrammable
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Field-programmable_gate_array
Particle with size less than 100 nm
Photonic crystal Plasmon Platinum nanoparticle Quantum dot Self-assembly of nanoparticles Silicon quantum dot Silicon Silver Nano Sol–gel process Synthesis
Nanoparticle
Type of semiconductor laser diode
1999 Digest of the LEOS Summer Topical Meetings: Nanostructures and Quantum Dots/WDM Components/VCSELs and Microcavaties/RF Photonics for CATV and HFC
Vertical-cavity surface-emitting laser
Vertical-cavity_surface-emitting_laser
Extremely sensitive solid-state photodetector
electronics. In the red to near-infrared, silicon enables much higher quantum efficiency than available PMT photocathode materials. Dynamic range can
Silicon_photomultiplier
Quantum electromechanical process
laser to the quantum dot and were able to observe resonance fluorescence from the quantum dot. In addition to the excitation of the quantum dot that was achieved
Resonance_fluorescence
Type of resistive heater
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Self-regulating_heater
Microchip manipulating light instead of electricity
modes is a need for quantum computing, this technology may be helpful to miniaturize quantum computers (see linear optical quantum computing). Another
Photonic_integrated_circuit
Device that controls current between electrodes
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Vacuum_tube
Type of transistor
organic semiconductor in its channel. The QFET (quantum field effect transistor) takes advantage of quantum tunneling to greatly increase the speed of transistor
Field-effect_transistor
Criteria for a usable quantum computer
prepared in quantum dots. This procedure relies on T1 to anneal the system, and the paper focuses on measuring the T2 relaxation time of the quantum-dot system
DiVincenzo's_criteria
Family of digital circuits
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
PMOS_logic
Semiconductor diode
unload single electrons in semiconductor nanostructures such as quantum wells or quantum dots. Commonly encountered Schottky diodes include the 1N58xx series
Schottky_diode
Converts light into current
photoconductive mode. The wavelength-dependence may also be expressed as a quantum efficiency or the ratio of the number of photogenerated carriers to incident
Photodiode
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
List_of_RF_connector_types
New technologies actively in development
Archived from the original on 29 April 2011. Retrieved 27 April 2011. "'Quantum dots' to boost performance of mobile cameras". BBC News. 22 March 2010. Archived
List_of_emerging_technologies
Quantum phenomenon
(2009). "Modeling Highly Efficient RCLED-Type Quantum-Dot-Based Single Photon Emitters". IEEE Journal of Quantum Electronics. 45 (9): 1084–1088. Bibcode:2009IJQE
Purcell_effect
Type of MOSFET
A quantum field-effect transistor (QFET) or quantum-well field-effect transistor (QWFET) is a type of MOSFET (metal–oxide–semiconductor field-effect transistor)
QFET
position in double quantum dot) Quantum computing using engineered quantum wells, which could in principle enable the construction of a quantum computer that
List of proposed quantum registers
List_of_proposed_quantum_registers
Device used for modulating a laser beam
using either bulk semiconductor materials or materials with multiple quantum dots or wells. Most EAMs are made in the form of a waveguide with electrodes
Electro-absorption_modulator
Connector used to connect to mains power
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
AC_power_plugs_and_sockets
development of quantum computing, quantum communication and quantum sensing. Quantum computing and communication are two sub-fields of quantum information
List of companies involved in quantum computing, communication or sensing
List_of_companies_involved_in_quantum_computing,_communication_or_sensing
Ratio of energy extracted from sunlight in solar cells
instead, including quantum efficiency, open-circuit voltage (VOC) ratio, and § Fill factor. Reflectance losses are accounted for by the quantum efficiency value
Solar-cell_efficiency
Power amplifier
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Gate_driver
Basic circuit in quantum computing
In quantum computing and specifically the quantum circuit model of computation, a quantum logic gate (or simply quantum gate) is a basic quantum circuit
Quantum_logic_gate
Central computer component that executes instructions
causing researchers to investigate new methods of computing such as the quantum computer, as well as to expand the use of parallelism and other methods
Central_processing_unit
Blinking in quantum mechanics
property of the nanoscale emitters (molecular fluorophores, colloidal quantum dots) related to the competition between the radiative and non-radiative relaxation
Fluorescence_intermittency
Two-terminal electronic component
These have a region of operation showing negative resistance caused by quantum tunneling, allowing amplification of signals and very simple bistable circuits
Diode
Physical chemist
energy conversion. Recently his research efforts have focused heavily on Quantum dot solar cell development. He has published more than 450 peer-reviewed
Prashant_V._Kamat
perturbed quantum dot contain scars of short periodic orbits of the corresponding unperturbed system. Even though similar in appearance to ordinary quantum scars
Quantum_ergodicity
Physical phenomenon due to impurities
elements such as uranium. The Kondo effect has also been observed in quantum dot systems. The dependence of the resistivity ρ {\displaystyle \rho } on
Kondo_effect
Device for producing coherent EM waves in the sub-visible spectrum
Singer, Masers, John Whiley and Sons Inc., 1959. J. Vanier, C. Audoin, The Quantum Physics of Atomic Frequency Standards, Adam Hilger, Bristol, 1989. Wikimedia
Maser
Canadian scientist
Northwestern. Sargent has made contributions in the use of colloidal quantum dots and perovskite materials for optoelectronic devices, including photovoltaic
Ted_Sargent
Solid-state electrically operated switch also used as an amplifier
stochastically. Tunnel field-effect transistor, where it switches by modulating quantum tunneling through a barrier. Diffusion transistor, formed by diffusing
Transistor
Pictogram used to represent various electrical and electronic devices or functions
letters not part of symbol) Vacuum tube pentode For multiple pole switches, a dotted or dashed line can be included to indicate two or more switch at the same
Electronic_symbol
First successful type of transistor, developed in 1947
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Point-contact_transistor
Technique in quantum optics
emission of the NV centres. As well as NV centres and molecules, quantum dots (QDs), quantum dots trapped in optical antenna, functionalized carbon nanotubes
Single-photon_source
Form of illumination used in liquid crystal displays
that illuminate a layer of nanocrystal phosphors, called quantum dots (QDs). The quantum dots convert the blue wavelengths to the desired longer wavelengths
Backlight
Technische Universität Berlin. His work on semiconductor physics focuses on quantum dots. Pohl studied physics at RWTH Aachen University, the Free University
Udo_W._Pohl
Assembly of photovoltaic cells used to generate electricity
innovative thin-film technologies, such as perovskite, dye-sensitized, quantum dot, organic, and CZTS thin-film solar cells. Thin-film cells have several
Solar_panel
described below. The first method is to introduce small, homogeneous quantum dot (QD) structures into a single junction device. This creates an IB, which
Intermediate band photovoltaics
Intermediate_band_photovoltaics
Electronic component
thyristor (IGCT) Unijunction transistor (UJT) Quantum-cascade laser (QCL) Photoresistor Quantum dot display Quantum dot solar cell Photoelectrochemical cell Dye-sensitized
Transient-voltage-suppression diode
Transient-voltage-suppression_diode
QUANTUM DOT
QUANTUM DOT
Girl/Female
Tamil
A dot on the forehead. the one which indian women who put down the same in between two eyebrows, Drop, Point
Girl/Female
Tamil
Bindiya | பிஂதியா
A dot on the forehead. the one which indian women who put down the same in between two eyebrows, Drop, Point
Bindiya | பிஂதியா
Female
English
Pet form of English Dorothy, DOTTIE means "gift of God."
Boy/Male
Hindu, Indian
Calm
Male
English
English surname transferred to forename use, derived from the Norman baronial name Cuinchy, a derivative of Roman Quintus, QUINCY means "fifth."
Biblical
fourth
Girl/Female
Biblical
Fourth.
Female
English
Variant spelling of English Dottie, DOTTY means "gift of God."
Surname or Lastname
English
English : from the personal name Horace, Latin Horatius, a Roman family name of unknown origin, associated chiefly with the name of the poet Quintus Horatius Flaccus (65–8 bc).
Surname or Lastname
English
English : patronymic from the personal name Dodde (see Dodd).
Boy/Male
Latin Biblical
Born fourth.
Girl/Female
Tamil
Bindhiya | பிநà¯à®¤à®¿à®¯à®¾
A dot on the forehead. the one which indian women who put down the same in between two eyebrows, Drop, Point
Bindhiya | பிநà¯à®¤à®¿à®¯à®¾
Surname or Lastname
English
English : said to be a variant of Doty.English : Perhaps an altered spelling of English Dotten, a habitational name from Dotton Farm in Colaton Raleigh, Devon, named in Old English as ‘settlement (Old English tūn) associated with Dudda’, or from Dutton in Lancashire, ‘Dudda’s settlement’.
Surname or Lastname
English
English : probably a variant of Dotson.
Boy/Male
Danish, Finnish, French, German, Latin, Shakespearean, Swedish
Born Fifth
Surname or Lastname
English
English : of uncertain derivation. Reaney suggests it could be from bynames associated with Old Norse dottr ‘lazy’, or Old English dott ‘head of a boil’.South German : from a term meaning ‘godfather’.North German : from a short form of the personal name Dietrich or a related name.
Surname or Lastname
English
English : nickname from Middle English cointe, quointe ‘known’ (via Old French, from Latin cognitus ‘known’). The Middle English word was used in various senses, any of which could have given rise to the surname: ‘cunning’, ‘crafty’, ‘knowledgeable’ (especially about dress, hence ‘elegant’), ‘attractive’. The sense development continued with ‘odd’ or ‘unusual’, the normal meaning of the modern English word ‘quaint’.German and Dutch : variant of Quandt.
Surname or Lastname
English
English : probably an early variant of Doughty.Edward Doty (c.1600–55) was one of the passengers on the Mayflower, a servant of Stephen Hopkins. He became comparatively wealthy and moved to Duxbury MA, where he left nine children.
Surname or Lastname
South German
South German : occupational name for an official in charge of the legal auction of property confiscated in default of a fine; such a sale was known in Middle High German as a gant (from Italian incanto, a derivative of Late Latin inquantare ‘to auction’, from the phrase In quantum? ‘To how much (is the price raised)?’).German : metonymic occupational name for a cooper, from Middle High German ganter, kanter ‘barrel rack’.German : variant of Gander 3.English : occupational name for a glover, from Old French gantier, an agent derivative of gant ‘glove’ (see Gant).
Female
English
Pet form of English Dorothy, DOT means "gift of God."
QUANTUM DOT
QUANTUM DOT
Male
English
Anglicized form of Hebrew Tsibown, ZIBEON means "versi-colored." In the bible, this is the name of the father of Anah and a son of Seir.
Boy/Male
American, Anglo, Australian, British, Chinese, Christian, English, Jamaican, Latin
Meadow of the Hares; Place Name; From the Long Field; Hare's Meadow; Hare Clearing; The Bow Man
Boy/Male
Australian, Finnish
Watchful
Boy/Male
Hindu
Rescue
Girl/Female
Muslim
Like, Equal, Matching, Observer, Supervisor
Surname or Lastname
English
English : habitational name from either of a pair of villages in Hampshire, so called from Old English stÄn ‘stone’ + hÄm ‘homestead’.
Boy/Male
Muslim/Islamic
Departure Fragrance, ease
Girl/Female
Hindu
Loved one
Boy/Male
Hindu, Indian
Lord Vishnu
Girl/Female
Arabic, Australian, German, Indian, Muslim, Swedish, Tamil
Rich; Victory Peace; Fair
QUANTUM DOT
QUANTUM DOT
QUANTUM DOT
QUANTUM DOT
QUANTUM DOT
n.
A quantic of the seventh degree.
n.
One of the variables of a quantic as distinguished from a coefficient.
n.
Part or proportion; quota.
n.
A homogeneous algebraic function of two or more variables, in general containing only positive integral powers of the variables, and called quadric, cubic, quartic, etc., according as it is of the second, third, fourth, fifth, or a higher degree. These are further called binary, ternary, quaternary, etc., according as they contain two, three, four, or more variables; thus, the quantic / is a binary cubic.
n.
A punting pole with a broad flange near the end to prevent it from sinking into the mud; a setting pole.
n.
A quantic of the sixth degree.
n.
A definite portion of a manifoldness, limited by a mark or by a boundary.
n.
A fanciful, odd, or extravagant notion; a quant fancy; an unnatural or affected conception; a witty thought or turn of expression; a fanciful device; a whim; a quip.
a.
Marked with, or made of, dots or small spots; diversified with small, detached objects.
a.
Of, pertaining to, or in the manner of, the Roman general, Quintus Fabius Maximus Verrucosus; cautious; dilatory; avoiding a decisive contest.
a.
That dotes; silly; excessively fond.
n.
See Dotterel.
n.
A quantic of the fifth degree. See Quantic.
pl.
of Quantum
n.
Quantity; amount.
n.
A quantic of the eighth degree.
a.
Half-rotten; as, doty timber.
n.
A quantic of the second degree. See Quantic.
n.
A quantic of the fourth degree. See Quantic.
n.
A function involving the coefficients and the variables of a quantic, and such that when the quantic is lineally transformed the same function of the new variables and coefficients shall be equal to the old function multiplied by a factor. An invariant is a like function involving only the coefficients of the quantic.