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21 explicit path programming
Англо-русский словарь по робототехнике > explicit path programming
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22 on-line programming
1. программирование в оперативном режиме2. программирование в диалоговом режимеEnglish-Russian big polytechnic dictionary > on-line programming
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23 sequential explicit stochastic linear programming
Универсальный англо-русский словарь > sequential explicit stochastic linear programming
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24 language
язык || языковой- action description language
- actual machine language
- agent programming language
- AI language
- Algol-like language
- algorithmical language
- algorithmic language
- application-oriented language
- applicative language
- artificial language
- assembler language
- assembly language
- assembly-output language
- assignment-free language
- behavioral language
- bidirectional language
- block-structured language
- Boolean-based language
- business definition language
- business-oriented language
- calculus-type language
- C-based language
- client-side language
- code language
- command language
- compiled language
- compiler language
- component definition language
- composite language
- computer language
- computer-dependent language
- computer-independent language
- computer-oriented language
- computer-programming language
- computer-sensitive language
- consensus language
- context-free language
- control language
- conversational language
- core language
- data definition language
- data description language
- data language
- data manipulation language
- data storage description language
- database language
- data-entry language
- data-flow language
- data-query language
- declarative language
- defining language
- descriptive language
- descriptor language
- design language
- device media control language
- direct execution language
- directly interpretable language
- Dyck language
- end-user language
- escape language
- evolutive language
- executive-control language
- executive language
- explicit language
- extensible language
- fabricated language
- finite state language
- flow language
- foreign language
- formalized language
- frame-based language
- freestanding language
- functional language
- generated language
- graphics language
- graph-oriented language
- hardware-description language
- hardware language
- higher-level language
- higher-order language
- host language
- human language
- human-oriented language
- human-readable language
- indexed language
- information retrieval language
- informational language
- information language
- inherently ambiguous language
- input language
- input/output language
- instruction language
- integrated language
- interactive language
- interim language
- intermediate language
- internal language
- interpreted language
- job control language
- job-oriented language
- knowledge representation language
- language pair
- letter-equivalent languages
- linear language
- linear-programming language
- list-processing language
- logic-type language
- low-level language
- machine language
- machine-dependent language
- machine-independent language
- machine-oriented language
- macroassembly language
- macro language
- macroinstruction language
- macroprogramming language
- man-to-computer language
- mathematical formular language
- memory management language
- mnemonic language
- modeling language
- native language
- natural language
- NC programming language
- nested language
- network-oriented language
- nonprocedural language
- numder language
- object language
- object modeling language
- object-oriented language
- one-dimensional language
- operator-oriented language
- original language
- page description language
- parallel language
- phrase structure language
- predicate language
- predicate logic-based language
- predicate logic language
- privacy language
- problem statement language
- problem-oriented language
- procedural language
- procedure-oriented language
- process control language
- production language
- program language
- programming language
- pseudo language
- pseudomachine language
- query language
- readable specification language
- reference language
- regular language
- relational language
- relational-type language
- representation language - requirements modeling language
- restricted language
- rule-based language
- ruly language
- schema language
- science-oriented language
- script language
- self-contained language
- semantic-formal language
- semiformal language
- sentential language
- serial language
- simulation language
- single-assignment language
- source language
- specialized language
- specification language
- stream-based language
- strict language
- structured programming language
- structured query language
- super language
- super-high-level language
- symbolic language
- symbolic programming language
- syntax language
- synthetic language
- system input language
- system language
- system-oriented language
- tabular language
- target language
- TC language
- time sharing language
- type-free language
- unified modeling language
- update language
- user language
- user-oriented language
- very-high-level languageEnglish-Russian dictionary of computer science and programming > language
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25 function
1) функция; назначение2) работать, функционировать, действовать•- admittance functionbetween functions — между операциями, в периоды между операциями
- advanced CAD function
- alert function
- analytic function
- assumed function
- auxiliary function
- averaged function
- basis function
- characteristic function
- chip-carrying function
- closed-loop transfer function
- complementary function
- control function
- coupling function
- custom macro function
- cut-and-paste function
- decision function
- describing function
- descriptive function
- Dirac function
- dispatching functions
- dissipative function
- distribution function
- dynamic transfer function
- error transfer function
- evaluation function
- explicit function
- feed forward function
- feed function
- feedback transfer function
- force function
- forward transfer function
- frequency distribution function
- frequency function
- frequency response function
- given function
- Hamiltonian function
- hindrance function
- holding function
- implicit function
- influence function
- input function
- instantly posted function
- interface functions
- interrelated functions
- interstage function
- inverse function
- involute function
- IPG function
- jump function
- key hardware functions
- key software functions
- kitting function
- look-ahead function
- machine-dependent functions
- machine-incorporated functions
- machining time monitoring function
- memory-related functions
- meshing error function
- message function
- metering function
- miscellaneous functions
- monitored function
- monitoring function
- neural transfer function
- noncomputable function
- objective function
- offsetting function
- open-loop transfer function
- operational functions
- optimal decision function
- output function
- overall transfer function
- penalty function
- peripheral functions
- pick-and-place functions
- position function
- positioning function
- power function
- preparatory G-function
- primary function
- probability density function
- probability distribution function
- profit function
- programming-planning functions
- programming-related functions
- qualitative functions
- ramp function
- random function
- restorative function
- return transfer function
- robot-dependent functions
- safety function
- sensor-motor function
- sigma function
- sigmoid function
- spindle speed function
- spindle-await function
- standby function
- step function
- storage function
- support function
- switching function
- system function
- target function
- tool function
- transfer function
- unit-impulse function
- unit-pulse function
- unit-step function
- universal function
- universal miscellaneous functions
- weight function
- weighting function
- window function
- zero-order function
- zero-return function
- zero-set functionEnglish-Russian dictionary of mechanical engineering and automation > function
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26 function
1) функция, назначение3) функционировать; действовать; срабатывать4) матем. функция•to apply function to... — применять функцию к...function of N variables — функция от N переменных-
alert function
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algebraic function
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all-pole function
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all-zero function
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ambiguity function
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amplitude function
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analog function
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analytic function
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approximation function
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autocorrelation function
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base-conversion function
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basic function
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Bessel function
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beta function
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Boolean function
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Butterworth function
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calculable function
-
characteristic function
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circular function
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complex-valued function
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complex function
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composite function
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continuous function
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contrast transfer function
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control function
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convolution function
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cooling function
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coordinate function
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correction function
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correlation function
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criterion function
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cross-ambiguity function
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cross-correlation function
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cylindrical function
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damage function
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damped sinusoidal function
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decision function
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decreasing function
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demodulation transfer function
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density function
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describing function
-
differentiable function
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digital function
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Dirac delta-function
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discontinuous function
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distribution function
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driving function
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driving-point function
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elementary function
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elliptic function
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entire function
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ergodic function
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error function
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evaluation function
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even function
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explicit function
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exponential function
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failure rate function
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forcing function
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fractional rational function
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frequency function
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frequency response function
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gamma function
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gate function
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generalized function
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generating function
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generic function
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Gibbs function
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goal function
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Green function
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grouped data function
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Hamiltonian function
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Hankel function
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hardening function
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harmonic function
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hashing function
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hash function
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Heaviside step function
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Heaviside function
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Helmholtz function
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help function
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Hildebrand function
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holding function
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holomorphic function
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homogeneous function
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hyperbolic function
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hypergeometric function
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illegal function
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implicit function
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increasing function
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indicator function
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infeed function
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inference function
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influence function
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integral function
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intrinsic function
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inverse function
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invert function
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Lagrange function
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lemniscate function
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library function
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likelihood function
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linear function
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living function
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locus function
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logarithmic function
-
loss function
-
luminance function
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majorant function
-
meta-inference function
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minorant function
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modified Bessel function
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modulating function
-
modulation transfer function
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monotone function
-
moving control function
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moving function
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multiple harmonic function
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multiple-valued function
-
network function
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nonlinear function
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normalized function
-
numerical function
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objective function
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odd function
-
one-valued function
-
optical transfer function
-
payoff function
-
periodic function
-
phase transfer function
-
photoelectric work function
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playback function
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point spread function
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polyharmonic function
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potential function
-
preference function
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probability density function
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processor defined function
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programming-planning functions
-
psi-function
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quadratically integrable function
-
ramp function
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random function
-
rate-distortion function
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rational function
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real function
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recurrent function
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recursive function
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regression function
-
reliability function
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renewal function
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return transfer function
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risk function
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safety function
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sample function
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sawtooth function
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scalar function
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scaling function
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scattering function
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shift function
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sine function
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single-valued function
-
smooth function
-
special functions
-
spectral density function
-
spectral function
-
spherical function
-
state function
-
step function
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stress function
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subharmonic function
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test function
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thermionic work function
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thermodynamic availability function
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thermodynamic function
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theta-function
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threshold function
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time function
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transfer function
-
transformed function
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transient function
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trigonometrical function
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trigonometric function
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truth function
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unit step function
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utility function
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vector function
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visibility function
-
volume function
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water-management function
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wave function
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weighting function
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weight function
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wired logic function
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work function
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world function
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yield function
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zeta function -
27 language
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absolute language
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algorithmical language
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algorithmic language
-
applicative language
-
artificial language
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assembler language
-
block-structured language
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Boolean algebra-based language
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Boolean based language
-
command language
-
compilative language
-
compiler language
-
computer language
-
computer-dependent language
-
computer-independent language
-
computer-oriented language
-
computer-sensitive language
-
context-free language
-
control language
-
conversational language
-
core language
-
data language
- data manipulation language -
data-base language
-
data-definition language
-
data-query language
-
declarative language
-
deduction-oriented language
-
design language
-
explicit language
-
expression-oriented language
-
extensible language
-
FG-kernel language
-
finite state language
-
formal specification language
-
function language
-
functional language
-
graphics-oriented language
-
graphics language
-
hardware-based language
-
high-level language
-
host language
-
human language
-
human-oriented language
-
hybrid language
-
imperative language
-
input language
-
instruction language
-
interactive language
-
interface language
-
intermediate language
-
interpretive language
-
job control language
-
kernel language
-
knowledge representation language
-
list-processing language
-
low-level language
-
machine language
-
machine-dependent language
-
machine-independent language
-
machine-oriented language
-
macro language
-
meta language
-
mnemonic language
-
narrative language
-
native language
-
native-mode language
-
natural language
-
NC-AM language
-
network control language
-
nonprocedural language
-
nucleus language
-
object language
-
object-oriented language
-
original language
-
parallel language
-
plain language
-
privacy language
-
problem solving language
-
problem-oriented language
-
procedural language
-
program development language
-
program language
-
programming language
-
pseudo language
-
query language
-
real-time language
-
reference language
-
regular language
-
relational language
-
retrieval language
-
robot language
-
rule language
-
semantic language
-
sentential language
-
simulation language
-
source language
-
specification description language
-
specification language
-
stratified language
-
structured language
-
symbolic language
-
system language
-
system-oriented language
-
target language
-
typed language
-
unstratified language
-
untyped language
-
user-oriented language
-
world-modeling language -
28 SESLP
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29 SESLP
sequential explicit stochastic linear programming - последовательное явно стохастическое линейное программирование -
30 data
( pl от datum)1) данные; информация; сведения2) характеристики; параметры; координаты3) измеренные величины; показания приборов•data above voice — данные, передаваемые на частотах выше речевого диапазона
- 2D-design datadata under voice — данные, передаваемые на частотах ниже речевого диапазона
- 3D scan data
- 3D-design data
- AC data
- adaptive data
- administrative data
- alphameric data
- alphameric machine-readable data
- alphanumeric data
- alphanumeric machine-readable data
- analog data
- assembly data
- attribute data
- attributes data
- audit data
- axis data
- behavioral data
- blank shape data
- brazing data
- CAD data
- CAD-generated data
- CAD-geometry data
- capability data
- C-L data
- CNC data
- command data
- computerized design data
- continuous data
- coordinate scan data
- correct data
- corrected profile data
- correction data
- correction offset data
- correlating data
- corrupted data
- curve data
- curve positional data
- curved surface data
- customer due data
- cutting data
- cutting tool data
- design data
- detecting data
- digital coded data
- digital data
- digital profile data
- digital program data
- dimensional component data
- dimensions data
- directory data
- discrete data
- DNC program data
- editing data
- electronic data
- entering program data
- equipment condition data
- explicit data
- failure analysis data
- failure data
- free-form data
- fused data
- gage data
- general management data
- graphical presentation data
- hard data
- historical data
- hyperbolic positional data
- image data
- implicit data
- inch-metric input data
- incoming sensory data
- initial data
- input data
- input shape data
- instruction data
- itemized data
- job-tracking data
- line-edited input data
- live data
- machine data
- machine setup data
- machine tool data
- machine-code data
- machining result data
- manufacturing data
- master data
- math data
- model data
- motion data
- multidigit data
- NC coded data
- NC data
- NC run data
- NC running data
- noisy data
- nonvolatile data
- observation data
- observational data
- observed data
- offset curve data
- offset data
- operating data
- operational control data
- operator-entered data
- ordering data
- output data
- part-programming data
- path data
- pattern data
- PC's data
- phase-modulated data
- point data
- position data
- positional data
- positional demand data
- predicted data
- presetting data
- probe data
- product tooling data
- quality-control data
- raw data
- real-time tool data
- reference data
- resources master data
- run data
- running data
- sampled data
- scan data
- sensor signal data
- sensory data
- service data
- setup weld data
- shared data
- slice data
- soldering data
- source data
- specified data
- spindle nose data
- static tooling data
- statistical data
- stored data
- structured tool data
- supplier data
- survey data
- synthetic data
- taped data
- tape-input data
- teaching data
- technology data
- test data
- testing data
- three-dimensional data
- timing data
- tool condition data
- tool location data
- tool master data
- torque data
- training data
- transient response data
- unprocessed position data
- video data
- vision data
- wireframe data
- work data
- workcycle data
- workpiece shape dataEnglish-Russian dictionary of mechanical engineering and automation > data
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31 algorithm
4-D algorithm4-D descent advisor algorithmaiming algorithmBayesian algorithmBeam-Warming algorithmCFD algorithmCholesky algorithmcommand generation algorithmcomputational fluid dynamics algorithmcontrol algorithmdecomposition algorithmdesign algorithmdiagnosing algorithmdiagnosis algorithmdisplay algorithmengagement algorithmestimation algorithmEuler equation algorithmexplicit-implicit algorithmfeasible directions algorithmfeedback algorithmfilter algorithmfinite-volume algorithmflight management algorithmflight path algorithmflux-split algorithmFMS algorithmfrequency domain algorithmGauss-Newton algorithmgeometry generation algorithmgradient-based algorithmgrid algorithmguidance algorithmgunnery algorithmhidden surface algorithmimage-display algorithmLanczos algorithmleast-squares algorithmLevenberg-Marquardt algorithmlinear quadratic algorithmMacCormack algorithmmaneuver algorithmmaneuvering algorithmmarching algorithmmaximum likelihood estimate algorithmminimum variance algorithmmotion drive algorithmmotion-base drive algorithmmultigrid algorithmNavier-Stokes algorithmNewton-Raphson algorithmnonlinear programming algorithmoptimization algorithmplanning algorithmpole placement algorithmPotter algorithmQR algorithmrelaxation algorithmscheduling algorithmsearch algorithmshock fitting algorithmshock-capturing algorithmspeed profile algorithmspeed selection algorithmstability algorithmstate estimation algorithmsteepest descents algorithmsynthesis algorithmthrust algorithmtime-split algorithmtime-to-go algorithmtrim algorithmtwo-stage algorithm of splittingup-date algorithmupwind algorithmupwind-differenced algorithmvariable-gain algorithmweighted least squareszonal algorithm -
32 Language
Philosophy is written in that great book, the universe, which is always open, right before our eyes. But one cannot understand this book without first learning to understand the language and to know the characters in which it is written. It is written in the language of mathematics, and the characters are triangles, circles, and other figures. Without these, one cannot understand a single word of it, and just wanders in a dark labyrinth. (Galileo, 1990, p. 232)It never happens that it [a nonhuman animal] arranges its speech in various ways in order to reply appropriately to everything that may be said in its presence, as even the lowest type of man can do. (Descartes, 1970a, p. 116)It is a very remarkable fact that there are none so depraved and stupid, without even excepting idiots, that they cannot arrange different words together, forming of them a statement by which they make known their thoughts; while, on the other hand, there is no other animal, however perfect and fortunately circumstanced it may be, which can do the same. (Descartes, 1967, p. 116)Human beings do not live in the object world alone, nor alone in the world of social activity as ordinarily understood, but are very much at the mercy of the particular language which has become the medium of expression for their society. It is quite an illusion to imagine that one adjusts to reality essentially without the use of language and that language is merely an incidental means of solving specific problems of communication or reflection. The fact of the matter is that the "real world" is to a large extent unconsciously built on the language habits of the group.... We see and hear and otherwise experience very largely as we do because the language habits of our community predispose certain choices of interpretation. (Sapir, 1921, p. 75)It powerfully conditions all our thinking about social problems and processes.... No two languages are ever sufficiently similar to be considered as representing the same social reality. The worlds in which different societies live are distinct worlds, not merely the same worlds with different labels attached. (Sapir, 1985, p. 162)[A list of language games, not meant to be exhaustive:]Giving orders, and obeying them- Describing the appearance of an object, or giving its measurements- Constructing an object from a description (a drawing)Reporting an eventSpeculating about an eventForming and testing a hypothesisPresenting the results of an experiment in tables and diagramsMaking up a story; and reading itPlay actingSinging catchesGuessing riddlesMaking a joke; and telling itSolving a problem in practical arithmeticTranslating from one language into anotherLANGUAGE Asking, thanking, cursing, greeting, and praying-. (Wittgenstein, 1953, Pt. I, No. 23, pp. 11 e-12 e)We dissect nature along lines laid down by our native languages.... The world is presented in a kaleidoscopic flux of impressions which has to be organized by our minds-and this means largely by the linguistic systems in our minds.... No individual is free to describe nature with absolute impartiality but is constrained to certain modes of interpretation even while he thinks himself most free. (Whorf, 1956, pp. 153, 213-214)We dissect nature along the lines laid down by our native languages.The categories and types that we isolate from the world of phenomena we do not find there because they stare every observer in the face; on the contrary, the world is presented in a kaleidoscopic flux of impressions which has to be organized by our minds-and this means largely by the linguistic systems in our minds.... We are thus introduced to a new principle of relativity, which holds that all observers are not led by the same physical evidence to the same picture of the universe, unless their linguistic backgrounds are similar or can in some way be calibrated. (Whorf, 1956, pp. 213-214)9) The Forms of a Person's Thoughts Are Controlled by Unperceived Patterns of His Own LanguageThe forms of a person's thoughts are controlled by inexorable laws of pattern of which he is unconscious. These patterns are the unperceived intricate systematizations of his own language-shown readily enough by a candid comparison and contrast with other languages, especially those of a different linguistic family. (Whorf, 1956, p. 252)It has come to be commonly held that many utterances which look like statements are either not intended at all, or only intended in part, to record or impart straightforward information about the facts.... Many traditional philosophical perplexities have arisen through a mistake-the mistake of taking as straightforward statements of fact utterances which are either (in interesting non-grammatical ways) nonsensical or else intended as something quite different. (Austin, 1962, pp. 2-3)In general, one might define a complex of semantic components connected by logical constants as a concept. The dictionary of a language is then a system of concepts in which a phonological form and certain syntactic and morphological characteristics are assigned to each concept. This system of concepts is structured by several types of relations. It is supplemented, furthermore, by redundancy or implicational rules..., representing general properties of the whole system of concepts.... At least a relevant part of these general rules is not bound to particular languages, but represents presumably universal structures of natural languages. They are not learned, but are rather a part of the human ability to acquire an arbitrary natural language. (Bierwisch, 1970, pp. 171-172)In studying the evolution of mind, we cannot guess to what extent there are physically possible alternatives to, say, transformational generative grammar, for an organism meeting certain other physical conditions characteristic of humans. Conceivably, there are none-or very few-in which case talk about evolution of the language capacity is beside the point. (Chomsky, 1972, p. 98)[It is] truth value rather than syntactic well-formedness that chiefly governs explicit verbal reinforcement by parents-which renders mildly paradoxical the fact that the usual product of such a training schedule is an adult whose speech is highly grammatical but not notably truthful. (R. O. Brown, 1973, p. 330)he conceptual base is responsible for formally representing the concepts underlying an utterance.... A given word in a language may or may not have one or more concepts underlying it.... On the sentential level, the utterances of a given language are encoded within a syntactic structure of that language. The basic construction of the sentential level is the sentence.The next highest level... is the conceptual level. We call the basic construction of this level the conceptualization. A conceptualization consists of concepts and certain relations among those concepts. We can consider that both levels exist at the same point in time and that for any unit on one level, some corresponding realizate exists on the other level. This realizate may be null or extremely complex.... Conceptualizations may relate to other conceptualizations by nesting or other specified relationships. (Schank, 1973, pp. 191-192)The mathematics of multi-dimensional interactive spaces and lattices, the projection of "computer behavior" on to possible models of cerebral functions, the theoretical and mechanical investigation of artificial intelligence, are producing a stream of sophisticated, often suggestive ideas.But it is, I believe, fair to say that nothing put forward until now in either theoretic design or mechanical mimicry comes even remotely in reach of the most rudimentary linguistic realities. (Steiner, 1975, p. 284)The step from the simple tool to the master tool, a tool to make tools (what we would now call a machine tool), seems to me indeed to parallel the final step to human language, which I call reconstitution. It expresses in a practical and social context the same understanding of hierarchy, and shows the same analysis by function as a basis for synthesis. (Bronowski, 1977, pp. 127-128)t is the language donn eґ in which we conduct our lives.... We have no other. And the danger is that formal linguistic models, in their loosely argued analogy with the axiomatic structure of the mathematical sciences, may block perception.... It is quite conceivable that, in language, continuous induction from simple, elemental units to more complex, realistic forms is not justified. The extent and formal "undecidability" of context-and every linguistic particle above the level of the phoneme is context-bound-may make it impossible, except in the most abstract, meta-linguistic sense, to pass from "pro-verbs," "kernals," or "deep deep structures" to actual speech. (Steiner, 1975, pp. 111-113)A higher-level formal language is an abstract machine. (Weizenbaum, 1976, p. 113)Jakobson sees metaphor and metonymy as the characteristic modes of binarily opposed polarities which between them underpin the two-fold process of selection and combination by which linguistic signs are formed.... Thus messages are constructed, as Saussure said, by a combination of a "horizontal" movement, which combines words together, and a "vertical" movement, which selects the particular words from the available inventory or "inner storehouse" of the language. The combinative (or syntagmatic) process manifests itself in contiguity (one word being placed next to another) and its mode is metonymic. The selective (or associative) process manifests itself in similarity (one word or concept being "like" another) and its mode is metaphoric. The "opposition" of metaphor and metonymy therefore may be said to represent in effect the essence of the total opposition between the synchronic mode of language (its immediate, coexistent, "vertical" relationships) and its diachronic mode (its sequential, successive, lineal progressive relationships). (Hawkes, 1977, pp. 77-78)It is striking that the layered structure that man has given to language constantly reappears in his analyses of nature. (Bronowski, 1977, p. 121)First, [an ideal intertheoretic reduction] provides us with a set of rules"correspondence rules" or "bridge laws," as the standard vernacular has it-which effect a mapping of the terms of the old theory (T o) onto a subset of the expressions of the new or reducing theory (T n). These rules guide the application of those selected expressions of T n in the following way: we are free to make singular applications of their correspondencerule doppelgangers in T o....Second, and equally important, a successful reduction ideally has the outcome that, under the term mapping effected by the correspondence rules, the central principles of T o (those of semantic and systematic importance) are mapped onto general sentences of T n that are theorems of Tn. (P. Churchland, 1979, p. 81)If non-linguistic factors must be included in grammar: beliefs, attitudes, etc. [this would] amount to a rejection of the initial idealization of language as an object of study. A priori such a move cannot be ruled out, but it must be empirically motivated. If it proves to be correct, I would conclude that language is a chaos that is not worth studying.... Note that the question is not whether beliefs or attitudes, and so on, play a role in linguistic behavior and linguistic judgments... [but rather] whether distinct cognitive structures can be identified, which interact in the real use of language and linguistic judgments, the grammatical system being one of these. (Chomsky, 1979, pp. 140, 152-153)23) Language Is Inevitably Influenced by Specific Contexts of Human InteractionLanguage cannot be studied in isolation from the investigation of "rationality." It cannot afford to neglect our everyday assumptions concerning the total behavior of a reasonable person.... An integrational linguistics must recognize that human beings inhabit a communicational space which is not neatly compartmentalized into language and nonlanguage.... It renounces in advance the possibility of setting up systems of forms and meanings which will "account for" a central core of linguistic behavior irrespective of the situation and communicational purposes involved. (Harris, 1981, p. 165)By innate [linguistic knowledge], Chomsky simply means "genetically programmed." He does not literally think that children are born with language in their heads ready to be spoken. He merely claims that a "blueprint is there, which is brought into use when the child reaches a certain point in her general development. With the help of this blueprint, she analyzes the language she hears around her more readily than she would if she were totally unprepared for the strange gabbling sounds which emerge from human mouths. (Aitchison, 1987, p. 31)Looking at ourselves from the computer viewpoint, we cannot avoid seeing that natural language is our most important "programming language." This means that a vast portion of our knowledge and activity is, for us, best communicated and understood in our natural language.... One could say that natural language was our first great original artifact and, since, as we increasingly realize, languages are machines, so natural language, with our brains to run it, was our primal invention of the universal computer. One could say this except for the sneaking suspicion that language isn't something we invented but something we became, not something we constructed but something in which we created, and recreated, ourselves. (Leiber, 1991, p. 8)Historical dictionary of quotations in cognitive science > Language
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