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1 input details
English-russian dctionary of contemporary Economics > input details
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2 input details
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3 detail
n1) деталь, подробность; частность2) pl реквизиты3) деталь (машины)
- additional details
- appropriate details
- full details
- input details
- last saved item details
- pertinent details
- specific details
- technical details
- updated details
- in detail
- divulge details
- give details
- go into detailsEnglish-russian dctionary of contemporary Economics > detail
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4 detail
1) деталь, подробность2) pl реквизиты•detailed account of costs incurred -
5 BIOS
['baios] n. shkurtesë nga b asic i nput o utput s ystem ( BIOS) sistemi themelor për hyrje-dalje ( informatikë)What is BIOS?BIOS is an acronym for Basic Input/Output System. It is the boot firmware program on a PC, and controls the computer from the time you start it up until the operating system takes over. When you turn on a PC, the BIOS first conducts a basic hardware check, called a Power-On Self Test (POST), to determine whether all of the attachments are present and working. Then it loads the operating system into your computer's random access memory, or RAM.The BIOS also manages data flow between the computer's operating system and attached devices such as the hard disk, video card, keyboard, mouse, and printer.The BIOS stores the date, the time, and your system configuration information in a battery-powered, non-volatile memory chip, called a CMOS (Complementary Metal Oxide Semiconductor) after its manufacturing process.Although the BIOS is standardized and should rarely require updating, some older BIOS chips may not accommodate new hardware devices. Before the early 1990s, you couldn't update the BIOS without removing and replacing its ROM chip. Contemporary BIOS resides on memory chips such as flash chips or EEPROM (Electrically Erasable Programmable Read-Only Memory), so that you can update the BIOS yourself if necessary.For detailed information about BIOS updates, visit:What is firmware?Firmware consists of programs installed semi-permanently into memory, using various types of programmable ROM chips, such as PROMS, EPROMs, EEPROMs, and flash chips.Firmware is non-volatile, and will remain in memory after you turn the system off.Often, the term firmware is used to refer specifically to boot firmware, which controls a computer from the time that it is turned on until the primary operating system has taken over. Boot firmware's main function is to initialize the hardware and then to boot (load and execute) the primary operating system. On PCs, the boot firmware is usually referred to as the BIOS.What is the difference between memory and disk storage?Memory and disk storage both refer to internal storage space in a computer.The term memory usually means RAM (Random Access Memory). To refer to hard drive storage, the terms disk space or storage are usually used.Typically, computers have much less memory than disk space, because RAM is much more expensive per megabyte than a hard disk. Today, a typical desktop computer might come with 512MB of RAM, and a 40 gigabyte hard disk.Virtual memory is disk space that has been designated to act like RAM.Computers also contain a small amount of ROM, or read-only memory, containing permanent or semi-permanent (firmware) instructions for checking hardware and starting up the computer. On a PC, this is called the BIOS.What is RAM?RAM stands for Random Access Memory. RAM provides space for your computer to read and write data to be accessed by the CPU (central processing unit). When people refer to a computer's memory, they usually mean its RAM.New computers typically come with at least 256 megabytes (MB) of RAM installed, and can be upgraded to 512MB or even a gigabyte or more.If you add more RAM to your computer, you reduce the number of times your CPU must read data from your hard disk. This usually allows your computer to work considerably faster, as RAM is many times faster than a hard disk.RAM is volatile, so data stored in RAM stays there only as long as your computer is running. As soon as you turn the computer off, the data stored in RAM disappears.When you turn your computer on again, your computer's boot firmware (called BIOS on a PC) uses instructions stored semi-permanently in ROM chips to read your operating system and related files from the disk and load them back into RAM.Note: On a PC, different parts of RAM may be more or less easily accessible to programs. For example, cache RAM is made up of very high-speed RAM chips which sit between the CPU and main RAM, storing (i.e., caching) memory accesses by the CPU. Cache RAM helps to alleviate the gap between the speed of a CPU's megahertz rating and the ability of RAM to respond and deliver data. It reduces how often the CPU must wait for data from main memory.What is ROM?ROM is an acronym for Read-Only Memory. It refers to computer memory chips containing permanent or semi-permanent data. Unlike RAM, ROM is non-volatile; even after you turn off your computer, the contents of ROM will remain.Almost every computer comes with a small amount of ROM containing the boot firmware. This consists of a few kilobytes of code that tell the computer what to do when it starts up, e.g., running hardware diagnostics and loading the operating system into RAM. On a PC, the boot firmware is called the BIOS.Originally, ROM was actually read-only. To update the programs in ROM, you had to remove and physically replace your ROM chips. Contemporary versions of ROM allow some limited rewriting, so you can usually upgrade firmware such as the BIOS by using installation software. Rewritable ROM chips include PROMs (programmable read-only memory), EPROMs (erasable read-only memory), EEPROMs (electrically erasable programmable read-only memory), and a common variation of EEPROMs called flash memory.What is an ACPI BIOS?ACPI is an acronym that stands for Advanced Configuration and Power Interface, a power management specification developed by Intel, Microsoft, and Toshiba. ACPI support is built into Windows 98 and later operating systems. ACPI is designed to allow the operating system to control the amount of power provided to each device or peripheral attached to the computer system. This provides much more stable and efficient power management and makes it possible for the operating system to turn off selected devices, such as a monitor or CD-ROM drive, when they are not in use.ACPI should help eliminate computer lockup on entering power saving or sleep mode. This will allow for improved power management, especially in portable computer systems where reducing power consumption is critical for extending battery life. ACPI also allows for the computer to be turned on and off by external devices, so that the touch of a mouse or the press of a key will "wake up" the computer. This new feature of ACPI, called OnNow, allows a computer to enter a sleep mode that uses very little power.In addition to providing power management, ACPI also evolves the existing Plug and Play BIOS (PnP BIOS) to make adding and configuring new hardware devices easier. This includes support for legacy non-PnP devices and improved support for combining older devices with ACPI hardware, allowing both to work in a more efficient manner in the same computer system. The end result of this is to make the BIOS more PnP compatible.What is CMOS?CMOS, short for Complementary Metal Oxide Semiconductor, is a low-power, low-heat semiconductor technology used in contemporary microchips, especially useful for battery-powered devices. The specific technology is explained in detail at:http://searchsmb.techtarget.com/sDefinition/0,,sid44_gci213860,00.htmlMost commonly, though, the term CMOS is used to refer to small battery-powered configuration chips on system boards of personal computers, where the BIOS stores the date, the time, and system configuration details.How do I enter the Setup program in my BIOS?Warning: Your BIOS Setup program is very powerful. An incorrect setting could cause your computer not to boot properly. You should make sure you understand what a setting does before you change it.You can usually run Setup by pressing a special function key or key combination soon after turning on the computer, during its power-on self test (POST), before the operating system loads (or before the operating system's splash screen shows). During POST, the BIOS usually displays a prompt such as:Press F2 to enter SetupMany newer computers display a brief screen, usually black and white, with the computer manufacturer's logo during POST.Entering the designated keystroke will take you into the BIOS Setup. Common keystrokes to enter the BIOS Setup are F1, F2, F10, and Del.On some computers, such as some Gateway or Compaq computers, graphics appear during the POST, and the BIOS information is hidden. You must press Esc to make these graphics disappear. Your monitor will then display the correct keystroke to enter.Note: If you press the key too early or too often, the BIOS may display an error message. To avoid this, wait about five seconds after turning the power on, and then press the key once or twice.What's the difference between BIOS and CMOS?Many people use the terms BIOS (basic input/output system) and CMOS (complementary metal oxide semiconductor) to refer to the same thing. Though they are related, they are distinct and separate components of a computer. The BIOS is the program that starts a computer up, and the CMOS is where the BIOS stores the date, time, and system configuration details it needs to start the computer.The BIOS is a small program that controls the computer from the time it powers on until the time the operating system takes over. The BIOS is firmware, which means it cannot store variable data.CMOS is a type of memory technology, but most people use the term to refer to the chip that stores variable data for startup. A computer's BIOS will initialize and control components like the floppy and hard drive controllers and the computer's hardware clock, but the specific parameters for startup and initializing components are stored in the CMOS. -
6 enter
1. n театр. выход2. n редк. вход3. v входитьwe were surprised to see a stranger enter — мы удивились, увидев вошедшего незнакомца
4. v вступать, входить5. v вонзать, втыкать6. v вонзаться, проникать7. v поступать, вступать; становиться членом8. v быть частью, входить в составenter the system — входить в систему; подключаться к системе
9. v вписывать, вносить, заносить; регистрировать10. v записыватьenter up — фиксировать, записывать
11. v принимать участие, участвовать12. v начинать, приступатьto enter on a project — приступить к выполнению проекта, взяться за осуществление проекта
he entered upon his duties at the Ministry — он приступил к исполнению своих обязанностей в министерстве
he entered upon the task with insufficient preparation — он взялся за выполнение задания без достаточной подготовки
13. v разделять, сочувствовать14. v вникать; вдаватьсяto enter into internal motives — вдумываться во внутренние мотивы, анализировать внутренние побуждения
15. v начинать процесс; вступать в процесс путём подачи письменного заявления16. v заявить; представить, подать, приобщить к делу17. v амер. юр. регистрировать заявку18. v амер. юр. регистрировать авторское право, патент19. v амер. юр. эк. подавать таможенную декларациюto enter an appeal — подавать апелляцию, жалобу
20. v амер. юр. охот. дрессироватьСинонимический ряд:1. admit (verb) admit; introduce2. begin (verb) approach; begin; commence; embark; embark on; embark upon; get off; inaugurate; initiate; jump off; kick off; launch; lead off; open; set out; set to; start; take on; take up; tee off; undertake3. come in (verb) come in; go in; infiltrate; ingress; invade4. enlist (verb) enlist; enrol; enroll; join; join up; muster; sign on; sign up5. go into (verb) break into; gain entry; get into; go into; intrude; make an entrance; rush into; set foot in6. input (verb) input; log; make an entry; perform data entry; put on record; type in7. penetrate (verb) inject; penetrate; perforate; pierce; puncture8. to become a member (verb) associate; inscribe; insert; post; record; register; subscribe; take part in; to become a memberАнтонимический ряд:exit; withdraw -
7 level
1) уровеньб) ранг; позиция; категория; иерархическое положениев) амплитуда; интенсивность; относительное значениег) нивелир; ватерпас2) регулировать уровень; устанавливать уровень (напр. освещённости)3) приводить к одинаковому уровню; выравнивать; сглаживать; устранять отличия; нивелировать4) громкость || регулировать громкость5) ранжировать; определять позицию; относить к (определённой) категории; устанавливать степень субординации в иерархии6) горизонтальная линия или плоскость; ровная поверхность, плоская поверхность || устанавливать в горизонтальной плоскости; выравнивать; нивелировать; устанавливать по уровню или ватерпасу7) степень (напр. интеграции)10) рлк нацеливать; наводить; прицеливаться•- level of interactivity
- level within factor - acceptor level
- acceptor impurity level
- accuracy level
- activity level
- adaptation level
- algorithmic level
- allowed level
- allowed energy level
- alpha level
- alpha-geometric level
- alphamosaic level
- ambient level
- amplitude-modulation noise level
- atomic energy level
- audio-signal output level
- average picture level
- background level
- back-lobe level
- band-gap level
- band-power level
- band-pressure level
- base level
- behavioral level
- bit level
- black level
- blacker-than-black level
- blanking level
- brightness level
- bus interface level
- call-tone level
- carrier level
- carrier-noise level
- charged trapping level
- charge-storage level
- chorus level
- chromatic level
- circuit noise level
- clamp level
- clearance level
- clipping level
- common level
- compatibility level
- composite picture signal output level
- concentration level
- confidence level
- contamination level
- conventional significance level
- cross-product level - cutoff level
- data-flow level
- datagram level
- data service level
- deep level
- deep-lying level
- defect level - digital signal level
- discrete level
- discrete energy level
- donor level
- donor impurity level
- doping level
- DS level
- effective privilege level
- electric level
- electronic Zeeman level
- energy level
- entry level
- equivalent loudness level
- equivalent peak level
- exchange level
- exchange-split level
- excitation level
- exciton level
- extra level
- facsimile-signal level
- Fermi level
- Fermi characteristic energy level - floating level
- FM noise level
- foreground level
- free energy level
- function level
- functional level
- gate level
- gray level
- ground level
- ground state level
- HFS level
- high level
- higher bias level
- high logic level
- hum level
- hyperfine-structure level
- impedance level
- implementation level
- impurity level
- impurity energy level
- injection level
- input level - intensity level
- interchange level
- intermediate level
- intermediate energy level
- intrinsic level
- inversion level
- inverted level
- ISO 9660 implementation level
- ISO 9660 interchange level
- jet stream level
- jumbo cell level
- layout level
- light level
- line level
- local level
- logic level
- logical device level
- loudness level
- lower level
- lower energy level
- lowest level
- lowest energy level
- low-field level
- low logic level
- luminescent level
- mask level
- maximum record level
- maximum relative side-lobe level
- metastable level
- multiplet level
- neutral level
- noise level
- occupied energy level
- octave-band pressure level
- operate level of echo suppressor
- orbital energy level
- overload level
- partially filled level
- partially occupied level
- peak signal level
- peak sound-pressure level
- pedestal level
- perceived noise level
- perturbed level
- perturbed energy level
- phonon level
- power level
- power spectrum level
- precedence level
- pressure spectrum level
- price level
- printthrough level
- probability level
- program level
- pumping level
- quantization level
- quantizing level
- quasi-Fermi level
- recording level
- redundancy level
- reference level
- reference black level
- reference white level
- register transfer level
- relative co-polar side-lobe level
- relative cross-polar side-lobe level
- reorder level
- requested privilege level
- resistivity level
- resonance level
- risk level
- rotational level
- rotational energy level
- saturation level
- sensation level
- shallow impurity level
- side-lobe level
- signal level
- significance level
- singlet level
- soil level
- sound level
- sound-energy flux density level
- sound-power level
- sound-pressure level
- specific sound-energy flux level
- speech level
- strong-field level
- surface level
- switching level
- sync level
- synchronizing level
- system level
- television level
- testing level
- test's significance level
- threshold level
- through level
- timing level
- tolerable noise level
- transducer overload level
- transmission level
- trapping level
- trigger level
- triplet level
- true level
- turntable spirit level
- unaffected level
- unfilled level
- unfilled energy level
- unoccupied level
- unoccupied energy level
- upper level
- upper energy level
- usable levels
- vacant energy level
- vacuum level
- variable quantizing level
- variation level
- velocity level
- vibrational level
- vibrational energy level
- virtual level
- virtual energy level
- voltage level
- weighted noise level
- white level
- Zeeman energy level
- zero level -
8 level
1) уровеньб) ранг; позиция; категория; иерархическое положениев) амплитуда; интенсивность; относительное значениег) нивелир; ватерпас2) регулировать уровень; устанавливать уровень (напр. освещённости)3) приводить к одинаковому уровню; выравнивать; сглаживать; устранять отличия; нивелировать4) громкость || регулировать громкость5) ранжировать; определять позицию; относить к (определённой) категории; устанавливать степень субординации в иерархии6) горизонтальная линия или плоскость; ровная поверхность, плоская поверхность || устанавливать в горизонтальной плоскости; выравнивать; нивелировать; устанавливать по уровню или ватерпасу7) степень (напр. интеграции)10) рлк. нацеливать; наводить; прицеливаться•- acceptable reliability level
- acceptor impurity level
- acceptor level
- accuracy level
- activity level
- adaptation level
- algorithmic level
- allowed energy level
- allowed level
- alpha level
- alpha-geometric level
- alphamosaic level
- ambient level
- amplitude-modulation noise level
- atomic energy level
- audio-signal output level
- average picture level
- background level
- back-lobe level
- band-gap level
- band-power level
- band-pressure level
- base level
- behavioral level
- bit level
- black level
- blacker-than-black level
- blanking level
- brightness level
- bus interface level
- call-tone level
- carrier level
- carrier-noise level
- charged trapping level
- charge-storage level
- chorus level
- chromatic level
- circuit noise level
- clamp level
- clearance level
- clipping level
- common level
- compatibility level
- composite picture signal output level
- concentration level
- confidence level
- contamination level
- conventional significance level
- cross-product level
- C-scale sound level in decibels
- current privilege level
- cutoff level
- data service level
- data-flow level
- datagram level
- deep level
- deep-lying level
- defect level
- descriptor privilege level
- device level
- digital signal level
- discrete energy level
- discrete level
- donor impurity level
- donor level
- doping level
- DS level
- effective privilege level
- electric level
- electronic Zeeman level
- energy level
- entry level
- equivalent loudness level
- equivalent peak level
- exchange level
- exchange-split level
- excitation level
- exciton level
- extra level
- facsimile-signal level
- Fermi characteristic energy level
- Fermi level
- FIDO/opus/Seadog standard interface level
- filled energy level
- floating level
- FM noise level
- foreground level
- free energy level
- function level
- functional level
- gate level
- gray level
- ground level
- ground state level
- HFS level
- high level
- high logic level
- higher bias level
- hum level
- hyperfine-structure level
- impedance level
- implementation level
- impurity energy level
- impurity level
- injection level
- input level
- input/output privilege level
- integration level
- intensity level
- interchange level
- intermediate energy level
- intermediate level
- intrinsic level
- inversion level
- inverted level
- ISO 9660 implementation level
- ISO 9660 interchange level
- jet stream level
- jumbo cell level
- layout level
- level of details
- level of integration
- level of interactivity
- level within factor
- light level
- line level
- local level
- logic level
- logical device level
- loudness level
- low logic level
- lower energy level
- lower level
- lowest energy level
- lowest level
- low-field level
- luminescent level
- mask level
- maximum record level
- maximum relative side-lobe level
- metastable level
- multiplet level
- neutral level
- noise level
- occupied energy level
- octave-band pressure level
- operate level of echo suppressor
- orbital energy level
- overload level
- partially filled level
- partially occupied level
- peak signal level
- peak sound-pressure level
- pedestal level
- perceived noise level
- perturbed energy level
- perturbed level
- phonon level
- power level
- power spectrum level
- precedence level
- pressure spectrum level
- price level
- printthrough level
- probability level
- program level
- pumping level
- quantization level
- quantizing level
- quasi-Fermi level
- recording level
- redundancy level
- reference black level
- reference level
- reference white level
- register transfer level
- relative co-polar side-lobe level
- relative cross-polar side-lobe level
- reorder level
- requested privilege level
- resistivity level
- resonance level
- risk level
- rotational energy level
- rotational level
- saturation level
- sensation level
- shallow impurity level
- side-lobe level
- signal level
- significance level
- singlet level
- soil level
- sound level
- sound-energy flux density level
- sound-power level
- sound-pressure level
- specific sound-energy flux level
- speech level
- strong-field level
- surface level
- switching level
- sync level
- synchronizing level
- system level
- television level
- testing level
- test's significance level
- threshold level
- through level
- timing level
- tolerable noise level
- transducer overload level
- transmission level
- trapping level
- trigger level
- triplet level
- true level
- turntable spirit level
- unaffected level
- unfilled energy level
- unfilled level
- unoccupied energy level
- unoccupied level
- upper energy level
- upper level
- usable levels
- vacant energy level
- vacuum level
- variable quantizing level
- variation level
- velocity level
- vibrational energy level
- vibrational level
- virtual energy level
- virtual level
- voltage level
- weighted noise level
- white level
- Zeeman energy level
- zero levelThe New English-Russian Dictionary of Radio-electronics > level
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9 Schemata
Once we have accepted a configuration of schemata, the schemata themselves provide a richness that goes far beyond our observations.... In fact, once we have determined that a particular schema accounts for some event, we may not be able to determine which aspects of our beliefs are based on direct sensory information and which are merely consequences of our interpretation. (Rumelhart, 1980, p. 38)Through most of its history, the notion of the schema has been rejected by mainstream experimental psychologists as being too vague. As a result, the concept of the schema was largely shunned until the mid-1970s. The concept was then revived by an attempt to offer more clearly specified interpretation of the schema in terms of explicitly specified computer implementations or, similarly, formally specified implementations of the concept. Thus, Minsky (1975) postulated the concept of the frame, Schank and Abelson (1977) focused on the concept of the script, and Bobrow and Norman (1975) and Rumelhart (1975) developed an explicit notion of the schema. Although the details differed in each case, the idea was essentially the same.... Minsky and the others argued that some higher-level "suprasentential" or, more simply, conceptual structure is needed to represent the complex relations implicit in our knowledge base. The basic idea is that schemata are data structures for representing the generic concepts stored in memory. There are schemata for generalized concepts underlying objects, situations, events, sequences of events, actions, and sequences of actions. Roughly, schemata are like models of the outside world. To process information with the use of a schema is to determine which model best fits the incoming information. Ultimately, consistent configurations of schemata are discovered which, in concert, offer the best account for the input. This configuration of schemata together constitutes the interpretation of the input. (Rumelhart, Smolensky, McClelland & Hinton, 1986, pp. 17-18)Historical dictionary of quotations in cognitive science > Schemata
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10 performance
- эксплуатационные характеристики
- характеристики (работы)/качество работы
- характеристика
- функциональные характеристики
- технические характеристики
- результаты деятельности компании
- рабочие характеристики
- рабочие параметры
- рабочая характеристика
- работоспособность
- производительность
- коэффициент полезного действия
- качество функционирования
- качественные показатели
- исправная работа (машины)
- исполнение
- деятельность
- выступление
выступление
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]EN
Тематики
EN
исправная работа (машины)
—
[ http://slovarionline.ru/anglo_russkiy_slovar_neftegazovoy_promyishlennosti/]Тематики
EN
качественные показатели
качество
качественные характеристики
рабочая характеристика
показатели работы
исполнение
работа
производительность
—
[Л.Г.Суменко. Англо-русский словарь по информационным технологиям. М.: ГП ЦНИИС, 2003.]Тематики
Синонимы
- качество
- качественные характеристики
- рабочая характеристика
- показатели работы
- исполнение
- работа
- производительность
EN
качество функционирования
—
[ http://slovarionline.ru/anglo_russkiy_slovar_neftegazovoy_promyishlennosti/]Тематики
EN
коэффициент полезного действия
Отношение отдаваемой мощности к потребляемой активной мощности.
[ОСТ 45.55-99]
коэффициент полезного действия
КПД
Величина, характеризующая совершенство процессов превращения, преобразования или передачи энергии, являющаяся отношением полезной энергии к подведенной.
[РД 01.120.00-КТН-228-06]
коэффициент полезного действия
-
[IEV number 151-15-25]EN
efficiency
ratio of output power to input power of a device
NOTE – If the output power and/or input power is electric, active power is meant.
[IEV number 151-15-25]FR
rendement, m
rapport de la puissance de sortie à la puissance d'entrée d’un dispositif
NOTE – Lorsque la puissance d’entrée ou de sortie est électrique, il s’agit de puissance active.
[IEV number 151-15-25]Тематики
- электротехника, основные понятия
Синонимы
EN
- coefficient of efficiency
- coefficient of performance
- degree of efficiency
- effectiveness
- efficiency
- efficiency coefficient
- efficiency factor
- efficiency output
- performance
- performance factor
DE
FR
- rendement, m
производительность
В количественном выражении это объем выпуска, деленный на объем потребленных ресурсов. В широком смысле относительная эффективность и экономичность организации.
[ http://tourlib.net/books_men/meskon_glossary.htm]
производительность
Мера того, что достигнуто или выработано системой, человеком, командой, процессом, или ИТ-услугой.
[Словарь терминов ITIL версия 1.0, 29 июля 2011 г.]EN
performance
A measure of what is achieved or delivered by a system, person, team, process or IT service.
[Словарь терминов ITIL версия 1.0, 29 июля 2011 г. ]Тематики
EN
работоспособность
Состояние, при котором транспортное средство или его компоненты могут выполнять свои функции в соответствии с конструкторской или эксплуатационной документацией.
[Технический регламент о безопасности колесных транспортных средств]
работоспособность
-
[Интент]
Тематики
EN
- ability to work
- availability
- capacity for work
- efficiency
- fitness
- functionality
- healthy
- integrity
- operability
- operating capacity
- operational capability
- operational integrity
- operativeness
- performance
- performance ability
- performance capability
- service ability
- serviceability
- state of serviceability
- workability
- working ability
- working capacity
- working efficiency
- working-capacity
рабочая характеристика
-Параллельные тексты EN-RU
If an MCCB is used in an elevated area higher than 2000m sea level, its operating performance is subject to dramatic drop in atmospheric pressure and temperature.
[LS Industrial Systems]На рабочие характеристики автоматических выключателей в литом корпусе, работающих на высоте более 2000 м над уровнем моря, оказывают серьезное воздействие понижение атмосферного давления и температуры.
[Перевод Интент]Тематики
- электротехника, основные понятия
EN
рабочие параметры
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
рабочие характеристики
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
результаты деятельности компании
Соотношение доходов и расходов компании, как это представлено в отчете о прибылях и убытках. См.Финансовый результат.
[ http://slovar-lopatnikov.ru/]Тематики
EN
технические характеристики
Ряд номинальных параметров или условий эксплуатации.
[ ГОСТ Р МЭК 60050-426-2006]
технические характеристики
-
[Интент]
Тематики
- взрывозащита
- проектирование, документация
EN
- characteristics
- data
- duty specifications
- engineering characteristic
- engineering data
- engineering specifications
- performance
- performance capability
- performance specification
- performance specifications
- rating
- specification
- specifications
- specifications manual
- TDS
- technical capability
- technical characteristics
- technical data
- technical data sheet
- technical details
- technical features
- technical performance
- technical specifications
- technical standards
- technical statement
- techspecs
FR
функциональные характеристики
эксплуатационные характеристики
—
[Л.Г.Суменко. Англо-русский словарь по информационным технологиям. М.: ГП ЦНИИС, 2003.]Тематики
Синонимы
EN
характеристика
Отличительное свойство.
Примечания
1. Характеристика может быть присущей или присвоенной.
2. Характеристика может быть качественной или количественной.
3. Существуют различные классы характеристик, такие как:
- физические (например, механические, электрические, химические или биологические характеристики);
- органолептические (например, связанные с запахом, осязанием, вкусом, зрением, слухом);
- этические (например, вежливость, честность, правдивость);
- временные(например, пунктуальность, безотказность, доступность);
- эргономические(например, физиологические характеристики или связанные с безопасностью человека);
- функциональные(например, максимальная скорость самолета).
[ ГОСТ Р ИСО 9000-2008]
характеристика
-
[IEV number 151-15-34]EN
characteristic
relationship between two or more variable quantities describing the performance of a device under given conditions
[IEV number 151-15-34]FR
(fonction) caractéristique, f
relation entre deux ou plusieurs variables décrivant le fonctionnement d'un dispositif dans des conditions spécifiées
[IEV number 151-15-34]Тематики
- системы менеджмента качества
- электротехника, основные понятия
EN
- ability
- attribute
- behavior
- behaviour
- categorization
- character
- characteristic
- characteristic curve
- curve
- description
- feature
- letter of reference
- parameter
- pattern
- performance
- property
- qualification
- quality
- rating
- record
- response
- signature
- state
- testimonial
DE
FR
- (fonction) caractéristique, f
характеристики (работы)/качество работы
Свойство, позволяющее отслеживать уровни использования услуг и ресурсов и влиять на оперативность и надежность сети посредством обратной связи. (МСЭ-Т Q.1741).
[ http://www.iks-media.ru/glossary/index.html?glossid=2400324]Тематики
- электросвязь, основные понятия
EN
2.24 деятельность (performance): Достижения в ходе мероприятия, процесса (2.31) или организации.
Источник: ГОСТ Р ИСО 24511-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания для менеджмента коммунальных предприятий и оценке услуг удаления сточных вод оригинал документа
2.24 деятельность (performance): Достижения в ходе мероприятия, процесса (2.31) или организации.
Источник: ГОСТ Р ИСО 24512-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания для менеджмента систем питьевого водоснабжения и оценке услуг питьевого водоснабжения оригинал документа
3.12 эксплуатационные характеристики (performance): Эффективность, с которой выполняется заданная функция (например, время реагирования, точность, чувствительность к изменению параметров).
Источник: ГОСТ Р МЭК 61226-2011: Атомные станции. Системы контроля и управления, важные для безопасности. Классификация функций контроля и управления оригинал документа
2.24 деятельность (performance): Достижения в ходе мероприятия, процесса (2.31) или организации.
Источник: ГОСТ Р ИСО 24510-2009: Деятельность, связанная с услугами питьевого водоснабжения и удаления сточных вод. Руководящие указания по оценке и улучшению услуги, оказываемой потребителям оригинал документа
3.11 исполнение (performance): Условия эксплуатации, для которых показатели назначения газоанализатора установлены опытным путем.
Источник: ГОСТ Р МЭК 61207-1-2009: Газоанализаторы. Выражение эксплуатационных характеристик. Часть 1. Общие положения оригинал документа
Англо-русский словарь нормативно-технической терминологии > performance
-
11 data
1. n pl от m2. v амер. собирать или хранить подробную информациюsensory data — сенсорная информация; информация от датчиков
taught-in data — информация, введенная в процессе обучения
learned data — информация, накопленная в процессе обучения
continuous data — аналоговые данные; аналоговая информация
Синонимический ряд:1. abstracts (noun) abstracts; documents; notes; reports2. conclusions (noun) conclusions; findings; results3. declaration (noun) declaration; evidence; knowledge; proof; testimony4. facts (noun) facts; figures; information; intelligence; material; measurements; statistics5. known facts (noun) available figures; details; information base; known facts; matter of direct observation -
12 information
1. n информация, сведения, данныеprivileged information — информация, не подлежащая оглашению, конфиденциальная информация
proprietary information — секрет фирмы, производственная информация, являющаяся собственностью фирмы
2. n оповещение, сообщение, передача сведенийinformation address — адрес сообщения "для информации"
3. n осведомлённость; знания, познания4. n юр. жалоба; донос5. n юр. заявление об обвинении6. n юр. радио данные, переданные на несущей частоте7. n юр. разведывательные данные8. n юр. амер. справочнаяСинонимический ряд:1. facts (noun) data; facts; intelligence2. knowledge (noun) advice; data; details; facts; figures; intelligence; knowledge; lore; material; news; science; speerings; tidings; tip; wisdom; wordАнтонимический ряд:conjecture; hiding; ignorance; mystification -
13 Black, Harold Stephen
[br]b. 14 April 1898 Leominster, Massachusetts, USAd. 11 December 1983 Summitt, New Jersey, USA[br]American electrical engineer who discovered that the application of negative feedback to amplifiers improved their stability and reduced distortion.[br]Black graduated from Worcester Polytechnic Institute, Massachusetts, in 1921 and joined the Western Electric Company laboratories (later the Bell Telephone Laboratories) in New York City. There he worked on a variety of electronic-communication problems. His major contribution was the discovery in 1927 that the application of negative feedback to an amplifier, whereby a fraction of the output signal is fed back to the input in the opposite phase, not only increases the stability of the amplifier but also has the effect of reducing the magnitude of any distortion introduced by it. This discovery has found wide application in the design of audio hi-fi amplifiers and various control systems, and has also given valuable insight into the way in which many animal control functions operate.During the Second World War he developed a form of pulse code modulation (PCM) to provide a practicable, secure telephony system for the US Army Signal Corps. From 1963–6, after his retirement from the Bell Labs, he was Principal Research Scientist with General Precision Inc., Little Falls, New Jersey, following which he became an independent consultant in communications. At the time of his death he held over 300 patents.[br]Principal Honours and DistinctionsInstitute of Electronic and Radio Engineers Lamme Medal 1957.Bibliography1934, "Stabilised feedback amplifiers", Electrical Engineering 53:114 (describes the principles of negative feedback).21 December 1937, US patent no. 2,106,671 (for his negative feedback discovery.1947, with J.O.Edson, "Pulse code modulation", Transactions of the American Institute of Electrical Engineers 66:895.1946, "A multichannel microwave radio relay system", Transactions of the American Institute of Electrical Engineers 65:798.1953, Modulation Theory, New York: D.van Nostrand.1988, Laboratory Management: Principles \& Practice, New York: Van Nostrand Rheinhold.Further ReadingFor early biographical details see "Harold S. Black, 1957 Lamme Medalist", Electrical Engineering (1958) 77:720; "H.S.Black", Institute of Electrical and Electronics Engineers Spectrum (1977) 54.KF -
14 Neural Network
1. A neural network is composed of a number of very simple processing elements [("neurodes")] that communicate through a rich set of interconnections with variable weights or strengths.2. Memories are stored or represented in a neural network in the pattern of variable interconnection weights among the neurodes. Information is processed by a spreading, constantly changing pattern of activity distributed across many neurodes.3. A neural network is taught or trained rather than programmed. It is even possible to construct systems capable of independent or autonomous learning....4. Instead of having a separate memory and controller, plus a stored external program that dictates the operation of the system as in a digital computer, the operation of a neural network is implicitly controlled by three properties: the transfer function of the neurodes, the details of the structure of the connections among the neurodes, and the learning law the system follows.5. A neural network naturally acts as an associative memory. That is, it inherently associated items it is taught, physically grouping similar items together in its structure. A neural network operated as a memory is content addressable; it can retrieve stored information from incomplete, noisy, or partially incorrect input cues.6. A neural network is able to generalize; it can learn the characteristics of a general category of objects based on a series of specific examples from that category.7. A neural network keeps working even after a significant fraction of its neurodes and interconnections have become defective.8. A neural network innately acts as a processor for time-dependent spatial patterns, or spatiotemporal patterns. (Caudill & Butler, 1990, pp. 7-8)Historical dictionary of quotations in cognitive science > Neural Network
-
15 client committee
клиентский комитет
К обязанностям Комитета относятся:
• обзор данных по каждому уровню клиентских сервисов и общего опыта Игр;
• участие в планировании и принятии решений;
• помощь высшему руководству ОКОИ в утверждении планов посредством подготовки обзорных отчетов, идентификации проблем, определения методов их решения и проч.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]EN
client committee
These Committee's responsibilities include:
• reviewing the details of the client-service levels and the overall Games experience
• providing input into planning and decision-making
• assisting the OCOG Senior Management with approval of plans by preparing summary reports as well as highlighting issues and proposing solutions, etc.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > client committee
-
16 venue integrated schedule (VIS)
сводный график подготовки объекта
Детальный временной график подготовки территории объекта, монтажа технических установок и последующего восстановления объекта, отражающий деятельность всех функций, однако главная роль отводится деятельности подразделений, занимающихся такими вопросами, как эксплуатация объекта, технологии, телерадиовещание, логистика.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]EN
venue integrated schedule (VIS)
Timeline which details the site preparation and technical installations and retrofit phases of the venue, integrating all elements from all functions, however with primary input from site management, technology, broadcast and logistics functions.
[Департамент лингвистических услуг Оргкомитета «Сочи 2014». Глоссарий терминов]Тематики
EN
Англо-русский словарь нормативно-технической терминологии > venue integrated schedule (VIS)
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