Как пишется джоуль на английском

джоуль

  • 1
    джоуль

    джоуль; Дж

    Работа, производимая при перемещении точки приложения силы в один ньютон на расстояние в один метр в направлении действия силы.

    joule; J

    The work done when the point of application of a force of 1 newton is displaced a distance of 1 metre in the direction of the force.

    Русско-английский словарь международной организации гражданской авиации > джоуль

  • 2
    джоуль

    Sokrat personal > джоуль

  • 3
    джоуль

    joule
    имя существительное:

    сокращение:

    Русско-английский синонимический словарь > джоуль

  • 4
    джоуль

    Русско-английский большой базовый словарь > джоуль

  • 5
    Джоуль

    Русско-английский научный словарь > Джоуль

  • 6
    джоуль

    Русско-английский новый политехнический словарь > джоуль

  • 7
    джоуль

    Русско-английский военно-политический словарь > джоуль

  • 8
    джоуль

    Русско-английский словарь по информационным технологиям > джоуль

  • 9
    джоуль

    Авиация и космонавтика. Русско-английский словарь > джоуль

  • 10
    джоуль (Дж)

    1. joule

    Русско-английский словарь нормативно-технической терминологии > джоуль (Дж)

  • 11
    джоуль

    Русско-английский словарь математических терминов > джоуль

  • 12
    джоуль

    Русско-английский технический словарь > джоуль

  • 13
    Джоуль

    Information technology: Joul

    Универсальный русско-английский словарь > Джоуль

  • 14
    джоуль

    Information technology: Joul

    Универсальный русско-английский словарь > джоуль

  • 15
    джоуль

    Russian-english psychology dictionary > джоуль

  • 16
    джоуль

    Русско-английский физический словарь > джоуль

  • 17
    джоуль

    Русско-английский словарь по электронике > джоуль

  • 18
    джоуль

    Русско-английский словарь по радиоэлектронике > джоуль

  • 19
    джоуль

    joule, watt-second

    * * *

    джо́уль

    м.

    joule, J

    Русско-английский политехнический словарь > джоуль

  • 20
    джоуль

    Русско-английский словарь по строительству и новым строительным технологиям > джоуль

См. также в других словарях:

  • ДЖОУЛЬ — • ДЖОУЛЬ (Joule) Джеймс Прескотт (1818 89), британский физик. Сформулировал закон Джоуля (1841), гласящий, что прохождение тока по проводнику является причиной потери им тепла, и заложил основы для последующей формулировки ЗАКОНА СОХРАНЕНИЯ… …   Научно-технический энциклопедический словарь

  • ДЖОУЛЬ — (по имени англ. физика 1818 89). Работа в течение одной секунды такого электрического тока, электродвижущая сила которого равна 1 вольту, а сила = 1 амперу. Словарь иностранных слов, вошедших в состав русского языка. Чудинов А.Н., 1910. джоуль… …   Словарь иностранных слов русского языка

  • ДЖОУЛЬ — (Joule) Джеймс Прескотт (1818 89), английский физик, экспериментально обосновавший закон сохранения энергии. Владелец пивоваренных заводов. Показал, что теплоту можно получить за счет работы и вычислил механический эквивалент теплоты. Установил… …   Современная энциклопедия

  • ДЖОУЛЬ — единица энергии, работы и количества теплоты СИ. Названа по имени Дж. П. Джоуля. Обозначается Дж. 1 Дж = 107 эрг = 0,2388 кал = 6,24 . 1018 эВ …   Большой Энциклопедический словарь

  • ДЖОУЛЬ — ДЖОУЛЬ, я, муж. Единица энергии, работы и количества теплоты. Толковый словарь Ожегова. С.И. Ожегов, Н.Ю. Шведова. 1949 1992 …   Толковый словарь Ожегова

  • ДЖОУЛЬ — (Дж, J), единица СИ работы, энергии и кол ва теплоты. Названа в честь англ. физика Дж. П. Джоуля (J. P. Joule). 1 Дж равен работе силы 1 Н при перемещении точки приложения силы на расстояние 1 м в направлении действия силы. 1 Дж=1Н•м=107… …   Физическая энциклопедия

  • ДЖОУЛЬ — одна ватт секунда (Joule) единица работы в абсолютной системе мер, равная 107 эргам. Самойлов К. И. Морской словарь. М. Л.: Государственное Военно морское Издательство НКВМФ Союза ССР, 1941 …   Морской словарь

  • ДЖОУЛЬ — единица электр. работы или энергии, равная 10 000 000 эргов (э), или 0,102 килограммометра (кгм), или 0,24 кал. Сокращенное обозначение J, или дж. 1 дж = 1 вт с; 3 600 дж = 1 вт ч; 360 000 дж = 1 гвт ч; 3 600 000 дж =1 квт ч. Технический… …   Технический железнодорожный словарь

  • джоуль — сущ., кол во синонимов: 1 • единица (830) Словарь синонимов ASIS. В.Н. Тришин. 2013 …   Словарь синонимов

  • Джоуль — (James Prescott Joule) известный англ. физик (1818 89). До15 лет Д. воспитывался в семье отца своего, богатого пивовара; затемработал на заводе, изучая в то же время математику, химию и физику подруководством Дальтона. Первые работы Д.,… …   Энциклопедия Брокгауза и Ефрона

  • Джоуль — (Дж) единица измерения энергии по Международной системе единиц (СИ), заменившая калорию. 1 Дж=0,2388 кал. Экологический словарь. Алма Ата: «Наука». Б.А. Быков. 1983 …   Экологический словарь

From Wikipedia, the free encyclopedia

(Redirected from Decajoule)

joule
Unit system SI
Unit of energy
Symbol J
Named after James Prescott Joule
Conversions
1 J in … … is equal to …
   SI base units    kg⋅m2⋅s−2
   CGS units    1×107 erg
   watt-seconds    1 W⋅s
   kilowatt-hours    2.78×10−7 kW⋅h
   kilocalories (thermochemical)    2.390×10−4 kcalth
   BTUs    9.48×10−4 BTU
   electronvolts    6.24×1018 eV

The joule ( JOOL, JOWL;[1][2][3][4][5][disputed – discuss] symbol: J) is the unit of energy in the International System of Units (SI).[6] It is equal to the amount of work done when a force of 1 newton displaces a mass through a distance of 1 metre in the direction of the force applied. It is also the energy dissipated as heat when an electric current of one ampere passes through a resistance of one ohm for one second. It is named after the English physicist James Prescott Joule (1818–1889).[7][8][9]

Definition[edit]

In terms of SI base units and in terms of SI derived units with special names, the joule is defined as

{displaystyle {begin{alignedat}{3}mathrm {J} ;&=~mathrm {kg{cdot }m^{2}{cdot }s^{-2}} \[0.7ex]&=~mathrm {N{cdot }m} \[0.7ex]&=~mathrm {Pa{cdot }m^{3}} \[0.7ex]&=~mathrm {W{cdot }s} \[0.7ex]&=~mathrm {C{cdot }V} \[0.7ex]end{alignedat}}}

Symbol Meaning
J joule
kg kilogram
m metre
s second
N newton
Pa pascal
W watt
C coulomb
V volt

One joule can also be defined by any of the following:

  • The work required to move an electric charge of one coulomb through an electrical potential difference of one volt, or one coulomb-volt (C⋅V). This relationship can be used to define the volt.
  • The work required to produce one watt of power for one second, or one watt-second (W⋅s) (compare kilowatt-hour, which is 3.6 megajoules). This relationship can be used to define the watt.

The joule is named after James Prescott Joule. As with every SI unit named for a person, its symbol starts with an upper case letter (J), but when written in full it follows the rules for capitalisation of a common noun; i.e., «joule» becomes capitalised at the beginning of a sentence and in titles, but is otherwise in lower case.

History[edit]

The cgs system had been declared official in 1881, at the first International Electrical Congress.
The erg was adopted as its unit of energy in 1882. Wilhelm Siemens, in his inauguration speech as chairman of the British Association for the Advancement of Science (23 August 1882) first proposed the Joule as unit of heat, to be derived from the electromagnetic units Ampere and Ohm, in cgs units equivalent to 107 erg.
The naming of the unit in honour of James Prescott Joule (1818–1889), at the time retired but still living (aged 63), is due to Siemens:

«Such a heat unit, if found acceptable, might with great propriety, I think, be called the Joule, after the man who has done so much to develop the dynamical theory of heat.»[10]

At the second International Electrical Congress, on 31 August 1889, the joule was officially adopted alongside the watt and the quadrant (later renamed to henry).[11]
Joule died in the same year, on 11 October 1889.
At the fourth congress (1893), the «international ampere» and «international ohm» were defined, with slight changes in the specifications for their measurement, with the «international joule» being the unit derived from them.[12]

In 1935, the International Electrotechnical Commission (as the successor organisation of the International Electrical Congress) adopted the «Giorgi system», which by virtue of assuming a defined value for the magnetic constant also implied a redefinition of the Joule. The Giorgi system was approved by the International Committee for Weights and Measures in 1946. The joule was now no longer defined based on electromagnetic unit, but instead as the unit of work performed by one unit of force (at the time not yet named newton)
over the distance of 1 metre. The joule was explicitly intended as the unit of energy to be used in both electromagnetic and mechanical contexts.[13] The ratification of the definition at the ninth General Conference on Weights and Measures, in 1948,
added the specification that the joule was also to be preferred as the unit of heat in the context of calorimetry, thereby officially deprecating the use of the calorie.[14]
This definition was the direct precursor of the joule as adopted in the modern International System of Units in 1960.

The definition of the joule as J = kg⋅m2⋅s−2 has remained unchanged since 1946, but the joule as a derived unit has inherited changes in the definitions of the second (in 1960 and 1967), the metre (in 1983) and the kilogram (in 2019).

Practical examples[edit]

One joule represents (approximately):

  • The amount of electricity required to run a 1 W device for 1 s.
  • The energy required to accelerate a 1 kg mass at 1 m/s2 through a distance of 1 m.
  • The kinetic energy of a 2 kg mass travelling at 1 m/s, or a 1 kg mass travelling at 1.41 m/s.
  • The energy required to lift a medium-sized tomato up 1 metre (3 ft 3 in), assuming the tomato has a mass of 101.97 grams (3.597 oz).
  • The heat required to raise the temperature of 0.239 g of water from 0 °C to 1 °C, or from 32 °F to 33.8 °F.[15]
  • The typical energy released as heat by a person at rest every 1/60 s (17 ms).[note 1]
  • The kinetic energy of a 50 kg human moving very slowly (0.2 m/s or 0.72 km/h).
  • The kinetic energy of a 56 g tennis ball moving at 6 m/s (22 km/h).[16]
  • The food energy (kcal) in slightly more than half of a sugar crystal (0.102 mg/crystal).

Multiples[edit]

SI multiples of joule (J)

Submultiples Multiples
Value SI symbol Name Value SI symbol Name
10−1 J dJ decijoule 101 J daJ decajoule
10−2 J cJ centijoule 102 J hJ hectojoule
10−3 J mJ millijoule 103 J kJ kilojoule
10−6 J µJ microjoule 106 J MJ megajoule
10−9 J nJ nanojoule 109 J GJ gigajoule
10−12 J pJ picojoule 1012 J TJ terajoule
10−15 J fJ femtojoule 1015 J PJ petajoule
10−18 J aJ attojoule 1018 J EJ exajoule
10−21 J zJ zeptojoule 1021 J ZJ zettajoule
10−24 J yJ yoctojoule 1024 J YJ yottajoule
10−27 J rJ rontojoule 1027 J RJ ronnajoule
10−30 J qJ quectojoule 1030 J QJ quettajoule
Common multiples are in bold face
Zeptojoule
160 zeptojoule is about one electronvolt. The minimal energy needed to change a bit at around room temperature – approximately 2.75 zJ – is given by the Landauer limit.
Nanojoule
160 nanojoule is about the kinetic energy of a flying mosquito.[17]
Microjoule
The Large Hadron Collider (LHC) produces collisions of the microjoule order (7 TeV) per particle.
Kilojoule
Nutritional food labels in most countries express energy in kilojoules (kJ).[18] One square metre of the Earth receives about 1.4 kilojoules of solar radiation every second in full daylight.[19] A human in a sprint has approximately 3 kJ of kinetic energy,[20] while a cheetah in a 122 km/h (76 mph) sprint has approximately 20 kJ.[21] One watt-hour of electricity is 3.6 kilojoules.
Megajoule
The megajoule is approximately the kinetic energy of a one megagram (tonne) vehicle moving at 161 km/h (100 mph). The energy required to heat 10 L of liquid water at constant pressure from 0 °C (32 °F) to 100 °C (212 °F) is approximately 4.2 MJ. One kilowatt-hour of electricity is 3.6 megajoules.
Gigajoule
6 gigajoule is about the chemical energy of combusting 1 barrel (159 L) of petroleum.[22] 2 GJ is about the Planck energy unit. One megawatt-hour of electricity is 3.6 gigajoules.
Terajoule
The terajoule is about 0.278 GWh (which is often used in energy tables). About 63 TJ of energy was released by Little Boy.[23] The International Space Station, with a mass of approximately 450 megagrams and orbital velocity of 7700 m/s,[24] has a kinetic energy of roughly 13 TJ. In 2017, Hurricane Irma was estimated to have a peak wind energy of 112 TJ.[25][26] One gigawatt-hour of electricity is 3.6 terajoules.
Petajoule
210 petajoule is about 50 megatons of TNT, which is the amount of energy released by the Tsar Bomba, the largest man-made explosion ever. One terawatt-hour of electricity is 3.6 petajoules.
Exajoule
The 2011 Tōhoku earthquake and tsunami in Japan had 1.41 EJ of energy according to its rating of 9.0 on the moment magnitude scale. Yearly U.S. energy consumption amounts to roughly 94 EJ. One petawatt-hour of electricity is 3.6 exajoules.
Zettajoule
The zettajoule is somewhat more than the amount of energy required to heat the Baltic sea by 1 °C, assuming properties similar to those of pure water.[27] Human annual world energy consumption is approximately 0.5 ZJ. The energy to raise the temperature of Earth’s atmosphere 1 °C is approximately 2.2 ZJ.
Yottajoule
The yottajoule is a little less than the amount of energy required to heat the Indian Ocean by 1 °C, assuming properties similar to those of pure water.[27] The thermal output of the Sun is approximately 400 YJ per second.

Conversions[edit]

1 joule is equal to (approximately unless otherwise stated):

  • 107 erg (exactly)
  • 6.24150974×1018 eV
  • 0.2390 cal (gram calories)
  • 2.390×10−4 kcal (food calories)
  • 9.4782×10−4 BTU
  • 0.7376 ft⋅lb (foot-pound)
  • 23.7 ft⋅pdl (foot-poundal)
  • 2.7778×10−7 kW⋅h (kilowatt-hour)
  • 2.7778×10−4 W⋅h (watt-hour)
  • 9.8692×10−3 latm (litre-atmosphere)
  • 11.1265×10−15 g (by way of mass–energy equivalence)
  • 10−44 foe (exactly)

Units defined exactly in terms of the joule include:

  • 1 thermochemical calorie = 4.184 J[28]
  • 1 International Table calorie = 4.1868 J[29]
  • 1 W⋅h = 3600 J (or 3.6 kJ)
  • 1 kW⋅h = 3.6×106 J (or 3.6 MJ)
  • 1 W⋅s = 1 J
  • 1 ton TNT = 4.184 GJ

Newton-metre and torque[edit]

In mechanics, the concept of force (in some direction) has a close analogue in the concept of torque (about some angle):

Linear Angular
Force Torque
Mass Moment of inertia
Displacement Angle

A result of this similarity is that the SI unit for torque is the newton-metre, which works out algebraically to have the same dimensions as the joule, but they are not interchangeable. The General Conference on Weights and Measures has given the unit of energy the name joule, but has not given the unit of torque any special name, hence it is simply the newton-metre (N⋅m) – a compound name derived from its constituent parts.[30] The use of newton-metres for torque and joules for energy is helpful to avoid misunderstandings and miscommunications.[30]

The distinction may be seen also in the fact that energy is a scalar quantity – the dot product of a force vector and a displacement vector. By contrast, torque is a vector – the cross product of a force vector and a distance vector. Torque and energy are related to one another by the equation

{displaystyle E=tau theta ,,}

where E is energy, τ is (the vector magnitude of) torque, and θ is the angle swept (in radians). Since plane angles are dimensionless, it follows that torque and energy have the same dimensions.

Watt-second[edit]

A watt-second (symbol W s or W⋅s) is a derived unit of energy equivalent to the joule.[31] The watt-second is the energy equivalent to the power of one watt sustained for one second. While the watt-second is equivalent to the joule in both units and meaning, there are some contexts in which the term «watt-second» is used instead of «joule», such as in the rating of photographic electronic flash units. [32]

See also[edit]

  • Fluence
  • Reciprocal joules

Notes[edit]

  1. ^ This is called the basal metabolic rate. It corresponds to about 5,000 kJ (1,200 kcal) per day. The kilocalorie (symbol kcal) is also known as the dietary calorie.

References[edit]

  1. ^ «joule noun — Pronunciation». Oxford Learner’s Dictionary.
  2. ^ «Joule Definition & Meaning». Dictionary by Merriam-Webster.
  3. ^ «joule». A new English dictionary on historical principles. The Clarendon press. January 1901. p. 606.{{cite web}}: CS1 maint: date and year (link)
  4. ^ Allen, H. S. (September 1943). «James Prescott Joule and the Unit of Energy». Nature. 152 (3856): 354. Bibcode:1943Natur.152..354A. doi:10.1038/152354a0. S2CID 4182911.
  5. ^ Wells, John (2008). Longman Pronunciation Dictionary (3rd ed.). Pearson Longman. ISBN 978-1-4058-8118-0.
  6. ^ International Bureau of Weights and Measures (2006), The International System of Units (SI) (PDF) (8th ed.), p. 120, ISBN 92-822-2213-6, archived (PDF) from the original on 2021-06-04, retrieved 2021-12-16
  7. ^ American Heritage Dictionary of the English Language, Online Edition (2009). Houghton Mifflin Co., hosted by Yahoo! Education.
  8. ^ The American Heritage Dictionary, Second College Edition (1985). Boston: Houghton Mifflin Co., p. 691.
  9. ^ McGraw-Hill Dictionary of Physics, Fifth Edition (1997). McGraw-Hill, Inc., p. 224.
  10. ^ «The unit of heat has hitherto been taken variously as the heat required to raise a pound of water at the freezing-point through 1° Fahrenheit or Centigrade, or, again, the heat necessary to raise a kilogramme of water 1° Centigrade. The inconvenience of a unit so entirely arbitrary is sufficiently apparent to justify the introduction of one based on the electro-magnetic system, viz. the heat generated in one second by the current of an Ampère flowing through the resistance of an Ohm. In absolute measure its value is 107 C.G.S. units, and, assuming Joule’s equivalent as 42,000,000, it is the heat necessary to raise 0.238 grammes of water 1° Centigrade, or, approximately, the 11000th part of the arbitrary unit of a pound of water raised 1° Fahrenheit and the 14000th of the kilogramme of water raised 1° Centigrade. Such a heat unit, if found acceptable, might with great propriety, I think, be called the Joule, after the man who has done so much to develop the dynamical theory of heat.»Carl Wilhelm Siemens, Report of the Fifty-Second Meeting of the British Association for the Advancement of Science. S. 6 f.
  11. ^ Pat Naughtin: A chronological history of the modern metric system, metricationmatters.com, 2009.
  12. ^ Proceedings of the International Electrical Congress. New York: American Institute of Electrical Engineers. 1894.
  13. ^ CIPM, 1946, Resolution 2, Definitions of electric units. bipm.org.
  14. ^ 9th CGPM, Resolution 3: Triple point of water; thermodynamic scale with a single fixed point; unit of quantity of heat (joule)., bipm.org.
  15. ^ «Units of Heat – BTU, Calorie and Joule». Engineering Toolbox. Retrieved 2021-06-14.
  16. ^ Ristinen, Robert A.; Kraushaar, Jack J. (2006). Energy and the Environment (2nd ed.). Hoboken, NJ: John Wiley & Sons. ISBN 0-471-73989-8.
  17. ^ «Physics – CERN». public.web.cern.ch. Archived from the original on 2012-12-13.
  18. ^ «You Say Calorie, We Say Kilojoule: Who’s Right?». Retrieved 2 May 2017.
  19. ^ «Construction of a Composite Total Solar Irradiance (TSI) Time Series from 1978 to present». Archived from the original on 2011-08-30. Retrieved 2005-10-05.
  20. ^ {displaystyle {tfrac {1}{2}}cdot 70~{text{kg}}cdot left(10~{text{m/s}}right)^{2}=3500~{text{J}}}
  21. ^ {displaystyle {tfrac {1}{2}}cdot 35~{text{kg}}cdot left(35~{text{m/s}}right)^{2}=21,400~{text{J}}}
  22. ^ «Energy Units – Energy Explained, Your Guide To Understanding Energy – Energy Information Administration». www.eia.gov.
  23. ^ Malik, John (September 1985). «Report LA-8819: The yields of the Hiroshima and Nagasaki nuclear explosions» (PDF). Los Alamos National Laboratory. Archived from the original (PDF) on 11 October 2009. Retrieved 18 March 2015.
  24. ^ «International Space Station Final Configuration» (PDF). European Space Agency. Archived from the original (PDF) on 21 July 2011. Retrieved 18 March 2015.
  25. ^ Bonnie Berkowitz; Laris Karklis; Reuben Fischer-Baum; Chiqui Esteban (11 September 2017). «Analysis – How Big Is Hurricane Irma?». Washington Post. Retrieved 2 November 2017.
  26. ^ «Irma unleashes its fury on south Florida», Financial Times, accessed 10-Sept-2017 (subscription required)
  27. ^ a b «Volumes of the World’s Oceans from ETOPO1». noaa.gov. National Oceanic and Atmospheric Administration. 19 August 2020. Retrieved 8 March 2022.
  28. ^ The adoption of joules as units of energy, FAO/WHO Ad Hoc Committee of Experts on Energy and Protein, 1971. A report on the changeover from calories to joules in nutrition.
  29. ^ Feynman, Richard (1963). «Physical Units». Feynman’s Lectures on Physics. Retrieved 2014-03-07.
  30. ^ a b «Units with special names and symbols; units that incorporate special names and symbols». International Bureau of Weights and Measures. Archived from the original on 28 June 2009. Retrieved 18 March 2015. A derived unit can often be expressed in different ways by combining base units with derived units having special names. Joule, for example, may formally be written newton metre, or kilogram metre squared per second squared. This, however, is an algebraic freedom to be governed by common sense physical considerations; in a given situation some forms may be more helpful than others. In practice, with certain quantities, preference is given to the use of certain special unit names, or combinations of unit names, to facilitate the distinction between different quantities having the same dimension.
  31. ^ International Bureau of Weights and Measures (2006), The International System of Units (SI) (PDF) (8th ed.), pp. 39–40, 53, ISBN 92-822-2213-6, archived (PDF) from the original on 2021-06-04, retrieved 2021-12-16
  32. ^ «What Is A Watt Second?».

External links[edit]

  • The dictionary definition of joule at Wiktionary

From Wikipedia, the free encyclopedia

(Redirected from Decajoule)

joule
Unit system SI
Unit of energy
Symbol J
Named after James Prescott Joule
Conversions
1 J in … … is equal to …
   SI base units    kg⋅m2⋅s−2
   CGS units    1×107 erg
   watt-seconds    1 W⋅s
   kilowatt-hours    2.78×10−7 kW⋅h
   kilocalories (thermochemical)    2.390×10−4 kcalth
   BTUs    9.48×10−4 BTU
   electronvolts    6.24×1018 eV

The joule ( JOOL, JOWL;[1][2][3][4][5][disputed – discuss] symbol: J) is the unit of energy in the International System of Units (SI).[6] It is equal to the amount of work done when a force of 1 newton displaces a mass through a distance of 1 metre in the direction of the force applied. It is also the energy dissipated as heat when an electric current of one ampere passes through a resistance of one ohm for one second. It is named after the English physicist James Prescott Joule (1818–1889).[7][8][9]

Definition[edit]

In terms of SI base units and in terms of SI derived units with special names, the joule is defined as

{displaystyle {begin{alignedat}{3}mathrm {J} ;&=~mathrm {kg{cdot }m^{2}{cdot }s^{-2}} \[0.7ex]&=~mathrm {N{cdot }m} \[0.7ex]&=~mathrm {Pa{cdot }m^{3}} \[0.7ex]&=~mathrm {W{cdot }s} \[0.7ex]&=~mathrm {C{cdot }V} \[0.7ex]end{alignedat}}}

Symbol Meaning
J joule
kg kilogram
m metre
s second
N newton
Pa pascal
W watt
C coulomb
V volt

One joule can also be defined by any of the following:

  • The work required to move an electric charge of one coulomb through an electrical potential difference of one volt, or one coulomb-volt (C⋅V). This relationship can be used to define the volt.
  • The work required to produce one watt of power for one second, or one watt-second (W⋅s) (compare kilowatt-hour, which is 3.6 megajoules). This relationship can be used to define the watt.

The joule is named after James Prescott Joule. As with every SI unit named for a person, its symbol starts with an upper case letter (J), but when written in full it follows the rules for capitalisation of a common noun; i.e., «joule» becomes capitalised at the beginning of a sentence and in titles, but is otherwise in lower case.

History[edit]

The cgs system had been declared official in 1881, at the first International Electrical Congress.
The erg was adopted as its unit of energy in 1882. Wilhelm Siemens, in his inauguration speech as chairman of the British Association for the Advancement of Science (23 August 1882) first proposed the Joule as unit of heat, to be derived from the electromagnetic units Ampere and Ohm, in cgs units equivalent to 107 erg.
The naming of the unit in honour of James Prescott Joule (1818–1889), at the time retired but still living (aged 63), is due to Siemens:

«Such a heat unit, if found acceptable, might with great propriety, I think, be called the Joule, after the man who has done so much to develop the dynamical theory of heat.»[10]

At the second International Electrical Congress, on 31 August 1889, the joule was officially adopted alongside the watt and the quadrant (later renamed to henry).[11]
Joule died in the same year, on 11 October 1889.
At the fourth congress (1893), the «international ampere» and «international ohm» were defined, with slight changes in the specifications for their measurement, with the «international joule» being the unit derived from them.[12]

In 1935, the International Electrotechnical Commission (as the successor organisation of the International Electrical Congress) adopted the «Giorgi system», which by virtue of assuming a defined value for the magnetic constant also implied a redefinition of the Joule. The Giorgi system was approved by the International Committee for Weights and Measures in 1946. The joule was now no longer defined based on electromagnetic unit, but instead as the unit of work performed by one unit of force (at the time not yet named newton)
over the distance of 1 metre. The joule was explicitly intended as the unit of energy to be used in both electromagnetic and mechanical contexts.[13] The ratification of the definition at the ninth General Conference on Weights and Measures, in 1948,
added the specification that the joule was also to be preferred as the unit of heat in the context of calorimetry, thereby officially deprecating the use of the calorie.[14]
This definition was the direct precursor of the joule as adopted in the modern International System of Units in 1960.

The definition of the joule as J = kg⋅m2⋅s−2 has remained unchanged since 1946, but the joule as a derived unit has inherited changes in the definitions of the second (in 1960 and 1967), the metre (in 1983) and the kilogram (in 2019).

Practical examples[edit]

One joule represents (approximately):

  • The amount of electricity required to run a 1 W device for 1 s.
  • The energy required to accelerate a 1 kg mass at 1 m/s2 through a distance of 1 m.
  • The kinetic energy of a 2 kg mass travelling at 1 m/s, or a 1 kg mass travelling at 1.41 m/s.
  • The energy required to lift a medium-sized tomato up 1 metre (3 ft 3 in), assuming the tomato has a mass of 101.97 grams (3.597 oz).
  • The heat required to raise the temperature of 0.239 g of water from 0 °C to 1 °C, or from 32 °F to 33.8 °F.[15]
  • The typical energy released as heat by a person at rest every 1/60 s (17 ms).[note 1]
  • The kinetic energy of a 50 kg human moving very slowly (0.2 m/s or 0.72 km/h).
  • The kinetic energy of a 56 g tennis ball moving at 6 m/s (22 km/h).[16]
  • The food energy (kcal) in slightly more than half of a sugar crystal (0.102 mg/crystal).

Multiples[edit]

SI multiples of joule (J)

Submultiples Multiples
Value SI symbol Name Value SI symbol Name
10−1 J dJ decijoule 101 J daJ decajoule
10−2 J cJ centijoule 102 J hJ hectojoule
10−3 J mJ millijoule 103 J kJ kilojoule
10−6 J µJ microjoule 106 J MJ megajoule
10−9 J nJ nanojoule 109 J GJ gigajoule
10−12 J pJ picojoule 1012 J TJ terajoule
10−15 J fJ femtojoule 1015 J PJ petajoule
10−18 J aJ attojoule 1018 J EJ exajoule
10−21 J zJ zeptojoule 1021 J ZJ zettajoule
10−24 J yJ yoctojoule 1024 J YJ yottajoule
10−27 J rJ rontojoule 1027 J RJ ronnajoule
10−30 J qJ quectojoule 1030 J QJ quettajoule
Common multiples are in bold face
Zeptojoule
160 zeptojoule is about one electronvolt. The minimal energy needed to change a bit at around room temperature – approximately 2.75 zJ – is given by the Landauer limit.
Nanojoule
160 nanojoule is about the kinetic energy of a flying mosquito.[17]
Microjoule
The Large Hadron Collider (LHC) produces collisions of the microjoule order (7 TeV) per particle.
Kilojoule
Nutritional food labels in most countries express energy in kilojoules (kJ).[18] One square metre of the Earth receives about 1.4 kilojoules of solar radiation every second in full daylight.[19] A human in a sprint has approximately 3 kJ of kinetic energy,[20] while a cheetah in a 122 km/h (76 mph) sprint has approximately 20 kJ.[21] One watt-hour of electricity is 3.6 kilojoules.
Megajoule
The megajoule is approximately the kinetic energy of a one megagram (tonne) vehicle moving at 161 km/h (100 mph). The energy required to heat 10 L of liquid water at constant pressure from 0 °C (32 °F) to 100 °C (212 °F) is approximately 4.2 MJ. One kilowatt-hour of electricity is 3.6 megajoules.
Gigajoule
6 gigajoule is about the chemical energy of combusting 1 barrel (159 L) of petroleum.[22] 2 GJ is about the Planck energy unit. One megawatt-hour of electricity is 3.6 gigajoules.
Terajoule
The terajoule is about 0.278 GWh (which is often used in energy tables). About 63 TJ of energy was released by Little Boy.[23] The International Space Station, with a mass of approximately 450 megagrams and orbital velocity of 7700 m/s,[24] has a kinetic energy of roughly 13 TJ. In 2017, Hurricane Irma was estimated to have a peak wind energy of 112 TJ.[25][26] One gigawatt-hour of electricity is 3.6 terajoules.
Petajoule
210 petajoule is about 50 megatons of TNT, which is the amount of energy released by the Tsar Bomba, the largest man-made explosion ever. One terawatt-hour of electricity is 3.6 petajoules.
Exajoule
The 2011 Tōhoku earthquake and tsunami in Japan had 1.41 EJ of energy according to its rating of 9.0 on the moment magnitude scale. Yearly U.S. energy consumption amounts to roughly 94 EJ. One petawatt-hour of electricity is 3.6 exajoules.
Zettajoule
The zettajoule is somewhat more than the amount of energy required to heat the Baltic sea by 1 °C, assuming properties similar to those of pure water.[27] Human annual world energy consumption is approximately 0.5 ZJ. The energy to raise the temperature of Earth’s atmosphere 1 °C is approximately 2.2 ZJ.
Yottajoule
The yottajoule is a little less than the amount of energy required to heat the Indian Ocean by 1 °C, assuming properties similar to those of pure water.[27] The thermal output of the Sun is approximately 400 YJ per second.

Conversions[edit]

1 joule is equal to (approximately unless otherwise stated):

  • 107 erg (exactly)
  • 6.24150974×1018 eV
  • 0.2390 cal (gram calories)
  • 2.390×10−4 kcal (food calories)
  • 9.4782×10−4 BTU
  • 0.7376 ft⋅lb (foot-pound)
  • 23.7 ft⋅pdl (foot-poundal)
  • 2.7778×10−7 kW⋅h (kilowatt-hour)
  • 2.7778×10−4 W⋅h (watt-hour)
  • 9.8692×10−3 latm (litre-atmosphere)
  • 11.1265×10−15 g (by way of mass–energy equivalence)
  • 10−44 foe (exactly)

Units defined exactly in terms of the joule include:

  • 1 thermochemical calorie = 4.184 J[28]
  • 1 International Table calorie = 4.1868 J[29]
  • 1 W⋅h = 3600 J (or 3.6 kJ)
  • 1 kW⋅h = 3.6×106 J (or 3.6 MJ)
  • 1 W⋅s = 1 J
  • 1 ton TNT = 4.184 GJ

Newton-metre and torque[edit]

In mechanics, the concept of force (in some direction) has a close analogue in the concept of torque (about some angle):

Linear Angular
Force Torque
Mass Moment of inertia
Displacement Angle

A result of this similarity is that the SI unit for torque is the newton-metre, which works out algebraically to have the same dimensions as the joule, but they are not interchangeable. The General Conference on Weights and Measures has given the unit of energy the name joule, but has not given the unit of torque any special name, hence it is simply the newton-metre (N⋅m) – a compound name derived from its constituent parts.[30] The use of newton-metres for torque and joules for energy is helpful to avoid misunderstandings and miscommunications.[30]

The distinction may be seen also in the fact that energy is a scalar quantity – the dot product of a force vector and a displacement vector. By contrast, torque is a vector – the cross product of a force vector and a distance vector. Torque and energy are related to one another by the equation

{displaystyle E=tau theta ,,}

where E is energy, τ is (the vector magnitude of) torque, and θ is the angle swept (in radians). Since plane angles are dimensionless, it follows that torque and energy have the same dimensions.

Watt-second[edit]

A watt-second (symbol W s or W⋅s) is a derived unit of energy equivalent to the joule.[31] The watt-second is the energy equivalent to the power of one watt sustained for one second. While the watt-second is equivalent to the joule in both units and meaning, there are some contexts in which the term «watt-second» is used instead of «joule», such as in the rating of photographic electronic flash units. [32]

See also[edit]

  • Fluence
  • Reciprocal joules

Notes[edit]

  1. ^ This is called the basal metabolic rate. It corresponds to about 5,000 kJ (1,200 kcal) per day. The kilocalorie (symbol kcal) is also known as the dietary calorie.

References[edit]

  1. ^ «joule noun — Pronunciation». Oxford Learner’s Dictionary.
  2. ^ «Joule Definition & Meaning». Dictionary by Merriam-Webster.
  3. ^ «joule». A new English dictionary on historical principles. The Clarendon press. January 1901. p. 606.{{cite web}}: CS1 maint: date and year (link)
  4. ^ Allen, H. S. (September 1943). «James Prescott Joule and the Unit of Energy». Nature. 152 (3856): 354. Bibcode:1943Natur.152..354A. doi:10.1038/152354a0. S2CID 4182911.
  5. ^ Wells, John (2008). Longman Pronunciation Dictionary (3rd ed.). Pearson Longman. ISBN 978-1-4058-8118-0.
  6. ^ International Bureau of Weights and Measures (2006), The International System of Units (SI) (PDF) (8th ed.), p. 120, ISBN 92-822-2213-6, archived (PDF) from the original on 2021-06-04, retrieved 2021-12-16
  7. ^ American Heritage Dictionary of the English Language, Online Edition (2009). Houghton Mifflin Co., hosted by Yahoo! Education.
  8. ^ The American Heritage Dictionary, Second College Edition (1985). Boston: Houghton Mifflin Co., p. 691.
  9. ^ McGraw-Hill Dictionary of Physics, Fifth Edition (1997). McGraw-Hill, Inc., p. 224.
  10. ^ «The unit of heat has hitherto been taken variously as the heat required to raise a pound of water at the freezing-point through 1° Fahrenheit or Centigrade, or, again, the heat necessary to raise a kilogramme of water 1° Centigrade. The inconvenience of a unit so entirely arbitrary is sufficiently apparent to justify the introduction of one based on the electro-magnetic system, viz. the heat generated in one second by the current of an Ampère flowing through the resistance of an Ohm. In absolute measure its value is 107 C.G.S. units, and, assuming Joule’s equivalent as 42,000,000, it is the heat necessary to raise 0.238 grammes of water 1° Centigrade, or, approximately, the 11000th part of the arbitrary unit of a pound of water raised 1° Fahrenheit and the 14000th of the kilogramme of water raised 1° Centigrade. Such a heat unit, if found acceptable, might with great propriety, I think, be called the Joule, after the man who has done so much to develop the dynamical theory of heat.»Carl Wilhelm Siemens, Report of the Fifty-Second Meeting of the British Association for the Advancement of Science. S. 6 f.
  11. ^ Pat Naughtin: A chronological history of the modern metric system, metricationmatters.com, 2009.
  12. ^ Proceedings of the International Electrical Congress. New York: American Institute of Electrical Engineers. 1894.
  13. ^ CIPM, 1946, Resolution 2, Definitions of electric units. bipm.org.
  14. ^ 9th CGPM, Resolution 3: Triple point of water; thermodynamic scale with a single fixed point; unit of quantity of heat (joule)., bipm.org.
  15. ^ «Units of Heat – BTU, Calorie and Joule». Engineering Toolbox. Retrieved 2021-06-14.
  16. ^ Ristinen, Robert A.; Kraushaar, Jack J. (2006). Energy and the Environment (2nd ed.). Hoboken, NJ: John Wiley & Sons. ISBN 0-471-73989-8.
  17. ^ «Physics – CERN». public.web.cern.ch. Archived from the original on 2012-12-13.
  18. ^ «You Say Calorie, We Say Kilojoule: Who’s Right?». Retrieved 2 May 2017.
  19. ^ «Construction of a Composite Total Solar Irradiance (TSI) Time Series from 1978 to present». Archived from the original on 2011-08-30. Retrieved 2005-10-05.
  20. ^ {displaystyle {tfrac {1}{2}}cdot 70~{text{kg}}cdot left(10~{text{m/s}}right)^{2}=3500~{text{J}}}
  21. ^ {displaystyle {tfrac {1}{2}}cdot 35~{text{kg}}cdot left(35~{text{m/s}}right)^{2}=21,400~{text{J}}}
  22. ^ «Energy Units – Energy Explained, Your Guide To Understanding Energy – Energy Information Administration». www.eia.gov.
  23. ^ Malik, John (September 1985). «Report LA-8819: The yields of the Hiroshima and Nagasaki nuclear explosions» (PDF). Los Alamos National Laboratory. Archived from the original (PDF) on 11 October 2009. Retrieved 18 March 2015.
  24. ^ «International Space Station Final Configuration» (PDF). European Space Agency. Archived from the original (PDF) on 21 July 2011. Retrieved 18 March 2015.
  25. ^ Bonnie Berkowitz; Laris Karklis; Reuben Fischer-Baum; Chiqui Esteban (11 September 2017). «Analysis – How Big Is Hurricane Irma?». Washington Post. Retrieved 2 November 2017.
  26. ^ «Irma unleashes its fury on south Florida», Financial Times, accessed 10-Sept-2017 (subscription required)
  27. ^ a b «Volumes of the World’s Oceans from ETOPO1». noaa.gov. National Oceanic and Atmospheric Administration. 19 August 2020. Retrieved 8 March 2022.
  28. ^ The adoption of joules as units of energy, FAO/WHO Ad Hoc Committee of Experts on Energy and Protein, 1971. A report on the changeover from calories to joules in nutrition.
  29. ^ Feynman, Richard (1963). «Physical Units». Feynman’s Lectures on Physics. Retrieved 2014-03-07.
  30. ^ a b «Units with special names and symbols; units that incorporate special names and symbols». International Bureau of Weights and Measures. Archived from the original on 28 June 2009. Retrieved 18 March 2015. A derived unit can often be expressed in different ways by combining base units with derived units having special names. Joule, for example, may formally be written newton metre, or kilogram metre squared per second squared. This, however, is an algebraic freedom to be governed by common sense physical considerations; in a given situation some forms may be more helpful than others. In practice, with certain quantities, preference is given to the use of certain special unit names, or combinations of unit names, to facilitate the distinction between different quantities having the same dimension.
  31. ^ International Bureau of Weights and Measures (2006), The International System of Units (SI) (PDF) (8th ed.), pp. 39–40, 53, ISBN 92-822-2213-6, archived (PDF) from the original on 2021-06-04, retrieved 2021-12-16
  32. ^ «What Is A Watt Second?».

External links[edit]

  • The dictionary definition of joule at Wiktionary


На основании Вашего запроса эти примеры могут содержать грубую лексику.


На основании Вашего запроса эти примеры могут содержать разговорную лексику.

Перевод «джоуль» на английский

nm


Современной международной единицей измерения энергии является джоуль.



The international standard unit for measuring energy is the joule.


СИ (стандартная международная) единица измерения тепла — джоуль.



The SI (standard international) unit of heat is the joule.


Тепло выступает энергетической формой, а его единица джоуль.



Heat is a form of energy and its unit is Joules.


Предпочтительно, объемная скорость потока составляет не менее чем 1 мл на 1 джоуль энергии светового излучения.



The flow rate of the liquid is preferably not less than 1 ml per 1 Joules of light energy.


Единица измерения энергии — джоуль, но мы обычно не измеряем электричество в джоулях.



A joule is a unit of energy, but we usually don’t measure electricity in just joules.


Один джоуль в секунду равняется одному ватту.



One joule per second equals one watt.


Один ватт является одним джоуль в секунду.



A watt is just a joule per second.


J — джоуль (единица для энергии)



J: Joules (the unit of energy).


Единицей выступает Ньютон на метр или джоуль.



The unit of work is Newton metre or joule.


Итак, мы узнали что единица количества теплоты — это джоуль.



The SI unit of warmth is the joule.


Один ватт эквивалентно 1 джоуль в секунду (1 Дж/ с) и является одним из звеньев.



One watt is equivalent to 1 joule per second (1 J/ s) and is one of the derived units.


Один джоуль равен работе, произведенной силой одного НЬЮТОНА, действующего на расстоянии метра.



One joule is the work done by a force of one newton acting over a distance of one metre.


РЕ (эффективность фотона) указывает уровень световой эффективности фотосинтеза в растениях и измеряется в микромолях на джоуль (мкмоль/ Дж).



Photon efficacy (PE) indicates the light efficacy level for photosynthesis in plants and is measured in micromoles per joule (μmol/J).


1 джоуль является тем количеством энергии, которое вам понадобится для приложения силы в 1 ньютон на дистанции в 1 метр.



1 joule is the amount of energy required to apply a force of 1 newton for 1 meter.


Определенные в этих научных терминов, 1 вольт равен 1 джоуль электрического потенциала в энергию (разделены) 1 кулон за дополнительную плату.



Defined in these scientific terms, 1 volt is equal to 1 joule of electric potential energy per (divided by) 1 coulomb of charge.


Ученые сообщили, что в своих экспериментах им удалось получить до 2 миллионов нейтронов в расчете на один джоуль энергии лазерного света.



The scientists report that their experiment produced up to 2 million fusion neutrons per joule of laser energy.


В момент, когда вы поднимаете яблоко на высоту в метр, то проделываете один джоуль работы.



When we raise an apple up to a height of one meter, we perform approximately one joule of work.


Это означает, что не каждый отдельный джоуль или используемый электрон изначально создается ветровыми, солнечными или другими зелеными энергетическими установками.



The Verge pointed out this doesn’t mean every electron or joule originally stems from wind, solar, or other clean energy plants.


Нередко используется «более современная» единица измерения — «джоуль«.



(Frequently a «modern» unit is used — joule).


Таким образом, единицей энергии СИ является джоуль, равный ньютон-метру.



The SI unit of energy, the joule, equals one newton applied through one meter.

Ничего не найдено для этого значения.

Результатов: 169. Точных совпадений: 169. Затраченное время: 96 мс

Documents

Корпоративные решения

Спряжение

Синонимы

Корректор

Справка и о нас

Индекс слова: 1-300, 301-600, 601-900

Индекс выражения: 1-400, 401-800, 801-1200

Индекс фразы: 1-400, 401-800, 801-1200

Перевод «джоуль» на английский

Ваш текст переведен частично.
Вы можете переводить не более 999 символов за один раз.

Войдите или зарегистрируйтесь бесплатно на PROMT.One и переводите еще больше!

<>


джоуль

м.р.
существительное

Склонение




мн.
джоули

joule

[dʒu:l]





Помните порог в 15 джоулей?

Remember the 15-joule threshold for incoming objects?

Больше

Контексты

Помните порог в 15 джоулей?
Remember the 15-joule threshold for incoming objects?

Ну, в джоулях или в эргах?
Well, in terms of joules or ergs?

С течением времени, все джоули энергии превращаются в тепло.
As time passes, every single joule of energy is converted into heat.

Все до последнего Джоули энергии, присутствующие ныне во вселенной существовали на момент Большого Взрыва 13.7 миллиардов лет назад.
Every single joule of energy in the universe today was present at the Big Bang, 13.7 billion years ago.

Чтобы квалифицировать мусор как опасный, энергия, выделяемая при его контакте с какой-либо поверхностью должна составлять как минимум 15 джоулей.
To qualify as dangerous, debris needs to be massive enough, and be moving fast enough, to deliver at least 15 joules of energy to whatever it hits.

Больше

Бесплатный переводчик онлайн с русского на английский

Вам нужно переводить на английский сообщения в чатах, письма бизнес-партнерам и в службы поддержки онлайн-магазинов или домашнее задание? PROMT.One мгновенно переведет с русского на английский и еще на 20+ языков.

Точный переводчик

С помощью PROMT.One   наслаждайтесь точным переводом с русского на английский,  а также смотрите английскую транскрипцию, произношение и варианты переводов слов с примерами употребления в предложениях.  Бесплатный онлайн-переводчик PROMT.One  — достойная альтернатива Google Translate и другим сервисам, предоставляющим перевод с английского на русский и с русского на английский. Переводите в браузере на персональных компьютерах, ноутбуках, на мобильных устройствах или установите мобильное приложение Переводчик PROMT.One для iOS и Android.

Нужно больше языков?

PROMT.One бесплатно переводит онлайн с русского на азербайджанский, арабский, греческий, иврит, испанский, итальянский, казахский, китайский, корейский, немецкий, португальский, татарский, турецкий, туркменский, узбекский, украинский, финский, французский, эстонский и японский.

джоуль — перевод на английский

джоульjoules

Так, доктор Янелли, начинаем с 300 джоулей и одной ампулы эпинефрина.

All right, Dr. lanelli, we’re gonna start with 300 joules and an amp of epi.

— 40 000 Джоулей. Она растет.

Forty thousand joules and climbing!

Повысь до двадцати пяти джоулей.

Go to 25 joules.

Двадцать пять джоулей, есть.

25 joules.

Еще раз дефибриллятор, 40 джоулей.

Let’s cardiovert one more time. 40 joules.

Показать ещё примеры для «joules»…

Отправить комментарий

Текст комментария:

Понравилась статья? Поделить с друзьями:
  • Как пишется джорно джованна на английском
  • Как пишется джордж буш младший
  • Как пишется джонни певец
  • Как пишется джонни депп на английском
  • Как пишется джолин куджо на английском