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 Найдено в других БД:Каталог книг и продолжающихся изданий (11)Каталог препринтов УрО РАН (1975 г. - ) (1)Труды Института высокотемпературной электрохимии УрО РАН (36)Труды сотрудников Института органического синтеза УрО РАН (15)Труды сотрудников Института химии твердого тела УрО РАН (101)Расплавы (26)Публикации Черешнева В.А. (1)Публикации Чарушина В.Н. (2)
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Поисковый запрос: (<.>K=DENSITY<.>)
Общее количество найденных документов : 84
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1.
Инвентарный номер: нет.
   
   S 66


    Skripov, V. P.
    A Semiempirical Method for Calculating the Surface Density of Gibbs Energy at the Crystal-Liquid Interface [] / V. P. Skripov, M. Z. Faizullin // Zhurnal Fizicheskoy Khimii. - 2001. - Vol. 75, N 4. - С. 670-674: il. - Bibliogr.: p. 674 (24 n.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
METHODS FOR CALCULATING -- SURFACE DENSITY -- GIBBS ENERGY -- Ar -- Na -- Sn -- Hg -- Pb

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2.
Инвентарный номер: нет.
   
   S 66


    Skripov, V. P.
    A Semiempirical Method for Calculating the Surface Density of Gibbs Energy at the Crystal-Liquid Interface [] / V. P. Skripov, M. Z. Faizullin // Zhurnal Fizicheskoy Khimii. - 2001. - Vol. 75, N 4. - С. 670-674: il. - Bibliogr.: p. 674 (24 n.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
METHODS FOR CALCULATING -- SURFACE DENSITY -- GIBBS ENERGY -- Ar -- Na -- Sn -- Hg -- Pb

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3.
Инвентарный номер: нет.
   
   B 93


    Bulanov, N. V.
    An Analysis of the Heat Flux Density under Conditions of Boiling Internal Phase of Emulsion [] / N. V. Bulanov // High Temperature. - 2001. - V. 39, N 3. - С. 462-469: il. - Bibliogr: p. 502 (10 n.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
HEAT FLUX DENSITY -- BOILING -- BOILING INTERNAL PHASE -- EMULSIONS

\\\\Expert2\\NBO\\High Temperature\\2001, v.39, p.462.pdf
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4.
Инвентарный номер: нет.
   
   B 93


    Bulanov, N. V.
    An Analysis of the Heat Flux Density under Conditions of Boiling Internal Phase of Emulsion [] / N. V. Bulanov // High Temperature. - 2001. - V. 39, N 3. - С. 462-469: il. - Bibliogr: p. 502 (10 n.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
HEAT FLUX DENSITY -- BOILING -- BOILING INTERNAL PHASE -- EMULSIONS

\\\\Expert2\\NBO\\High Temperature\\2001, v.39, p.462.pdf
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5.
Инвентарный номер: нет.
   
   B 74


    Boltachev, G. Sh.
    Analytical model of a corona discharge from a conical electrode under saturation [Электронный ресурс] / G. Sh. Boltachev, N. M. Zubarev // Technical Physics. - 2012. - Vol.57, №11. - P1493-1502
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
CONICAL ELECTRODE -- ANALYTICAL MODEL -- ELECTRIC FIELD
Аннотация: Exact partial solutions are found for the electric field distribution in the outer region of a stationary unipolar corona discharge from an ideal conical needle in the space-charge-limited current mode with allowance for the electric field dependence of the ion mobility. It is assumed that only the very tip of the cone is responsible for the discharge, i. e., that the ionization zone is a point. The solutions are obtained by joining the spherically symmetric potential distribution in the drift space and the self-similar potential distribution in the space-charge-free region. Such solutions are outside the framework of the conventional Deutsch approximation, according to which the space charge insignificantly influences the shape of equipotential surfaces and electric lines of force. The dependence is derived of the corona discharge saturation current on the apex angle of the conical electrode and applied potential difference. A simple analytical model is suggested that describes drift in the point-plane electrode geometry under saturation as a superposition of two exact solutions for the field potential. In terms of this model, the angular distribution of the current density over the massive plane electrode is derived, which agrees well with Warburg's empirical law

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6.
Инвентарный номер: нет.
   
   B 74


    Boltachev, G. Sh.
    Analytical model of a corona discharge from a conical electrode under saturation [Электронный ресурс] / G. Sh. Boltachev, N. M. Zubarev // Technical Physics. - 2012. - Vol.57, №11. - P1493-1502
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
CONICAL ELECTRODE -- ANALYTICAL MODEL -- ELECTRIC FIELD
Аннотация: Exact partial solutions are found for the electric field distribution in the outer region of a stationary unipolar corona discharge from an ideal conical needle in the space-charge-limited current mode with allowance for the electric field dependence of the ion mobility. It is assumed that only the very tip of the cone is responsible for the discharge, i. e., that the ionization zone is a point. The solutions are obtained by joining the spherically symmetric potential distribution in the drift space and the self-similar potential distribution in the space-charge-free region. Such solutions are outside the framework of the conventional Deutsch approximation, according to which the space charge insignificantly influences the shape of equipotential surfaces and electric lines of force. The dependence is derived of the corona discharge saturation current on the apex angle of the conical electrode and applied potential difference. A simple analytical model is suggested that describes drift in the point-plane electrode geometry under saturation as a superposition of two exact solutions for the field potential. In terms of this model, the angular distribution of the current density over the massive plane electrode is derived, which agrees well with Warburg's empirical law

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7.
Инвентарный номер: нет.
   
   R 96


    Rutin, S. B.
    Apparatus for studying heat transfer in nanofluids under high-power heating [Electronic resource] / S. B. Rutin, P. V. Skripov // Journal of Engineering Thermophysics. - 2012. - Vol.21, №2. - P144-153. - Bibliogr. : p. 153 (19 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
HEAT TRAHSFER -- HIGH-POWER HEATING -- ELECTRONIC CONTROL
Аннотация: A technique of electronic control of the probe heating power is developed using the method of controlled pulse heating of a wire probe, that is a resistance thermometer, was developed. An apparatus implementing this technique was fabricated. The characteristic parameters of the apparatus are as follows: the heating pulse length, 1 to 10 ms; the heat flux density through the surface of a 20 µm probe, 1 to 10 MW/m2; repeatability of selected power value in a series of pulses is on a level of 0.05%. As an example, the constant heating power mode is applied for comparing the thermal resistance of nanofluids in the region of stable states of liquid and superheated (with respect to the liquid-vapor equilibrium temperature of the base liquid) ones. The parameter was the content of Al2O3 nanoparticles in the base liquid (isopropanol).

\\\\expert2\\NBO\\Journal of Engineering Thermophysics\\2012, V.31, N 2. P. 144-153.pdf
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8.
Инвентарный номер: нет.
   
   R 96


    Rutin, S. B.
    Apparatus for studying heat transfer in nanofluids under high-power heating [Electronic resource] / S. B. Rutin, P. V. Skripov // Journal of Engineering Thermophysics. - 2012. - Vol.21, №2. - P144-153. - Bibliogr. : p. 153 (19 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
HEAT TRAHSFER -- HIGH-POWER HEATING -- ELECTRONIC CONTROL
Аннотация: A technique of electronic control of the probe heating power is developed using the method of controlled pulse heating of a wire probe, that is a resistance thermometer, was developed. An apparatus implementing this technique was fabricated. The characteristic parameters of the apparatus are as follows: the heating pulse length, 1 to 10 ms; the heat flux density through the surface of a 20 µm probe, 1 to 10 MW/m2; repeatability of selected power value in a series of pulses is on a level of 0.05%. As an example, the constant heating power mode is applied for comparing the thermal resistance of nanofluids in the region of stable states of liquid and superheated (with respect to the liquid-vapor equilibrium temperature of the base liquid) ones. The parameter was the content of Al2O3 nanoparticles in the base liquid (isopropanol).

\\\\expert2\\NBO\\Journal of Engineering Thermophysics\\2012, V.31, N 2. P. 144-153.pdf
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9.
Инвентарный номер: нет.
   
   K 25


    Kaverin, A. M.
    Attainable superheating of the oxygen-nitrogen-helium solutions [Electronic resource] / A. M. Kaverin, V. N. Andbaeva, V. G. Baidakov // Thermophysics and Aeromtchanics. - 2015. - Vol. 22, № 1. - С. 85-94. - Bibliogr. : p. 94 (19 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
ADDITIVE APPROXIMATION -- SOLUTIONS -- HOMOGENEOUS NUCLEATION
Аннотация: Method of measuring the lifetime of the superheated liquid was used to determine temperatures of the limit superheating of the solution of oxygen-nitrogen-helium. The method of calculating the properties of this solution (temperature of limit superheating, saturated vapor pressure, and density) based on the data on the properties of solutions of oxygen-helium and nitrogen-helium was proposed. The surface tension of the solution of oxygen-nitrogen-helium was determined in a special experimen

\\\\expert2\\nbo\\Thermophysics and Aeromechanics\\2015, V. 22, N 1. P. 85-94.pdf
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10.
Инвентарный номер: нет.
   
   K 25


    Kaverin, A. M.
    Attainable superheating of the oxygen-nitrogen-helium solutions [Electronic resource] / A. M. Kaverin, V. N. Andbaeva, V. G. Baidakov // Thermophysics and Aeromtchanics. - 2015. - Vol. 22, № 1. - С. 85-94. - Bibliogr. : p. 94 (19 ref.)
ББК 53
Рубрики: ФИЗИКА
Кл.слова (ненормированные):
ADDITIVE APPROXIMATION -- SOLUTIONS -- HOMOGENEOUS NUCLEATION
Аннотация: Method of measuring the lifetime of the superheated liquid was used to determine temperatures of the limit superheating of the solution of oxygen-nitrogen-helium. The method of calculating the properties of this solution (temperature of limit superheating, saturated vapor pressure, and density) based on the data on the properties of solutions of oxygen-helium and nitrogen-helium was proposed. The surface tension of the solution of oxygen-nitrogen-helium was determined in a special experimen

\\\\expert2\\nbo\\Thermophysics and Aeromechanics\\2015, V. 22, N 1. P. 85-94.pdf
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  бф - Научно-библиографический отдел

  БХЛ - Фонд художественной литературы

  ИИиА -Фонд исторической литературы в ЦНБ УрО РАН

  ИМЕТ -Отдел ЦНБ в Институте металлургии УрО РАН

  кх - Отдел фондов (книгохранениe)

  МБА - Межбиблиотечный абонемент

  мф - Методический фонд

  ок - Отдел научной каталогизации

  оку - Отдел комплектования и учета

  орф - Обменно-резервный фонд

  пф - Читальный зал деловой и патентной информации

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  ч/з - Главный читальный зал

  эр - Зал электронных ресурсов

  

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