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You were searching for : (Jacobsen, R. T <IN> author)
You found 18 out of 2431128 (18 returned) Documents 1 - 18 listed on this page
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1.
Fundamental Equations of State for Parahydrogen, Normal Hydrogen, and Orthohydrogen
J. W. Leachman
,
R. T Jacobsen
,
S. G. Penoncello
, and
E. W. Lemmon
J. Phys. Chem. Ref. Data
38
721 (2009)
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2.
Direct Visual Observation of Concentration Fluctuations in a Critical Mixture
P. Debye
and
R. T. Jacobsen
J. Chem. Phys.
48
203 (1968)
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3.
The EISCAT Svalbard radar: A case study in modern incoherent scatter radar system design
G. Wannberg
et al.
Radio Sci.
32
2283 (1997)
Order
4.
Lepton beam polarization at LEP
R. Assmann
et al.
AIP Conf. Proc.
343
219 (1995)
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5.
Forming and maintaining a potential well in a quasispherical magnetic trap
Nicholas A. Krall
,
M. Coleman
,
K. Maffei
,
J. Lovberg
,
R. Jacobsen
, and
R. W. Bussard
Phys. Plasmas
2
146 (1995)
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6.
A New Functional Form and New Fitting Techniques for Equations of State with Application to Pentafluoroethane (HFC-125)
Eric W. Lemmon
and
Richard T Jacobsen
J. Phys. Chem. Ref. Data
34
69 (2005)
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7.
Equations of State for Mixtures of R-32, R-125, R-134a, R-143a, and R-152a
Eric W. Lemmon
and
Richard T Jacobsen
J. Phys. Chem. Ref. Data
33
593 (2004)
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8.
A Fundamental Equation for Trifluoromethane (R-23)
Steven G. Penoncello
,
Eric W. Lemmon
,
Richard T Jacobsen
, and
Zhengjun Shan
J. Phys. Chem. Ref. Data
32
1473 (2003)
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9.
A Reference Equation of State for the Thermodynamic Properties of Nitrogen for Temperatures from 63.151 to 1000 K and Pressures to 2200 MPa
Roland Span
,
Eric W. Lemmon
,
Richard T Jacobsen
,
Wolfgang Wagner
, and
Akimichi Yokozeki
J. Phys. Chem. Ref. Data
29
1361 (2000)
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10.
An International Standard Formulation for the Thermodynamic Properties of 1,1,1-Trifluoroethane (HFC-143a) for Temperatures From 161 to 450 K and Pressures to 50 MPa
Eric W. Lemmon
and
Richard T Jacobsen
J. Phys. Chem. Ref. Data
29
521 (2000)
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11.
Thermodynamic Properties of Air and Mixtures of Nitrogen, Argon, and Oxygen From 60 to 2000 K at Pressures to 2000 MPa
Eric W. Lemmon
,
Richard T Jacobsen
,
Steven G. Penoncello
, and
Daniel G. Friend
J. Phys. Chem. Ref. Data
29
331 (2000)
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12.
Thermodynamic Properties of Oxygen from the Triple Point to 300 K with Pressures to 80 MPa
Richard B. Stewart
,
Richard T Jacobsen
, and
W. Wagner
J. Phys. Chem. Ref. Data
20
917 (1991)
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13.
Thermodynamic Properties of Argon from the Triple Point to 1200 K with Pressures to 1000 MPa
Richard B. Stewart
and
Richard T. Jacobsen
J. Phys. Chem. Ref. Data
18
639 (1989)
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14.
Thermodynamic Properties of Nitrogen from the Freezing Line to 2000 K at Pressures to 1000 MPa
Richard T Jacobsen
,
Richard B. Stewart
, and
Majid Jahangiri
J. Phys. Chem. Ref. Data
15
735 (1986)
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15.
Thermodynamic Properties of Ethylene from the Freezing Line to 450 K at Pressures to 260 MPa
Majid Jahangiri
,
Richard T Jacobsen
,
Richard B. Stewart
, and
Robert D. McCarty
J. Phys. Chem. Ref. Data
15
593 (1986)
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16.
Thermodynamic Properties of Nitrogen Including Liquid and Vapor Phases from 63K to 2000K with Pressures to 10,000 Bar
Richard T. Jacobsen
and
Richard B. Stewart
J. Phys. Chem. Ref. Data
2
757 (1973)
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17.
Poled-glass devices: influence of surfaces and interfaces
Jacob Fage-Pedersen
,
Rune Jacobsen
, and
Martin Kristensen
J. Opt. Soc. Am. B
24
1075 (2007)
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18.
Planar glass devices for efficient periodic poling
Jacob Fage-Pedersen
,
Rune Jacobsen
, and
Martin Kristensen
Opt. Express
13
8514 (2005)
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