Research Publications (Excluding Reviews and Abstracts)
1959.
1. B. Chu and R. M. Diamond,
"The HCl Effect in Anion‑Resin Exchange," J.
Phys. Chem.,63, 2021 (1959).
1960.
2. B. Chu and J. J. Egan,
"Thermodynamics of Molten Binary Chloride Mixtures Calculated from the
Phase
Diagrams,"
Annals of the New York Academy of Sciences, 79,
908 (1960).
1962. 3.
P. Debye and B. Chu, "Spectrophotometry and Light Scattering on
Supported Platinum," J. Phys. Chem.,
66,
1021 (1962).
4. P. Debye, D. Woermann and
B. Chu, "Critical Opalescence of Polystyrene in Cyclohexane, Transmission
Measurements,"
J. Chem. Phys., 36, 851
(1962).
5. P. Debye, B. Chu and D. Woermann, "Critical Opalescence
of Polystyrene in Cyclohexane, Range ofMolecular
Forces and Radius of Gyration," J.
Chem. Phys., 36, 1803
(1962).
6.
P. Debye, B. Chu and H. Kaufmann, "Critical Opalescence of Binary Liquid
Mixtures: Methanol-Cyclohexane,
Aniline-Cyclohexane," J. Chem. Phys.,
36, 3378 (1962).
7. B. Chu, D. C. Whitney and R. M. Diamond, "On Anion
Exchange Resin Selectivities,"
J. Inorganic and
Nuclear Chem., 24, 1405 (1962).
1963. 8.
P. Debye, D. Woermann and B. Chu, "Critical Opalescence of
Polystyrene in Ethyl Cyclohexane," J.
Polymer
Sci.,
A1, 255 (1963).
9. P. Debye, B. Chu and D. Woermann, "Viscosity of Critical Mixtures," J. Polymer Sci., A1, 249 (1963).
10. P. Debye, B. Chu and H. Kaufmann, "Molecular Configuration of
Polystyrene in Benzene," J. Polymer Sci., A1, 2387
(1963).
11. B. Chu, "The Physical Structure of Catalysts by Radiation
Scattering Techniques," Proc. Am.
Petroleum Inst., III, 285 (1963).
12. P. Debye, H. Kaufmann, K. Kleboth and B. Chu, "Further Study on
the Angular Dissymetry of Critical
Mixtures,
Aniline‑Cyclohexane; Aniline-1-Hexane,"
Trans. Kansas Academy of Science,66, 260 (1963).
13.*B. Chu, "The Sintering of Platinum Supported on Alumina," J. Phys. Chem., 67, 1916 (1963).
14. B. Chu, "Critical Opalescence of Methanol-Cyclohexane,
Transmission Measurements," J. Phys.
Chem., 67, 1969 (1963).
1964. 15. B. Chu, "Critical Opalescence
of a Binary Liquid Mixture, n‑Decane‑b,b'-Dichloroethyl Ether. I.
Light
Scattering,"
J. Chem Phys., 41,
226 (1964).
16. B. Chu, "Versatile Light Scattering Photometer," Rev. Sci. Instrum., 35, 1201 (1964).
17. B. Chu, "Critical Opalescence of a Fluorocarbon-Hydrocarbon
Liquid Mixture: Normal Perfluoroheptane- Normal
Heptane," J. Am. Chem. Soc.,86,
3557 (1964).
1965. 18. B. Chu, "X-Ray Study of
Critical Opalescence of Polystyrene in Cyclohexane," J.
Chem. Phys., 42, 426, 3742
(1965).
19*B. Chu and D. M. Tan Creti, "Infinite Slit Height
Corrections in Small Angle X-Ray Scattering," Acta
Cryst.,
18, 1083 (1965).
20. B. Chu, "Critical Opalescence of a Binary Liquid Mixture,
n‑Decane-b,b'- Dichloroethyl Ether. II. Small
Angle
X-Ray Scattering", J. Chem.
Phys., 42, 2293 (1965).
21. B. Chu and W. P. Kao, "Light Scattering of a Critical Binary
Liquid Mixture: Triethylamine‑Water," Can.
J. Chem., 43, 1803
(1965).
22*B. Chu and W. P. Kao, "Critical Opalescence of a
Binary Liquid Mixture, n-Dodecane-b,b'‑Dichloroethyl Ether.
III. Very Near the Critical Mixing Point," J.
Chem. Phys., 42, 2608
(1965).
23. B. Chu, "Critical Opalescence of Binary Liquid Mixtures: The
Debye Molecular Interaction Range," J.
Phys. Chem.,69, 2329 (1965).
24. B. Chu, M. Pallesen, W. P. Kao, D. E. Andrews and P. W. Schmidt,
"Critical Opalescence of a Fluorocarbon-Hydrocarbon
Binary Liquid Mixture: Normal Perfluoroheptane-Isooctane," J. Chem. Phys., 43,
2950
(1965).
1966. 25. P. Debye, J. Bashaw, B. Chu and D. M. Tan Creti, "Critical Opalescence of the Polystyrene-Cyclohexane System: Small Angle X-Ray Scattering," J. Chem. Phys., 44, 4302 (1966).
26. B. Chu, “Experiments on the Critical Opalescence of Binary Liquid
Mixtures - Elastic Scattering,” in
Critical
Phenomena, ed. M. S. Green and J. V. Sengers, National Bureau of Standards
Miscellaneous Publication
273, 1966, p. 123.
1967. 27*B.
Chu, “Observation of Time‑Dependent Concentration Fluctuations in
Critical Mixtures,” Phys. Rev.
Letters,
18, 200 (1967).
28. B. Chu and D. M. Tan Creti, “Small Angle X‑Ray Scattering from a Macroreticular Sulfonic Acid Cation-Exchange Resin - Amberlyst 15,” J. Phys. Chem., 71, 1943 (1967).
29*Chu
and J. A. Duisman, “Effects of Isothermal Compressibility and Gravity on
Critical Opalescence Studies of One-Component Systems,”
J. Chem. Phys., 46, 3267
(1967).
30.
B. Chu, Light and Small‑Angle X‑Ray Scattering of a Binary Liquid
Mixture: n-Decane-b,b'-Dichloro-ethyl
Ether, in "Electromagnetic Scattering," ed. R. S. Stein and R. L.
Rowell, Gordon and Breach Science Publishers, Inc., New York (1967), pp. 487-502.
31.
B. Chu, “Correlation Effect in the Time‑Dependent Concentration
Fluctuations of the Isobutyric Acid- Water System Near Its Critical Mixing
Point,” J. Chem. Phys., 47,
3816 (1967).
1968.
32. B. Chu and P. W. Schmidt, “Light Scattering from Simple Dense
Fluids,”in Fundamental Data on
Sample
Dense Fluids, ed. H. L. Frisch and Z. W. Salsburg, Academic Press
(1968), pp. 111-118.
33.*B. Chu and R. J. Bearman, “Effects of Sample
Configurations on Compressible Fluids in the Earth's
Field,”
J. Chem. Phys., 48,
2377 (1968).
34. B. Chu, F. J. Schoenes and W. P. Kao, “Spatial and
Time‑Dependent Correlations of the Isobutyric
Acid-Water
System in the Neighborhood of its Critical Mixing Point,” J.
Am. Chem. Soc., - Debye Memorial
Issue, 90, 3042 (1968).
35.*B. Chu and F. J. Schoenes, “Diffusion Coefficient of the Isobutyric Acid-Water System in the Critical Region,” Phys. Rev. Letters, 21, 6 (1968).
36. B. Chu and F. J. Schoenes, “The Laser Homodyne Self‑Beating
Technique in Light Scattering,” J.Coll.
and Interface Sci.,
27, 424 (1968).
1969.
37. B. Chu, “Comments on Critical Opalescence of Macromolecular
Solutions,” Phys.
Letters,28A,
654 (1969).
38. W. P. Kao and B. Chu, “Light Scattering Studies of Critical
Opalescence in Binary Liquid Mixtures. IV.
Paraffins in b,b'‑Dichlorodiethyl Ether,” J.
Chem. Phys., 50, 3986
(1969).
39. B. Chu, N. Kuwahara and M. Tamsky, “Time-Dependent Concentration
Fluctuations of Polystyrene in
Cyclohexane,”
J. Chem. Phys., 51,
2449 (1969).
40. B. Chu, F. J. Schoenes and M. E. Fisher, “Light Scattering and
Pseudo‑Spinodal Curves: The
Isobutyric
Acid‑Water System in the Critical Region,” Phys.
Rev., 185, 219 (1969).
1970. 41.*B. Chu, J. S. Lin and J.
A. Duisman, “Long-Range Coherence Length of Carbon Dioxide Near its Critical
Point,” Phys. Letters, 32A,
95 (1970).
42.*B. Chu, N. Kuwahara and D. V. Fenby, “Long‑Range
Correlation Length of Critical
Systems,” Phys.
Letters,
32A, 131 (1970).
43. B. Chu and J. S. Lin, “Small‑Angle Scattering of X-Rays from
Carbon Dioxide in the Vicinity of its
Critical
Point,” J. Chem. Phys., 53,
4454 (1970).
1971. 44. N. Kuwahara, D. V. Fenby, M. Tamsky
and B. Chu, “Intensity and Linewidth Studies of the System Polystyrene-Cyclohexane
in the Critical Region,” J. Chem. Phys.,
55, 1140 (1971).
1972. 45.*W. Tscharnuter, D. Thiel
and B. Chu, “Spectrum of Scattered
Light in a Critical Binary Mixture,” Phys.
Lett., A38, 299 (1972).
46.*B. Chu, C. S. Bak and F. L. Lin, “Coherence Length in
the Isotropic Phase of a Nematic Liquid Crystal: p-Methoxybenzylidene p-n-Butylaniline,”
J. Chem. Phys.,56, 3717 (1972).
47.*B. Chu, C. S. Bak and F. L. Lin, “Coherence Length in
the Isotropic Phase of a Room‑Temperature Nematic Liquid Crystal,” Phys.
Rev. Lett., 28, 1111
(1972).
48. B. Chu, D. Thiel, W. Tscharnuter and D. V. Fenby, “Critical
Opalescence of Perfluoromethylcyclo-hexane in Carbon Tetrachloride,” J. de Physique,33, C1-111
(1972).
49.*W. Tscharnuter, S. P. Lee, B. Chu and N. Kuwahara,
“Dynamics of Concentration Fluctuations of a Macromolecular Solution Very Near
its Critical Point,” Phys. Lett., 39A,
257 (1972).
50.*S. P. Lee, W. Tscharnuter and B. Chu, “The
Kawasaki‑Einstein‑Stokes Formula
and Dynamical Scaling
in the Critical Region of a Binary Liquid Mixture: Isobutyric Acid in Water,” Phys.
Rev. Lett., 28,
1509
(1972).
51. J. Bucher, R. M. Diamond and B. Chu, “Selectivity in Heterovalent
Anion Exchange: Ion Pairing vs. Ion
Hydration,” J. Phys. Chem., 76,
2459 (1972).
52.*W. Tscharnuter, D. Thiel and B. Chu, “Experimental Evidence of Non‑local Shear Viscosity Correction of the Mode‑Mode Coupling Theory of Kawasaki in a Binary Liquid Mixture,” Phys. Lett., 40A, 275 (1972).
53. B. Chu, “Comments on Universality of Critical Exponents for Fluid
Systems,” J. Stat. Phys., 6,
173
(1972).
54. S. P. Lee, W. Tscharnuter and B. Chu, “Calibration of an Optical Self‑Beating Spectrometer by Polystyrene Latex Spheres and Confirmation of the Stokes‑Einstein Formula, J. Polymer Sci., 10, 2453 (1972).
55. S. P. Lee, W. Tscharnuter, B. Chu and N. Kuwahara, “Critical
Slowing Down and Correlation of Concentration Fluctuations of a Macromolecular
Solution Very Near its Critical Mixing Point,” J.
Chem. Phys., 57, 4240
(1972).
56. B. Chu, “Critical Opalescence,” Ber.
Bunsenges. Physik. Chem., 72,
202 (1972).
1973. 57. B. Chu, S. P. Lee and W.
Tscharnuter, “Comparison of Experiments with the Modified Mode‑Mode
Coupling Theory of Kawasaki in Binary Fluids,” Phys.
Rev., A7,
353 (1973).
58. N. Kuwahara, J. Kojima, M. Kaneko and B. Chu, “Coexistence Curve of
the Polystyrene-Cyclohexane System
in the Critical Region,” J. Polymer Sci.,
C11, 2307 (1973).
1974. 59.*S. P. Lee and B. Chu,
“Least‑Squares Integration Method in Intensity Fluctuation Spectroscopy
of Macromolecular Solutions with Bimodal Distributions,”
Appl. Phys. Lett.,24, 261 (1974).
60.*F. C. Chen, W. Tscharnuter, D. Schmidt and B. Chu,
“Experimental Evaluation of Macromolecular Polydispersity in Intensity
Correlation Spectroscopy Using the
Cumulant Expansion Technique,” J. Chem.
Phys., 60, 1675 (1974).
61.*S. P. Lee and B. Chu, “Evidence of a Non‑Zero
Critical Exponent for a Macromolecular Solution,” J.
Chem. Phys., 60, 2940
(1974).
62. J. Bucher, R. M. Diamond and B. Chu, “Anion Exchange Resin
Selectivity as a Function of Resin Composition Revisited,” J.
Inorg. Nucl. Chem., 36,
645 (1974).
63.*F. L. Lin, D. Thiel and B. Chu, “Critical Exponents of a
Three‑Component Ethanol-Water-Chloroform Mixture,” Phys.
Lett., 47A, 479 (1974).
64.*S. P. Lee and B. Chu, “Application of
Least‑Squares (Difference Integration) Method to Cumulants Analysis in
Intensity Fluctuation Spectroscopy,” Appl.
Phys. Lett., 24 575 (1974).
65.*B. Chu and F. L. Lin, “Ku Dependence of High-Frequency
Shear Viscosity in the Critical Region,” J.
Chem. Phys., 61, 739
(1974).
66. F. C. Chen, W. Tscharnuter, D. Schmidt, B. Chu and T. Y. Liu,
“Measurement of Diffusion Coefficients of Meningococcal Polysaccharide by
Mixing Spectroscopy. 1. A Preliminary Characterization on the Aggregation of the
Group C Polysaccharide,” Biopolymers, 12,
2281 (1974).
67. B. Chu and F. L. Lin, “Laser Light Scattering Study of a Ternary
Liquid Mixture: Ethanol‑Water-
Chloroform,”
J. Chem. Phys., 61, 5132
(1974).
1975. 68.
B. Chu, A. Yeh, F. C. Chen and B. Weiner, “Self‑Association of
b‑Lactoglobulin A in Acid Solution. I. Translational Diffusion
Coefficients,” Biopolymers, 14,
93 (1975).
69. Esin Gulari and B. Chu, “Density of Methoxybenzylidene Butylaniline
about the Isotropic-Nematic Phase Transition,”
J. Chem. Phys., 62, 795
(l975).
70. Erdogan Gulari and B. Chu,
“Short‑Range Order Fluctuations in the Isotropic Phase of a Liquid
Crystal MBBA,” J. Chem. Phys., 62,
798 (1975).
71. Q. H. Lao, B. Chu and N. Kuwahara, “Dynamics of Critical
Fluctuations of a Macromolecular Solution,” J.
Chem. Phys., 62, 2039
(1975).
72. S. P. Lee, W. Tscharnuter and B. Chu, “A Digital Light Scattering
Photometer,” Rev. Sci. Instr., 46,
1278 (1975).
73. D. Thiel, B. Chu, A. Stein and G. Allen, “Light Scattering from a
Binary Liquid Mixture Above its Critical Consolute Point,” J.
Chem. Phys.,62, 3689 (l975).
74.*Q. H. Lao, P. E. Schoen and B. Chu, “Rayleigh-Brillouin
Scattering and Relaxation in Hexafluoroethane (C F ),” Phys.
Letters, 55A, 281 (1975).
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