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[in Japanese]
1972 Volume 36 Issue 10 Pages
1039-1042
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Hajime Nishimura, Yasuo Ohtaka
1972 Volume 36 Issue 10 Pages
1043-1046
Published: October 05, 1972
Released on J-STAGE: November 29, 2010
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Yasushi Hiraizumi
1972 Volume 36 Issue 10 Pages
1047-1053
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Atsunobu Ichikawa
1972 Volume 36 Issue 10 Pages
1053-1058
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Hayatoshi Sayama
1972 Volume 36 Issue 10 Pages
1059-1064
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Tomio Umeda
1972 Volume 36 Issue 10 Pages
1064-1072
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Ikuho Yamada
1972 Volume 36 Issue 10 Pages
1073-1077
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Terukatsu Miyauchi, Isami Yoshifuku
1972 Volume 36 Issue 10 Pages
1078-1079
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Koichi Tahara, Shigeki Toyama
1972 Volume 36 Issue 10 Pages
1079-1080
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Hiroshi Imai
1972 Volume 36 Issue 10 Pages
1080-1081
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Tadashi Shirotsuka, Hideo Arakawa, Yoshiaki Terauchi
1972 Volume 36 Issue 10 Pages
1082-1085
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Eiichi Kunugita
1972 Volume 36 Issue 10 Pages
1085-1089
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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1972 Volume 36 Issue 10 Pages
1090
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Takasi Iijima
1972 Volume 36 Issue 10 Pages
1091-1095
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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[in Japanese], [in Japanese]
1972 Volume 36 Issue 10 Pages
1096-1106
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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[in Japanese]
1972 Volume 36 Issue 10 Pages
1107-1111,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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method of correlation of liquid-liquid equirasproposed for ternary system which waterof components. rigion of solute concentration below aboutn almost straight line was obtained by thelogarithmic coordinate of liquid-liquid equiratioagainst weight fraction of solute inayer.
The correlation may be applied for; system which components are all organicsolute concentration was expressed in weightthe distribution law was not held for connregion.
Extrapolating the correlation lineeight fraction, it was possible to predict I-liquid equilibrium ratio at infinite dilution. system showed maximum value on theon curve the tie-line data was well expresse drrelation equationis weight fraction of solute in organic layer, ght fraction of solute in water layer, a is aand subscriptm is showed the value atk point. aid-liquid equilibrium ratio at infinite dilutionstimated using the correlating equation.
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Akio Nishiwaki, Yasuo Kato
1972 Volume 36 Issue 10 Pages
1112-1116,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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riance of a model in which the longitudinal liquid in each stage was assumed to be by the diffusion model and back flow was to exist between stages was analytically The external age distribution function of tI was compared with those of the back flow id the diffusion model. By measuring the ate concentration distribution of tracer, it that the longitudinal dispersion coefficient in each stage was nearly equal to that of e stage bubble column.Consequently, the vratio between stages can be evaluated 71 the longitudinal dispersion coefficient of tamed for the single stage bubble column Eternal age distribution curve or the variance experimentally.
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Megumu Yuzawa, Sachio Sugiyama
1972 Volume 36 Issue 10 Pages
1116-1123,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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the of sintering based on softening or melting was determined experimentally under the al conditions, using a single sphere of mixed of glass and alumina. Using this rate of and the idea of over-all specific heat, the of the degree of sintering and temperature A unsteady nonisothermal conditions were theoretically.-ison of calculated results with that of exs showed a fairly good coincidence, and the intering was recognized to be affected largely I te of heating.
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Sachio Sugiyama, Junichi Kimura
1972 Volume 36 Issue 10 Pages
1123-1130,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Iwao Muchi, Shigekatsu Mori
1972 Volume 36 Issue 10 Pages
1130-1136,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Statistical analysis on the behavior of particles in a dispersed system
Kanji Matsumoto, Yoshiro Mori
1972 Volume 36 Issue 10 Pages
1137-1143,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Kakusaburo Onda, Hiroshi Takeuchi, Takeshi Kobayashi, Masahiro Takahas ...
1972 Volume 36 Issue 10 Pages
1143-1147,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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Akio Nishiwaki, Yasuo Kato, Koji Andou, Kazuo Endoh, Yoshiyuki Kitaura ...
1972 Volume 36 Issue 10 Pages
1147-1154,a1
Published: October 05, 1972
Released on J-STAGE: October 07, 2010
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