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Dive into the research topics where S.P. Ziemer is active.

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Featured researches published by S.P. Ziemer.


The Journal of Chemical Thermodynamics | 2007

Apparent molar volumes and apparent molar heat capacities of aqueous adonitol, dulcitol, glycerol, meso-erythritol, myo-inositol, d-sorbitol, and xylitol at temperatures from (278.15 to 368.15) K and at the pressure 0.35 MPa

M.B. Blodgett; S.P. Ziemer; B.R. Brown; T.L. Niederhauser; E.M. Woolley


The Journal of Chemical Thermodynamics | 2006

Thermodynamics of proton dissociations from aqueous glycine at temperatures from 278.15 to 393.15 K, molalities from 0 to 1.0 mol kg-1, and at the pressure 0.35 MPa : Apparent molar heat capacities and apparent molar volumes of glycine, glycinium chloride, and sodium glycinate

S.P. Ziemer; T.L. Niederhauser; E.D. Merkley; Joshua L. Price; E.C. Sorenson; B.R. McRae; B.A. Patterson; M.L. Origlia-Luster; E.M. Woolley


The Journal of Chemical Thermodynamics | 2006

Apparent molar volumes and apparent molar heat capacities of aqueous urea, 1,1-dimethylurea, and N,N′-dimethylurea at temperatures from (278.15 to 348.15) K and at the pressure 0.35 MPa

B.R. Brown; M.E. Gould; S.P. Ziemer; T.L. Niederhauser; E.M. Woolley


The Journal of Chemical Thermodynamics | 2005

Apparent molar volumes and apparent molar heat capacities of aqueous D(+)-cellobiose, D(+)-maltose, and sucrose at temperatures from (278.15 to 393.15) K and at the pressure 0.35 MPa

B.R. Brown; S.P. Ziemer; T.L. Niederhauser; E.M. Woolley


The Journal of Chemical Thermodynamics | 2007

Thermodynamics of the first and second proton dissociations from aqueous l-aspartic acid and l-glutamic acid at temperatures from (278.15 to 393.15) K and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of zwitterionic, protonated cationic, and deprotonated anionic forms at molalities from (0.002 to 1.0) mol · kg−1

S.P. Ziemer; E.M. Woolley


The Journal of Chemical Thermodynamics | 2004

Thermodynamics of complexation of aqueous 18-crown-6 with potassium ion: apparent molar volumes and apparent molar heat capacities of aqueous 18-crown-6 and of the (18-crown-6 + potassium chloride) complex at temperatures (278.15 to 393.15) K, at molalities (0.02 to 0.3) mol . kg-1, and at the pressure 0.35 MPa

T.L. Niederhauser; B.R. Brown; S.P. Ziemer; J.D. Sargent; E.M. Woolley


The Journal of Chemical Thermodynamics | 2007

Thermodynamics of proton dissociations from aqueous l-methionine at temperatures from (278.15 to 393.15) K, molalities from (0.0125 to 1.0) mol · kg−1, and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of l-methionine, methioninium chloride, and sodium methioninate

S.P. Ziemer; E.M. Woolley


The Journal of Chemical Thermodynamics | 2007

Apparent molar volumes and apparent molar heat capacities of aqueous magnesium nitrate, strontium nitrate, and manganese nitrate at temperatures from 278.15 K to 393.15 K and at the pressure 0.35 MPa

J.S. Jones; S.P. Ziemer; B.R. Brown; E.M. Woolley


The Journal of Chemical Thermodynamics | 2007

Thermodynamics of proton dissociations from aqueous threonine and isoleucine at temperatures from (278.15 to 393.15) K, molalities from (0.01 to 1.0) mol · kg−1, and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of zwitterionic, protonated cationic, and deprotonated anionic forms

S.P. Ziemer; E.M. Woolley


The Journal of Chemical Thermodynamics | 2004

Apparent molar volumes and apparent molar heat capacities of aqueous sodium bromide and sodium fluoride at temperatures from (278.15 to 393.15) K and at the pressure 0.35 MPa

S.P. Ziemer; T.L. Niederhauser; J.D. Sargent; E.M. Woolley

Collaboration


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E.M. Woolley

Brigham Young University

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B.R. Brown

Brigham Young University

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M.B. Blodgett

Brigham Young University

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D.M. Swenson

Brigham Young University

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J.D. Sargent

Brigham Young University

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J.S. Jones

Brigham Young University

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B.A. Patterson

Brigham Young University

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B.R. McRae

Brigham Young University

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E.C. Sorenson

Brigham Young University

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