The Experts below are selected from a list of 324 Experts worldwide ranked by ideXlab platform

Abolghasem Jouyban - One of the best experts on this subject based on the ideXlab platform.

  • thermodynamic studies of fluphenazine decanoate solubility in propylene glycol water mixtures and correlation with the jouyban acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahiazar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.

  • Thermodynamic studies of fluphenazine decanoate solubility in propylene glycol + water mixtures and correlation with the Jouyban-Acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahi-azar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.

S Chatrchyan - One of the best experts on this subject based on the ideXlab platform.

  • search for supersymmetry in final states with a single lepton b quark jets and missing transverse Energy in proton proton collisions at s 7 tev
    Physical Review D, 2013
    Co-Authors: S Chatrchyan, V Khachatryan, A M Sirunyan, A Tumasyan, W Adam, E Aguilo, T Bergauer, M Dragicevic, C Fabjan, M Friedl
    Abstract:

    A search motivated by supersymmetric models with light top squarks is presented using proton-proton collision data recorded with the CMS detector at a center-of-mass Energy of √s=7  TeV during 2011, corresponding to an integrated luminosity of 4.98  fb^(-1). The analysis is based on final states with a single lepton, b-quark jets, and missing transverse Energy. Standard model yields are predicted from data using two different approaches. The observed event numbers are found to be compatible with these predictions. Results are interpreted in the context of the constrained minimal supersymmetric Standard model and of a simplified model with four top quarks in the final state.

  • Search for supersymmetry in final states with a single lepton, b-quark jets, and missing transverse Energy in proton-proton collisions at sqrt(s) = 7 TeV
    Physical Review D, 2013
    Co-Authors: S Chatrchyan, M. Besançon, S. Choudhury, M. Dejardin, D. Denegri, B. Fabbro, J.l. Faure, F. Ferri, S. Ganjour, A. Givernaud
    Abstract:

    A search motivated by supersymmetric models with light top squarks is presented using proton-proton collision data recorded with the CMS detector at a center-of-mass Energy of sqrt(s)=7 TeV during 2011, corresponding to an integrated luminosity of 4.98 inverse femtobarns. The analysis is based on final states with a single lepton, b-quark jets, and missing transverse Energy. Standard model yields are predicted from data using two different approaches. The observed event numbers are found to be compatible with these predictions. Results are interpreted in the context of the constrained minimal supersymmetric Standard model and of a simplified model with four top quarks in the final state.

J. Wald - One of the best experts on this subject based on the ideXlab platform.

  • Collaborative Transmission Planning: California's Renewable Energy Transmission Initiative
    IEEE Transactions on Sustainable Energy, 2012
    Co-Authors: D. Olsen, J. Byron, G. Deshazo, D. Shirmohammadi, J. Wald
    Abstract:

    Transmission planning has been conducted primarily by utilities, in reactive fashion. Project approvals are increasingly litigated, when stakeholders later become engaged. Large Renewable Energy Standard (RES) targets present additional challenges for approval of generation and transmission projects and often require a proactive development approach. In response, California agencies formed a stakeholder-led planning process, the Renewable Energy Transmission Initiative (RETI) in 2007. RETI identified and ranked Renewable Energy Zones in California and neighboring regions, using both economic and environmental criteria, determined the transmission needed, based on least-regrets transmission planning principles, to access and deliver target renewable Energy, and prepared a statewide conceptual transmission plan. RETI has been effective in identifying development priorities and in building stakeholder support for generation-transmission development for renewable Energy. Its approach is applicable to other jurisdictions considering large-scale wind power-transmission construction.

Ali Shayanfar - One of the best experts on this subject based on the ideXlab platform.

  • thermodynamic studies of fluphenazine decanoate solubility in propylene glycol water mixtures and correlation with the jouyban acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahiazar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.

  • Thermodynamic studies of fluphenazine decanoate solubility in propylene glycol + water mixtures and correlation with the Jouyban-Acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahi-azar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.

Fleming Martinez - One of the best experts on this subject based on the ideXlab platform.

  • thermodynamic studies of fluphenazine decanoate solubility in propylene glycol water mixtures and correlation with the jouyban acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahiazar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.

  • Thermodynamic studies of fluphenazine decanoate solubility in propylene glycol + water mixtures and correlation with the Jouyban-Acree model
    Fluid Phase Equilibria, 2011
    Co-Authors: Vahid Panahi-azar, Ali Shayanfar, Fleming Martinez, William E. Acree, Abolghasem Jouyban
    Abstract:

    Abstract Solubilities of fluphenazine decanoate (FD) in binary mixtures of propylene glycol + water (PG + W) at 293.2, 298.2, 303.2, 308.2, and 313.2 K are reported. The combination of Jouyban–Acree model and van’t Hoff equation is used to predict the solubility of FD in a given solvent mixture at different temperatures. The thermodynamic properties (enthalpy, entropy and Gibbs Energy Standard changes of solutions) for FD in PG + W mixtures are calculated from solubility data using the modified version of van’t Hoff and Gibbs equations. The results show that Jouyban–Acree model can predict the solubility of FD in PG + W mixtures as a function of temperature over the studied temperature range. The study represents the first time that thermodynamic properties of solutes dissolved in binary solvent mixtures have been described by the Jouyban–Acree model. The calculated values are in good agreement with the measured experimental data.