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![Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™ Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™](https://www.frontiersin.org/files/Articles/974715/fphar-13-974715-HTML/image_m/fphar-13-974715-t003.jpg)
Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™
![Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society](https://pubs.acs.org/cms/10.1021/jacs.0c08044/asset/images/large/ja0c08044_0003.jpeg)
Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society
![Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™ Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™](https://www.frontiersin.org/files/Articles/974715/fphar-13-974715-HTML/image_m/fphar-13-974715-g006.jpg)
Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™
![Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society](https://pubs.acs.org/cms/10.1021/jacs.0c08044/asset/images/large/ja0c08044_0005.jpeg)
Intrinsically Ultralow Thermal Conductivity in Ruddlesden–Popper 2D Perovskite Cs2PbI2Cl2: Localized Anharmonic Vibrations and Dynamic Octahedral Distortions | Journal of the American Chemical Society
![Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™ Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™](https://www.frontiersin.org/files/Articles/974715/fphar-13-974715-HTML/image_m/fphar-13-974715-g001.jpg)
Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™
![Benefits of Indirect Contact With Nature on the Physiopsychological Well-Being of Elderly People - Mohamed Elsadek, Yuhan Shao, Binyi Liu, 2021 Benefits of Indirect Contact With Nature on the Physiopsychological Well-Being of Elderly People - Mohamed Elsadek, Yuhan Shao, Binyi Liu, 2021](https://journals.sagepub.com/cms/10.1177/19375867211006654/asset/images/large/10.1177_19375867211006654-fig5.jpeg)
Benefits of Indirect Contact With Nature on the Physiopsychological Well-Being of Elderly People - Mohamed Elsadek, Yuhan Shao, Binyi Liu, 2021
![Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™ Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™](https://www.frontiersin.org/files/Articles/974715/fphar-13-974715-HTML/image_m/fphar-13-974715-g007.jpg)
Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™
![Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™ Frontiers | SeDeM tool-driven full factorial design for osmotic drug delivery of tramadol HCl: Formulation development, physicochemical evaluation, and in-silico PBPK modeling for predictive pharmacokinetic evaluation using GastroPlus™](https://www.frontiersin.org/files/MyHome%20Article%20Library/974715/974715_Thumb_400.jpg)