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Titlebook: Quantitative Methods in Pharmaceutical Research and Development; Concepts and Applica Olga V. Marchenko,Natallia V. Katenka Book 2020 Sprin

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書目名稱Quantitative Methods in Pharmaceutical Research and Development
副標(biāo)題Concepts and Applica
編輯Olga V. Marchenko,Natallia V. Katenka
視頻videohttp://file.papertrans.cn/781/780918/780918.mp4
概述Offers readers an overview of concepts, methods, and applications used in several quantitative areas of drug research, development, and marketing.Unites various disciplines within the pharmaceutical i
圖書封面Titlebook: Quantitative Methods in Pharmaceutical Research and Development; Concepts and Applica Olga V. Marchenko,Natallia V. Katenka Book 2020 Sprin
描述This contributed volume presents an overview of concepts, methods, and applications used in several quantitative areas of drug research, development, and marketing. Chapters bring together the theories and applications of various disciplines, allowing readers to learn more about quantitative fields, and to better recognize the differences between them. Because it provides a thorough overview, this will serve as a self-contained resource for readers interested in the pharmaceutical industry, and the quantitative methods that serve as its foundation. Specific disciplines covered include:.Biostatistics.Pharmacometrics.Genomics.Bioinformatics.Pharmacoepidemiology.Commercial analytics.Operational analytics.Quantitative Methods in Pharmaceutical Research and Development. is ideal for undergraduate students interested in learning about real-world applications of quantitative methods, and the potential career options open to them. It will also be of interest to experts working in these areas..
出版日期Book 2020
關(guān)鍵詞Pharmaceutical industry statistics; Biostatistics; Pharmaceutical industry quantitative methods; Quanti
版次1
doihttps://doi.org/10.1007/978-3-030-48555-9
isbn_softcover978-3-030-48557-3
isbn_ebook978-3-030-48555-9
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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Yan Xu,Holly Kimkored. It is common practice to use the . as shown in Fig.1. It is characterized by the . of its origin . and by the . of three perpendicular axes, each of which has a . of distance established by making a correspondence between the real numbers and the Euclidean distance of each point on the axis fro
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Wendell Jonesry types of joints and by arbitrary force elements (actuators and passive spring-damper elements). The system is connected to a carrier body the motion of which is prescribed as function of time. The system structure is mapped onto a directed graph whose vertices and directed arcs represent bodies a
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Ana Filipa Macedo,Ana Maria Rodriguez,William Hawkes,Alban Fabrery types of joints and by arbitrary force elements (actuators and passive spring-damper elements). The system is connected to a carrier body the motion of which is prescribed as function of time. The system structure is mapped onto a directed graph whose vertices and directed arcs represent bodies a
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Ashley Buchanan,Tianyu Sun,Natallia V. Katenkaby indentifying the undeformed shape of the bodies and the system, or by referring to an attitude of maximum or minimum kinetic energy for a given angular momentum, i.e. collnearity of angular momentum and angular velocity, which in turn is associated with no deformation, this time enforced by the k
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Vladimir V. Anisimov shape, which when perturbed or stretched, tend to break into three parts one of which is a free floating satellite drop. In this study an attempt has been made to understand the transient surface properties that control the processes of bifurcation and breakage of the liquid system..The paper demon
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