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Titlebook: MIPs and Their Roles in the Exchange of Metalloids; Thomas P. Jahn,Gerd P. Bienert Book 2010 The Editor(s) (if applicable) and The Author(

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Charles Hachez,François Chaumontrth’s surface dynamics (volcanism and plate tectonics). The last part of this chapter addresses the Earth’s magnetic field and how it prevents atmospheric escape and preserves the present atmosphere. Throughout this chapter, references to conditions existing on Earth-like planets are given to illust
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Jonas Å. H. Danielson,Urban Johansonrth’s surface dynamics (volcanism and plate tectonics). The last part of this chapter addresses the Earth’s magnetic field and how it prevents atmospheric escape and preserves the present atmosphere. Throughout this chapter, references to conditions existing on Earth-like planets are given to illust
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Barry P. Rosen,Markus J. Tamáslus, are covered in detail. The equations of motion in non-inertial reference systems are derived in two independent ways, and alternative deductions of the equations of motion for variable mass problems are presented. Lagrangian and Hamiltonian formulations of mechanics are studied for non-relativi
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Rita Mukhopadhyay,Eric Beitzrent types of heat capacity data. In particular, we will present three strategies that can be used depending on the type of heat capacity data available to us. Fifth, we will present a three-step integration method, using either a (P, T) or a (V, T) phase diagram, which can be used when ideal gas he
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Zijuan Liufer takes place (an irreversible process), entropy is created. Fifth, we will derive a criterion of equilibrium based on the entropy, which states that the entropy attains its maximum value at thermodynamic equilibrium. Finally, we will solve Sample Problem 10.3 to calculate the entropy change of a
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Aquaporins: A Family of Highly Regulated Multifunctional Channels,cterizing AQPs with respect to cell water homeostasis, recent discoveries in terms of the transport selectivity of AQP homologs has shed new light on their physiological roles. In fact, whereas some AQPs behave as “strict” water channels, others can conduct a wide range of nonpolar solutes, such as
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Phylogeny of Major Intrinsic Proteins,ic analyses. Plants encode more MIPs than other organisms and seven subfamilies have been defined, whereof the Nodulin26-like major intrinsic proteins (NIPs) have been shown to permeate metalloids. In this chapter we review the phylogeny of MIPs in general and especially of the plant MIPs. We also i
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