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Titlebook: Geochemical Modelling of Igneous Processes – Principles And Recipes in R Language; Bringing the Power o Vojtěch Janoušek,Jean-François Moye

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https://doi.org/10.1007/978-3-322-88102-1many accessory minerals including zircon (controlling Zr) and monazite (controlling LREE and Th). In this case, a more appropriate concept is that of solubility (of the accessory mineral). This chapter presents several (empirical) solubility laws for various accessory minerals, and discusses how thi
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Die Alkoholsynthese nach Reppe, include theoretical treatment of batch and fractional crystallization equations, development of REE during tonalite magma fractionation, partial melting of primitive mantle or depleted mantle reservoirs, construction of a binary mixing hyperbola, plotting zircon saturation isotherms and calculation
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Hans Euler,K. Josephson,K. Sjöbergfractionation of tonalitic magma (given the compositions of primitive and fractionated melt and partition coefficients of the principal mineral phases). The other is a reverse problem of garnet lherzolite melting, yielding a basaltic melt
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https://doi.org/10.1007/978-3-642-92573-3such as crystallization, melting or mixing, including some variants thereof. Mass balance implies specific numerical and graphical relations (the “lever rule”) that can be used to predict the evolution of melt in any of these scenarios.
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https://doi.org/10.1007/978-3-642-92332-6e: fractional crystallization of a single mineral and of a more complex cumulate assemblage, partial melting of a mantle peridotite and origin of basaltic magmas, and calculation of a bulk rock composition given the proportions and chemistries of its constituent minerals.
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https://doi.org/10.1007/978-3-642-51404-3 reverse modelling of fractional crystallization, partial melting of a paragneiss (yielding granitic magma) and calculation of a general “norm” given the composition of a bulk rock and its constituent minerals.
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