Re: Bibliografia suddivisa [Risolto]

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    Innanzitutto grazie per la tempestiva risposta.

    Ecco quì un po’ di codice reale:

    la tesi
    `
    $cat Tesi.tex
    \documentclass[12pt,a4paper,openright,twoside]{report}
    \usepackage{fancyhdr}
    \usepackage{array}
    \usepackage{tabularx}
    \usepackage{rotating}
    \usepackage{indentfirst}
    \usepackage{graphicx}
    \usepackage{newlfont}
    \usepackage{amssymb}
    \usepackage{amsmath}
    \usepackage{latexsym}
    \usepackage{amsthm}
    \usepackage{longtable}
    \oddsidemargin=30pt \evensidemargin=20pt%impostano i margini
    \theoremstyle{plain} %stile corsivo
    \usepackage{booktabs,multirow}
    \usepackage[font=small,format=hang,labelfont={sf,bf}]{caption}
    \usepackage{subfig}
    \usepackage{wrapfig}
    \usepackage[style=numeric,hyperref,subentry]{biblatex}
    \bibliography{filtration}

    \begin{document}

    \begin{titlepage}
    \begin{center}
    {{\Large{\textsc{Alma Mater Studiorum \\
    \vspace{.1cm}
    University of Bologna}}}} \rule[0.1cm]{15.8cm}{0.1mm}
    \rule[0.5cm]{15.8cm}{0.6mm}
    {\small{\bf FACULTY OF ENGINEERING\\
    Department of Electrical Engineering}}
    \end{center}
    \vspace{15mm}
    \begin{center}
    {\LARGE{\bf Theoretical and Experimental Study}}\\
    \vspace{3mm}
    {\LARGE{\bf of the Magnetic Separation}}\\
    \vspace{3mm}
    {\LARGE{\bf of Pollutants from Wastewater}}\\
    \end{center}
    % \vspace{40mm}
    \par
    \noindent
    \strut \null
    \vfill
    \begin{center}
    {\large{\bf Ph.D. Thesis}}\\
    {\large{\bf of}}\\
    {\large{\bf Giacomo Mariani}}\\
    \vspace{20mm}
    {\large{\bf XXI Cycle }}\\
    {\large{\bf A.Y. 2009 }}
    \end{center}
    \newpage %va in una pagina nuova
    \clearpage{\pagestyle{empty}\cleardoublepage}
    \end{titlepage}

    \pagenumbering{roman} %for roman numbers

    \newcolumntype{M}[1]{>{\centering\hspace{0pt}}m{#1}}

    \tableofcontents
    \chapter*{Forewords and acknowledgments}
    \addcontentsline{toc}{chapter}{Forewords and acknowledgments}
    Thank to \dots

    \newpage %va in una pagina nuova
    \chapter{Filtration and HGMS (High Gradient Magnetic Separation)}
    \label{chapter:filtration}
    \pagenumbering{arabic}
    A separation process is one in which a mixture of substances is transformed into
    two or more distinct products\dots
    \section{Traditional separation technologies}
    Nowadays a lot of well working and well established separation technologies are
    industrially available.
    All of them have their own limits, due to the physical properties involved in its
    working principle.
    Here I give a short review of some of them
    on the base of their working principle, without the claim of being exhaustive.

    \subsection{Electric separators}
    The electric force is the leading one in large number of separators, such as
    adsorption or electrostatic separator.
    Adsorption is the accumulation of atoms or molecules on the surface of a
    material.
    This process creates a film of the adsorbate (the molecules or atoms being
    accumulated) on the adsorbent's surface \cite{bruch_physical_2007}.
    It is different from absorption, in which a substance diffuses into a liquid or
    solid to form a solution.
    The term sorption encompasses both processes, while desorption is the reverse
    process of “adsorption”.
    In simple terms, adsorption is “the collection of a substance onto the surface of
    adsorbent solids”.
    It is a removal process where certain particles are bound to an adsorbent particle
    surface by either chemical or physical attraction.
    Adsorption is a consequence of surface energy.
    In a bulk material, all the bonding requirements (be they ionic, covalent, or
    metallic) of the constituent atoms of the material are filled by other atoms in
    the material.
    However, atoms on the surface of the adsorbent are not wholly surrounded by other
    adsorbent atoms and therefore can attract adsorbates.
    The exact nature of the bonding depends on the details of the species involved,
    but the adsorption process is generally classified as physisorption
    (characteristic of weak van der Waals forces) or chemisorption (characteristic of
    covalent bonding) \cite{mcmurry_fundamentals_2002}.
    Electrostatic separation is defined as “the selective sorting of solid species by
    means of utilizing forces acting on charged or polarized bodies in an electric
    field''.
    Separation is effected by adjusting the electric and coacting forces, such as
    gravity or centrifugal force, and the different trajectories at some predetermined
    time.
    Separations made in air are called Electrostatic Separation.
    Separations made using a corona discharge device, are called High Tension Separations.
    Separations made in liquids are termed separation by Dielectrophesis.
    Electrophoresis is when separations are made if motion is due to a free charge on
    the species in an electric field \cite{tarushkin_electric_1986}.
    A similar approach is used in the electrostatic separators in which the electric
    field sources are wires and plates, as shown in Fig.
    The achieved force is huge because the wires are inside the flow, but this kind of
    separator require a big working volume.

    % bibliograpy
    \addcontentsline{toc}{chapter}{Bibliography}
    \bibbysection
    \printbibliography
    \chapter*{Others}
    \nocite{*}
    \end{document}
    `

    la base dati (di cui sono usate solo le prime tre voci)
    `
    @book{tarushkin_electric_1986,
    title = {Electric separator for seed},
    shorttitle = {Electric separator for seed =},
    publisher = {Muhammad Ali Society},
    author = {V. I Tarushkin},
    year = {1986}
    },

    @book{mcmurry_fundamentals_2002,
    edition = {5},
    title = {Fundamentals of Organic Chemistry},
    isbn = {0534395732},
    publisher = {Brooks Cole},
    author = {John E. {McMurry}},
    month = jul,
    year = {2002}
    },

    @book{bruch_physical_2007,
    title = {Physical Adsorption: Forces and Phenomena},
    isbn = {0486457672},
    shorttitle = {Physical Adsorption},
    publisher = {Dover Publications},
    author = {L. W. Bruch and Milton W. Cole and Eugene Zaremba},
    month = mar,
    year = {2007}
    },

    @article{adler_simplified_1967,
    title = {A simplified synthesis for meso-tetraphenylporphine},
    volume = {32},
    url = {http://dx.doi.org/10.1021/jo01288a053},
    doi = {10.1021/jo01288a053},
    number = {2},
    journal = {The Journal of Organic Chemistry},
    author = {Alan D. Adler and Frederick R. Longo and John D. Finarelli and Joel Goldmacher and Jacques Assour and Leonard Korsakoff},
    month = feb,
    year = {1967},
    pages = {476}
    },

    @book{sutherland_filters_2008,
    edition = {5},
    title = {Filters and Filtration Handbook, Fifth Edition},
    isbn = {1856174646},
    publisher = {Elsevier Science},
    author = {Ken Sutherland},
    month = aug,
    year = {2008}
    }
    `

    e le istruzioni di compilazione
    `
    latex Tesi.tex
    bibtex Tesi
    latex Tesi.tex
    latex Tesi.tex
    dvips Tesi.dvi && ps2pdf Tesi.ps
    `

    Il risultato, descritto nel primo pos, mostra un’unica bibliografia e poi il chapter* Otherst: http://rapidshare.com/files/335614142/Tesi.pdf.html

    Grazie a tutti

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