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October 01, 2009

  • Date:11SundayDecember 2011

    Microbiology Journal Club - Evolutionary barriers and hidden evolutionary potential.

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    Time
    13:00 - 14:00
    Location
    Ullmann Building of Life Sciences
    LecturerDr. Nir Fluman
    Organizer
    Department of Plant and Environmental Sciences , Department of Chemical and Structural Biology
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    Lecture
  • Date:11SundayDecember 2011

    Fundamental and excitation gaps in molecules of relevance for organic photovoltaics from an optimally tuned range-separated hybrid functional

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    Time
    13:00 - 13:00
    Location
    Perlman Chemical Sciences Building
    LecturerProf. Sivan Refaely-Abramson
    M.Sc. student of Prof. Leeor Kronik, Dept. of Materials & Interfaces
    Organizer
    Department of Molecular Chemistry and Materials Science
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    AbstractShow full text abstract about Density functional theory (DFT) allows for the treatment of ...»
    Density functional theory (DFT) allows for the treatment of relatively large systems at a relatively low computational cost. Unfortunately, while optical gaps are usually well-predicted by time-dependent DFT (TDDFT) with standard exchange-correlation functionals, the highest-occupied molecular orbital (HOMO) and the lowest-unoccupied molecular orbital (LUMO) are poor predictors of the ionization potential (IP) and the electron affinity (EA), respectively. Range-separated hybrid (RSH) functionals are a relatively new class of functionals that are based on treating exact exchange in the long-range and (semi-)local exchange in the short-range. It was recently suggested that excellent fundamental gap values of finite-size objects may be obtained directly from the HOMO and LUMO eigenvalues, if the range separation parameter is optimally tuned so as to obey the DFT version of Koopmans' theorem, for each system separately.
    In this work we have examined a set of organic molecules of photovoltaic interest. We showed that with the optimally-tuned RSH approach it is indeed possible to obtain results for the IP and the fundamental gap that are as accurate as those obtained from many-body perturbation theory (within the GW approximation). We further showed that by using the same approach within TDDFT we obtain optical gaps that are at the same level of accuracy as other TDDFT methods. This provides a consistent framework for first-principles prediction of fundamental and optical gaps of gas-phase molecules at a modest computational cost.
    Lecture
  • Date:12MondayDecember 2011

    Bioinformatics workshop: Computational prediction of microRNAs and miR targets

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    Time
    09:00 - 13:00
    Location
    Harry Levine Family Building
    LecturerDr. Shifra Ben-Dor
    Bioinformatics unit Weizmann Institute of Science
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    AbstractShow full text abstract about This workshop will give a brief introduction on the topic of...»
    This workshop will give a brief introduction on the topic of miRNA's and the publicly available tools for working with them.

    It will cover:


    Biology of miRNA
    Predicting miRNA's
    Predicting miRNA target genes
    Where to find this information on the web
    Lecture
  • Date:12MondayDecember 2011

    Using genomics and epigenomics to manage breast cancer risk in a personalized medicine approach

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    Time
    10:00 - 11:30
    Location
    Arthur and Rochelle Belfer Building for Biomedical Research
    LecturerDr. Itzhak Haviv
    Faculty of Medicine, Bar-Ilan University, Pathology department, Melbourne University
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    AbstractShow full text abstract about At the center of epidemiology, public health and genetics li...»
    At the center of epidemiology, public health and genetics lies the question of nature or nurture. The rise in frequency, morbidity and mortality of certain chronic conditions, such as diabetes and cancer, certainly suggests nurture contributes to disease risk. On the other hand, germline variation, linked to breast cancer risk has been extensively investigated. However, clinical implementation of either genotyping for allelic variations or lifestyle decisions, such as hormone replacement, parity, anti-estrogens, or anti-inflammatory compounds, are all attenuated by the lack of evidence based approach to integrate the nature (genetic) and nurture (life style and experience). Epigenetic packaging of the DNA into chromatin in different cells in different conditions is a key mechanism to control the repertoire of phenotypes exhibited by differentiated cells and offers a key molecular mechanism to track the impact lifestyle on genome-to-phenotype flow. This study focused on the epigenetic changes that occur in the normal precursors of breast cancer in a series of normal human breasts (obtained from reduction mammoplasty), from women who either had multiple child births, or none. We observe molecular pathways that operate during the course of pregnancy-birth-lactation-involution, which likely mediate the observed reduction in breast cancer risk. We are now testing compounds, which modulate these pathways, to reduce breast cancer risk as a chemopreventive supplement to contraceptive pills, by mimicking the experience of childbirth in nullyparous women. The test is performed on human breast implants growing in mice, and the readout is change in mammographic density, a surrogate marker to premalignant risk elevation in normal breast.

    Lecture
  • Date:12MondayDecember 2011

    Projective Normality of G.I.T. quotient varieties modulo finite solvable group and Weyl groups.

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    Time
    11:00 - 11:00
    Location
    Ziskind Bldg.
    LecturerSantosha Pattanayak
    Organizer
    Faculty of Mathematics and Computer Science
    Lecture
  • Date:12MondayDecember 2011

    מפגשים בחזית המדע

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    Time
    19:15 - 21:00
    Location
    Davidson Institute of Science Education
    Organizer
    Science for All Unit
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    Lecture
  • Date:13TuesdayDecember 2011

    Characterization of the role of the Plexin-A4 and plexin-A2 receptors in semaphorin induced signal transduction and tumor progression.

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    Time
    10:00 - 10:00
    Location
    Wolfson Building for Biological Research
    LecturerProf. Gera Neufeld
    Department of Anatomy and Cell Biology, Faculty of Medicine, Technion
    Organizer
    Department of Biomolecular Sciences
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    Lecture
  • Date:13TuesdayDecember 2011

    "SCFTS, OPES, AND SUSY BREAKING MEDIATION"

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    Time
    10:30 - 12:00
    Location
    Neve Shalom
    LecturerKEN INTRILIGATOR
    UNIVERSITY OF CALIFORNIA SAN DIEGO
    Organizer
    Department of Particle Physics and Astrophysics
    Contact
    Lecture
  • Date:13TuesdayDecember 2011

    Sampling, Denoising and Compression of Matrices by Coherent Matrix Organization

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    Time
    11:00 - 11:00
    Location
    Jacob Ziskind Building
    LecturerMatan Gavish
    Stanford
    Organizer
    Faculty of Mathematics and Computer Science
    Lecture
  • Date:13TuesdayDecember 2011

    Harnessing Nature to Solve Man-made Environmental Problems-Is It Feasible?

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    Time
    11:15 - 11:15
    Location
    Ullmann Building of Life Sciences
    LecturerDr. Eli Cohen
    CEO of 'Ayala Water & Ecology'
    Organizer
    Department of Plant and Environmental Sciences
    Contact
    Lecture
  • Date:13TuesdayDecember 2011

    "HARMONY OF SCATTERING AMPLITUDES AND FORM FACTORS"

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    Time
    12:00 - 13:30
    Location
    Neve Shalom
    LecturerGABRIELE TRAVAGLINI
    QUEEN MARY UNIVERSITY OF LONDON
    Organizer
    Department of Particle Physics and Astrophysics
    Contact
    AbstractShow full text abstract about After a brief review of some hidden structures recently disc...»
    After a brief review of some hidden structures recently discovered in scattering amplitudes (amplitude/Wilson loop duality, dual conformal symmetry) we will discuss form factors. These are slightly off-shell quantities, and we will see how on-shell techniques such as unitarity and recursion relations, which have been successfully applied to the calculation of scattering amplitudes over the years, can also be used to derive form factors and explain their simplicity. Similarly to amplitudes, this simplicity is completely obscured by a calculation based on Feynman diagrams. In particular we will focus on form factors of half-BPS operators in N=4 super Yang-Mills and on their supersymmetric formulation, which parallels closely the Nair formalism for superamplitudes in N=4 super Yang-Mills.
    Lecture
  • Date:13TuesdayDecember 2011

    Music at Noon -" Moriah College Band", Sydney, Australia

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    Time
    12:30 - 12:30
    Title
    Young Musicians Orchestra of Sydney
    Location
    Michael Sela Auditorium
    Contact
    Cultural Events
  • Date:13TuesdayDecember 2011

    DAPk and ICAM-1: novel protective factors in lung inflammation

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    Time
    13:30 - 13:30
    Location
    Wolfson Building for Biological Research
    LecturerDr. Sigal Nakav
    Organizer
    Department of Systems Immunology
    Contact
    Lecture
  • Date:13TuesdayDecember 2011

    On Arnold diffusion in the a priori chaotic case

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    Time
    16:00 - 16:00
    Location
    Jacob Ziskind Building
    LecturerDimitry Turaev
    Imperial College
    Organizer
    Faculty of Mathematics and Computer Science
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    Lecture
  • Date:13TuesdayDecember 2011

    קפה מדע

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    Time
    19:30 - 21:00
    Organizer
    Science for All Unit
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    Lecture
  • Date:13TuesdayDecember 2011

    Russian Show with singer Sergei Zaharrob

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    Time
    20:00 - 20:00
    Location
    Michael Sela Auditorium
    Contact
    Cultural Events
  • Date:14WednesdayDecember 2011

    Forum on Mathematical Principles in Biology

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    Time
    10:00 - 11:00
    Title
    Geometry of the Biological Compromise
    Location
    Arthur and Rochelle Belfer Building for Biomedical Research
    LecturerProf. Uri Alon
    Organizer
    Department of Molecular Cell Biology
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    Lecture
  • Date:14WednesdayDecember 2011

    Super-eccentric hot Jupiters and High energy emission from Supernovae

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    Time
    11:15 - 11:15
    Location
    Edna and K.B. Weissman Building of Physical Sciences
    LecturerProf. Boaz Katz
    Princeton IAS
    Organizer
    Nella and Leon Benoziyo Center for Astrophysics
    Contact
    AbstractShow full text abstract about They are out there, they are detectable and they are crucial...»
    They are out there, they are detectable and they are crucial
    theoretically. Detection of highly eccentric (e>~ 0.99) extra-solar
    gas-giants with periastron of a few stellar radii may answer the
    question of how hot Jupiters get so close to their host star. Detection
    of early high energy emission (soft X-ray to gamma-rays) at the onset of
    Supernovae will allow us to measure key properties of the exploding
    star, including its pre-explosion radius and the blast wave velocity.
    Lecture
  • Date:14WednesdayDecember 2011

    An integrated information theory of consciousness

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    Time
    14:30 - 14:30
    Location
    Dolfi and Lola Ebner Auditorium
    LecturerProf. Giulio Tononi
    Department of Psychiatry University of Wisconsin
    Organizer
    Department of Brain Sciences
    Contact
    AbstractShow full text abstract about Over the past decades, studies have investigated the neural ...»
    Over the past decades, studies have investigated the neural correlates of consciousness with increasing precision. However, why experience is generated by the cortex and not the cerebellum, why it fades during certain stages of sleep and returns in others, or why some cortical areas endow experience with colors and others with sound, remains unexplained. Moreover, key questions remain unanswered. For example, how much consciousness is there when only a few brain 'islands' remain active? How much during sleepwalking or psychomotor seizures? Are newborns conscious, and to what extent?
    Are animals conscious, how much, and in which way? Can a conscious machine be built? To address such questions, empirical observations need to be complemented by a principled theoretical approach. The information integration theory (IIT) has several related aims: to characterize, starting from phenomenology, what consciousness is and how each experience is structured; to account for several neurobiological observations about its neural substrate; and to develop measures of consciousness that can be applied, at least in principles, to humans, animals, and machines.
    Lecture
  • Date:14WednesdayDecember 2011

    "The Revolutionaries" - Israel Camerata Jerusalem

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    Time
    20:30 - 20:30
    Title
    Season 2011/12
    Location
    Michael Sela Auditorium
    Contact
    Cultural Events

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