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אפריל 27, 2017

  • Date:20חמישיאפריל 2023

    Drug delivery systems in the treatment of cancer: Fundamentals and clinical applications

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    שעה
    14:00 - 15:00
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהDr. Avi Schroeder
    Associate Professor of Chemical Engineering, Technion – Israel Institute of Technology, Haifa
    מארגן
    המכון לחקר הטיפול בסרטן עש דואק
    צרו קשר
    הרצאה
  • Date:23ראשוןאפריל 2023

    Immunology and Regenerative Biology Colloquium

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    שעה
    11:00 - 12:00
    כותרת
    "RNA-targeting opportunities in age-related disorders"
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהProf. Fabrizio d'Adda di Fagagna
    IFOM ETS – The AIRC Institute of Molecular Oncology, Milan, Italy & IGM, Institute of Molecular Genetics - CNR (National Research Council), Pavia, Italy
    מארגן
    המחלקה לאימונולוגיה ורגנרציה ביולוגית
    צרו קשר
    הרצאה
  • Date:23ראשוןאפריל 2023

    The Grass is Greener on The Other Side: Uncovering the Regulatory Networks of Photosynthesis

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    שעה
    11:30 - 12:30
    מיקום
    בניין לביוכימיה על שם נלה וליאון בנוזיו
    מרצהDr. Moshe Kafri
    Princeton University
    מארגן
    המחלקה למדעי הצמח והסביבה
    צרו קשר
    הרצאה
  • Date:23ראשוןאפריל 2023

    Model Farm for Sustainable Agriculture in Newe Ya’ar Research Center – Challenges and Opportunities

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    שעה
    13:00 - 14:00
    כותרת
    SAERI - Sustainability and Energy Research Initiative Seminar Series
    מיקום
    בניין לביוכימיה על שם נלה וליאון בנוזיו
    מרצהProf. Hanan Eizenberg
    Newe Ya'ar Research Center (ARO) Volcani Institute, Israel
    מארגן
    בית הספר למחקר - מכון ויצמן למדע
    צרו קשר
    הרצאה
  • Date:23ראשוןאפריל 2023

    "Ironing out the details of mitochondrial translation"

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    שעה
    14:00 - 15:30
    מיקום
    בניין לביוכימיה על שם נלה וליאון בנוזיו
    מרצהDr. Tslil Ast
    Dept. of Biomolecular Sciences-WIS
    מארגן
    המחלקה למדעים ביומולקולריים
    צרו קשר
    הרצאה
  • Date:24שניאפריל 2023

    Artificial Metalloenzymes for in vivo Catalysis: Challenges and Opportunities

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    שעה
    11:00 - 12:15
    מיקום
    אולם הרצאות ע"ש גרהרד שמידט
    מרצהProf. Thomas R. Ward
    Department of Chemistry, University of Basel
    מארגן
    הפקולטה לכימיה
    דף בית
    צרו קשר
    תקצירShow full text abstract about Artificial metalloenzymes (ArMs) have attracted increasing a...»
    Artificial metalloenzymes (ArMs) have attracted increasing attention in the past two
    decades as attractive alternatives to either homogeneous catalysts or enzymes.
    Artificial metalloenzymes result from anchoring a catalytically competent abiotic metal
    cofactor within a host protein, Figure. The resulting ArMs combine attractive features
    of both homogeneous- and bio-catalysts. Importantly, they enable access to new-tonature
    reactions in a cellular environment.
    Relying on a supramolecular anchoring of an organometallic cofactor in various
    protein scaffolds, we have optimized the performance of ArMs for sixteen different
    reactions, Figure.
    Following a general introduction to the underlying principles of ArMs, this talk will
    highlight our recent progress in engineering and evolving such hybrid catalysts for
    olefin metathesis, C–H activation, hydroamination, and allylic substitution. A
    particular emphasis will be set on performing catalysis in a cellular environment.
    סימפוזיונים
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

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    שעה
    11:15 - 12:45
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 12:45
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

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    שעה
    11:15 - 13:00
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 12:45
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 12:30
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 12:30
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 13:00
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Foundations of Computer Science Seminar

    More information
    שעה
    11:15 - 13:00
    כותרת
    A distribution testing oracle separation between QMA and QCMA
    מיקום
    בניין יעקב זיסקינד
    מרצהChinmay Nirkhe
    IBM Watson
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about It is a long-standing open question in quantum complexity th...»
    It is a long-standing open question in quantum complexity theory whether the definition of non-deterministic quantum computation requires quantum witnesses (
    הרצאה
  • Date:24שניאפריל 2023

    Approaching non-equilibrium: from machine learning to non-adiabatic dynamics

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    שעה
    14:00 - 15:00
    מיקום
    בניין פרלמן למדעי הכימיה
    מרצהDr. Sergei Tretiak
    Theoretical Division & Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory
    מארגן
    המחלקה לכימיה מולקולרית ולמדע חומרים
    צרו קשר
    תקצירShow full text abstract about Machine learning (ML) became a premier tool for modeling che...»
    Machine learning (ML) became a premier tool for modeling chemical processes and materials properties. For instance, ML interatomic potentials have become an efficient alternative to computationally expensive quantum chemistry simulations. In the case of reactive chemistry designing high-quality training data sets is crucial to overall model accuracy. To address this challenge, we develop a general reactive ML interatomic potential through unbiased active learning with an atomic configuration sampler inspired by nanoreactor molecular dynamics. The resulting model is then applied to study five distinct condensed-phase reactive chemistry systems: carbon solid-phase nucleation, graphene ring formation from acetylene, biofuel additives, combustion of methane and the spontaneous formation of glycine from early-earth small molecules. In all cases, the results closely match experiment and/or previous studies using traditional model chemistry methods. Altogether, explosive growth of user-friendly ML frameworks, designed for chemistry, demonstrates that the field is evolving towards physics-based models augmented by data science. I will also overview some applications of Non-adiabatic EXcited-state Molecular Dynamics (NEXMD) framework developed at several institutions. The NEXMD code is able to simulate tens of picoseconds photoinduced dynamics in large molecular systems. As an application, I will exemplify ultrafast coherent excitonic dynamics guided by intermolecular conical intersections. Here X-ray Raman signals are able to sensitively monitor the coherence evolution. The observed coherences have vibronic nature that survives multiple conical intersection passages for several hundred femtoseconds at room temperature. These spectroscopic signals are possible to measure at XFEL facilities and our modeling results allow us to understand and potentially manipulate excited state dynamics and energy transfer pathways toward optoelectronic applications.

    References:
    1. N. Fedik, R. Zubatyuk, N. Lubbers, J. S. Smith, B. Nebgen, R. Messerly, Y. W. Li, M. Kulichenko, A. I. Boldyrev, K. Barros, O. Isayev, and S. Tretiak “Extending machine learning beyond interatomic potentials for predicting molecular properties” Nature Rev. Chem. 6, 653 (2022).
    2. G. Zhou, N. Lubbers, K. Barros, S. Tretiak, B. Nebgen, “Deep Learning of Dynamically Responsive Chemical Hamiltonians with Semi-Empirical Quantum Mechanics,” Proc. Nat. Acad. Sci. USA, 119 e2120333119 (2022)
    3. S. Zhang, M. Z. Makos, R. B. Jadrich, E. Kraka, B. T. Nebgen, S. Tretiak, O. Isayev, N. Lubbers, R. A. Messerly, and J. S. Smith “Exploring the frontiers of chemistry with a general reactive machine learning potential,” (2023) https://chemrxiv.org/engage/chemrxiv/article-details/6362d132ca86b84c77ce166c
    4. A. De Sio, E. Sommer, X. T. Nguyen, L. Gross, D. Popović, B. Nebgen, S. Fernandez-Alberti, S. Pittalis, C. A. Rozzi, E. Molinari, E. Mena-Osteritz, P. Bäuerle, T. Frauenheim, S. Tretiak, C. Lienau, “Intermolecular conical intersections in molecular aggregates” Nature Nanotech. 16, 63 – 68 (2021).
    5. V. M. Freixas, D. Keefer, S. Tretiak, S. Fernandez-Alberti, and S. Mukamel, “Ultrafast coherent photoexcited dynamics in a trimeric dendrimer probed by X-ray stimulated-Raman signals,” Chem. Sci., 13, 6373 – 6384 (2022).

    הרצאה
  • Date:27חמישיאפריל 2023

    Activation and arrest of thermal pressurization in localized faults

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    שעה
    11:00 - 12:00
    מיקום
    בניין משפחת זוסמן
    מרצהNir Badt
    The University of Pennsylvania
    מארגן
    המחלקה למדעי כדור הארץ וכוכבי הלכת
    צרו קשר
    תקצירShow full text abstract about Thermal Pressurization (TP) is expected to be a dominant fri...»
    Thermal Pressurization (TP) is expected to be a dominant frictional weakening mechanism during earthquakes. However, due to experimental limitations there is a lack of direct evidence for the activation of TP in controlled laboratory conditions and most of our knowledge is derived from field studies and theoretical predictions. We present experiments performed by a rotary-shear apparatus where TP is activated in localized faults in Frederick diabase under constant normal stress of 50 MPa, confining pressure of 45 MPa and initial pore water pressure of 25 MPa. We show that by changing the permeability of the host rock we can control the shear stress drop during a TP event in the experimental fault. The TP events are short-lived in bare-surface faults as the opening of existing fractures around the fault plane drains the excess pore fluid. Wider, gouge-filled faults show more persistent frictional weakening, but at a slower rate, which is attributed to the compressibility of the gouge. In addition, we test the effects of transient fault dilation on the duration of a TP event through an expansion of the prevailing TP model, using a one-dimensional numerical simulation. We conclude that dynamic changes to the hydraulic diffusivity around the fault plane and persistent fault dilation, due to geometrical irregularities, are the most likely mechanisms to arrest TP during an earthquake.
    הרצאה
  • Date:27חמישיאפריל 2023

    Vision and AI

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    שעה
    12:15 - 13:15
    כותרת
    SpaText: Spatio-Textual Representation for Controllable Image Generation
    מיקום
    בניין יעקב זיסקינד
    מרצהOmri Avrahami
    HUJI
    מארגן
    המחלקה למדעי המחשב ומתמטיקה שימושית
    צרו קשר
    תקצירShow full text abstract about Recent text-to-image diffusion models are able to generate c...»
    Recent text-to-image diffusion models are able to generate convincing results of unprecedented quality. However, it is nearly impossible to control the shapes of different regions/objects or their layout in a fine-grained fashion. Previous attempts to provide such controls were hindered by their reliance on a fixed set of labels. To this end, we present SpaText - a new method for text-to-image generation using open-vocabulary scene control. In addition to a global text prompt that describes the entire scene, the user provides a segmentation map where each region of interest is annotated by a free-form natural language description. Due to lack of large-scale datasets that have a detailed textual description for each region in the image, we choose to leverage the current large-scale text-to-image datasets and base our approach on a novel CLIP-based spatio-textual representation, and show its effectiveness on two state-of-the-art diffusion models: pixel-based and latent-based. In addition, we show how to extend the classifier-free guidance method in diffusion models to the multi-conditional case and present an alternative accelerated inference algorithm. Finally, we offer several automatic evaluation metrics and use them, in addition to FID scores and a user study, to evaluate our method and show that it achieves state-of-the-art results on image generation with free-form textual scene control.

    הרצאה
  • Date:27חמישיאפריל 2023

    Unraveling Heterotypic Cell Interactions and Cell Identity Transitions in Chronic Inflammation-Driven Intrahepatic Cholangiocarcinoma

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    שעה
    14:00 - 15:00
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהProf. Eli Pikarsky
    The Lautenberg Center for Immunology and Cancer Research, The Hebrew University of Jerusalem
    מארגן
    המכון לחקר הטיפול בסרטן עש דואק
    צרו קשר
    הרצאה
  • Date:30ראשוןאפריל 2023

    Oceanic Internal Gravity Waves: sources, sinks, and interactions with the eddy field. 

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    שעה
    11:00 - 12:00
    מיקום
    בניין משפחת זוסמן
    מרצהRoy Barkan
    Tel Aviv University
    מארגן
    המחלקה למדעי כדור הארץ וכוכבי הלכת
    צרו קשר
    תקצירShow full text abstract about The global oceanic overturning circulation and the transport...»
    The global oceanic overturning circulation and the transport of heat and dissolved gases are strongly controlled by upper ocean turbulent mixing that is driven by the breaking of internal gravity waves (IWs). Understanding the life cycle of oceanic IWs, from generation to dissipation, is therefore crucial for improving the representation of ocean mixing in climate models, which do not resolve the IW field.  Oceanic IWs are observed to have a continuous energy distribution across spatial and temporal scales – an internal wave continuum – despite being forced primarily at near-inertial and tidal frequencies at large scales. The formation of the IW continuum and the associated energy transfer to dissipative scales have been traditionally attributed to wave-wave interactions and to Doppler shifting of wave frequencies by currents. Here, we provide evidence from realistic numerical simulations that oceanic eddies rapidly diffuse storm-forced wave energy across spatiotemporal scales, thereby playing a dominant role in the formation of the IW continuum and the corresponding spatiotemporal distribution of energy dissipation. We further demonstrate that winds can play an important role in damping oceanic IWs through current feedback.  This results in a substantial reduction in wind power input at near inertial frequencies and a net energy sink for internal tides.
    הרצאה
  • Date:30ראשוןאפריל 2023

    Soft Matter and Biomaterials Seminar: Cytoskeletal dynamics generate active liquid-liquid phase separation.

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    שעה
    11:00 - 12:00
    מיקום
    בניין פרלמן למדעי הכימיה
    מרצהDr. Alexandra Tayar
    Dept. Chemical and Biological Physics, WIS
    מארגן
    המחלקה לכימיה מולקולרית ולמדע חומרים
    צרו קשר
    תקצירShow full text abstract about Liquid-Liquid phase separation (LLPS) has been of fundamenta...»
    Liquid-Liquid phase separation (LLPS) has been of fundamental importance in the assembly of thermally driven materials and has recently emerged as an organizational principle for living systems. Biological phase separation is driven out of equilibrium through complex enzyme composition, chemical reactions, and mechanical activity, which reveals a gap in our understanding of this fundamental phenomenon. Here we study the impact of mechanical activity on LLPS. We design a DNA-based LLPS system coupled to flows through molecular motors and a cytoskeleton network. Active stress at an interface of a liquid droplet suppressed phase separation and stabilized a single-phase regime well beyond the equilibrium binodal curve. The phase diagram out of equilibrium revealed a 3-dimensional phase space that depends on temperature and local molecular activity. Similar dynamics and structures are observed in simulations, suggesting that suppression of liquid phase separation by active stress is a generic feature of liquid phase separation.
    הרצאה

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