981 resultados para Printing, Hebrew.


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Asymmetrical flow field-flow fractionation (AsFlFFF) was constructed, and its applicability to industrial, biochemical, and pharmaceutical applications was studied. The effect of several parameters, such as pH, ionic strength, temperature and the reactants mixing ratios on the particle sizes, molar masses, and the formation of aggregates of macromolecules was determined by AsFlFFF. In the case of industrial application AsFlFFF proved to be a valuable tool in the characterization of the hydrodynamic particle sizes, molar masses and phase transition behavior of various poly(N-isopropylacrylamide) (PNIPAM) polymers as a function of viscosity and phase transition temperatures. The effect of sodium chloride salt and the molar ratio of cationic and anionic polyelectrolytes on the hydrodynamic particle sizes of poly (methacryloxyethyl trimethylammonium chloride) and poly (ethylene oxide)-block-poly (sodium methacrylate) and their complexes were studied. The particle sizes of PNIPAM polymers, and polyelectrolyte complexes measured by AsFlFFF were in agreement with those obtained by dynamic light scattering. The molar masses of PNIPAM polymers obtained by AsFlFFF and size exclusion chromatography agreed also well. In addition, AsFlFFF proved to be a practical technique in thermo responsive behavior studies of polymers at temperatures up to about 50 oC. The suitability of AsFlFFF for biological, biomedical, and pharmaceutical applications was proved, upon studying the lipid-protein/peptide interactions, and the stability of liposomes at different temperatures. AsFlFFF was applied to the studies on the hydrophobic and electrostatic interactions between cytochrome c (a basic peripheral protein) and anionic lipid, and oleic acid, and sodium dodecyl sulphate surfactant. A miniaturized AsFlFFF constructed in this study was exploited in the elucidation of the effect of copper (II), pH, ionic strength, and vortexing on the particle sizes of low-density lipoproteins.

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This collection contains the papers of Ernest W. Michel, Holocaust Survivor Journalist and public speaker,including clippings of newspaper articles written by and about Michel, correspondence between Michel and many important Jewish and political figures and autograph files, which Michel collected. Many of these files concern Michel’s Holocaust experiences, speaking engagements, the World Gathering of Jewish Holocaust Survivors, and Michel’s work with the United Jewish Appeal.

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The manuscript contains letters written by Samuel Kahn to his daughter in the USA between 1934 and 1937.

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Fate of the Jewish physician Karl Goldberg, novel written in 1944. Novel is only partially autobiographical.

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The world is facing an energy crisis due to exponential population growth and limited availability of fossil fuels. Over the last 20 years, carbon, one of the most abundant materials found on earth, and its allotrope forms such as fullerenes, carbon nanotubes and graphene have been proposed as sources of energy generation and storage because of their extraordinary properties and ease of production. Various approaches for the synthesis and incorporation of carbon nanomaterials in organic photovoltaics and supercapacitors have been reviewed and discussed in this work, highlighting their benefits as compared to other materials commonly used in these devices. The use of fullerenes, carbon nanotubes and graphene in organic photovoltaics and supercapacitors is described in detail, explaining how their remarkable properties can enhance the efficiency of solar cells and energy storage in supercapacitors. Fullerenes, carbon nanotubes and graphene have all been included in solar cells with interesting results, although a number of problems are still to be overcome in order to achieve high efficiency and stability. However, the flexibility and the low cost of these materials provide the opportunity for many applications such as wearable and disposable electronics or mobile charging. The application of carbon nanotubes and graphene to supercapacitors is also discussed and reviewed in this work. Carbon nanotubes, in combination with graphene, can create a more porous film with extraordinary capacitive performance, paving the way to many practical applications from mobile phones to electric cars. In conclusion, we show that carbon nanomaterials, developed by inexpensive synthesis and process methods such as printing and roll-to-roll techniques, are ideal for the development of flexible devices for energy generation and storage – the key to the portable electronics of the future.

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7 coin set. 1 Agora; 5 Agorot; 10 Agorot; 25 Agorot; 1/2 Lira; 1 Lira; 5 Lirot. The motifs are inspired by ancient Hebrew coins which feature the seven species mentioned in the Bible and by vessels from the Temple of Jerusalem.

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6 coin set. 1 Agora; 5 Agorot; 10 Agorot; 1/2 New Sheqel; 1 New Sheqel; 5 New Sheqel. The motifs are inspired by ancient Hebrew coins and seals with biblical emblems, and by ornaments from the Holy Temple.

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3 banknotes of Israel. 50, 100, and 500 Sheqalim. 50 Sheqalim: Obverse: Portrait of David Ben-Gurion. Reverse: Golden Gate in the Old City of Jerusalem. This bill is predominantly creme, grey and brown coloured. 100 Sheqalim: Obverse: Portrait of Ze'ev Jabotinsky, background- "Shuni" inn near Binyamina. Reverse: Herod's Gate in Jerusalem. The main colouring of the bill is orange-brown. 500 Sheqalim: Obverse: Portrait of Baron Edmond de Rothschild, background-vineyard workers. Reverse: Wine shrub, and in Hebrew alphabetical order, the names of the 44 settlements the Baron founded or helped to found. The colouring is red.

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Obverse: Design of head of David Ben-Gurion, emblem of the State of Israel. Reverse: Emblem of that State of Israel, nominative value of the coin written in Hebrew.

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Obverse: Design of head of David Ben Gurion. Reverse: Emblem of the State of Israel, value of the coin written in Hebrew.

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Obverse: A likeness of Einstein according to the sculpture seen in the entrance to the Mathematics Institute of the Hebrew University of Jerusalem. Reverse: A mathematical formula in Einstein's handwriting.

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Obverse: Stylized inscription in Hebrew. Reverse: Inscription in English.

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Obverse: 1/2 Sheqel silver coin. Reverse: The mountains at Qumran, inscription from the scrolls.

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Obverse: 1 Sheqel silver coin, emblem of the State of Israel. Reverse: Mountains in Qumran, in the background inscription from the scrolls.