Sonia Delaunay and Simultanism

Experiment ◽  
2016 ◽  
Vol 22 (1) ◽  
pp. 107-116 ◽  
Author(s):  
Alexandre Vasiliev

The life and work of Sonia Delaunay (1885-1979), especially her clothing and textile designs as reflections of the theory of Simultanism, are the focus of this article. Also discussed are her works for the Ballets Russes and other theater companies, her commercial undertakings, the impact of her color theory on Russian artists such as Georgii Yakulov, and her connections with the Paris avant-gardists such as André Lhote and Tristan Tzara.

Author(s):  
Erwin Kessler

Arthur Segal was a Romanian artist born as Aron Sigalu to Jewish parents. He shifted his attention away from post-impressionist modernism around 1900 to focus on the radical avant-garde in the early 1920s, and then back to classicizing modernism in the 1940s. His work moved from traditional art-craft (painting, engraving) to modern and avant-garde practices (political engagement, teaching, curatorship, manifestos, theoretical writings, art-therapy). From 1892 to 1900 he studied in Berlin, Paris, and Munich. Segal was a student of Adolf Hölzel (founder of the art colony Neues Dachau), and much of his work was shaped by Hölzel’s color theory, where landscapes were formally structured as decorative grids rather than as phenomenal transcripts of ocular perception. In 1902–1903 he visited Italy and France, where he was influenced by the work of Vincent Van Gogh and Giovanni Segantini, whose naturalism and light-seeking divisionism he sought to appropriate in his own work. He exhibited with the Berliner Secession from 1909 onward, and co-founded the Neue Secession in 1910. Segal remained connected to the Romanian art scene, exhibiting with the TinerimeaArtistica group in 1910–1913. His 1910 Bucharest exhibition was heralded as ‘‘the first exhibition of modern art’’ in Romania (Segal 1974: 133). In 1914 Segal moved to Ascona, Switzerland, where he met Hans Arp, Hugo Ball, and Alexei Jawlensky, who were linked with the Monte Verita community. In 1916 Segal exhibited at Cabaret Voltaire alongside fellow Romanian Dadaists Tristan Tzara and Marcel Janco. In 1919 he joined the Novembergruppe, becoming one of its leaders.


Author(s):  
Ira Nadel

Mansfield and the world of the Ballets Russes, is the focus of this discussion of the importance of movement and dance for her writing and life. Incorporating aspects of Russian dance, especially its expressiveness, gesture and experimentation, into her prose becomes an important feature of her writing marked in part by the physical actions of her characters. Balancing the Chekhovian dispassion of her short stories was a vitality located in her incorporation of elements of the Ballets Russes which became, for a period, the intellectual and fashionable centre of London. Part of their originality was collaboration with dancers and choreographers working with set designers and musicians. The Ballets Russes also confirmed her own artistic efforts to unite novelty and tribalism, especially in her New Zealand stories. Her co-editing Rhythm became another venue for her support of the innovative work produced by Diaghilev, choreographed by Massine, costumed by Léon Bakst and highlighted by sets designed by Cocteau and Picasso. Sharing the impact of the Ballets Russes with high profile admirers, Mansfield applied their originality to her own efforts recognising that their overall impact was not technique alone but the expression of technique into idea as the Times wrote in June 1911.


2020 ◽  
Author(s):  
Ali Hassaan Mughal

Color psychology and Color theory give us insight about the sensation colors induce i.e. the stimulus. These sensations induce feelings and lead them to behavior in humans. In design process a designer needs to understand what feelings the color palette would induce for the audience. If we can work on helping the designers reflect upon the feelings conveyed by the color palette used in the design to the audience. It can help the designer make audience specific designs and would enhance the impact of design.


1962 ◽  
Vol 14 ◽  
pp. 415-418
Author(s):  
K. P. Stanyukovich ◽  
V. A. Bronshten

The phenomena accompanying the impact of large meteorites on the surface of the Moon or of the Earth can be examined on the basis of the theory of explosive phenomena if we assume that, instead of an exploding meteorite moving inside the rock, we have an explosive charge (equivalent in energy), situated at a certain distance under the surface.


1962 ◽  
Vol 14 ◽  
pp. 169-257 ◽  
Author(s):  
J. Green

The term geo-sciences has been used here to include the disciplines geology, geophysics and geochemistry. However, in order to apply geophysics and geochemistry effectively one must begin with a geological model. Therefore, the science of geology should be used as the basis for lunar exploration. From an astronomical point of view, a lunar terrain heavily impacted with meteors appears the more reasonable; although from a geological standpoint, volcanism seems the more probable mechanism. A surface liberally marked with volcanic features has been advocated by such geologists as Bülow, Dana, Suess, von Wolff, Shaler, Spurr, and Kuno. In this paper, both the impact and volcanic hypotheses are considered in the application of the geo-sciences to manned lunar exploration. However, more emphasis is placed on the volcanic, or more correctly the defluidization, hypothesis to account for lunar surface features.


1997 ◽  
Vol 161 ◽  
pp. 197-201 ◽  
Author(s):  
Duncan Steel

AbstractWhilst lithopanspermia depends upon massive impacts occurring at a speed above some limit, the intact delivery of organic chemicals or other volatiles to a planet requires the impact speed to be below some other limit such that a significant fraction of that material escapes destruction. Thus the two opposite ends of the impact speed distributions are the regions of interest in the bioastronomical context, whereas much modelling work on impacts delivers, or makes use of, only the mean speed. Here the probability distributions of impact speeds upon Mars are calculated for (i) the orbital distribution of known asteroids; and (ii) the expected distribution of near-parabolic cometary orbits. It is found that cometary impacts are far more likely to eject rocks from Mars (over 99 percent of the cometary impacts are at speeds above 20 km/sec, but at most 5 percent of the asteroidal impacts); paradoxically, the objects impacting at speeds low enough to make organic/volatile survival possible (the asteroids) are those which are depleted in such species.


1997 ◽  
Vol 161 ◽  
pp. 189-195
Author(s):  
Cesare Guaita ◽  
Roberto Crippa ◽  
Federico Manzini

AbstractA large amount of CO has been detected above many SL9/Jupiter impacts. This gas was never detected before the collision. So, in our opinion, CO was released from a parent compound during the collision. We identify this compound as POM (polyoxymethylene), a formaldehyde (HCHO) polymer that, when suddenly heated, reformes monomeric HCHO. At temperatures higher than 1200°K HCHO cannot exist in molecular form and the most probable result of its decomposition is the formation of CO. At lower temperatures, HCHO can react with NH3 and/or HCN to form high UV-absorbing polymeric material. In our opinion, this kind of material has also to be taken in to account to explain the complex evolution of some SL9 impacts that we observed in CCD images taken with a blue filter.


1997 ◽  
Vol 161 ◽  
pp. 179-187
Author(s):  
Clifford N. Matthews ◽  
Rose A. Pesce-Rodriguez ◽  
Shirley A. Liebman

AbstractHydrogen cyanide polymers – heterogeneous solids ranging in color from yellow to orange to brown to black – may be among the organic macromolecules most readily formed within the Solar System. The non-volatile black crust of comet Halley, for example, as well as the extensive orangebrown streaks in the atmosphere of Jupiter, might consist largely of such polymers synthesized from HCN formed by photolysis of methane and ammonia, the color observed depending on the concentration of HCN involved. Laboratory studies of these ubiquitous compounds point to the presence of polyamidine structures synthesized directly from hydrogen cyanide. These would be converted by water to polypeptides which can be further hydrolyzed to α-amino acids. Black polymers and multimers with conjugated ladder structures derived from HCN could also be formed and might well be the source of the many nitrogen heterocycles, adenine included, observed after pyrolysis. The dark brown color arising from the impacts of comet P/Shoemaker-Levy 9 on Jupiter might therefore be mainly caused by the presence of HCN polymers, whether originally present, deposited by the impactor or synthesized directly from HCN. Spectroscopic detection of these predicted macromolecules and their hydrolytic and pyrolytic by-products would strengthen significantly the hypothesis that cyanide polymerization is a preferred pathway for prebiotic and extraterrestrial chemistry.


Author(s):  
Lucien F. Trueb

Crushed and statically compressed Madagascar graphite that was explosively shocked at 425 kb by means of a planar flyer-plate is characterized by a black zone extending for 2 to 3 nun below the impact plane of the driver. Beyond this point, the material assumes the normal gray color of graphite. The thickness of the black zone is identical with the distance taken by the relaxation wave to overtake the compression wave.The main mechanical characteristic of the black material is its great hardness; steel scalpels and razor blades are readily blunted during attempts to cut it. An average microhardness value of 95-3 DPHN was obtained with a 10 kg load. This figure is a minimum because the indentations were usually cracked; 14.8 DPHN was measured in the gray zone.


Author(s):  
Sarah A. Luse

In the mid-nineteenth century Virchow revolutionized pathology by introduction of the concept of “cellular pathology”. Today, a century later, this term has increasing significance in health and disease. We now are in the beginning of a new era in pathology, one which might well be termed “organelle pathology” or “subcellular pathology”. The impact of lysosomal diseases on clinical medicine exemplifies this role of pathology of organelles in elucidation of disease today.Another aspect of cell organelles of prime importance is their pathologic alteration by drugs, toxins, hormones and malnutrition. The sensitivity of cell organelles to minute alterations in their environment offers an accurate evaluation of the site of action of drugs in the study of both function and toxicity. Examples of mitochondrial lesions include the effect of DDD on the adrenal cortex, riboflavin deficiency on liver cells, elevated blood ammonia on the neuron and some 8-aminoquinolines on myocardium.


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