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The limits of Cushitic
(1980)
Gegenstände der Untersuchung sind genetische Gliederung und historische Rekonstruktion im Kuschitischen. Nach dem Kriterium gemeinsamer sprachlicher Innovationen sind folgende Schlüsse möglich: (1) Ik ist keine kuschitische, nicht einmal eine afroasiatische Sprache. (2) Es ist durchaus nicht sicher, daß die Burji-Sidamo-Gruppe (Rift-Valley-Kuschitisch) mit dem Tieflandkuschitischen einen genetischen Zweig - das Ostkuschitische - bildet. Die Burji-Sidamo-Gruppe kannte am engsten mit dem Agaw verwandt sein und mit ihm einen anderen genetischen Zweig - das Hochlandkuschitische - bilden. (3) Die Iraqw-Gruppe - und mit ihr vermutlich das gesamte Südkuschitische - gehört zum Tieflandkuschitischen und bildet keinen selbständigen Zweig des Kuschitischen. (4) Obwohl das Beja zweifellos eine afroasiatische Sprache ist, ist jedoch nicht zuverlässig bewiesen, daß es zum Kuschitischen gehört. Seine genaue Stellung zum Kuschitischen (dem Kuschitischen nächstverwandter Zweig oder nicht einmal dies?) bleibt noch zu klären. Die Erörterung und Beweisführung beruht auf Rekonstruktionen des Verbalsystems und der Kasus, auf einem Systemvergleich der Determinationselemente und der Genitivmorpheme sowie auf anderen syntaktischen und morphologischen Merkmalen. Auch einige Prinzipien der linguistischen Typologie wurden herangezogen. Es handelt sich um vorläufige Ergebnisse.
Proton emission in relativistic nuclear collisions is examined for events of low and high multiplicity, corresponding to large and small impact parameters. Peripheral reactions exhibit distributions of protons in agreement with spectator-participant decay modes. Central collisions of equal-size nuclei are dominated by the formation and decay of a fireball system. Central collisions of light projectiles with heavy targets exhibit an enhancement in sideward emission which is predicted by recent hydrodynamical calculations.
Inclusive energy spectra of protons, deuterons, and tritons were measured with a telescope of silicon and germanium detectors with a detection range for proton energies up to 200 MeV. Fifteen sets of data were taken using projectiles ranging from protons to 40Ar on targets from 27Al to 238U at bombarding energies from 240 MeV/nucleon to 2.1 GeV/nucleon. Particular attention was paid to the absolute normalization of the cross sections. For three previously reported reactions, He fragment cross sections have been corrected and are presented. To facilitate a comparison with theory the sum of nucleonic charges emitted as protons plus composite particles was estimated and is presented as a function of fragment energy per nucleon in the interval from 15 to 200 MeV/nucleon. For low-energy fragments at forward angles the protons account for only 25% of the nucleonic charges. The equal mass 40Ar plus Ca systems were examined in the center of mass. Here at 0.4 GeV/nucleon 40Ar plus Ca the proton spectra appear to be nearly isotropic in the center of mass over the region measured. Comparisons of some data with firestreak, cascade, and fluid dynamics models indicate a failure of the first and a fair agreement with the latter two. In addition, associated fast charged particle multiplicities (where the particles had energies larger than 25 MeV/nucleon) and azimuthal correlations were measured with an 80 counter array of plastic scintillators. It was found that the associated multiplicities were a smooth function of the total kinetic energy of the projectile. NUCLEAR REACTIONS U(20Ne,X), E / A=240 MeV/nucleon; U(40Ar,X), Ca(40Ar,X), U(20Ne,X), Au(20Ne,X), Ag(20Ne,X), Al(20Ne,X), U(4He,X), Al(4He,X), E / A=390 MeV/nucleon; U(40Ar,X), Ca(40Ar,X), U(20Ne,X), U(4He,X), U(p,X), E / A=1.04 GeV/nucleon; U(20Ne,X), E / A=2.1 GeV/nucleon; measured sigma (E, theta ), X=p,d,t.
In his magnum opus (Syntax and Semantics, Leiden 1978, henceforth: S&S) C.L. Ebeling makes a distinction between temporal gradation (pp 301-308 and 337-339) and temporal limitation (pp 311-315). In the case of temporal gradation “p , q”, the meaning “q” specifies the time during which the referent carries the mean-ing “p”.
In order to elucidate what species among so many kind of marine organisms are likely to be consmed Iargely by the balaenopterid whales, the existing evidence on the food habits of baleen whales is reviewed. To meet with this primary purpose the report was mainly focussed on to describe qualitative aspects of food species having been known to date from the notable whaling grounds over the world rather than documenting quantitative subjects. One of interesting facts noticed throughout the contribution was that there exists fairly intense diversity in the assembly of food species composition by regions such as; northern hemisphere vs. southern hemisphere, Pacific region vs. Atlantic region, inshore waters vs. offshore waters, embayed waters vs. open waters, where the former usually shows more diversed complexity than the latter. The fact however suggests that although the composition of food species locally varies over the various whaling grounds, the food organisms as taxonomical groups are very similar one another even in locally isolated whaIing grounds when the food organisms and their assemblies are considered by the family or genus basis. In this connection many evidences given in the text may suggest that the balaenopterid whales as a whole may substantially live on quite simply compositioned forage assembly in comparison with tremendous variety of organisms existing in the marine ecosystems. One of important aspects of the baleen whales food must be found in their characteristics of forming dense swarms, schools, and/or aggregations in the shallower enough layers to be fed by the whales. The present and past status of larger baleen whales as the mighty monarch through their evolutional pathways may entirely depend upon the spatial distribution pattern of possible food organisms, i.e. the animal aggregations.
In the present revision of Sabia the number of species has been reduced from 55 to 19, including two that are described as new. Below the specific level, a new subspecies and a new variety are described, whereas some new infra specific combinations have been made. Most of the reduced species have been included in the synonymy of S. campanulata, which consequently represents the most complex and most variable species of the genus. Next to a general key, some regional keys are given as on the one hand some widespread species are locally far less variable than taken over their whole area, on the other hand well-delimited species from different regions may be very uniform in some points.
I shall use the precise term 'interlinear morphemic translation (IMT) to designate the object of this study. [...] An IMT is a translation of a text in a language L1 to a string of elements taken from L2 where, ideally, each morpheme of the L1 text is rendered by a morpheme of L2 or a configuration of symbols representing its meaning and where the sequence of the units of the translation corresponds to the sequence of the morphemes which they render. [...] An IMT is needed whenever it is essential that the reader grasp the grammatical structure of the L1 text but is presumed to be so unfamiliar with L1 that he will not be able to do so merely with the aid of a normal translation and the context in which the text is cited. [...] The primary aim of an IMT is to make the grammatical structure of the L1 text transparent. The textual fluency of the IMT by standards of the L2 grammar is a subordinate aim at best.
Number 3 of Australasian Arachnology contains news and notes from the Australasian Arachnological Society. At present the aim of this society is that of other arachnological societies: to promote the study of arachnids, in our case especially Australasian arachnids. In time this aim may become more refined. The newsletter is intended as a means of communication between arachnologists-amateurs and professionals.