scholarly journals On Strategy and Operations: A Short Insight into Military History

2013 ◽  
Vol 22 (1) ◽  
pp. 141-148
Author(s):  
Ján Spišák
2020 ◽  
pp. 13-31
Author(s):  
Roy K. Gibson

Modern biographies of ancient individuals focus on emperors and generals, as a form of political or military history. A biography of a ‘private’ individual like Pliny raises more urgently the question of the distorting effects of our biographical norms. Modern biography encourages the recreation of a ‘unique individual’, insight into the effects of childhood, or the reconstruction of a rich inner life. Approaches of this sort are not suited to Pliny: he was not interested in the ‘interiority’ found in Catullus or Augustine. Pliny’s individuality can be captured by working along the grain of the Letters: by focusing on the range of locales in which he lived, worked, and owned properties. No Roman writer, not even Vergil, ties his identity to the regions of Italy more successfully than Pliny. This approach is suited to the episodic nature both of Pliny’s own life and of the evidence available.


2021 ◽  
Author(s):  
David Horner

In Strategy and Command, David Horner provides an important insight into the strategic decisions and military commanders who shaped Australia's army history from the Boer War to the evolution of the command structure for the Australian Defence Force in the 2000s. He examines strategic decisions such as whether to go to war, the nature of the forces to be committed to the war, where the forces should be deployed and when to reduce the Australian commitment. The book also recounts decisions made by commanders at the highest level, which are passed on to those at the operational level, who are then required to produce their own plans to achieve the government's aims through military operations. Strategy and Command is a compilation of research and writing on military history by one of Australia's pre-eminent military historians. It is a crucial read for anyone interested in Australia's involvement in 20th-century wars.


2013 ◽  
Vol 72 (2) ◽  
pp. 317-352 ◽  
Author(s):  
Bernhard Chiari

Abstract Using the example of the Provincial Reconstruction Team (PRT) in Kunduz, the paper explores the capabilities of military history to contribute to current debates on the change of German Military- and Security policy by providing studies on the »army on operations«. Based on official sources, which the German MoD made generally accessible for researchers of the MGFA/ZMSBw in 2011, the author analyzes the Bundeswehr’s presence in Kunduz between 2003 and 2012. He critically assesses, to what extent the Bundeswehr - aside from supply, logistics and force protection - actually did produce security and stability in Afghanistan. Documents and interviews give an insight into how conceptions of conflict resolution and Peace Building, based on lessons learned on the Balkans, interacted with the experiences made in Northern Afghanistan, but failed to prevent the spread of the Taliban-movement. Field reports, war diaries and other sources reflect the complex interdependency between the troops in the field, higher ISAF commands, and the responsible military staffs in Germany.


1966 ◽  
Vol 24 ◽  
pp. 322-330
Author(s):  
A. Beer

The investigations which I should like to summarize in this paper concern recent photo-electric luminosity determinations of O and B stars. Their final aim has been the derivation of new stellar distances, and some insight into certain patterns of galactic structure.


1984 ◽  
Vol 75 ◽  
pp. 461-469 ◽  
Author(s):  
Robert W. Hart

ABSTRACTThis paper models maximum entropy configurations of idealized gravitational ring systems. Such configurations are of interest because systems generally evolve toward an ultimate state of maximum randomness. For simplicity, attention is confined to ultimate states for which interparticle interactions are no longer of first order importance. The planets, in their orbits about the sun, are one example of such a ring system. The extent to which the present approximation yields insight into ring systems such as Saturn's is explored briefly.


Author(s):  
D. F. Blake ◽  
L. F. Allard ◽  
D. R. Peacor

Echinodermata is a phylum of marine invertebrates which has been extant since Cambrian time (c.a. 500 m.y. before the present). Modern examples of echinoderms include sea urchins, sea stars, and sea lilies (crinoids). The endoskeletons of echinoderms are composed of plates or ossicles (Fig. 1) which are with few exceptions, porous, single crystals of high-magnesian calcite. Despite their single crystal nature, fracture surfaces do not exhibit the near-perfect {10.4} cleavage characteristic of inorganic calcite. This paradoxical mix of biogenic and inorganic features has prompted much recent work on echinoderm skeletal crystallography. Furthermore, fossil echinoderm hard parts comprise a volumetrically significant portion of some marine limestones sequences. The ultrastructural and microchemical characterization of modern skeletal material should lend insight into: 1). The nature of the biogenic processes involved, for example, the relationship of Mg heterogeneity to morphological and structural features in modern echinoderm material, and 2). The nature of the diagenetic changes undergone by their ancient, fossilized counterparts. In this study, high resolution TEM (HRTEM), high voltage TEM (HVTEM), and STEM microanalysis are used to characterize tha ultrastructural and microchemical composition of skeletal elements of the modern crinoid Neocrinus blakei.


Author(s):  
Peter Sterling

The synaptic connections in cat retina that link photoreceptors to ganglion cells have been analyzed quantitatively. Our approach has been to prepare serial, ultrathin sections and photograph en montage at low magnification (˜2000X) in the electron microscope. Six series, 100-300 sections long, have been prepared over the last decade. They derive from different cats but always from the same region of retina, about one degree from the center of the visual axis. The material has been analyzed by reconstructing adjacent neurons in each array and then identifying systematically the synaptic connections between arrays. Most reconstructions were done manually by tracing the outlines of processes in successive sections onto acetate sheets aligned on a cartoonist's jig. The tracings were then digitized, stacked by computer, and printed with the hidden lines removed. The results have provided rather than the usual one-dimensional account of pathways, a three-dimensional account of circuits. From this has emerged insight into the functional architecture.


Author(s):  
J. J. Laidler ◽  
B. Mastel

One of the major materials problems encountered in the development of fast breeder reactors for commercial power generation is the phenomenon of swelling in core structural components and fuel cladding. This volume expansion, which is due to the retention of lattice vacancies by agglomeration into large polyhedral clusters (voids), may amount to ten percent or greater at goal fluences in some austenitic stainless steels. From a design standpoint, this is an undesirable situation, and it is necessary to obtain experimental confirmation that such excessive volume expansion will not occur in materials selected for core applications in the Fast Flux Test Facility, the prototypic LMFBR now under construction at the Hanford Engineering Development Laboratory (HEDL). The HEDL JEM-1000 1 MeV electron microscope is being used to provide an insight into trends of radiation damage accumulation in stainless steels, since it is possible to produce atom displacements at an accelerated rate with 1 MeV electrons, while the specimen is under continuous observation.


Author(s):  
John R. Devaney

Occasionally in history, an event may occur which has a profound influence on a technology. Such an event occurred when the scanning electron microscope became commercially available to industry in the mid 60's. Semiconductors were being increasingly used in high-reliability space and military applications both because of their small volume but, also, because of their inherent reliability. However, they did fail, both early in life and sometimes in middle or old age. Why they failed and how to prevent failure or prolong “useful life” was a worry which resulted in a blossoming of sophisticated failure analysis laboratories across the country. By 1966, the ability to build small structure integrated circuits was forging well ahead of techniques available to dissect and analyze these same failures. The arrival of the scanning electron microscope gave these analysts a new insight into failure mechanisms.


Author(s):  
D. R. Liu ◽  
S. S. Shinozaki ◽  
J. S. Park ◽  
B. N. Juterbock

The electric and thermal properties of the resistor material in an automotive spark plug should be stable during its service lifetime. Containing many elements and many phases, this material has a very complex microstructure. Elemental mapping with an electron microprobe can reveal the distribution of all relevant elements throughout the sample. In this work, it is demonstrated that the charge-up effect, which would distort an electron image and, therefore, is normally to be avoided in an electron imaging work, could be used to advantage to reveal conductive and resistive zones in a sample. Its combination with elemental mapping can provide valuable insight into the underlying conductivity mechanism of the resistor.This work was performed in a CAMECA SX-50 microprobe. The spark plug used in the present report was a commercial product taken from the shelf. It was sectioned to expose the cross section of the resistor. The resistor was known not to contain the precious metal Au as checked on the carbon coated sample. The sample was then stripped of carbon coating and re-coated with Au.


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