Academic literature on the topic 'South Australa'

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Journal articles on the topic "South Australa"

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Lambkin, KJ. "Revision of the Australian scorpion-fly genus Harpobittacus (Mecoptera : Bittacidae)." Invertebrate Systematics 8, no. 4 (1994): 767. http://dx.doi.org/10.1071/it9940767.

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Harpobittacus Gerstaecker is the largest of the six genera of Australian Bittacidae. Adults occur in eastern, south-eastern and south-western Australian eucalypt woodland and coastal heathland during spring and summer and sometimes autumn. The genus contains 11 species, which are diagnosed in the present revision: H. australis (Klug) [= australis rubripes Riek, syn. nov., = corethrarius (Rambur), = intermedius (Selys-Longchamps)] (south-east Australia, including Tasmania); H. albatus Riek, stat. nov. (= limnaeus Smithers, syn. nov.) (coastal eastern Australia); H. christine, sp. nov. (inland south-east Queensland); H. tillyardi Esben-Petersen ( = nigratus Navás) (coastal eastern Australia); H. rubricatus Riek (inland south-east Australia); H. scheibeli Esben-Petersen (= brewerae Smithers, syn. nov.) (inland and coastal eastern Australia); H. septentrionis, sp. nov. (coastal north Queensland); H. nigriceps (Selys-Longchamps) (mainland south-east Australia); H. similis Esben-Petersen, H. quasisimilis, sp. nov., and H. phaeoscius Riek (all south-west Western Australia). Cladistic analysis has produced the following hypothesis of relationships: (((australis (albatus christine)) (tillyardi rubricatus)) ((similis quasisimilis) ((scheibeli septentrionis) (nigriceps phaeoscius))). Immediate sister-species show little or no overlap in their geographic distributions.
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Panetta, FD. "Isozyme Variation in Australian and South-African Populations of Emex australis Steinh." Australian Journal of Botany 38, no. 2 (1990): 161. http://dx.doi.org/10.1071/bt9900161.

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Isozyme variation was surveyed at 25 loci in 65 Australian (colonial) and 21 South African (native) populations of Emex australis. Only one polymorphism, restricted in distribution to the eastern States, was observed in Australia. Three additional polymorphisms were detected in South African populations, but most (16) South African populations were indistinguishable from the Australian ones. Thus, the relative uniformity of colonial populations of E. australis reflects the low level of isozyme variation in many populations within its native range.
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PERKINS, PHILIP D. "A revision of the water beetle genus Gymnochthebius Orchymont (Coleoptera: Hydraenidae) for Australia and Papua New Guinea." Zootaxa 1024, no. 1 (July 29, 2005): 1. http://dx.doi.org/10.11646/zootaxa.1024.1.1.

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The Australian and Papua New Guinean species of the water beetle genus Gymnochthebius Orchymont, 1943, are revised, based on the study of 4,904 specimens. The genus is redescribed, and redescriptions are provided for G. australis (Blackburn), G. brisbanensis (Blackburn), G. clarki (Deane), G. levis (Deane), G. lividus (Deane), G. notalis (Deane), and G. tenebricosus (Deane). Lectotypes are designated for Ochthebius australis Blackburn, 1888, and Ochthebius tenebricosus Deane, 1931. Ochthebius fischeri Deane, 1931, and Ochthebius leai Deane, 1931, are synonymized with Ochthebius australis Blackburn, 1888; Ochthebius flavocinctus Deane 1933, is synonymized with Ochthebius lividus Deane, 1933; and Ochthebius angustipennis Deane, 1931, is synonymized with Ochthebius clarki Deane, 1931. Twenty-nine new species are described, and a key to the 36 species known from Australia and Papua New Guinea is given. High resolution digital images of all primary types are presented (online version in color), the male genitalia are illustrated, and Australian geographic distributions are mapped. Only one species, G. clarki, inhabits both Australia and Papua New Guinea; two species, G. bacchusi n. sp. and G. papua n. sp. are endemic to Papua New Guinea; 33 species are endemic to Australia. Members of Gymnochthebius are found at the gravelly/sandy/silty margins of flowing and standing water. A preliminary grouping of species according to microhabitat substrate is presented. Correspondences between ventral morphology and microhabitat preferences suggest that a few species are evolving toward humicolous habits. New species of Gymnochthebius are: G. angulonotus (Queensland, Tinaroo Creek Road via Mareeba), G. bacchusi (Papua New Guinea, Morobe District, c. 7 miles Lae Bulolo Road), G. benesculptus (South Australia, Warburton River, 1 km N White Bull Yard Kalamurina Stn.), G. coruscus (South Australia, Warburton River, 1 km N White Bull Yard Kalamurina Stn.), G. fontinalis (South Australia, Elizabeth (Mound) Springs, 7 km NW Coward Springs R.S.), G. fumosus (New South Wales, Sydney), G. hesperius (Western Australia, Lyndon River Bridge), G. inlineatus (Western Australia, Millstream, creek near Deep Reach), G. lustrosulcus (Queensland, Cloncurry), G. minipunctus (Northern Territory, Palm Valley), G. nanosetus (Northern Territory, Roderick Creek, Gregory National Park), G. nicki (Victoria, Possum Hollow falls, West branch Tarwin River, 5.6 km SSW Allambee), G. nigriceps (South Australia, Mound Spring near Coward Springs), G. papua (Papua New Guinea, Morobe District, ca. 10 km S Garaina Saureri), G. perpunctus (South Australia, Somme Creek, between Angaston and Sedan), G. pluvipennis (South Australia, Warburton
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van Rensch, Peter, and Wenju Cai. "Indo-Pacific–Induced Wave Trains during Austral Autumn and Their Effect on Australian Rainfall." Journal of Climate 27, no. 9 (April 23, 2014): 3208–21. http://dx.doi.org/10.1175/jcli-d-13-00611.1.

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Abstract During austral winter and spring, the El Niño–Southern Oscillation (ENSO) and the Indian Ocean dipole (IOD), individually or in combination, induce equivalent-barotropic Rossby wave trains, affecting midlatitude Australian rainfall. In autumn, ENSO is at its annual minimum, and the IOD has usually not developed. However, there is still a strong equivalent-barotropic Rossby wave train associated with tropical Indian Ocean sea surface temperature (SST) variability, with a pressure anomaly to the south of Australia. This wave train is similar in position, but opposite in sign, to the IOD-induced wave train in winter and spring and has little effect on Australian rainfall. This study shows that the SST in the southeastern tropical Indian Ocean (SETIO) displays a high variance during austral autumn, with a strong influence on southeast and eastern Australian rainfall. However, this influence is slightly weaker than that associated with SST to the north of Australia, which shares fluctuations with SST in the SETIO region. The SST north of Australia is coherent with a convective dipole in the tropical Pacific Ocean, which is the source of a wave train to the east of Australia influencing rainfall in eastern Australia. ENSO Modoki is a contributor to the convective dipole and as a result it exerts a weak influence on eastern Australian rainfall through the connecting north Australian SST relationship. Thus, SST to the north of Australia acts as the main agent for delivering the impact of tropical Indo-Pacific variability to eastern Australia.
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Martin, David J., and Skie Tobin. "Seasonal climate summary for the southern hemisphere (winter 2017): exceptionally warm days for Australia." Journal of Southern Hemisphere Earth Systems Science 69, no. 1 (2019): 331. http://dx.doi.org/10.1071/es19012.

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This is a summary of the southern hemisphere atmospheric circulation patterns and meteorological indices for austral winter 2017; an account of seasonal rainfall and temperature for the Australian region is also provided. The El Niño–Southern Oscillation was neutral during winter 2017, as was the Indian Ocean Dipole. A positive Southern Annular Mode influenced the climates of southern hemisphere countries at times during winter. Despite the lack of large-scale ocean influences, mean temperatures for the season were very much above average across large areas of Australia, New Zealand, southern Africa and South America. Precipitation during the season was below average across much of Australia, South Africa and western areas of Chile and Argentina, but above average in some southern and eastern areas of South America.
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Foissner, W., and PJ O'Donoghue. "Morphology and infraciliature of some freshwater ciliates (Protozoa : Ciliophora) from Western and South Australia." Invertebrate Systematics 3, no. 6 (1989): 661. http://dx.doi.org/10.1071/it9890661.

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Thirteen new or little-known freshwater ciliates from Perth, W.A., and Adelaide, S.A., are described: Urotricha furcata Schewiakoff, 1892; Coleps amphacanthus Ehrenberg, 1833; Fuscheria nodosa Foissner, 1983; Lacrymaria australis, sp. nov.; Acineria uncinata Tucolesco, 1962; Litonotus lamella (Mnller, 1773); Loxophyllum australe, sp. nov.; Naxella australis, sp. nov.; Microthorax australis, sp. nov.; Blepharisma americanum (Suzuki, 1954); Stenosemella lacustris, sp. nov.; Oxytricha australis, sp. nov.; and Urosomoida perthensis, sp. nov. Descriptions are based on live observations, protargol and silver nitrate stained specimens and biometry. All species represent new records for the fauna of Australia. A new species, Naxella faurei, sp. nov., is established for Nassula lateritia Faure-Fremiet, 1967 and a new diagnosis is given for Litonotus lamella (Mnller, 1773).
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Loh, Z. M., R. M. Law, K. D. Haynes, P. B. Krummel, L. P. Steele, P. J. Fraser, S. Chambers, and A. Williams. "Simulations of atmospheric methane for Cape Grim, Tasmania, to constrain South East Australian methane emissions." Atmospheric Chemistry and Physics Discussions 14, no. 15 (August 19, 2014): 21189–221. http://dx.doi.org/10.5194/acpd-14-21189-2014.

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Abstract. This study uses two climate models and six scenarios of prescribed methane emissions to compare modelled and observed atmospheric methane between 1994 and 2007, for Cape Grim, Australia (40.7° S, 144.7° E). The model simulations follow the TransCom-CH4 protocol and use the Australian Community Climate and Earth System Simulator (ACCESS) and the CSIRO Conformal-Cubic Atmospheric Model (CCAM). Radon is also simulated and used to reduce the impact of transport differences between the models and observations. Comparisons are made for air samples that have traversed the Australian continent. All six emission scenarios give modelled concentrations that are broadly consistent with those observed. There are three notable mismatches, however. Firstly, scenarios that incorporate interannually varying biomass burning emissions produce anomalously high methane concentrations at Cape Grim at times of large fire events in southeastern Australia, most likely due to the fire methane emissions being unrealistically input into the lowest model level. Secondly, scenarios with wetland methane emissions in the austral winter overestimate methane concentrations at Cape Grim during wintertime while scenarios without winter wetland emissions perform better. Finally, all scenarios fail to represent a methane source in austral spring implied by the observations. It is possible that the timing of wetland emissions in the scenarios is incorrect with recent satellite measurements suggesting an austral spring (September-October-November), rather than winter, maximum for wetland emissions.
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Singor, Marcus. "Eurasian Hobby Falco subbuteo: A review of recent records from Western Australia and Australian external territories." Australian Field Ornithology 38 (2021): 119–23. http://dx.doi.org/10.20938/afo38119123.

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All Australian records of the Eurasian Hobby Falco subbuteo are summarised. Before 2016, the only Australian records of the Eurasian Hobby were on external territories to the north-west of the mainland. Each year between 2016 and 2021 a single Eurasian Hobby was observed as an austral summer visitor to the Swan Coastal Plain in south-western Western Australia. These sightings involved an adult in 2016, 2019 and 2020, and single immature birds in 2017–2018. The age of the Hobby seen in 2020–2021 was undetermined. As it appears that multiple individuals have been recorded across years, it is likely that the species is now more than just an accidental vagrant to Australia.
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Rotstayn, L. D., M. A. Collier, R. M. Mitchell, Y. Qin, S. K. Campbell, and S. M. Dravitzki. "Simulated enhancement of ENSO-related rainfall variability due to Australian dust." Atmospheric Chemistry and Physics 11, no. 13 (July 12, 2011): 6575–92. http://dx.doi.org/10.5194/acp-11-6575-2011.

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Abstract. Australian dust emissions are highly episodic, and this may increase the importance of Australian dust as a climate feedback agent. We compare two 160-year coupled atmosphere-ocean simulations of modern-day climate using the CSIRO Mark 3.6 global climate model (GCM). The first run (DUST) includes an interactive treatment of mineral dust and its direct radiative effects. The second run (NODUST) is otherwise identical, but has the Australian dust source set to zero. We focus on the austral spring season, when the correlation between rainfall and the El Niño Southern Oscillation (ENSO) is strongest over Australia. The ENSO-rainfall relationship over eastern Australia is stronger in the DUST run: dry (El Niño) years tend to be drier, and wet (La Niña) years wetter. The amplification of ENSO-related rainfall variability over eastern Australia represents an improvement relative to observations. The effect is driven by ENSO-related anomalies in radiative forcing by Australian dust over the south-west Pacific Ocean; these anomalies increase (decrease) surface evaporation in La Niña (El Niño) years. Some of this moisture is advected towards eastern Australia, where increased (decreased) moisture convergence in La Niña (El Niño) years increases the amplitude of ENSO-related rainfall variability. The modulation of surface evaporation by dust over the south-west Pacific occurs via surface radiative forcing and dust-induced stabilisation of the boundary layer. The results suggest that (1) a realistic treatment of Australian dust may be necessary for accurate simulation of the ENSO-rainfall relationship over Australia, and (2) radiative feedbacks involving dust may be important for understanding natural rainfall variability over Australia.
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Weller, Evan, Ming Feng, Harry Hendon, Jian Ma, Shang-Ping Xie, and Nick Caputi. "Interannual Variations of Wind Regimes off the Subtropical Western Australia Coast during Austral Winter and Spring." Journal of Climate 25, no. 16 (August 15, 2012): 5587–99. http://dx.doi.org/10.1175/jcli-d-11-00324.1.

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Abstract Off the Western Australia coast, interannual variations of wind regime during the austral winter and spring are significantly correlated with the Indian Ocean dipole (IOD) and the southern annular mode (SAM) variability. Atmospheric general circulation model experiments forced by an idealized IOD sea surface temperature anomaly field suggest that the IOD-generated deep atmospheric convection anomalies trigger a Rossby wave train in the upper troposphere that propagates into the southern extratropics and induces positive geopotential height anomalies over southern Australia, independent of the SAM. The positive geopotential height anomalies extended from the upper troposphere to the surface, south of the Australian continent, resulting in easterly wind anomalies off the Western Australia coast and a reduction of the high-frequency synoptic storm events that deliver the majority of southwest Australia rainfall during austral winter and spring. In the marine environment, the wind anomalies and reduction of storm events may hamper the western rock lobster recruitment process.
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Dissertations / Theses on the topic "South Australa"

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Lamnek, Larissa. "Australian-born Russians : the maintenance of ethnicity in South Australia /." Title page, abstract and contents only, 1999. http://web4.library.adelaide.edu.au/theses/09AR/09arl232.pdf.

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Aylward, Joe. "Electoral sources of support in South Australia : The Australian Democrats /." Title page, contents and abstract only, 1998. http://web4.library.adelaide.edu.au/theses/09AR/09ara981.pdf.

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Tassie, Jane. "Outwork in South Australia /." Title page, contents and abstract only, 1993. http://web4.library.adelaide.edu.au/theses/09MPM/09mpmt213.pdf.

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Daniel, Rosalie, and mikewood@deakin edu au. "Aspects of the interaction between Xanthorrhoea australis and Phytophthora cinnamomi in south-western Victoria, Australia." Deakin University. School of Biological and Chemical Sciences, 2002. http://tux.lib.deakin.edu.au./adt-VDU/public/adt-VDU20051201.144848.

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Diseases in natural ecosystems are often assumed to be less severe than those observed in domestic cropping systems due to the extensive biodiversity exhibited in wild vegetation communities. In Australia, it is this natural biodiversity that is now under threat from Phytophthora cinnamomi. The soilborne Oomycete causes severe decline of native vegetation communities in south-western Victoria, Australia, disrupting the ecological balance of native forest and heathland communities. While the effect of disease caused by P. cinnamomi on native vegetation communities in Victoria has been extensively investigated, little work has focused on the Anglesea healthlands in south-western Victoria. Nothing is known about the population structure of P. cinnamomi at Anglesea. This project was divided into two main components to investigate fundamental issues affecting the management of P. cinnamomi in the Anglesea heathlands. The first component examined the phenotypic characteristics of P. cinnamomi isolates sampled from the population at Anglesea, and compared these with isolates from other regions in Victoria, and also from Western Australia. The second component of the project investigated the effect of the fungicide phosphonate on the host response following infection by P. cinnamomi. Following soil sampling in the Anglesea heathlands, a collection of P, cinnamomi isolates was established. Morphological and physiological traits of each isolate were examined. All isolates were found to be of the A2 mating type. Variation was demonstrated among isolates in the following characteristics: radial growth rate on various nutrient media, sporangial production, and sporangial dimensions. Oogonial dimensions did not differ significantly between isolates. Morphological and physiological variation was rarely dependant on isolate origin. To examine the genetic diversity among isolates and to determine whether phenotypic variation observed was genetically based, Random Amplified Polymorphic DNA (RAPD) analyses were conducted. No significant variation was observed among isolates based on an analysis of molecular variance (AMQVA). The results are discussed in relation to population biology, and the effect of genetic variation on population structure and population dynamics. X australis, an arborescent monocotyledon indigenous to Australia, is highly susceptible to infection by P. cinnamomi. It forms an important component of the heathland vegetation community, providing habitat for native flora and fauna, A cell suspension culture system was developed to investigate the effect of the fungicide phosphonate on the host-pathogen interaction between X. australis and P. cinnamomi. This allowed the interaction between the host and the pathogen to be examined at a cellular level. Subsequently, histological studies using X. australis seedlings were undertaken to support the cellular study. Observations in the cell culture system correlated well with those in the plant. The anatomical structure of X australis roots was examined to assist in the interpretation of results of histopathological studies. The infection of single cells and roots of X. australis, and the effect of phosphonate on the interaction are described. Phosphonate application prior to inoculation with P. cinnamomi reduced the infection of cells in culture and of cells in planta. In particular, phosphonate was found to stimulate the production of phenolic material in roots of X australis seedlings and in cells in suspension cultures. In phosphonate-treated roots of X australis seedlings, the deposition of electron dense material, possibly lignin or cellulose, was observed following infection with P. cinnamomi. It is proposed that this is a significant consequence of the stimulation of plant defence pathways by the fungicide. Results of the study are discussed in terms of the implications of the findings on management of the Anglesea heathlands in Victoria, taking into account variation in pathogen morphology, pathogenicity and genotype. The mode of action of phosphonate in the plant is discussed in relation to plant physiology and biochemistry.
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Bates, Ian George Bindon. ""Necessity's inventions" : a research project into South Australian inventors and their inventions from 1836 to 1886." Title page, contents and abstract only, 2000. http://web4.library.adelaide.edu.au/theses/09ARM/09armb3924.pdf.

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"August 2000" Includes bibliographical references (leaves 115-118) and index of inventors 1. Introduction, overview of years 1836-1886 -- 2. The Patent Act, no. 18, of 1859 -- 3. The Provisional Registration of Patents Act, no. 3, of 1875 -- 4. The Patent Act, no. 78, of 1877 -- 5. Numerical list of inventions
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Brooklyn, Bridget. "Something old, something new : divorce and divorce law in South Australia, 1859-1918." Title page, contents and summary only, 1988. http://web4.library.adelaide.edu.au/theses/09PH/09phb872.pdf.

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Borger, Catherine. "The biology and ecology of Salsola australis R.Br. (Chenopodiaceae) in southwest Australian cropping systems." University of Western Australia. School of Plant Biology, 2007. http://theses.library.uwa.edu.au/adt-WU2008.0062.

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Salsola australis is an introduced weed of crop and pasture systems in the Western Australian broad acre cropping and pasture region (wheat-belt). This thesis investigated the classification, biology and ecology of the genus Salsola in southwest Australia, as well as modelling the effectiveness of possible weed control practices. Prior to this research, S. tragus was the only recognised species of the Salsola genus within Australia. However, genetic analysis revealed that four genetically distinct putative taxa of the genus Salsola were found in southwest Australia, none of which were S. tragus. The taxa that is the most prevalent agricultural weed was classified as S. australis, but the other three putative taxa could not be matched to recognised species. All four taxa were diploid (2n = 18), as opposed to tetraploid (2n = 36) S. tragus. Within the agricultural system of southwest Australia, S. australis plants established throughout the year, although the majority of seed production occurred in late summer and autumn. Total seed production (138-7734 seeds per plant) and seed viability (7.6-62.8%) of S. australis were lower than that reported for other agricultural weed species of the Salsola genus. Seed dispersal occurred when the senesced plants broke free of their root system to become mobile. Wind driven plants travelled and shed seed over distances of 1.6 to 1247.2 m. Movement of approximately half the plants was restricted to less than 100 m by entanglement with other S. australis plants within the stand. Some seed was retained on the senesced plants, but the germinability of this seed fell to less than 2% in the two month period following plant senescence (i.e. a decline of 79%). Once seed shed into the soil seed bank, anywhere from 32.3 to 80.7% of the viable seeds germinated in the year following seed production, with the rest remaining dormant or degrading. A model of the life cycle of S. australis based on the population ecology data indicated that the dormant seed bank had very little effect on annual seedling recruitment, but seed dispersal from neighbouring populations had a large impact on population growth rate. Therefore, the most successful weed control measures were those that restricted seed dispersal from neighbouring populations, or those that were applied to all populations in the region rather than to a single population. Weed control techniques applied to a single population, without reducing seed dispersal, could not reduce population size.
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Davies, Kerryn. "Women's suffrage in South Australia /." Title page, contents and conclusion only, 1993. http://web4.library.adelaide.edu.au/theses/09AR/09ard2562.pdf.

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Muller, Kerri. "Methane production at Bool Lagoon, South-East, South Australia /." Title page, abstract and table of contents only, 1993. http://web4.library.adelaide.edu.au/theses/09SB/09sbm958.pdf.

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Weston, Neville. "The professional training of artists in Australia, 1861-1963, with special reference to the South Australian model /." Title page, contents and abstract only, 1991. http://web4.library.adelaide.edu.au/theses/09PH/09phw535.pdf.

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Books on the topic "South Australa"

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South Australia. Alexandria, N.S.W: Watts Publishing, 2003.

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Australia, Art Gallery of South. Australian decorative arts: 1820s-1990s : Art Gallery of South Australia. Adelaide: Art Gallery of South Australia, 1996.

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David, Copsey, ed. Australia: Queensland, New South Wales, Victoria, Tasmania, South Australia, Western Australia, Northern Territory. New York: Gallery Books, 1987.

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1930-, Weber J. Z., and Flora and Fauna of South Australia Handbook Committee., eds. Orchids of South Australia. [Adelaide]: A.B. Caudell, Govt. Printer, 1990.

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John, Jessop, and Toelken H. R, eds. Flora of South Australia. 4th ed. Adelaide: South Australian Govt. Printing Division, 1986.

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Images of South Australia. Netley, SA: Wakefield Press, 1985.

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Bushby, R. N. 'Educating an army': Australian army doctrinal development and the operational experience in South Vietnam, 1965-72. Canberra: Strategic and Defence Studies Centre, Research School of Asian & Pacific Studies, Australian National university, 1998.

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Anderson, Paul. When the scorpion stings: The history of the 3rd Calvary Regiment, South Vietman, 1965-1972. Crows Nest, NSW: Allen & Unwin, 2002.

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Adventuring in Australia: New South Wales, Northern Territory, Queensland, South Australia, Tasmania, victoria, Western Australia. 2nd ed. San Francisco: Sierra Club Books, 1999.

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Radford, Ron. 19th-century Australian art: M.J.M. Carter Collection, Art Gallery of South Australia. Adelaide: Art Gallery Board of South Australia, 1993.

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Book chapters on the topic "South Australa"

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Frahm, Michael. "Australia: South Australian Ombudsman." In Australasia and Pacific Ombudsman Institutions, 155–64. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-33896-0_11.

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Twidale, C. R., and J. A. Bourne. "South Australia." In Encyclopedia of the World's Coastal Landforms, 1293–304. Dordrecht: Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-1-4020-8639-7_231.

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Rohde, Ian, and John Rohde. "Ruradene, South Australia." In Rainfed Farming Systems, 1073–83. Dordrecht: Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-1-4020-9132-2_42.

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Wormald, Dean. "Lindene South Australia." In Rainfed Farming Systems, 1085–91. Dordrecht: Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-1-4020-9132-2_43.

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Hill, Lisa, Max Douglass, and Ravi Baltutis. "Why Australia Is a Great Place to Start: The Implied Freedom of Political Communication and TIPA Laws." In How and Why to Regulate False Political Advertising in Australia, 45–56. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2123-0_5.

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AbstractIn this chapter we show that the Australian constitutional and jurisprudential approach to political speech, as embodied in the implied freedom of political communication, makes Australia a uniquely congenial setting for TIPA laws and the type of burden they place on political speech. This is reflected in a range of High Court decisions as well as the fact that the Supreme Court of South Australia has upheld the constitutionality of the South Australian TIPA law based on Australian implied freedom of communication jurisprudence. Our exploration of these decisions and their broader context throws light on how such a freedom is supposed to work and is constituted. Notably, the Courts have achieved a balance in the ‘freedom-fairness’ trade-off, and indicated that they consider TIPA laws, in constraining some political speech, as tipping the scales towards ‘fairness’ without at the same time unduly impacting freedom. We end the chapter by summarising our argument so far.
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Barrington, David, and Tony Corns. "Fauna laws in South Australia." In Herpetology in Australia, 356–58. P.O. Box 20, Mosman NSW 2088, Australia: Royal Zoological Society of New South Wales, 1993. http://dx.doi.org/10.7882/rzsnsw.1993.056.

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Short, Andrew D. "Southern South Australia Region." In Australian Coastal Systems, 851–89. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-14294-0_26.

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Plowman, David, and Keri Spooner. "Unions in New South Wales." In Australian Unions, 104–21. London: Macmillan Education UK, 1989. http://dx.doi.org/10.1007/978-1-349-11088-9_5.

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Burr, Andrew, Anne Eckenroth, Ruta Kersyte, and Kesarin Jaitham. "Australia: The East Coast model (Victoria, Tasmania, the Australian Capital Territory and South Australia)." In International Contractual and Statutory Adjudication, 72–99. New York, NY : Informa Law from Routledge, 2017. | Series: Construction practice series: Informa Law from Routledge, 2017. http://dx.doi.org/10.4324/9781315294537-4.

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Short, Andrew D. "South Australian Gulfs Region." In Australian Coastal Systems, 891–936. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-14294-0_27.

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Conference papers on the topic "South Australa"

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Kokkoni, Panayiotis Peter, and Alizera Salmachi. "Analysis of South Australian Onshore Oil & Gas Well Decommissioning and Potential Impact on Regulatory Compliance, Environmental and Corporate Risk — Unified Risk Code." In SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition. SPE, 2021. http://dx.doi.org/10.2118/205762-ms.

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The Cooper/Eromanga Basin is in central Australia and has been the focal point for oil and gas exploration and development in South Australia since the first commercial hydrocarbon discovery in 1963. In the years and decades following, thousands of subsequent wells have been drilled. The CE Basin spans across four states and territories covering an area ~35,000km2. The concentration of South Australian wells is situated in the Northeast of the state and sparsely concentrated in a 300km × 500km area (Figure 1) with the wells in this area being the focus of this research study. Well decommissioning commonly referred to as Plug and Abandonment (P&A) aims to restore the natural integrity of geological formations that existed prior to drilling. It is a mandatory requirement for all wells and must account for the effects of any foreseeable chemical and geological processes from an eternal standpoint. The minimum requirement for abandonment of the South Australian wells is governed by Objective 6 Cooper Basin State Environmental Objectives (SEO): Drilling, Completions and Well Operations, November 2015 guidelines, which provides the compliance criteria for appropriate barrier installation and verification. Well complexity is determined by the difficulty in achieving this minimum compliance requirement based on available data of well conditions, simplified in the form of a risk code.
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MacLane, Duncan T. "The Cogito Project: Design and Development of an International C-Class Catamaran and Her Successful Challenge to Regain the Little America's Cup." In SNAME 13th Chesapeake Sailing Yacht Symposium. SNAME, 1997. http://dx.doi.org/10.5957/csys-1997-009.

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In January 1996, Cogito, the U.S. challenger, defeated the Australian defender, Yellow Pages Edge, by the score of 4-0 in the twenty-second running of the International Catamaran Challenge Trophy. This brought the trophy better known as the Little America's Cup, back to the United States after an eleven year stay in Australia. The Cogito project was three years in length and encompassed the design/construction phase, initial sailing and tuning at her home the Bristol Yacht Club in Bristol, Rhode Island, and the final training and competition at the race venue, McCrae Yacht Club on Port Philip Bay south of Melbourne, Australia. This paper will cover all phases of the project from the design through the racing.
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Marfella, Giorgio. "Seeds of Concrete Progress: Grain Elevators and Technology Transfer between America and Australia." In The 38th Annual Conference of the Society of Architectural Historians Australia and New Zealand. online: SAHANZ, 2022. http://dx.doi.org/10.55939/a4000pi5hk.

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Modern concrete silos and grain elevators are a persistent source of interest and fascination for architects, industrial archaeologists, painters, photographers, and artists. The legacy of the Australian examples of the early 1900s is appreciated primarily by a popular culture that allocates value to these structures on aesthetic grounds. Several aspects of construction history associated with this early modern form of civil engineering have been less explored. In the 1920s and 1930s, concrete grain elevator stations blossomed along the railway networks of the Australian Wheat Belts, marking with their vertical presence the landscapes of many rural towns in New South Wales, Queensland, Victoria, and Western Australia. The Australian reception of this industrial building type of American origin reflects the modern nation-building aspirations of State Governments of the early 1900s. The development of fast-tracked, self-climbing methods for constructing concrete silos, a technology also imported from America, illustrates the critical role of concrete in that effort of nation-building. The rural and urban proliferation of concrete silos in Australia also helped establish a confident local concrete industry that began thriving with automatic systems of movable formwork, mastering and ultimately transferring these construction methods to multi-storey buildings after WWII. Although there is an evident link between grain elevators and the historiographical propaganda of heroic modernism, that nexus should not induce to interpret old concrete silos as a vestige of modern aesthetics. As catalysts of technical and economic development in Australia, Australian wheat silos also bear important significance due to the international technology transfer and local repercussions of their fast-tracked concrete construction methods.
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Arango-Estevez, Ximena, R. W. (Bill) Carter, and Christine Jacobson. "Tourist Characteristics Influence Outcomes When Feeding Australian Humpback Dolphins in South East Queensland, Australia." In International Conference on Creative Economics, Tourism & Information Management. SCITEPRESS - Science and Technology Publications, 2019. http://dx.doi.org/10.5220/0009867302050213.

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Alexander, Elinor. "Natural hydrogen exploration in South Australia." In PESA Symposium Qld 2022. PESA, 2022. http://dx.doi.org/10.36404/putz2691.

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South Australia has taken the lead nationally in enabling exploration licences for natural hydrogen. On 11 February 2021 the Petroleum and Geothermal Energy Regulations 2013 were amended to declare hydrogen, hydrogen compounds and by-products from hydrogen production regulated substances under the Petroleum and Geothermal Energy Act 2000 (PGE Act). Companies are now able to apply to explore for natural hydrogen via a Petroleum Exploration Licence (PEL) and the transmission of hydrogen or compounds of hydrogen are now permissible under the transmission pipeline licencing provisions of the PGE Act. The maximum area of a PEL is 10,000 square kilometres so they provide a large acreage position for explorers. PEL applicants need to provide evidence of their technical and financial capacity as well as a 5-year work program which could include field sampling, geophysical surveys (e.g., aeromagnetics, gravity, seismic and MT) and exploration drilling to evaluate the prospectivity of the licence for natural hydrogen. Since February 2021, seven companies have lodged 35 applications for petroleum exploration licences (PELs), targeting natural hydrogen. The first of these licences (PEL 687) over Kangaroo Island and southern Yorke Peninsula was granted to Gold Hydrogen Pty Ltd on 22 July 2021. As well as issuing exploration licences, a key role of the South Australian Department for Energy and Mining is to provide easy access to comprehensive geoscientific data submitted by mineral and petroleum explorers and departmental geoscientists since the State was founded in 1836. Access to old 1920s and 1930s reports, together with modern geophysical and well data has underpinned the current interest in hydrogen exploration. Why the interest? 50-80% hydrogen content was measured in 1931 by the Mines Department in gas samples from wells on Kangaroo Island, Yorke Peninsula and the Otway Basin, potential evidence that the natural formation of hydrogen has occurred. Iron-rich cratons and uranium-rich basement (also a target for geothermal energy explorers) occur in the Archaean-Mesoproterozoic Gawler Craton, Curnamona and Musgrave provinces which are in places fractured and seismically active with deep-seated faults. Sedimentary cover ranges from Neoproterozoic-Recent in age, with thick clastic, carbonate and coal measure successions in hydrocarbon prospective basins and, in places, occurrences of mafic intrusives and extrusives, iron stones, salt and anhydrite which could also be potential sources of natural hydrogen.
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Shaughnessy, P. D., R. R. McIntosh, S. D. Goldsworthy, T. E. Dennis, and M. Berris. "Trends in abundance of Australian Sea Lions, Neophoca cinerea, at Seal Bay, Kangaroo Island South Australia." In Sea Lions of the World. Alaska Sea Grant, University of Alaska Fairbanks, 2006. http://dx.doi.org/10.4027/slw.2006.23.

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Parker, Rob, and Nick Parkhurst. "Perth, Western Australia Regional Headquarters for Companies Servicing The Australian and South East Asian Petroleum Industry." In Offshore Technology Conference. Offshore Technology Conference, 1998. http://dx.doi.org/10.4043/8634-ms.

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"Initial analysis of fire weather characteristics between south-east Australia and south-west of Western Australia." In 20th International Congress on Modelling and Simulation (MODSIM2013). Modelling and Simulation Society of Australia and New Zealand (MSSANZ), Inc., 2013. http://dx.doi.org/10.36334/modsim.2013.m1.lin.

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Senden, David van, and Douglas Lord. "Estuary Processes Investigation; New South Wales, Australia." In 27th International Conference on Coastal Engineering (ICCE). Reston, VA: American Society of Civil Engineers, 2001. http://dx.doi.org/10.1061/40549(276)288.

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Rosenbluth, B., and H. Fuenzalida. "Recent Temperature Variations in Austral South America." In 2nd International Congress of the Brazilian Geophysical Society. European Association of Geoscientists & Engineers, 1991. http://dx.doi.org/10.3997/2214-4609-pdb.316.194.

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Reports on the topic "South Australa"

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Cunningham, Stuart, Marion McCutcheon, Mark Ryan, Susan Kerrigan, Phillip McIntyre, and Greg Hearn. ‘Creative Hotspots’ in the regions: Key thematic insights and findings from across Australia. Queensland University of Technology, 2022. http://dx.doi.org/10.5204/rep.eprints.227753.

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Description The Creative Hotspots project, or as it was officially titled Australian Cultural and Creative Activity: A Population and Hotspot Analysis, was an expansive, four-year project funded by an Australian Research Council Linkage grant (LP160101724). This comprehensive national study investigated the contemporary dynamics of cultural and creative activity in largely regional and non-capital cities and towns across Australia before the outbreak of COVID-19 in March 2020. In total, the project conducted fieldwork in 17 creative and cultural hotspots across five states: Queensland, New South Wales, Victoria, Western Australia, and South Australia, examining what makes each hotspot “hot”, identifying the dynamics that underpinned their high concentrations of creative and cultural employment and activity. This White Paper outlines the project's findings and outcomes.
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Dix, Katherine, Rachel Felgate, Syeda Kashfee Ahmed, Toby Carslake, and Shani Sniedze-Gregory. School libraries in South Australia 2019 Census. Australian Council for Educational Research, September 2020. http://dx.doi.org/10.37517/978-1-74286-583-6.

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Tipton, W. J., H. A. Berry, and A. E. Fritzsche. An aerial radiological survey of Maralinga and EMU, South Australia. Office of Scientific and Technical Information (OSTI), October 1988. http://dx.doi.org/10.2172/5746113.

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Cunningham, Stuart, and Marion McCutcheon. Australian Cultural and Creative Activity: A Population and Hotspot Analysis - Innovation Precincts in Adelaide. Queensland University of Technology, 2020. http://dx.doi.org/10.5204/rep.eprints.206903.

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There is a fraught history to the relationship between creative industries on the one hand and innovation and entrepreneurship policy and programs on the other. Such policy and program frameworks have rarely been inclusive of creative industries... This is, however, what we see happening in South Australia.
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Neumann, Narelle L., and Russell J. Korsch. SHRIMP U-Pb zircon ages from Kutjara 1 and Mulyawara 1, northwestern South Australia. Geoscience Australia, 2014. http://dx.doi.org/10.11636/record.2014.005.

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Grosjean, E., D. S. Edwards, J. Sohn, Z. Hong, N. Jinadasa, and T. Buckler. Organic geochemical data release for Phoenix South 1 ST2 oils, Bedout Sub-basin, Australia. Geoscience Australia, 2019. http://dx.doi.org/10.11636/record.2019.013.

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Grafton, R. Quentin, Clay Landry, Gary Libecap, Sam McGlennon, and Robert O'Brien. An Integrated Assessment of Water Markets: Australia, Chile, China, South Africa and the USA. Cambridge, MA: National Bureau of Economic Research, July 2010. http://dx.doi.org/10.3386/w16203.

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Kyi, D., J. Duan, A. Kirkby, and N. Stolz. Australian Lithospheric Architecture Magnetotelluric Project (AusLAMP): New South Wales: data release report. Geoscience Australia, 2020. http://dx.doi.org/10.11636/record.2020.011.

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Suir, Glenn, Christina Saltus, and Molly Reif. Geospatial assessments of Phragmites australis die-off in south Louisiana : preliminary findings. Engineer Research and Development Center (U.S.), September 2018. http://dx.doi.org/10.21079/11681/28998.

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Ryan, Mark David, Greg Hearn, Marion McCutcheon, Stuart Cunningham, and Katherine Kirkwood. Australian Cultural and Creative Activity: A Population and Hotspot Analysis: Busselton. Queensland University of Technology, January 2021. http://dx.doi.org/10.5204/rep.eprints.207597.

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Located a two-and-a-half hour drive south of Perth, Busselton is one of the largest and fastest growing regional centres in WA, a lifestyle services hub and the gateway to the internationally renowned wine region and popular tourist destination of Margaret River. Promoted by the City of Busselton council as the ‘Events Capital of WA’, Busselton has a strong festival and events economy that fuels local creative and arts production, supported by demographic shifts and population growth that is resulting in more creatives living and working in the city.
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