Статті в журналах з теми "Newcastle and Northern New South Wales"

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1

Gardner, M. G., and R. D. Ward. "Population structure of the Australian gummy shark (Mustelus antarcticus GÜnther) inferred from allozymes, mitochondrial DNA and vertebrae counts." Marine and Freshwater Research 49, no. 7 (1998): 733. http://dx.doi.org/10.1071/mf98009.

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The gummy shark (Mustelus antarcticus) is the main target of southern Australian shark fisheries. Its stock structure was investigated through allozymes (up to 28 loci), mitochondrial DNA (up to 10 restriction enzymes) and vertebrae counts. The average heterozygosity per allozyme locus (0.099) and degree of polymorphism (0.255) was high for sharks. Composite mitochondrial DNA haplotype diversity (0.534) and mean nucleotide sequence diversity (0.16%) were also moderately high. Three of the seven polymorphic allozyme loci (CK-A*, LDH-1*, PEP*) and the mtDNA haplotypes showed significant spatial differentiation. Two genetic stocks were identified: one along the southern coast of Australia from Bunbury in Western Australia to Eden in New South Wales and one off northern New South Wales (in the region of Newcastle to Clarence River). There was some evidence for a third stock off Townsville, Queensland. The northern occurrences extend the known geographical range of this species. Vertebrae counts from Eden northwards increased, supporting the conclusion of population heterogeneity off eastern Australia.
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2

Adams, Peter. "A review of Dendrobium kingianum Bidwill ex Lindl. (Orchidaceae) with morphological and molecularphylogenetic analyses." Telopea 24 (May 19, 2021): 203–32. http://dx.doi.org/10.7751/telopea14806.

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Populations of Dendrobium kingianum Bidwill ex Lindl. from near Newcastle, New South Wales to southern and central west Queensland and encompassing all regions of the distribution were studied using field observations, morphometric analysis and nrITS sequences. A total of 281 individuals were used to construct regional descriptions of D. kingianum and 139 individuals were measured for 19 morphological characters, and similarities and differences among specimens summarised using multivariate statistical methods. Patterns of morphological variation within D. kingianum are consistent with a single variable species that expresses clinal variation, with short-growing plants in the south and taller plants in the northern part of the distribution. The nrITS gene tree suggests two subgroups within D. kingianum subsp. kingianum, one comprising northern, the other southern individuals, which may overlap in the vicinity of Dorrigo, New South Wales. The disjunct D. kingianum subsp. carnarvonense Peter B. Adams in central west Queensland, which can be distinguished by a predominately subterranean habit and a narrower labellum midlobe, was resolved sister to D. moorei F.Muell., which renders D. kingianum paraphyletic in the nrITS gene tree, but this position was not supported. Regional descriptions documenting clinal variation are provided. All previously described varieties, including D. kingianum var. pulcherrimum Rupp, are colour and growth forms of D. kingianum subsp. kingianum.
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3

MELCHERS, R. E., and A. W. PAGE. "THE NEWCASTLE (NEW SOUTH WALES) EARTHQUAKE." Proceedings of the Institution of Civil Engineers - Structures and Buildings 94, no. 2 (May 1992): 143–56. http://dx.doi.org/10.1680/istbu.1992.18783.

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4

Fryer, J. G. "THE NEWCASTLE, NEW SOUTH WALES EARTHQUAKE." Photogrammetric Record 13, no. 76 (August 26, 2006): 609–10. http://dx.doi.org/10.1111/j.1477-9730.1990.tb00721.x.

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5

Hartig, Kate V., and Kevin M. Dunn. "Roadside Memorials: Interpreting New Deathscapes in Newcastle, New South Wales." Australian Geographical Studies 36, no. 1 (March 1998): 5–20. http://dx.doi.org/10.1111/1467-8470.00036.

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6

English, Helen Jane, Sarah Monk, and Jane W. Davidson. "Music and world-building in Newcastle, New South Wales, Australia." International Journal of Community Music 11, no. 3 (December 1, 2018): 245–64. http://dx.doi.org/10.1386/ijcm.11.3.245_1.

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7

Christie, David, Lyndall Spencer, and Ambikaipakan Senthilselvan. "Air quality and respiratory disease in Newcastle, New South Wales." Medical Journal of Australia 156, no. 12 (June 1992): 841–44. http://dx.doi.org/10.5694/j.1326-5377.1992.tb136996.x.

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8

Hanapi, Nur Amalina, and Khairul Asyraf Mohd Rodzi. "LIGHTING DESIGN FRAMEWORK; RECOMMENDATION STUDY FOR NEWCASTLE MOSQUE, NEW SOUTH WALES." Journal of Islamic Architecture 7, no. 1 (June 28, 2022): 111–19. http://dx.doi.org/10.18860/jia.v7i1.13093.

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This research explores the analysis method of the current situation and injects direct design proposal analysis to the mosque from the existing condition. The exploration of lighting fundamentally and significantly impacts holistic and ritual performance in any religious building. However, regarding the conversion of typology to the mosque, there were a few research that focus on the existing condition in lighting design performance for Newcastle Mosque. Therefore, this study explores approximately four designs of three-dimensional recommendations as a methodology which include passive and active design implications used recorded as part of the discussion. The result shows that the proposed design helped in repairing the conditions of the mosque through the implementation of the skylight, curtain, designated window, and sunbreak for the best rectification recommendation. Furthermore, the result of the study suggests such minimum glare and effective lighting distribution contribute to the amount reduction of energy consumption, improve the quality of reading, and properly enlighten the religious congregational activities and other exercises carried out to optimum brightness of the mosque.
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9

Monfries, Melissa M., and Norman F. Kafer. "Department of Education, The University of Newcastle, New South Wales, Australia 2308." Journal of Psychology 128, no. 4 (July 1994): 447–54. http://dx.doi.org/10.1080/00223980.1994.9712751.

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10

Oxley, Les. "INTERNATIONAL CONGRESS ON MODELLING AND SIMULATION, NEWCASTLE, NEW SOUTH WALES, AUSTRALIA 1995." Journal of Economic Surveys 10, no. 2 (June 1996): 225–31. http://dx.doi.org/10.1111/j.1467-6419.1996.tb00011.x.

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11

McGurik, P. M., H. P. M. Winchester, and K. M. Dunn. "Entrepreneurial Approaches to Urban Decline: The Honeysuckle Redevelopment in Inner Newcastle, New South Wales." Environment and Planning A: Economy and Space 28, no. 10 (October 1996): 1815–41. http://dx.doi.org/10.1068/a281815.

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Global changes in production and consumption, and the resulting competition between places for investment flows, have encouraged the emergence of the ‘entrepreneurial state’. This paper focuses on the Honeysuckle redevelopment in Newcastle, New South Wales. This case study of active entrepreneurialism, aimed at promoting Newcastle's interurban competitiveness through material and symbolic reconstructions, reveals the changes wrought by an entrepreneurial approach to the style and content of city government and politics. The Honeysuckle Development Corporation operates at the juncture between federal, state, and local government engagement with capital in the attempt to address the local impacts of economic restructuring. It provides an important case study of the shifting parameters of the relationship between various tiers of the state, and between these tiers and the interests of capital in contemporary urban redevelopment. It also addresses the problematic questions of sustainability, accountability, and equity in urban entrepreneurialism, while providing a long-overdue empirical study of Newcastle.
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12

LOWRY, J. K. "Talitrid amphipods from ocean beaches along the New South Wales coast of Australia (Amphipoda, Talitridae)." Zootaxa 3575, no. 1 (December 7, 2012): 1. http://dx.doi.org/10.11646/zootaxa.3575.1.1.

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The sand-hopper Bellorchestia mariae sp. nov. is described from Honeymoon Bay on the north coast of Jervis Bay, NewSouth Wales, Australia. It is the sister species of B. richardsoni Serejo & Lowry, 2008 and appears to have a limited dis-tribution from about Narrawallee in the south to northern Jervis Bay. The distribution of B. richardsoni Serejo & Lowry,2008 is extended from Point Ricardo, Victoria, northwards to Ulladulla on the New South Wales coast. A new synonymyis proposed for the sand-hopper Notorchestia quadrimana (Dana, 1852) which includes N. novaehollandiae (1899) andN. lobata Serejo & Lowry, 2008. It is considered to be a wide-ranging species from Shark Bay in Western Australia aroundthe south coast to at least Maitland Bay in central New South Wales. The beach-hopper Orchestia dispar Dana, 1852 isdescribed from Valla Beach in northern New South Wales and moved to the new genus Vallorchestia. This is the first re-cord of V. dispar since its original description 160 years ago. The beach-hopper Platorchestia smithi sp. nov. is describedfrom Brooms Head, New South Wales, Australia. It is common on ocean beaches from Bendalong in the south to Ballina in northern New South Wales. South of Bendalong beach-hoppers on ocean beaches appear to be absent.
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13

Hardwicke, Caroline, Lucy Holt, Rosemary Lames, and Anthony J. Smith. "Trends in self‐poisoning with drugs in Newcastle, New South Wales, 1980‐1982." Medical Journal of Australia 144, no. 9 (April 1986): 453–54. http://dx.doi.org/10.5694/j.1326-5377.1986.tb101046.x.

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14

HARDWICKE, C., L. HOLT, R. JAMES, and A. J. SMITH. "Trends In Self-Poisoning With Drugs In Newcastle, New South Wales, 1980???1982." Survey of Anesthesiology XXXI, no. 2 (April 1987): 117. http://dx.doi.org/10.1097/00132586-198704000-00039.

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15

Harris, Carol, Suzanne Boschma, Mark Brennan, Lauren Borg, Steven Harden, and Brian Cullis. "Leucaena shows potential in Northern Inland New South Wales, Australia." Tropical Grasslands-Forrajes Tropicales 7, no. 2 (May 31, 2019): 120–26. http://dx.doi.org/10.17138/tgft(7)120-126.

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Keynote paper presented at the International Leucaena Conference, 1‒3 November 2018, Brisbane, Queensland, Australia.A study was conducted during 2013–2017 to evaluate the potential of 5 cultivars/experimental lines of leucaena (Leucaena leucocephala) at 2 sites in Northern Inland NSW. In this frost-prone, summer-dominant rainfall region, all cultivars/lines established well and survival was >70% at Bingara and >95% at Manilla. Cultivars Wondergraze and Cunningham were the most productive, producing up to approximately 2.4 t DM/ha y 1.9 t DM/ha per growing season at Bingara and Manilla, respectively. Tropical grass establishment in the alleys was poor with plant productivity inversely related to leucaena productivity. Although this study has confirmed the persistence and productive potential of leucaena, the challenges around tropical grass establishment and persistence as well as the weed potential of leucaena in this region need to be addressed before broad-scale use could be recommended in Northern Inland NSW.
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16

Shepherd, Mervyn, and David J. Lee. "Gene flow from Corymbia hybrids in northern New South Wales." Forest Ecology and Management 362 (February 2016): 205–17. http://dx.doi.org/10.1016/j.foreco.2015.12.010.

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17

Boschma, SP, GJ Crocker, GM Lodge, and S. Harden. "Evaluation of pasture legumes in northern New South Wales, Australia." New Zealand Journal of Agricultural Research 54, no. 3 (August 22, 2011): 203–13. http://dx.doi.org/10.1080/00288233.2011.594444.

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18

Knowles, T. A., and B. Singh. "Carbon storage in cotton soils of northern New South Wales." Soil Research 41, no. 5 (2003): 889. http://dx.doi.org/10.1071/sr02023.

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Soil carbon is an important component of the global carbon cycle with an estimated pool of soil organic carbon of about 1500 Gt. There are few estimates of the pool of inorganic carbon, but it is thought to be approximately 50% of the organic carbon pool. There is no detailed study on the estimation of the soil carbon pool for Australian soils.In order to quantify the carbon pools and to determine the extent of spatial variability in the organic and inorganic carbon pools, 120 soil cores were taken down to a depth of 0.90 m from a typical cotton field in northern NSW. Three cores were also taken from nearby virgin bushland and these samples were used as paired samples. Each soil core was separated into 4 samples, i.e. 0–0.15, 0.15–0.30, 0.30–0.60, and 0.60–0.90 m. Soil organic carbon was determined by wet oxidation and inorganic carbon content was determined using the difference between total carbon and organic carbon, and confirmed by the acid dissolution method. Total carbon was measured using a LECO CHN analyser. Soil organic carbon of the field constituted 62% (0–0.15 m), 58% (0.15–0.30 m), 60% (0.30–0.60 m), and 67% (0.60–0.90 m) of the total soil carbon. The proportion of inorganic carbon in total carbon is higher than the global average of 32%. Organic carbon content was relatively higher in the deeper layers (>0.30�m) of the studied soils (Vertosols) compared with other soil types of Australia. The carbon content varied across the field, however, there was little correlation between the soil types (grey, red, or intergrade colour) and carbon content. The total soil carbon pool of the studied field was estimated to be about 78 t/ha for 0–0.90 m layer, which was approximately 58% of the total soil carbon in the soil under nearby remnant bushland (136 t/ha). The total pool of carbon in the cotton soils of NSW was estimated to be 44.8 Mt C, where organic carbon and inorganic carbon constitute 34.9 Mt C and 9.9 Mt C, respectively. Based on the results of a limited number of paired sites under remnant vegetation, it was estimated that about 18.9 Mt of C has been lost from Vertosols by cotton cropping in NSW. With more sustainable management practices such as conservation tillage and green manuring, some of the lost carbon can be resequestered, which will help to mitigate the greenhouse effect, improve soil quality and may increase crop yield.
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19

Hacking, Nicole. "Macrofaunal community structure of beaches in northern New South Wales, Australia." Marine and Freshwater Research 49, no. 1 (1998): 47. http://dx.doi.org/10.1071/mf96130.

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Macrofaunal community composition of ten exposed sandy beaches in northern New South Wales, Australia, appeared to correlate with beach morphodynamic state even though the data represented sampling at only a single time. Better results were obtained by using the Beach State Index (BSI) rather than the dimensionless fall velocity (?). Species number and abundance significantly increased as the BSI value increased, whereas biomass was not correlated with BSI. The New South Wales beaches had a higher species number and abundance relative to BSI than did beaches in a published review of beaches around the world.
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20

Dickman, C. R., H. E. Parnaby, M. S. Crowther, and D. H. King. "Antechinus agilis (Marsupialia : Dasyuridae), a new species from the A. stuartii complex in south-eastern Australia." Australian Journal of Zoology 46, no. 1 (1998): 1. http://dx.doi.org/10.1071/zo97036.

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A new species from the Antechinus stuartii stuartii complex, A. agilis, sp. nov., is described from Victoria and south-eastern New South Wales. It differs from A. stuartii primarily in its smaller average size, lighter and greyer fur colour, relatively smaller anterior and posterior palatal vacuities, and more rounded premolars. The species can be distinguished in the field on external morphology. A. agilis resembles A. stuartii adustus from northern Queensland more closely in skull and dental morphology than it does A. stuartii from central coastal New South Wales, with which it is parapatric and occasionally sympatric in the southern coastal part of the State. Considerable morphological variation is apparent amongst populations regarded previously as A. stuartii from southern Queensland and northern New South Wales, suggesting that more than one taxon is included currently under A. stuartii. Further clarification of the relationships of A. agilis requires evaluation of variation in such populations of A. stuartii and also with A. flavipes from northern New South Wales and southern and central Queensland.
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21

WALSH, RAOUL A. "Opioid drug accidental deaths in the Newcastle area of New South Wales, 1970-1987." Drug and Alcohol Review 10, no. 1 (January 1991): 79–83. http://dx.doi.org/10.1080/09595239100185101.

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22

Kavanagh, Rodney P., and Michael Murray. "Home Range, Habitat and Behaviour of the Masked OwlTyto novaehollandiaenear Newcastle, New South Wales." Emu - Austral Ornithology 96, no. 4 (December 1996): 250–57. http://dx.doi.org/10.1071/mu9960250.

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23

Timms, B. V. "Study of coastal freshwater lakes in southern New South Wales." Marine and Freshwater Research 48, no. 3 (1997): 249. http://dx.doi.org/10.1071/mf96049.

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There are few freshwater lakes associated with coastal dunes in southern New South Wales (NSW). Lake Nargal near Narooma, Bondi Lake near Bega, and a small lagoon near Pambula have little in common limnologically with coastal dune lakes of northern NSW and southern Queensland. They differ in mode of origin, are less dominated by NaCl, are less acidic, are more speciose, have few characteristic dune-lake indicator species, and moreover contain certain southern species. However, a re-examination of data for Lakes Windermere and McKenzie further north at Jervis Bay suggest that these are classic dune-contact lakes rather similar to those in northern NSW. Differences and similarities are largely influenced by the extent and therefore the hydrological influence of the contextural coastal sand mass and by biogeography.
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24

Brown, S. L., and ,. "Revegetating farmlands in northern New South Wales: problems and solutions©." Acta Horticulturae, no. 1140 (August 2016): 45–56. http://dx.doi.org/10.17660/actahortic.2016.1140.10.

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25

LOVE, SCJ, FJA NEILSON, AJ BIDDLE, and R. MCKINNON. "Moxidectin-resistant Haemonchus contortus in sheep in northern New South Wales." Australian Veterinary Journal 81, no. 6 (June 2003): 359–60. http://dx.doi.org/10.1111/j.1751-0813.2003.tb11514.x.

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26

Field, Judith H., and Walter E. Boles. "Genyornis newtoniandDromaius novaehollandiaeat 30,000 b.p. in central northern New South Wales." Alcheringa: An Australasian Journal of Palaeontology 22, no. 2 (January 1998): 177–88. http://dx.doi.org/10.1080/03115519808619199.

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27

Dawson, M. W. "Cisuralian coals of the Mullaley Sub-basin, northern New South Wales." Australian Journal of Earth Sciences 63, no. 3 (April 2, 2016): 275–94. http://dx.doi.org/10.1080/08120099.2016.1185037.

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28

Faulkner, Adam. "A study of aboriginal fisheries in northern New South Wales, Australia." Human Dimensions of Wildlife 5, no. 4 (December 2000): 83–88. http://dx.doi.org/10.1080/10871200009359197.

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29

Chessman, Bruce C., and Andrew J. Boulton. "Occurrence of the mayfly family Teloganodidae in northern New South Wales." Australian Journal of Entomology 38, no. 2 (June 1999): 96–98. http://dx.doi.org/10.1046/j.1440-6055.1999.00081.x.

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30

Weiner, James F. "The appropriation of an Aboriginal landscape in northern New South Wales." Australian Journal of Anthropology 22, no. 2 (May 17, 2011): 189–202. http://dx.doi.org/10.1111/j.1757-6547.2011.00133.x.

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31

SPENCE, SA. "Antimicrobial use and residues in calves in northern New South Wales." Australian Veterinary Journal 71, no. 12 (December 1994): 429–30. http://dx.doi.org/10.1111/j.1751-0813.1994.tb00964.x.

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32

Klein, TA. "Fungi Associated With Discoloured Wheat Grain in Northern New South Wales." Australasian Plant Pathology 16, no. 4 (1987): 69. http://dx.doi.org/10.1071/app9870069.

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33

Van de Wouw, Angela P., Vicki L. Thomas, Anton J. Cozijnsen, Stephen J. Marcroft, Phillip A. Salisbury, and Barbara J. Howlett. "Identification ofLeptosphaeria biglobosa'canadensis' onBrassica junceastubble from northern New South Wales, Australia." Australasian Plant Disease Notes 3, no. 1 (2008): 124. http://dx.doi.org/10.1071/dn08049.

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34

Ashley, P. M., and B. G. Lottermoser. "Arsenic contamination at the Mole River mine, northern New South Wales." Australian Journal of Earth Sciences 46, no. 6 (December 1999): 861–74. http://dx.doi.org/10.1046/j.1440-0952.1999.00748.x.

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35

Pearson, Alan, Karen Francis, Brent Hodgkinson, and George Curry. "PREVALENCE AND TREATMENT OF PRESSURE ULCERS IN NORTHERN NEW SOUTH WALES." Australian Journal of Rural Health 8, no. 2 (April 2000): 103–10. http://dx.doi.org/10.1046/j.1440-1584.2000.00248.x.

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36

Mustard, Roger. "Granite-hosted gold mineralization at Timbarra, northern New South Wales, Australia." Mineralium Deposita 36, no. 6 (September 1, 2001): 542–62. http://dx.doi.org/10.1007/s001260100188.

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37

Jarman, PJ, CM Phillips, and JJ Rabbidge. "Diets of Black-stripped wallabies in New South Wales." Wildlife Research 18, no. 4 (1991): 403. http://dx.doi.org/10.1071/wr9910403.

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In both the wet and dry extremes of its remnant range in northern New South Wales, the black-striped wallaby, Macropus dorsalis, eats predominantly monocotyledonous plants, selecting leaves and, in some seasons, seedheads. The wallabies eat a wide range of monocot species, taking these from the habitat in which they shelter in the daytime as well as from that in which they forage at night. This study suggests that reserves for the conservation of the species need to include nocturnal foraging as well as diurnal sheltering habitats.
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38

Albrecht, David, Richard Jobson, Neville Walsh, and Eric Knox. "Lobelia claviflora (Campanulaceae: Lobelioideae), a new species from northern New South Wales, Australia." Telopea 21 (July 18, 2018): 121–27. http://dx.doi.org/10.7751/telopea12859.

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39

Harvey, MS. "A review of the water mite family Limnocharidae in Australia (Acarina)." Invertebrate Systematics 3, no. 5 (1989): 483. http://dx.doi.org/10.1071/it9890483.

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Neolimnochares kakadu, sp. nov., from the Northern Territory is described; Limnochares australica Lundblad from Western Australia, New South Wales, Victoria and Tasmania, and Rhyncholimnochares womersleyi (Lundblad) from New South Wales, Queensland, Victoria and Tasmania are redescribed.
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40

McTaggart, A. R., A. D. W. Geering, and R. G. Shivas. "Thekopsora minima causes blueberry rust in south-eastern Queensland and northern New South Wales." Australasian Plant Disease Notes 8, no. 1 (June 21, 2013): 81–83. http://dx.doi.org/10.1007/s13314-013-0101-2.

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41

Day, Carolyn, Rohan Jayasuriya, and Graham Stone. "Hepatitis C-related discrimination in New South Wales." Australian Health Review 27, no. 2 (2004): 57. http://dx.doi.org/10.1071/ah042720057.

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Carolyn Day is with the National Drug and Alcohol Research Centre, University of New South Wales. Rohan Jayasuriya is at the Graduate School of Public Health, University of Wollongong. Graham Stone is with HIV, Program AIDS, Northern Sydney Health, Manly Hospital.Acknowledgements: The HepCare trial was funded by the Commonwealth Department of Health and Family Welfare and the NSW Health Department.Hepatitis C-related discrimination was examined. Intake interviews with 606 HepCare trial participants from New South Wales were analysed to determine the prevalence and correlates of hepatitis C related discrimination. The sample was a mean age of 37 years, 54% were males, 79% reported a history of drug injecting and 35% were current injectors. Forty percent of the sample reported experiencing hepatitis C-related discrimination. Multivariate analysis revealed that current injectors, 35-44 year olds, females, those who had recently consulted a general practitioner and those who had been referred to a specialist for their hepatitis C were more likely to report discrimination than other groups. More research is required to attain a better understanding of hepatitis C-related discrimination.
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42

Moore, NY, KG Pegg, RN Allen, and JAG Irwin. "Vegetative compatibility and distribution of Fusarium oxysporum f.sp. cubense in Australia." Australian Journal of Experimental Agriculture 33, no. 6 (1993): 797. http://dx.doi.org/10.1071/ea9930797.

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Isolates of Fusarium oxysporum f. sp. cubense from wilted banana plants in Queensland and New South Wales were characterised for vegetative compatibility. Six vegetative compatibility groups VCGs) were identified. Race 1 (VCGs 0124, 01241.5, 0125) was widespread, being detected in northern and southern Queensland as well as northern New South Wales. Race 2 (VCG 0128) was found attacking Bluggoe in North Queensland. Race 4 (VCGs 0120, 0129, 01211) was detected in Cavendish plantations in southern Queensland and in Lady finger plantations in New (South Wales and southern Queensland. Isolates of the race 4 VCG 0129 from Lady finger plantations were pathogenic to Cavendish cultivars in glasshouse tests.
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43

Todd, M. K. "Diet and Foraging Behaviour of Red-browed Finches Neochmia temporalis Near Newcastle, New South Wales." Emu - Austral Ornithology 96, no. 4 (December 1996): 245–49. http://dx.doi.org/10.1071/mu9960245.

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44

Giles, Robyn L., Andrew N. Drinnan, and Neville G. Walsh. "Variation in Phebalium glandulosum subsp. glandulosum: morphometric and anatomical evidence (Rutaceae)." Australian Systematic Botany 21, no. 4 (2008): 271. http://dx.doi.org/10.1071/sb07023.

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Specimens of Phebalium glandulosum Hook. subsp. glandulosum representing the entire geographic range of the subspecies were examined for morphological and anatomical variation. Phenetic patterns were identified with the pattern analysis package PATN, and three distinct groups were identified. One group consists of plants from inland areas of New South Wales, north-western Victoria, and the Yorke and Eyre Peninsulas of South Australia; a second group consists of plants collected from alongside the Snowy River in eastern Victoria and south-eastern New South Wales; and a third group consists of plants from Queensland and northern New South Wales. The climate analysis program BIOCLIM was used to compare climate variables across the geographic range, and showed clear climatic separation in support of the phenetic analysis. The three groups are formally recognised here as distinct subspecies. Plants from Queensland and the Bourke region of northern New South Wales belong to the typical subspecies; plants from north-western Victoria, central New South Wales, and the Yorke and Eyre Peninsulas of South Australia form a cohesive assemblage and are recognised as a new subspecies P. glandulosum subsp. macrocalyx; and plants from the Snowy River in far eastern Victoria and the Southern Tablelands of New South Wales form a distinct and isolated group recognised as a new subspecies P. glandulosum subsp. riparium. These new subspecies are formally described, and an identification key and summaries distinguishing all six subspecies of P. glandulosum are presented.
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45

Dickman, CR, DH King, M. Adams, and PR Baverstock. "Electrophoretic Identification of a New Species of Antechinus (Marsupialia, Dasyuridae) in Southeastern Australia." Australian Journal of Zoology 36, no. 4 (1988): 455. http://dx.doi.org/10.1071/zo9880455.

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Two electrophoretically distinct but morphologically cryptic forms of Antechinus 'stuartii', designated 'northern' and 'southern', occur together at Kioloa on the southern coast of New South Wales. These forms are distinguished by fixed allele differences in three proteins (albumin, glycollate oxidase and mannosephosphate isomerase) and by differences in allele frequencies for transferrin, and are separated by a Nei D of 0.11. The two forms are reproductively isolated in sympatry at Kioloa by asynchrony in the timing of reproduction, and may be considered separate biological species. Northern form populations were identified by screening for albumin and transferrin in seven localities on the central coast of New South Wales north of Kioloa. Southern form populations were identified similarly in 13 localities south of Kioloa and inland along the Great Dividing Range, and at a further locality in southern Victoria. Ovulation occurs at different rates of change of photoperiod in the two species, and may ensure that reproductive isolation is maintained in all potential areas of sympatry. The northern form represents A. stuartii sensu stricto and ranges from Kioloa north into south-eastern Queensland. The southern form is an undescribed species of Antechinus that appears to be widely distributed throughout southern New South Wales and Victoria.
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46

Rohweder, D. A., and P. R. Baverstock. "Distribution of platypusOrnithorhynchus anatinusin the Richmond River Catchment, northern New South Wales." Australian Zoologist 31, no. 1 (June 1999): 30–37. http://dx.doi.org/10.7882/az.1999.005.

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47

Brophy, Joseph J., Robert J. Goldsack, Lachlan M. Copeland, and Paul I. Forster. "Leaf Essential Oils fromPhilothecaSpecies (Rutaceae) in Queensland and Northern New South Wales." Journal of Essential Oil Research 19, no. 4 (July 2007): 364–71. http://dx.doi.org/10.1080/10412905.2007.9699307.

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48

Treadgold, M. L., and J. M. Pullen. "Henry George in Northern New South Wales Newspaper Accounts of Two Lectures." History of Economics Review 23, no. 1 (January 1995): 83–95. http://dx.doi.org/10.1080/10370196.1995.11733188.

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49

Roberts, J. J., and R. Boyd. "Late Quaternary core stratigraphy of the northern New South Wales continental shelf." Australian Journal of Earth Sciences 51, no. 1 (February 2004): 141–56. http://dx.doi.org/10.1046/j.1400-0952.2003.01039.x.

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50

Jaravani, Fidelis Godfrey, David Durrheim, Paul Byleveld, Michael Oelgemoeller, and Jenni Judd. "Drinking water safety in recreational parks in northern New South Wales, Australia." Australasian Journal of Environmental Management 22, no. 4 (May 19, 2015): 432–45. http://dx.doi.org/10.1080/14486563.2014.984782.

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