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Articles 2101 - 2130 of 2910
Full-Text Articles in Physical Sciences and Mathematics
Grain Legume Agronomy Program, G H. Walton
Grain Legume Agronomy Program, G H. Walton
Experimental Summaries - Plant Research
Lupin Agronomy - varieties x environment - Wongan Hills R.S., Badgingarra R.S., Newdegate R.S., Mt Barker R.S. Lupin Agronomy - morphology x split seed – Mr J. wood, “Karakin”, Lancelin. Lupin Agronomy - Erregulla regeneration and rotation – Lancelin, Moora, Watheroo. Grain legume species comparison – 84ES1, 84LG38, 84MO10, 84ES1. Field pea evaluation – varieties. Aim: To compare the biological and seed yield adaptation to environment between morphological types of field pea. Field pea agronomy – 84KA18, 84LG25, 84ME42, 84MO33, 84MO34, 84N16, 84SG20, 84SG28. Sowing time x seed rate. Pea and wheat response to applied P – 84LG24, 84ME43, 84NO46, …
The Ecology Of Skeleton Weed .(Chondrilla Juncea L.) In Western Australia , Afghan Thistle (Solanum Hoplopetalum) Ecology, J. Dodd
Experimental Summaries - Plant Research
1. The ecology of skeleton weed .(Chondrilla juncea L.) in Western Australia - 84PE18 Seed production and water use in the glasshouse. 1.2 Seed production and water use of field-grown skeleton weed (84BA17, 84BA18). Water use. 1.3 Germination in relation to soil water content. 2. Afghan thistle (Solanum hoplopetalum) ecology. 2.1 Water relations (84N048). 2.2 Growth in Afghan thistle (84N050). 2.3 Afghan thistle reproductive biology (84N049, 84N063, 84PE19).
Doublegee Seed Dormancy And Longevity, Lupins - Radish Control, Peas - Broadleaf Weed Control, D J. Gilbey, R. Klemm
Doublegee Seed Dormancy And Longevity, Lupins - Radish Control, Peas - Broadleaf Weed Control, D J. Gilbey, R. Klemm
Experimental Summaries - Plant Research
Doublegee - Seed dormancy and longevity. Doublegee seed longevity x depth – 76C9, 75KA8. Lupins - Radish control. Radish control in lupins – 84A4, 84GE54, 84ME45, 84TS35. Pre-emergence grass weed control. Pre-emergence grass control in lupins – 84BA30, 84BA33. Post-emergence grass weed control - 84A5. Simazine rates on qravel soils – 84NO61, 84NA26. Herbicide in peas – 84ME56. Peas – Broad leaf weed control. Broad leaf weed control in grain peas – 84KA30, 84ME46, 84NO64.
Comparison Of Conventional Boomspray And C.D.A. Equipment For Weed Control In Cereals, J R. Peirce, B. J. Rayner
Comparison Of Conventional Boomspray And C.D.A. Equipment For Weed Control In Cereals, J R. Peirce, B. J. Rayner
Experimental Summaries - Plant Research
l. 84N067 - Ryegrass
2. 84N068 - Capeweed
3. 84ME69 - Capeweed
4. 84 (40-41) - Ryegrass & Radish
5. C.D.A. - Capeweed
6. Boomspray Capeweed
Comparison of conventional boomspray and C.D.A. equipment for weed control in cereals – 84C40, 84C41, 84ME69, 84NO67, 84NO68.
Effectiveness of Roundup C.T. with and without crop oils applied through Controlled Droplet Applicators (C.D.A.) – Wongan Hills Research Station.
Effectiveness of Roundup C.T. with and without crop oils applied through a conventional boomspray – Wongan Hills Research Station.
Pasture Species Evaluation In The Medium Rainfall Zone, C W. Thorn, C K. Revell, S Davies, I Rose
Pasture Species Evaluation In The Medium Rainfall Zone, C W. Thorn, C K. Revell, S Davies, I Rose
Experimental Summaries - Plant Research
The effect of mechanical defoliation on the production of legume species in the Katanning region - 84KA26. The effect of grazing on the seed production of legume species - 84KA27. The effect of gypsum and establishment techniques on Circle Valley medic - 84KA29. The effect of gypsum, tillage and nitrogen on cereal yields in a continous crop system - 84KA28. The effect of gypsum on cereal crop yield - Katanning, E. Garlick Kwobrup, D. Webse. Pasture probe evaluation. Aim: To determine the suitability of the Vickery single probe earth plate capacitance meter for determining pasture production.
Effect Of Various Crop And Pasture Species On The Growth Of A Subsequent Wheat Crop, N Delroy, J W. Bowden, I Rowland, M Ralph, R Lunt, M Baker
Effect Of Various Crop And Pasture Species On The Growth Of A Subsequent Wheat Crop, N Delroy, J W. Bowden, I Rowland, M Ralph, R Lunt, M Baker
Experimental Summaries - Plant Research
83WH29: The effect of various crop and pasture species on the growth of a subsequent wheat crop. Aim: To characterise the effect of various crop and pasture species on the growth and yield components of a subsequent wheat crop with special emphasis on the nitrogen nutrition of that crop. To provide validation data for modelling wheat growth and nitrogen uptake. Measurements: Factors to be monitored through time were; Soil moisture profiles; Mineral nitrogen profiles; Root growth profiles; Top growth and nitrogen uptake; Development score; Incidence of disease and pests.
Seasonal notes, trial design, weed diseases and pests. Results: The results …
Seed Set Control. Competition. Herbicide Efficiency. Herbicide Trials., J E. Holmes, R L. Thomas
Seed Set Control. Competition. Herbicide Efficiency. Herbicide Trials., J E. Holmes, R L. Thomas
Experimental Summaries - Plant Research
Seed set control
83M60 - Barley grass
83Na54 – Barley grass
83A4 – Rye grass
83N50 – Brome grass
Competition
84A12 – Brome grass
84A10 – Silver grass
84A6 – Barley grass
Herbicide efficiency
84A7 - Brome grass : Hoegrass pre-emergent
Herbicide trials
84A11 – Barley grass : Glean mixture
84A13 – Barley grass : Isoproturon
84A15 – Brome grass : Glean mixtures
84A16 - Brome grass : Hoegrass, Donsanex, AC222293
84A9 – Silver grass : lsoproturon, Yield, trifulualin,
AC222293, Dosanex
84A14 – Rye grass : Hoegrass following Glean
84A19 – SD-95481 : Grasses controlled
84A20 – CME12701 : Evaluation …
Recommendations & Proposals For A Fire Management Control Programme For The Beekeepers' Reserves And Areas Of Adjacent Crown Land, R C. Burking
Apiculture research reports
No abstract provided.
Long Term Minimum Tillage Investigations, Stubble Management, Deep Ripping, R J. Jarvis, L G. Butcher
Long Term Minimum Tillage Investigations, Stubble Management, Deep Ripping, R J. Jarvis, L G. Butcher
Experimental Summaries - Plant Research
Direct drilling Long term minimum tillage investigations (1) Continuous cropping – 77A16, 77A18, 77MT15, 77WH17, 77WH13, 78M25. (2) Rotational cropping – 77A43, 77E52, 77M35, 77M56, 77MT51, 77WH8. Stubble management – 79M7, 79WH6, 82M34, 84M1, 82LG4, 82LG46 (82KD1). Deep ripping - 82M35 in Minimum Tillage Rotation section also contains a deep ripping treatment. 77WH17, 80A44, 80NO46, 81M45, 81NO3, 81NO4, 82GE37, 82GE38, 82M30, 82M46, 82M60, 82ME38, 82N32, 82WH49, 84E24, (84C42, 84C43, 84C44, 84C45, 84C46) Eradu Sandplain – ECRS, 84E23, 84E24, 84JE43, 84JE44, 84LG37, 84M38, 84NO58, 84WH2, 84WH3, 84WH39. Additional deep ripping research is included in summaries by W. Bowden, D. Tennant, J. …
Tackling The Problem Off The Farm, C M. Croft
Tackling The Problem Off The Farm, C M. Croft
Journal of the Department of Agriculture, Western Australia, Series 4
Methods of redusing phosphorus losses from the catchment soils of the Peel-Harvey esturine system have been discussed in other articles in this Journal.
This article briefly discusses a range of 'off the farm' techniques to improve phosphorus flushing from Peel Inlet or Harvey Estuary to the sea and to treat the phosphorus and the algae. These techniques were among more than 100 management options evaluated by the Peel-Harvey Study Group.
The Extension Programme, W K. Russell, G. K. Palmer
The Extension Programme, W K. Russell, G. K. Palmer
Journal of the Department of Agriculture, Western Australia, Series 4
From the start of the Peel-harvey study in 1976, scientific research and extension have been closely linked. Trials, some involving major drainage works, have been set up on about 30 farms and several field days and seminars have been held.
The Peel-Harvey Study Group anticipates that farmer acceptance of the Department of agriculture's recommendations will reduce the phosphorus input to the estuary by 30 to 40 per cent over the next three to five years. At the same time farmers will benefit from modified cultural practices better suited to the sandy soils of the coastal plain.
Manganese Nutrition Of Cereals, J W. Gartrell
Manganese Nutrition Of Cereals, J W. Gartrell
Experimental Summaries - Plant Research
Acidifying N fertilizers on availability of native soil Mn, and on fertilizer Mn applied in two forms and two mixing methods 84NO3. Acidifying N fertilizers Mn sources, methods of incorporation 84NO4. Acidifying N fertilizers, Mn sources, methods of incorporation 84NO5. Varietal differences among wheats in ability to absorb and utilize manganese in deficiency situations 84NO6. Manganese residual with acidifying nitrogen fertilizers 84NO7.
Low Rainfall Pasture Project, M. A. Ewing
Low Rainfall Pasture Project, M. A. Ewing
Experimental Summaries - Plant Research
1. Variety experiments: (a) Rows 84M39. (b) Small Plots 84M40. (c) Large Plots 84M41, 84WH40, 84N22, 84LG39, 84M56, 84M57. 2. Pasture establishment systems: 84TS38, 84M61. 3. Pasture grazing (defoliation) experiments: 84M43, 84LG34, 84LG33, 84M42. 4. Cereals following pastures: 84ME47. 5. Pasture wheat rotaton experiments: 82WH39, 82M47. 6. Medic rhizobial studies - see report of J. Howieson. 7. Lupins - see report R. French.
Trace Element Nutrition, M M. Riley, J W. Gartrell, R. F. Brennan
Trace Element Nutrition, M M. Riley, J W. Gartrell, R. F. Brennan
Experimental Summaries - Plant Research
South Perth Long term copper trial - Newdegate Research Station – 66N14. Copper, zinc & sulphur residual with DAP for wheat – 78WH66. Copper and zinc residual with DAP – 78MO36. Zinc residual with high analysis N.P. fertilizer for wheat – 79ME22, 79ME23, 80MO8, 80NO31. Cereal responses to zinc Copper and nitrogen interactions on wheat varieties – 83GE2, 83WH1. Barley responses to drilled trace elements – 83BR4, 83BR5. Manganese on wheat – 82NO8. ESPERANCE Zinc residual with high analysis N.P. fertilizer for wheat – 83ES35. Methods of copper application on new land – 83LG6. Copper spray and nitrogen rate applications …
Summary Of Rhizobium Experiments, J G. Howieson
Summary Of Rhizobium Experiments, J G. Howieson
Experimental Summaries - Plant Research
The main emphasis for rhizobial work in 1984 was on the acid tolerance of medic Rhizobium. The experimental programme in the field was greatly expanded to include testing of some 160 isolates collected from Sardinia in May 1984. Broadacre sowings of acid tolerant strain WSM 419 were undertaken as a preliminary step to its commercial release in 1985. Glasshouse work in 1984 was dedicated to a more intensive investigation of the factors contributing to the enhanced nodulating ability of M. polymorpha and M. murex on acid soils. As well, a simple technique for identifying acid tolerant strains of rhizobia in …
Sulphur Needs Of Crops And Pastures, J S. Yeates
Sulphur Needs Of Crops And Pastures, J S. Yeates
Journal of the Department of Agriculture, Western Australia, Series 4
Sulphur deficiency has long been recognised as a potential problem of legume pastures in the higher rainfall areas (over 750 mm a year) of south-west Western Australia. Before the introduction of granulated superphosphate (about 1970), sulfer deficiencies commonly developed in spring on susceptible soils despite autumn applications of superphosphate (containing about 10.5 per cent sulphur).
In loww and medium rainfall areas sulphur deficiency is rarely reported, at least partly because of annual superphosphate applications. However large areas of the sandy-surfaced soils of Western Australia would become sulphur deficient for pastures and crops if sulphur inputsd in fertilisers were substantially reduced. …
The Soil Phosphorus Store, G S P Ritchie, D. M. Weaver
The Soil Phosphorus Store, G S P Ritchie, D. M. Weaver
Journal of the Department of Agriculture, Western Australia, Series 4
The management of the soil phosphorus store, or 'super bank' to minimise phosphorus leaching losses is a vital part of any strategy to reduce algal pollution of the Peel-Harvey estuary.
Phosphorus can exist in the soil in four main 'pools'. it may occur in the soil solution or in one of the three pools that contain phosphorus in solid forms. This phosphorus can be in compounds (fertilisers, dead plant material); adsorbed (attached) to soil particles such as organic matter, clay and iron oxide; or as constituents of micro-organisms.
Alternative Pasture Species For Deep Sands, D A. Nicholas
Alternative Pasture Species For Deep Sands, D A. Nicholas
Journal of the Department of Agriculture, Western Australia, Series 4
Although the climate of the swan coastal plain between Perth and Bunbury is suitable for growing a range of pasture species, some soil types greatly limit this range.
Pasture species commonly grown in the South-West, such as subteranean clover and annual ryegrass, can only be grown successfully on the better soils of the coastal plain - the loams, yellow sands and Joel sands. On the freely drained, deep, infertile Gavin sands such species rarely persist because of the soil's poor water holding capacity, and its water repellency and its poor ability to retain nutrients.
Soil Testing For Acidity, I R. Wilson
Soil Testing For Acidity, I R. Wilson
Journal of the Department of Agriculture, Western Australia, Series 4
One of the most important aspects of the soil acidity research programme is the accurate analysis of soil and plant materials.
A soil acidity problem cannot be simply diagnosed with one test. Although the soil pH test is used for the initial evaluation of soil acidity, it does not measure the other factors which affect plant growth as a result of this acidity.
For example, plant growth on a coastal soil with pH 4.3 (in water) may not be affected by applying lime, but growth may improve markedly on a central wheatbelt soil of pH 4,8 (in water).
Another two …
The Effects On Plant Growth, W M. Porter, J. S. Yeates
The Effects On Plant Growth, W M. Porter, J. S. Yeates
Journal of the Department of Agriculture, Western Australia, Series 4
The level of acidity of a soil reflects its chemical and sometimes its biological condition. Changes in acidity mean changes in the availability to plants of some soil elements, and modifications to the biological processes in the soil.
Some elements become more available to plants in acis soils, and in some soils particular elements can reach toxic levels. Other elements can be effected in the opposite way: deficiencies can develop in acid conditions.
It is important to realise, however, that the chemical nature of all soils varies. Beccause of these variations, acidity can affect each soil differently and thus influence …
Molybdenum Deficiency In The Wheatbelt, M M. Riley
Molybdenum Deficiency In The Wheatbelt, M M. Riley
Journal of the Department of Agriculture, Western Australia, Series 4
The trace element molybdenum is needed in very small amounts in nitrogen metabolisms of crops and pastures. One of the projects that started as a result of the overall soil acidity research programme was the examination of molybdenum deficiency on acid soils throughout the South-West of Western Australia.
The Development And Testing Of Soil Wetting Agents, Douglas Alexander Mcghie
The Development And Testing Of Soil Wetting Agents, Douglas Alexander Mcghie
Conference papers and presentations
Water repellent (non wetting) soils in Western Australia affect pasture and crop establish 7cent and growth, the erosion of particular land classes, and water use and turf health in urban areas. Experimental materials were synthesised to give a range of properties, some of which should optimise the performance as soil wetting agents. The soil wetting and rewetting properties of the experimental and many commerically available wetting agents were evaluated on a coarse, water repellent Bassendean sand using plastic ring infiltrometers. A rainfall simulator was used to study effective rates of the various materials for improving the penetration of rainfall into …
Soil Acidity In The Eastern Wheatbelt, W Porter, S Carr, J Garlett
Soil Acidity In The Eastern Wheatbelt, W Porter, S Carr, J Garlett
Experimental Summaries - Plant Research
1. Surface incorporated lime: 80M30 - Wheat. 82ME54 - Lupins. 82TS33 - Wheat. 80M31 - Wheat. 81M5 - Medic. 2. Subsoil banded lime: 81M54 - Lupins. 3. Whole profile incorporated lime: 82M5 - Wheat. 82ME10 - Wheat. 4. Acid tolerant species: 84ME50 - interaction with N. 84ME51 - interaction with PP. 84ME52 - growth on non-acid sand.
Barley Production And Soil Acidity, P J. Dolling, W. M. Porter
Barley Production And Soil Acidity, P J. Dolling, W. M. Porter
Journal of the Department of Agriculture, Western Australia, Series 4
One of the causes of reduced plant yields on acid soils is aluminium toxicity. because barley is extremely sensitive to this mineral, a project started last year to examine the influence of soil acidity on barley production in the main barley growing areas of Western Australia.
This article discusses some of the background information on the project and its aims.
Horticultural Crops; Grapevines, Capsicum, Fruit Trees And Lucerne, D J. Gilbey, R Klemm
Horticultural Crops; Grapevines, Capsicum, Fruit Trees And Lucerne, D J. Gilbey, R Klemm
Experimental Summaries - Plant Research
Crabgrass control in vines – 82SR4, 83SR4. Weed control in capsicums - 83MD10, 84MD6. Herbicide tolerance – fruit – 82MN36. Crabgrass control in lucerne - 82PE60, 83PE6, 84PE4.
Relative Crop Yields On Different Soil Types, Pea And Lupin, R French
Relative Crop Yields On Different Soil Types, Pea And Lupin, R French
Experimental Summaries - Plant Research
1. Relative crop yields on different soil types - 84M50, 84M51, 84M52, 84M53. 2. Pea and lupin time of sowing trials - 84JE42, 84LG32, 84LG31, 84ME55, 84ME53, 84ME54, 84N065. 3. Effect of P-Pickel on Pea Nodulation - 84M64. 4. Lupin Agronomy - 84M55, 82ME52.
Annual Medicago Spp. For Wa Rangelands - Selection And Establishment Techniques, G Gintzburger
Annual Medicago Spp. For Wa Rangelands - Selection And Establishment Techniques, G Gintzburger
Experimental Summaries - Plant Research
1) Exp 84KG1: Annual Medicago spp, for W.A. Rangeland. Ecotype testing with seeds sown (Woolibar Station). 2) Exp 84KG2: Pod seeding of annual Medics and response to phosphate fertilisation (I). (Woolibar Station). 3) Exp 84KG3: Serena Medics on Goldfield Rangeland - Pod seeding and pitting (Jeedamya Station). 4) Exp 84KG4: Pod seeding of annual Medics and response to phosphate fertilisation (II). (Woolibar Station). 5) Exp 84CA1: Establishment and survival of annual Medics - Pod seeding on W.A. rangelands simulating aerial seeding (Quobba Station). 6) Exp 84CA2: Annual Medicago spp. for W.A. rangeland - Ecotypes testing with seed sown (Hamelin Station). …
Modifying Fertiliser Practices, J S. Yeates, D. M. Deeley, M. F. Clarke, D. Allen
Modifying Fertiliser Practices, J S. Yeates, D. M. Deeley, M. F. Clarke, D. Allen
Journal of the Department of Agriculture, Western Australia, Series 4
If modified fertiliser practices are adopted phosphorus losses from the Peel-Harvey catchment can be reduced. Farmers can save money on fertiliser applications and the need for more expensive catchment management measures to reduce algal pollution of the estuary will be avoided.
Research data available so far indicate that, with farmer co-operation and the use of the new slow release fertiliser New Coastal Superphosphate, long-term phosphorus application rates can be reduced by 30-40 per cent - and possibly even halved - without lowering agricultural production. This will also reduce phosphorus loss to drainage water.
Although much of the research since 1982 …
Brown Spot Of Lupins, P Mcr Wood
Brown Spot Of Lupins, P Mcr Wood
Experimental Summaries - Plant Research
Fungicide treatment of lupin seed - 84WH34. Effect of cereal stubble treatment on brown spot - 84WH27. Effect of Rovral sprays on brown spot - 84N056, 84NO57. Effect of sowing date and seed treatment - 84BA26, 84WH28. The effect of Rovral seed treatment on brown spot on farmers' lupin crops. Site: Three Springs, Marchagee, North Gabin, Wannamal.
Nitrogen Flows From Several Species And Varieties Of Legume, John Hamblin Dr
Nitrogen Flows From Several Species And Varieties Of Legume, John Hamblin Dr
Experimental Summaries - Plant Research
Trial 83C24: N flows from several species and varieties of legume.
Trial 83C27: The effect of seeding rate, planting and variety on the residual value of lupins.
Trial 84C25: Small rotation trial for 1985.
Trial 84C34: Nitrogen response on large rotation plots at ECRS.
These trials were carried out in collaboration with: Mr R. Delane, and with assistance from: Mr. T. White, Ms. A. Bishop.