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1983

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Articles 31 - 50 of 50

Full-Text Articles in Fresh Water Studies

Ryegrass, Barley, Wildoats, Isoproturon, Kerb, Glean, Silver Grass, Brome Trials, Hoegrass, J. E. Holmes, R L. Thomas Jan 1983

Ryegrass, Barley, Wildoats, Isoproturon, Kerb, Glean, Silver Grass, Brome Trials, Hoegrass, J. E. Holmes, R L. Thomas

Experimental Summaries - Plant Research

1983 Summary – trials reported. 83ME48 - Ryegrass - Glean and Hoegrass 83ME68 A&B - Barley Grass - Glean, Bladex 83ME69 - Brome Grass - Herbicides 83ME70 - Barley Grass - Mixtures 83ME71 - Wildoats Herbicides 83ME72 - Timing Spraying Ryegrass 83ME73 - Isoproturon - Barley Grass 82BA46 - Kerb Residues 82N40 - Kerb Residues 83N38 - Glean on Oats 83N39 - Efficiency of SSH on Barley Grass 83N40 - Barley Grass Effect on Crop Density 83N41 - Silver Grass Competition 83N42 - Brome Control by SSH 0800 Affected by crop Density 83N43 - Silver Grass Herbicides 83N50 - Hoegrass …


Long Term Minimum Tillage Investigations. Stubble Management Techniques. Deep Ripping., R J. Jarvis Jan 1983

Long Term Minimum Tillage Investigations. Stubble Management Techniques. Deep Ripping., R J. Jarvis

Experimental Summaries - Plant Research

Long term minimum tillage Investigations (i) Continuous cropping (page 4) – 77A16, 77E18, 77M13, 78M25, 77MT15, 77WH17, 78BA42. (ii) Rotational sites (page 15) – 77A43, 77E52, 77M56, 77MT51, 77WH88, 82M35. Stubble management techniques (page 23) – 79M7, 79WH6, 82LG4, 82M34. Deep ripping (page 27) - 77WH17, 80A44, 80NO46, 81LG3, 81M45, 81M53, 81NO3 & 4, 82GE37 & 38, 82GE38, 82M61, 82M25, 82M31, 82M32, 82M46, 82M60, 82N32, 82NO48 & 49, 82NO50 & 51, 82WH49, 83JE26, 83NO69. Direct drilling – continuous cropping – 83NA37 (a), 83NA37 (b), 83NA38. Deep ripping (or “deep loosening”) – 79MO19, 83TS41, 83TS42.


Long Term Rotation Trials, Lupin: Wheat Rotation, Continuous Cropping With Nitrogenous Fertiliser, I Rowland Jan 1983

Long Term Rotation Trials, Lupin: Wheat Rotation, Continuous Cropping With Nitrogenous Fertiliser, I Rowland

Experimental Summaries - Plant Research

Long term rotation trials - 66M29, 67Cl3, 67N4, 68ES, 68SGS, 73SG16.

Lupins wheat rotation 79GE36, 79GE37, 80TS3, 82TS2.

Continuous cropping with nitrogenous fertiliser - 80NA6.


Organic Matter As A Source Of Nitrogen, N Delroy, R Deyl Jan 1983

Organic Matter As A Source Of Nitrogen, N Delroy, R Deyl

Experimental Summaries - Plant Research

The trials can be put into three groups: 1. Plus and minus ripping by species by bag nitrogen. This trial had a number of different species grown in 1982 and half of the trial was ripped in 1983 and the whole site sown to wheat with different rates of nitrogen applied to the subplots. Part of the information on the trial is contained in Bill Bowden's 1983 summary. 2. Species and management trials, namely 82LG5, 82Nl7, 82N041 and 82N03. 3. These trials had a number of different species grown in 1982 to which a number of management factors were applied …


Deep Ripping And Species Effects On Root Growth, Crop Growth, Soil Water Relations And Yields, D Tennant Jan 1983

Deep Ripping And Species Effects On Root Growth, Crop Growth, Soil Water Relations And Yields, D Tennant

Experimental Summaries - Plant Research

Species x deep cultivation responses - 83WH28 - Soil Physical Measurements, Root Growth Observations, Soil Water Data, Yields and Yield Components, Species differences - 83WH29 - Residual effects of ripping - Light land responses - 82WH36 and 77WH17 Water profile data were obtained for 82WH36 and 77WH17. Heavy land responses - 81M52. Effect of deep ripping on yield components and yields of wheat and lupins - 83WH28. Water depletion* at each depth of measurement - 82WH29.


Monitoring Defecation Activity Of Infaunal Deposit Feeders, Fred C. Dobbs Jan 1983

Monitoring Defecation Activity Of Infaunal Deposit Feeders, Fred C. Dobbs

OES Faculty Publications

An inexpensive, reliable thermistor device capable of monitoring infaunal foraging activity was built and used in the laboratory to examine effects of temperature on sediment reworking by the maldanld polychaete Clymenella torquata. The worm defecated at least once per hour 55.0 % (12.0 "C) to 88.2 % (5.5 "C) of the time. Defecation rate was linearly and positively related to temperature. Estimated volume of sediment ejected per defecation (0.015 ml) did not change with temperature. Results are compared with previous reworking studies of C. torquata.


The Effects Of Impoundments On Salinity In The Colorado River, Larry J. Paulson, John R. Baker Jan 1983

The Effects Of Impoundments On Salinity In The Colorado River, Larry J. Paulson, John R. Baker

Publications (WR)

The increase in salinity of our western rivers has been identified as one of the most serious water quality problems in the nation. This is of special concern in the Colorado River where salinity has increased from pristine levels estimated at 380 mg/1 to present-day levels of 825 mg/1 at Imperial Dam. Flow depletions, associated with decreased runoff and increased evaporation and diversions, coupled with high salt loading from natural and man-created sources are considered the primary causes for rising salinity in the river. The urban and agricultural development projected to occur in the basin through this century could deplete …


Sources Of Phosphate Trials. Miscellaneous Trials, J W. Bowden, R J. Lunt, M Baker Jan 1983

Sources Of Phosphate Trials. Miscellaneous Trials, J W. Bowden, R J. Lunt, M Baker

Experimental Summaries - Plant Research

I. Sources of Phosphate Trials. Cropping Trials: (80BA6) - Deep sand, Badgingarra, Lupins. (77WH2) - Gravel, old land, WHRS, Wheat. (76WH9) - WLS, new land, WHRS, Wheat (1982). (76WH10) - WLS, young land, WHRS Wheat (1982). (77MT2) - Loamy gravel, old land, Mount Barker Oats. Pasture trials: (77MT1) - Loamy gravel, new land, Mount Barker. (77E1) - Sandy gravel, new land, Esperance. (77E4) – [78E4?] Sandy gravel, old land, Esperance. II. Miscellaneous Trials Long term trials. 66M30 - Super x stocking rate at Merredin. 48M/149 EX - Residual super trial at Merredin. 65A1, 65C5 and 69WH15 - Maintenance P x …


Phosphorus Nutrition Of High Rainfall Pastures - Peel Harvey Estuarine System Study (Phase Ii) And Related Phosphorus Work, D M. Deeley, J S. Yeates, B. Barker, M F. Clarke Jan 1983

Phosphorus Nutrition Of High Rainfall Pastures - Peel Harvey Estuarine System Study (Phase Ii) And Related Phosphorus Work, D M. Deeley, J S. Yeates, B. Barker, M F. Clarke

Experimental Summaries - Plant Research

A. Sources, rates, time of application of phosphorus on high rainfall pastures. 80AL2, 80AL5, 81AL5, 81AL6, 81KE2, 81MA4, 82AL10, 82HA31, 82HA32, 83HA26, 83HA27. B. Soil test calibration curve trials on Bassendean sands. 82HA20, 82HA21, 82HA22, 82HA23, 82HA24, 82HA25, 82HA26, 82HA27, 82HA28, 82HA29, 82HA30. C. Soil test calibration curve trials on Coolup sands. 83HA20, 83HA21, 83HA22, 83HA23, 83HA24, 83HA25. D. Phosphorus rundown. 82HA14, 82HA15, 82HA16, 82HA18. NOTE: Summary is in two parts. 1. Peel Harvey catchment program (Deeley, Barker). 2. General program on high rainfall sandy soils (Yeates, Clarke). Summary of Experimental Work. General Aims. The work summarized here was commenced …


Pasture Species Investigations - High Rainfall Area, D A. Nicholas Jan 1983

Pasture Species Investigations - High Rainfall Area, D A. Nicholas

Experimental Summaries - Plant Research

Screening of alternatives to cv. Woogenellup clover: 80BR18 - Mayanup, 81NA37 - N. Bannister, 81PE6 - Byford, 82NA36 - West Wandering, 83AL48 - Takalarup. Screening of mid to late maturing lines of subterranean clover: 83MA7 - Wilgarup, 83AL49 - Hazelvale, 83BU22 - Bramley. Screening of early to mid season maturing lines of subterranean clover: 83NA35 - W. Wandering, 83M039 - Lancelin, 83MT38 - "Manurup Valley", M.B.R.S., 83Vl - Vasse R.S.


Soil Acidity - High Rainfall Pastures, J S. Yeates, D. A. Mcghie, D A. Tooke, M. F. Clarke Jan 1983

Soil Acidity - High Rainfall Pastures, J S. Yeates, D. A. Mcghie, D A. Tooke, M. F. Clarke

Experimental Summaries - Plant Research

A. Lime on old land pastures. 80BU13, 80BU14, 80BU15, 80BU16, 80BU17, 80BY7, 80BY16, 81AL10, 81AL11, 8IAL12, 81AL13, 81AL14, 81AL15, 81AL16, 81BU18, 81BY15, 81BY16, 81BY17, 81BY18, 81BY19, 81BY24, 81BY25, 81BY16, 81MA12, 81W9, 81Wl0, 81Wll, 82AL2, 82AL3, 82AL4, 82ALS, 82AL6, 82ALSS, 82BU6, 82BU7, 82BU8, 82BY37, 82HA35, 82HA36, 82HA38, 82MA20, 82PE1, 83AL7, 83AL8, 83AL9, 83AL10, 83AL11, 83AL12, 83AL13, 83AL14, 83BU20, 83BU24, 83BU25, 83BU26, 83BY29, 83HA19, 83HA40, 83HA41.

B. Lime on new land pastures 82AL7, 82AL8.


Oilseed Agronomy, A G. Mckay Jan 1983

Oilseed Agronomy, A G. Mckay

Experimental Summaries - Plant Research

Seeding rates for Wesbrook 83MT56 Interstate rapeseed variety testing 83MT47 Fusilade on rapeseed 83MT57 Triazine resistant rapeseed 83MT55 Rapeseed windrowing - time of harvest 83MA9


Grain Legume Agronomy Programme, G H. Walton Jan 1983

Grain Legume Agronomy Programme, G H. Walton

Experimental Summaries - Plant Research

TABLE OF CONTENTS 1. Lupin agronomy, Series 1 - Growth factor Interactions – 83BA6, 83JE3, 83NO4, 83NO5. Lupin growth and subsequent cereal crop yield – 82N18.

2. Lupin agronomy, Series 2 - Lupin response to Density, Harvest Index and yield – 83BA8, 83M4, 83MT6, 83N3.

3. Eregulla lupin rotation plots – 83MO27, 83M029 and 83M030.

4. Grain legume species trials: 4.1. Species comparison x site interaction – 83GE3, 83JE2, 83JE3, 83N2. 4.2. Preliminary examination of Simazine and Fusilade on legume species – 83NO6. 4.3. Species growth study – 83BA7, 83NO6.

5. Field pea agronomy - Density and time - 83N4, …


Residue Trials, Herbicide Incorporation And Leaching Of Chlorsulfuron, T Piper Jan 1983

Residue Trials, Herbicide Incorporation And Leaching Of Chlorsulfuron, T Piper

Experimental Summaries - Plant Research

Residue Trials: Breakdown rates have been established for trifluralin at Wongan Hills and Avondale over the past two seasons. The decay curve follows a hyperbolic curve rather than the expected exponential curve with constant half life, probably due to the considerable loss of chemical by volatalization in the first few days, before biological decomposition takes over as the main breakdown factor.

b) Herbicide Incorporation. Du Pont Zl96 fluorescent orange powder at 30 g/m2 could be readily seen when illuminated by 400 yw/cm2 of 365 nm UV radiation, and was successfully photographed on Ektachrome 400 ASA film with a 4 sec. …


Barley Foliage Diseases, T N. Khan, K. Brain, M Judges Jan 1983

Barley Foliage Diseases, T N. Khan, K. Brain, M Judges

Experimental Summaries - Plant Research

General comments and highlights

Scald: Effect of time of application - 83BA10, 83MT9.

Scald: Effect of rate of fungicide – 83BA11.

Scald: Comparing fungicides – 83BA42.

Scald: Effect of seeding rate – 83BA12, 83MT10.

Scald: Response to fungicide in farmer's field – 83AL18, 83AL81, 83AL82.

Scald: Variation in pathogenicity – 83AB11, 83BA13, 83MT11, 83WH7.

Scald: Cultivar x fungicide in farmer's field – 83LG63.

Net Blotch: Potential yield losses – 83A15, 83BA15, 83WH6.

Net Blotch: Screening new fungicides – 83BA43.

Spot-type net blotch: Potential yield losses – 83C5.

Spot-type net blotch: Sources of resistance - Chapman Research Station, Nabawa.

Powdery mildew …


Annual Medics For The Kalgoorlie Region And Adjacent Eastern Rangeland Zones, G Gintzburger Jan 1983

Annual Medics For The Kalgoorlie Region And Adjacent Eastern Rangeland Zones, G Gintzburger

Experimental Summaries - Plant Research

Species selection and establishment methods Extensive overgrazing and burning of the dominant winter rainfall Goldfields pastoral zones have left large areas degraded with a poor annual vegetation cover of nearly no grazing value. Thus, more grazing pressure is exerted on shrubs and small trees accelerating the desertification process. Shrubs and trees are the main stabilising agent left in a rangeland plant community when alI annuals have been grazed out. In order to upgrade or regenerate some of these areas, conventional methods of grazing prohibition or deferred grazing can be used but often, improvement obtained are slow. It is hypothesized that …


Use Of Hydroelectric Dams To Control Evaporation And Salinity In The Colorado River System, Larry J. Paulson Jan 1983

Use Of Hydroelectric Dams To Control Evaporation And Salinity In The Colorado River System, Larry J. Paulson

Publications (WR)

The main stem reservoirs on the Colorado River comprise one of the largest and most heavily used freshwater bodies in the nation. These reservoirs (Lake Powell, Lake Mead, Lake Mohave and Lake Havasu) can store up to 53,590,400 acre-feet of water at their maximum capacities. Nonetheless, local water shortages still exist in some areas of the Colorado River Basin. There is also concern that salt concentrations are approaching levels that could severely affect municipal and agricultural uses. Water shortages will become even more acute as demands for water increase with continued urban and agricultural development in the basin. Water conservation …


Historical Patterns Of Phytoplankton Productivity In Lake Mead, Richard T. Prentki, Larry J. Paulson Jan 1983

Historical Patterns Of Phytoplankton Productivity In Lake Mead, Richard T. Prentki, Larry J. Paulson

Publications (WR)

Lake Mead was impounded in 1935 by the construction of Hoover Dam. The Colorado River was unregulated prior to then and therefore was subjected to extreme variations in flows and suspended sediment loads. Hoover Dam stabilized flows and reduced suspended sediment loads downstream, but Lake Mead still received silt-laden inflows from the upper Colorado River Basin. The Colorado River contributed 97% of the suspended sediment inputs to Lake Mead, and up to 140 x 1O6 metric tons (t) entered the reservoir in years of high runoff. Most of the sediments were deposited in the river channel and formed an …


The Influence Of Lake Powell On The Suspended Sediment-Phosphorus Dynamics Of The Colorado River Inflow To Lake Mead, T. D. Evans, Larry J. Paulson Jan 1983

The Influence Of Lake Powell On The Suspended Sediment-Phosphorus Dynamics Of The Colorado River Inflow To Lake Mead, T. D. Evans, Larry J. Paulson

Publications (WR)

The Colorado River has been successively modified by the construction of several reservoirs, beginning in 1935 with the formation of Lake Mead by Hoover Dam. These reservoirs are located in a chain, and each one has an influence on the nutrient dynamics and productivity of the river and downstream reservoir. Lake Mead derives 98% of its annual inflow from the Colorado River. Historically, the Colorado River inflow was unregulated into Lake Mead. Regulation occurred in 1963, when Lake Powell was impounded by the construction of Glen Canyon Dam, approximately 450 km upstream. The formation of Lake Powell drastically altered the …


Raw Water Quality In The New Charleston, Illinois Pump Storage Reservoir, Kevin G. Lookis Jan 1983

Raw Water Quality In The New Charleston, Illinois Pump Storage Reservoir, Kevin G. Lookis

Masters Theses

Charleston, Illinois, a city located in east-central Illinois, recently implemented a new concept in a raw water system. Due to storage capacity-sedimentation problems in the old Lake Charleston-Embarras River raw water supply, the Charleston Pump Storage Reservoir was constructed. The new system involved building a dike separating the Lake Charleston impoundment from the Embarras River. Water to increase the storage capacity of the reservoir can now be selectively pumped into the impoundment from the river.

Raw water quality in the reservoir was monitored on a weekly basis for a full year from August, 1981 to August, 1982. The levels of …