Biblio

Found 4091 results
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Journal Article
T. S. Steenhuis, Kung, K. J. Samuel, Parlange, J. Y., and Selker, J., XX, Chen, Flow regimes in sandy soils with inclined layers, Hydrology Days, H, Morel-Seytoux, Ed., AGU Pub, vol. 10, pp. 78–94, 1990.
T. S. Steenhuis, Kung, K. J. Samuel, Parlange, J. Y., and Selker, J., XX, Chen, Flow regimes in sandy soils with inclined layers, Hydrology Days, H, Morel-Seytoux, Ed., AGU Pub, vol. 10, pp. 78–94, 1990.
S. A. Mehlenbacher, Smith, D. C., and McCluskey, R. L., 'Yamhill' hazelnut, HortScience, vol. 44, pp. 845-847, 2009.
C. V. Ransom, Rice, C. A., and Shock, C. C., Yellow Nutsedge (Cyperus esculentus) Growth and Reproduction in Response to Nitrogen and Irrigation, Weed Science, vol. 57, no. 01, pp. 21 - 25, 2009.
R. G. Smith, Barbercheck, M. E., Mortensen, D. A., Hyde, J., and Hulting, A. G., Yield and Net Returns during the Transition to Organic Feed Grain Production, Agronomy Journal, vol. 103, no. 1, p. 51, 2011.
B. C. Strik and Proctor, J. T. A., Yield component analysis of strawberry genotypes differing in productivity, J. Amer. Soc. Hort. Sci., vol. 113, pp. 124-129, 1988.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ová, D., Mudrencekova, S., and Schlegel, V., Yield, composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, no. 8, pp. 1213-1217, 2015.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ova, D., Mudrencekova, S., and Schlegel, V., Yield, Composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, pp. 1213-1217, 2015.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ová, D., Mudrencekova, S., and Schlegel, V., Yield, composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, no. 8, pp. 1213-1217, 2015.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ova, D., Mudrencekova, S., and Schlegel, V., Yield, Composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, pp. 1213-1217, 2015.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ova, D., Mudrencekova, S., and Schlegel, V., Yield, Composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, pp. 1213-1217, 2015.
V. D. Zheljazkov, Shiwakoti, S., Astatkie, T., Salamon, I., Grul'ová, D., Mudrencekova, S., and Schlegel, V., Yield, composition, and antioxidant capacity of ground cumin seed oil fractions obtained at different time points during the hydrodistillation, HortScience, vol. 50, no. 8, pp. 1213-1217, 2015.
S. Shiwakoti, Saleh, O., Poudyal, S., Barka, A., Qian, Y. P. L., and Zheljazkov, V. D., Yield, Composition and Antioxidant Capacity of the Essential Oil of Sweet Basil and Holy Basil as Influenced by Distillation Methods, Chemistry & Biodiversity, vol. 14, no. 4, p. e1600417, 2017.
S. Shiwakoti, Saleh, O., Poudyal, S., Barka, A., Qian, Y. P. L., and Zheljazkov, V. D., Yield, Composition and Antioxidant Capacity of the Essential Oil of Sweet Basil and Holy Basil as Influenced by Distillation Methods, Chemistry & Biodiversity, vol. 14, no. 4, p. e1600417, 2017.
C. C. Shock, Ishida, J. K., Eldredge, E. P., and Seddigh, M., Yield of yellow onion cultivars in eastern Oregon and southwestern Idaho, HortTechnology, 2000.
C. C. Shock, Ishida, J. K., Eldredge, E. P., and Seddigh, M., Yield of yellow onion cultivars in eastern Oregon and southwestern Idaho, HortTechnology, 2000.
F. A. Sneva, Hyder, D. Nelson, and , Yield, yield-trend, and response to nitrogen of introduced grasses on the Oregon High Desert, 1965.
D. Hanigan, Truong, L., Simonich, S. L. Massey, Tanguay, R., and Westerhoff, P. K., Zebrafish embryo toxicity of 15 chlorinated, brominated, and iodinated disinfection by-products., J Environ Sci (China), vol. 58, pp. 302-310, 2017.
D. Hanigan, Truong, L., Simonich, M. T., Tanguay, R., and Westerhoff, P. K., Zebrafish embryo toxicity of 15 chlorinated, brominated, and iodinated disinfection by-products, Journal of Environmental Sciences, vol. 58, 2017.
C. I. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, S. L. Massey, Tanguay, R. L., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2,4-dinitroanisole., Environ Toxicol Chem, vol. 35, no. 11, pp. 2774-2781, 2016.
C. I. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, S. L. Massey, Tanguay, R. L., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2,4-dinitroanisole (DNAN)., Environ Toxicol Chem, 2016.
C. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, M. T., Tanguay, R., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2, 4‐dinitroanisole, Environmental toxicology and chemistry, vol. 35, no. 11, 2016.
C. I. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, M. T., Tanguay, R. L., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2,4-dinitroanisole, Environmental Toxicology and Chemistry, vol. 353426213423811101119262171460151533137496155491999912148102646495238443, no. 11, pp. 2774 - 2781, 2016.
C. I. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, S. L. Massey, Tanguay, R. L., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2,4-dinitroanisole., Environ Toxicol Chem, vol. 35, no. 11, pp. 2774-2781, 2016.
C. I. Olivares, Sierra-Alvarez, R., Abrell, L., Chorover, J., Simonich, S. L. Massey, Tanguay, R. L., and Field, J. A., Zebrafish embryo toxicity of anaerobic biotransformation products from the insensitive munitions compound 2,4-dinitroanisole (DNAN)., Environ Toxicol Chem, 2016.