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pro vyhledávání: '"Samendra Prasad"'
Algal Blooms and Phosphate Eutrophication of Inland Water Ecosystems with Special Reference to India
Autor:
Samendra Prasad, Rajendra Prasad
Publikováno v:
INTERNATIONAL JOURNAL OF PLANT AND ENVIRONMENT. 5:01-08
Algal blooms lead to hypoxia resulting in the mortality of fish and other aquatic animals in inland as well as marine waters. A number of reports on fish mortality in lakes and river waters due to hypoxia are available in India. The main cause of alg
Autor:
Samendra Prasad, Rajendra Prasad
Publikováno v:
INTERNATIONAL JOURNAL OF PLANT AND ENVIRONMENT. 4:01-09
Neem ( Juss) can play a key role in C-sequestration, Azadirachta indica reducing nitrous oxide (N2O) production from the agricultural fields, checking desertification and reducing nitrate eutrophication of surface and groundwater due to fertilizer ni
Publikováno v:
Radiology and Oncology, Vol 52, Iss 2, Pp 229-232 (2018)
Radiology and Oncology
Radiology and Oncology
Background Thermoplastic mask immobilization is used to perform hypo-fractionated treatments with the Gamma Knife ICON®. Materials and methods We evaluated the curing characteristics of the ICON® Nanor mask using force sensing resistors coupled wit
Algal Blooms and Phosphate Eutrophication of Inland Water Ecosystems with Special Reference to India
Autor:
Rajendra Prasad, Samendra Prasad
Publikováno v:
International Journal of Plant and Environment. 5
Algal blooms lead to hypoxia resulting in the mortality of fish and other aquatic animals in inland as well as marine waters. A number of reports on fish mortality in lakes and river waters due to hypoxia are available in India. The main cause of alg
Publikováno v:
Soil Phosphorus
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::d45b4a0bce03e4ee96ba2c26961f72a7
https://doi.org/10.1201/9781315372327-5
https://doi.org/10.1201/9781315372327-5
Autor:
Sherchan, Samendra Prasad
To protect public health, detection and treatment technologies have been improved to monitor and inactivate pathogens in drinking water. The goal of this dissertation is to evaluate and utilize multiple online sensors and advanced oxidation processes
Externí odkaz:
http://hdl.handle.net/10150/293470