5 resultados para Alpine Club
em DigitalCommons@University of Nebraska - Lincoln
Resumo:
Good afternoon, and thank you for inviting me to be here with you today. One of the things I'm enjoying most in my new position as University of Nebraska Vice President of Agriculture and Natural Resources and Harlan Vice Chancellor of the Institute of Agriculture and Natural Resources is meeting the people who live in this state, in urban and rural areas, from Scottsbluff to Omaha, from Lincoln to Curtis, and at any number of towns - north, south, east, west - in between.
Resumo:
Thank you for inviting me to be here with you today. I've now completed four months as University of Nebraska Vice President for Agriculture and Natural Resources and Harlan Vice Chancellor of the Institute of Agriculture and Natural Resources, and I welcome every opportunity that comes my way to meet and talk with Nebraska's residents. I'm particularly happy to be here with you; I appreciate your interest in agriculture, and Ed Woeppel tells me that many members of this group are very supportive of the Institute, and worked hard to create IANR in the '70s.
Resumo:
It is a real pleasure to present the 2006 Omaha Agri- Business Club Leadership Award this evening during National Agriculture Week. I commend the Omaha Agri-Business Club for establishing this fine award. We always need to celebrate the accomplishments of individuals whose leadership efforts contribute to our agricultural industry which is the backbone of Nebraska and our nation.
Resumo:
Did you know if you look up the word "integrity" in the dictionary, the definition is Alan Moeller?
Resumo:
Alpine glaciers have receded substantially over the last century in many regions of the world. Resulting changes in glacial runoff not only affect the hydrological cycle, but can also alter the physical (i.e., turbidity from glacial flour) and biogeochemical properties of downstream ecosystems. Here we compare nutrient concentrations, transparency gradients, algal biomass, and fossil diatom species richness in two sets of high-elevation lakes: those fed by snowpack melt alone (SF lakes) and those fed by both glacial and snowpack meltwaters (GSF lakes). We found that nitrate (NO3-) concentrations in the GSF lakes were 1-2 orders of magnitude higher than in SF lakes. Although nitrogen (N) limitation is common in alpine lakes, algal biomass was lower in highly N-enriched GSF lakes than in the N-poor SF lakes. Contrary to expectations, GSF lakes were more transparent than SF lakes to ultraviolet and equally transparent to photosynthetically active radiation.Sediment diatom assemblages had lower taxonomic richness in the GSF lakes, a feature that has persisted over the last century. Our results demonstrate that the presence of glaciers on alpine watersheds more strongly influences NO3- concentrations in high-elevation lake ecosystems than any other geomorphic or biogeographic characteristic.