Yellowstone National Park Fishing Guide
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V- 447 in STORAGE PROGRESS REPORI' of COYOTE S'iuijy !Iifjyellowstone NATIONAL PARK
c 1 l < V- 447 IN STORAGE PROGRESS REPORI' OF COYOTE S'IUIJY !IifJYELLOWSTONE NATIONAL PARK by Adolph Murie ;r.3!3 I In a letter dated March 25, 1937, the Regional Officer, Region 2, was requested by the Director to assign me to make a thorough study of the coyote and its relationships to other wildlife species in Yellowstone National Park. In compliance with this request I reached Yellowstone May 1 to begin field studies of the coyote and other species on which it preys. Although it has not been possible to devote all of my time to this study I feel that it has not suffered greatly as a result of other special assignments given me and that fairly good continuity in observations has been ma intained. Special assign ments kept me away from Yellatqstone for various periods as follows:- Wind River Mountain investigation, July 26 - August l; i9'lathead .lforest investigation, August 8 - 22; Shoshone ..l!'orest trip, September 6 - 14. Most of October was spent in the Omaha. office and December was devoted to the analyslbs of scats in Jackson, Wyoming. This brief report on the coyote study is being ma.de at the request of Mr. Cahalane, Acting Chief of the • ildlife Division, in a letter dated December 20, to Mr. Allen, Region al Director, Region 2. A copy of this letter was sent to me at Yellowstone and mis-forwarded to 1ioran, fanilly reaching me today, January 5. Since the report is wanted in Washington by the middle of January there is not time for making anything but a brief report on my findings so far. -
Spawning and Early Life History of Mountain Whitefish in The
SPAWNING AND EARLY LIFE HISTORY OF MOUNTAIN WHITEFISH IN THE MADISON RIVER, MONTANA by Jan Katherine Boyer A thesis submitted in partial fulfillment of the requirements for the degree of Master of Science in Fish and Wildlife Management MONTANA STATE UNIVERSITY Bozeman, Montana January 2016 © COPYRIGHT by Jan Katherine Boyer 2016 All Rights Reserved ii ACKNOWLEDGMENTS First, I thank my advisor, Dr. Christopher Guy, for challenging me and providing advice throughout every stage of this project. I also thank my committee members, Dr. Molly Webb and Dr. Tom McMahon, for guidance and suggestions which greatly improved this research. My field technicians Jordan Rowe, Greg Hill, and Patrick Luckenbill worked hard through fair weather and snowstorms to help me collect the data presented here. I also thank Travis Horton, Pat Clancey, Travis Lohrenz, Tim Weiss, Kevin Hughes, Rick Smaniatto, and Nick Pederson of Montana Fish, Wildlife and Parks for field assistance and advice. Mariah Talbott, Leif Halvorson, and Eli Cureton of the U. S. Fish and Wildlife Service assisted with field and lab work. Richard Lessner and Dave Brickner at the Madison River Foundation helped to secure funding for this project and conduct outreach in the Madison Valley. The Channels Ranch, Valley Garden Ranch, Sun West Ranch, and Galloup’s Slide Inn provided crucial land and river access. I also thank my fellow graduate students both for advice on project and class work and for being excellent people to spend time with. Ann Marie Reinhold, Mariah Mayfield, David Ritter, and Peter Brown were especially helpful during the early stages of this project. -
Soda Butte Creek
Soda Butte Creek monitoring and sampling schemes Final report for the Greater Yellowstone Network Vital Signs Monitoring Program Susan O’Ney Resource Management Biologist Grand Teton National Park P.O. Drawer 170 Moose, Wyoming 83012 Phone: (307) 739 – 3666 December 2004 SODA BUTTE CREEK and REESE CREEK: VITAL SIGNS MONITORING PROGRAM: FINAL REPORT December 2004 Meredith Knauf Department of Geography and Institute of Arctic and Alpine Research University of Colorado, Boulder Mark W. Williams* Department of Geography and Institute of Arctic and Alpine Research University of Colorado, Boulder *Corresponding Address Mark W. Williams INSTAAR and Dept. of Geography Campus Box 450 Boulder, Colorado 80309-0450 Telephone: (303) 492-8830 E-mail: [email protected] Soda_Butte_Creek_Compiled_with_Appendices .doc 5/17/2005 EXECUTIVE SUMMARY We have put together a final report on the recommendations for the Soda Butte Creek and Reese Creek Vital Signs Monitoring Program. The purpose of the grant was to develop detailed protocols necessary to monitor the ecological health of Soda Butte Creek and Reese Creek in and near Yellowstone National Park. The main objectives was to compile existing information on these creeks into one database, document the current conditions of Soda Butte and Reese Creeks by a one-time synoptic sampling event, and present recommendations for vital signs monitoring programs tailored to each creek’s needs. The database is composed of information from government projects by the United States Geological Survey and the United States Environmental Protection Agency, graduate student master’s theses, academic research, and private contractor reports. The information dates back to 1972 and includes surface water quality, groundwater quality, sediment contamination, vegetation diversity, and macroinvertebrate populations. -
Compilation of Reported Sapphire Occurrences in Montana
Report of Investigation 23 Compilation of Reported Sapphire Occurrences in Montana Richard B. Berg 2015 Cover photo by Richard Berg. Sapphires (very pale green and colorless) concentrated by panning. The small red grains are garnets, commonly found with sapphires in western Montana, and the black sand is mainly magnetite. Compilation of Reported Sapphire Occurrences, RI 23 Compilation of Reported Sapphire Occurrences in Montana Richard B. Berg Montana Bureau of Mines and Geology MBMG Report of Investigation 23 2015 i Compilation of Reported Sapphire Occurrences, RI 23 TABLE OF CONTENTS Introduction ............................................................................................................................1 Descriptions of Occurrences ..................................................................................................7 Selected Bibliography of Articles on Montana Sapphires ................................................... 75 General Montana ............................................................................................................75 Yogo ................................................................................................................................ 75 Southwestern Montana Alluvial Deposits........................................................................ 76 Specifi cally Rock Creek sapphire district ........................................................................ 76 Specifi cally Dry Cottonwood Creek deposit and the Butte area .................................... -
DROUGHT RESILIENCE PLAN Jefferson River Watershed Council PO Box 550 Whitehall MT 59759
JEFFERSON RIVER WATERSHED DROUGHT RESILIENCE PLAN Jefferson River Watershed Council PO Box 550 Whitehall MT 59759 September 2019 Prepared for the Jefferson River water users as an educational guide to drought impacts, drought vulnerabilities and adaptation strategies to proactively plan for drought. Compiled by Evan Norman [email protected] Jefferson River Watershed Drought Resiliency Plan Contents Drought Resiliency ........................................................................................................................................ 2 Project Overview ....................................................................................................................................... 2 Drought Mitigation ................................................................................................................................... 4 Defining Drought ........................................................................................................................................... 5 Utilization of Resources for Defining Drought Resilience Efforts ............................................................. 6 Jefferson River Watershed Characteristics ................................................................................................... 7 Land and Soil Distribution ....................................................................................................................... 10 Agrimet – JVWM, Jefferson Valley, MT .................................................................................................. -
East Gallatin Nutrient Monitoring Project: Summary Report, 2017 Data Collection and ‘Site H’ Algal Spike
East Gallatin Nutrient Monitoring Project: Summary Report, 2017 Data Collection and ‘Site H’ Algal Spike 215 W. Mendenhall, Suite 300 Bozeman, MT 59715 406.582.3168 www.glwqd.org Prepared by Torie Haraldson, Water Quality Tech. Specialist January, 2019 Project Background The Gallatin Local Water Quality District (GLWQD) led water quality data collection for a modeling effort by the City of Bozeman (the City) from 2014-2016. The purpose of the model is to understand the potential implications of Montana Department of Environmental Quality’s (DEQ) Total Maximum Daily Load assessment on the City’s Montana Pollutant Discharge Elimination System permit for their water reclamation facility (WRF) that discharges to the East Gallatin River, just north of Bozeman, Montana. Modeling (by HDR of Missoula) has provided insight into nutrient processing within the river system and its potential responses to nutrient management activities. The modeling process employs the river and stream water quality model QUAL2K, which couples nutrient data with light, weather, topography, and other inputs to predict algal growth in reaches along the river continuum. A project progress report by City of Bozeman staff at the GLWQD Board of Directors May 4, 2017 meeting included results that indicated a spike in algal density at ‘Site H’, a site on the main stem of the East Gallatin River approximately 13 miles downstream of the WRF (Figure 1). Chlorophyll-a is a photosynthetic pigment that is isolated from algae samples and used to quantify algal density. Mean Algal Chlorophyll-a at Main Stem Sites, 2014-2016 200 ) 180 2 160 140 120 July August Area Area (mg/m Density 100 a - September 80 Overall Mean 60 40 Mean Chlorophyll 20 0 ← Site ID ← River mi. -
Montana Headwaters Legacy Act Endorsements Government And
Montana Headwaters Legacy Act Endorsements Over 1,000 individual businesses, organizations and governmental bodies have formally endorsed the Montana Headwaters Legacy Act - proposed legislation that designates 17 Wild and Scenic Rivers on public lands in Montana. Note the business and nonprofit organizations that represent hundreds of additional businesses and thousands of individual citizens. Government and Elected Officials Onsite Energy Bozeman Montana Governor Helena Sibanye Stillwater Columbus Steve Bullock Mining Company Rocky Mountain Tribal Billings Adaptive Hydrology Missoula Leaders Council (12 Bad Goat Forest Missoula tribes represented) Products Cyndy Andrus - Bozeman Watershed Consulting. Missoula Bozeman Mayor LLC Rep. Zach Brown Bozeman Property, Real Estate and Development Montana Fish Wildlife & Helena Old School Enterprises, Alberton Parks Commission LLC Flathead Basin Kalispell Cronin Construction Big Sky Commission Two Pines Properties Big Sky Rep. Laurie Bishop Livingston High Plains Architects Billings Carbon County Red Lodge Commission 45 North Partners Bozeman Montana Aquatic Livingston Beartooth Capital Bozeman Resources Services CP Supply Bozeman Energy and Natural Resources Meridian Group Inc. Bozeman 1 Refuge Sustainable Bozeman Rocky Mountain Red Lodge Building Center Songwriter Festival Baum Realty Group Chicago Health and Wellness Raich Montana Livingston High Elevation Yoga Big Sky Properties LLC Lone Peak Physical Big Sky The Ranch Brokers Livingston Therapy Bozeman Development Manhattan Santosha Wellness -
Wills of Cascade County Great Falls, Montana Volumes One & Three
WILLS OF CASCADE COUNTY GREAT FALLS, MONTANA VOLUMES ONE & THREE No record has been found of the Volume two of the Wills of Cascade County, Montana. Retyped by Thelma L. Marshall indexed by Eddie Josey-Wilson and Evan Heisel Great Falls Genealogy Society Great Falls, Montana April 1996 ABSTRACTS OF WILLS CASCADE COUNTY, MONTANA 1884-1909 VOLUME 1 BLACK EAGLE CHAPTER DAUGHTERS OF THE AMERICAN REVOLUTION GREAT FALLS, MONTANA ABSTRACTS OF WILLS CASCADE COUNTY; MONTANA VOLUME 1 ABSTRACTS OF WILLS CASCADE COUNTY, MONTANA BLACK EAGLE CHAPTER DAUGHTERS OF THE AMERICAN REVOLUTION GREAT FALLS, MONTANA COPIED BY: Mrs. Lou Siniff Mrs. Theodore Cox Miss Ella Nelson Miss Grace Collins Grace Dutton Collins, State Chairman 1 951 - 1952 RICHARD WRIGHT of Fairfield St., Philadelphia, U.S.A. DATED: 3 Sep. 1888 WIFE: Elizabeth WRIGHT FATHER: James Wright SISTERS: Charlotte Wright, Rebecca Wright (wife of James Wright)Maria Moore (wife of J.W. MOORE). BROTHERS: William, Arthur, late brother Edmund EXECUTORS: Brother Arthur Wright, Wife Elizabeth Wright and sister Charlotte Wright. WITNESSES: S. Harlan Price and Wm.H. Walker. "Should I die in England I wish to be buried in the lot beside my father and mother, in the cemetery at Oday, Yorkshire in England. If I die away from England I wish a stone to be erected on this lot giving my birth and death dates." JAMES STONE of Great Falls, Cascade County, Montana. DATED: 27 March 1891 HEIR: In view of the fact that Thomas E. Brady has loaned me large sums of money and cared for me during this my last illness I bequeath to him all my properties, chattels and debts. -
Jefferson River at Three Forks, Montana
FINAL ENVIRONMENTAL STATEMENT JEFFERSON RIVER AT THREE FORKS, MONTANA Prepared by U.S. ARMY ENGINEER DISTRICT, OMAHA, NEBRASKA December 1971 Jefferson River at Three Forks, Montana ( ) Draft (X) Final Environmental Statement Responsible Office: U.S. Army Engineer District, Omaha, Nebraska 1. Name of Action: (x) Administrative ( ) Legislative 2. Description of Action: The proposed project would consist of the construction of an earth filled levee and a drainage collector ditch approximately lU ,700 feet in length along the northwest side of a small community. The location is at Three Forks in Gallatin County, Montana. 3. a. Environmental Impacts; Flood protection would be provided for a flood having a frequency of occurrence of once in a 100 years. A 28 acre loss of alternate land use would be required for levee alignment. A possibilit would exist for pollutants from adjacent land to accumulate in the collector ditch. A potential would exist for the collector ditch to develop aquatic growth. Five hundred feet of shelterbelt would be lost to levee construction. b. Adverse Environmental Effects: Construction would effect the removal of 28 acres of land from alternative land use; collector ditch could act as a collector of pollutants; and construction of the levee would necessitate the removal of 500 feet of shelterbelt. Alternatives; Floodplain zoning, evacuation, flood proofing, reservoir construction, channel improvement, and ”no development” were considered. 5• Comments Received: City of Three Forks Bureau of Sport Fisheries & Wildlife, USDI Montana Department of Fish Bureau of Reclamation, USDI and Game Bureau of Outdoor Recreation, USDI Montana Department of Health Environmental Protection Agency, USEPA Montana Highway Commission Bureau of Mines, USDI Soil Conservation Service, USDA Montana Water Resources Board National Park Service, USDI 6. -
Native Fish Conservation
Yellowstone SScience Native Fish Conservation @ JOSH UDESEN Native Trout on the Rise he waters of Yellowstone National Park are among the most pristine on Earth. Here at the headwaters of the Missouri and Snake rivers, the park’s incredibly productive streams and lakes support an abundance of fish. Following the last Tglacial period 8,000-10,000 years ago, 12 species/subspecies of fish recolonized the park. These fish, including the iconic cutthroat trout, adapted and evolved to become specialists in the Yellowstone environment, underpinning a natural food web that includes magnificent animals: ospreys, bald eagles, river otters, black bears, and grizzly bears all feed upon cutthroat trout. When the park was established in 1872, early naturalists noted that about half of the waters were fishless, mostly because of waterfalls which precluded upstream movement of recolonizing fishes. Later, during a period of increasing popularity of the Yellowstone sport fishery, the newly established U.S. Fish Commission began to extensively stock the park’s waters with non-natives, including brown, brook, rainbow, and lake trout. Done more than a century ago as an attempt to increase an- gling opportunities, these actions had unintended consequences. Non-native fish caused serious negative impacts on native fish populations in some watersheds, and altered the parks natural ecology, particularly at Yellowstone Lake. It took a great deal of effort over many decades to alter our native fisheries. It will take a great deal more work to restore them. As Aldo Leopold once said, “A thing is right when it tends to preserve the integrity, stability, and beauty of the biotic com- munity. -
Mountain Lakes Guide: Absaroka, Beartooth & Crazies
2021 MOUNTAIN LAKES GUIDE Silver Lake ABSAROKA - BEARTOOTH & CRAZY MOUNTAINS Fellow Angler: This booklet is intended to pass on information collected over many years about the fishery of the Absaroka-Beartooth high country lakes. Since Pat Marcuson began surveying these lakes in 1967, many individuals have hefted a heavy pack and worked the high country for Fish, Wildlife and Parks. They have brought back the raw data and personal observations necessary to formulate management schemes for the 300+ lakes in this area containing fish. While the information presented here is not intended as a guide for hiking/camping or fishing techniques, it should help wilderness users to better plan their trips according to individual preferences and abilities. Fish species present in the Absaroka-Beartooth lakes include Yellowstone cutthroat trout, brook trout, rainbow trout, golden trout, arctic grayling, and variations of cutthroat/rainbow/golden trout hybrids. These lake fisheries generally fall into two categories: self-sustaining and stocked. Self-sustaining lakes have enough spawning habitat to allow fish to restock themselves year after year. These often contain so many fish that while fishing can be fast, the average fish size will be small. The average size and number of fish present change very little from year to year in most of these lakes. Lakes without spawning potential must be planted regularly to sustain a fishery. Standard stocking in the Beartooths is 50-100 Yellowstone cutthroat trout fingerlings per acre every eight years. Special situations may call for different species, numbers, or frequency of plants. For instance, lakes with heavy fishing pressure tend to be stocked more often and at higher densities. -
Landsat Evaluation of Trumpeter Swan Historical Nesting Sites In
Eastern Kentucky University Encompass Online Theses and Dissertations Student Scholarship 2014 Landsat Evaluation Of Trumpeter Swan Historical Nesting Sites In Yellowstone National Park Laura Elizabeth Cockrell Eastern Kentucky University, [email protected] Follow this and additional works at: https://encompass.eku.edu/etd Part of the Ecology and Evolutionary Biology Commons, and the Ornithology Commons Recommended Citation Cockrell, Laura Elizabeth, "Landsat Evaluation Of Trumpeter Swan Historical Nesting Sites In Yellowstone National Park" (2014). Online Theses and Dissertations. 222. https://encompass.eku.edu/etd/222 This Open Access Thesis is brought to you for free and open access by the Student Scholarship at Encompass. It has been accepted for inclusion in Online Theses and Dissertations by an authorized administrator of Encompass. For more information, please contact [email protected]. LANDSAT EVALUATION OF TRUMPETER SWAN HISTORICAL NESTING SITES IN YELLOWSTONE NATIONAL PARK By Laura Elizabeth Cockrell Bachelor of Science California State University, Chico Chico, California 2007 Submitted to the Faculty of the Graduate School of Eastern Kentucky University in partial fulfillment of the requirements for the degree of MASTER OF SCIENCE May, 2014 Copyright © Laura Elizabeth Cockrell, 2014 All rights reserved ii DEDICATION This thesis is dedicated to my family and friends for their unwavering support during this adventure. iii ACKNOWLEDGMENTS This research was made possible through funding from the Yellowstone Park Foundation and the Society of Wetland Scientists Student Research Grant for support of field work, and by a Graduate Assistantship and Research Assistantship from the Department of Biological Sciences at Eastern Kentucky University. Thank you to Dr. Bob Frederick for his insight and persistence and for providing the GIS lab and to Dr.