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Isabelle Kocher Turning Green Power On
sustainable HEROESgreen leaders in focus Isabelle Kocher Turning green power on Jean Rogers Setting the standard Nancy Pfund Venture capital with impact Darren Walker Empowering the one Rob Swan Change in action Contents 01 Turning green power on Isabelle Kocher 05 Setting the standard Jean Rogers 11 Venture capital with impact Nancy Pfund 15 Empowering the one Darren Walker 21 Change in action Rob Swan Editor: Ethan Schaerer, Greentech Capital Advisors Contributors: Angelica Nikolausson, David Medoff, RenewComm Editorial support: Robert Schultz, Ayanna Nibbs and Oren Redinger Images: All images have been used with permission of holders Concept and Design: Gareth Knott, www.lifetimedesigns.com Head of Strategy © Greentech Capital Advisors 2018 Embedding change … through action Following the positive reception of our inau- person to walk both of Earth’s poles and the gural edition, we are delighted to present the leader of the first expedition to the South Pole second issue of Greentech’s Sustainable He- to use only renewable energy. roes magazine. We aim to engage readers with a community of heroes whose personal actions We don’t inherit our world from our ances- have inspired others, and who are quite simply tors, but borrow it from our children. So a for- changing the world in which we live. ward-looking perspective ought to permeate our thinking and actions, guiding us as individ- In this issue, we pay homage to a corporate uals, corporations, organizations, and nations. leader, an Arctic explorer, a highly admired We must seek maximum positive impact – to policy builder, an innovative investor and an create a sustainable world and legacies worth- entrepreneurial foundation president - all of while for our children. -
U.S. Department of Transportation
234144· REPORT NO. FRA-OR&D-75-54 PB244532 1111111111111111111111111111 FIELD EVALUATION OF LOCOMOTIVE CONSPICUITY LIGHTS D.8. Devoe C.N. Abernethy . :~ . • REPRODUCED BY U.S. DEPARTMENT OF .COMMERCE NATIONAL TECHNICAL INFORMATiON SERVICE SPRINGFIELD, VA 22161 MAY 1975 FINAL REPORT DOCUMENT IS AVAILABLE TO THE PUBLIC THROUGH THE NATIONAL TECHNICAL INFORMATION SERVICE, SPRINGFIELD, VIRGINIA 22161 Prepared for U.S. DEPARTMENT OF TRANSPORTATION FEDERAL RAILROAD ADMINISTRATION Office of Research and Development Washington DC 20590 NOTICE This document is disseminated under the sponsorship of the Department of Transportation in the interest of information exchange. The United States Govern ment assumes no liability for its contents or use thereof. \ \ NOTICE The United States Government does not endorse products or manufacturers. Trade or manufacturers' names appear herein solely because they are con sidered essential to the object of this report. Technical keport Documentation Page 1. Report No. 2. Governmenl Accession No. FRA-OR&D-75-54 t--:~;-,--....,...,.....,......--:-------_..L.-_--------------f'-,~'.:---:--:::---':"'-':"'-'---""~-""--'-'----'---1 4. T,ll_ and Subtitle 5. Report Date FIELD EVALUATION OF LOCOMOTIVE CONSPICUITY May 1975 LIGHTS 6. Performing Organization C"de h~:--:""""'"7-;---'-----------------------j8. Performing Organi zation Report No. 7. Author l s) D.B. Devoe CN AbernethY DOT-TSC-FRA-74-11 9. Performing Organization Name and Address 10. Work Unit No. (TRAIS) U.S. Department of Transportation RR402/R 5331 Transportation Systems Center 11. Contract or Grant No. Kendall Square Cambridge MA 02142 12. Sponsoring A.gency Name and Address Final Report U.S. Depar~ment of Transportation March - June 1974 Federal Railroad Administration Office of Research and Development 14. -
Using Flow Cytometry and Light-Induced Fluorescence To
Atmos. Chem. Phys., 20, 1817–1838, 2020 https://doi.org/10.5194/acp-20-1817-2020 © Author(s) 2020. This work is distributed under the Creative Commons Attribution 4.0 License. Using flow cytometry and light-induced fluorescence to characterize the variability and characteristics of bioaerosols in springtime in Metro Atlanta, Georgia Arnaldo Negron1,2, Natasha DeLeon-Rodriguez3,a, Samantha M. Waters1,b, Luke D. Ziemba4, Bruce Anderson4, Michael Bergin5, Konstantinos T. Konstantinidis6,3, and Athanasios Nenes1,7,8 1School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, GA 30332, USA 2School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA 3School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA 4School of Biological Sciences, Chemistry and Dynamics Branch/Science Directorate, National Aeronautics and Space Administration Langley Research Center, Hampton, VA 23681, USA 5Department of Civil and Environmental Engineering, Duke University, Durham, NC 2770, USA 6School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA 7Institute for Chemical Engineering Science, Foundation for Research and Technology Hellas, Patra, 26504, Greece 8Laboratory of Atmospheric Processes and their Impacts (LAPI), School of Architecture, Civil & Environmental Engineering, Ecole Polytechnique Fédérale de Lausanne, Lausanne, 1015, Switzerland acurrently at: Puerto Rico Science, Technology and Research Trust, Rio Piedras, 00927, Puerto Rico bcurrently at: Department of Marine Sciences, University of Georgia, Athens, GA 30602-3636, USA Correspondence: Konstantinos T. Konstantinidis ([email protected]) and Athanasios Nenes (athanasios.nenes@epfl.ch) Received: 9 October 2018 – Discussion started: 30 October 2018 Revised: 12 September 2019 – Accepted: 22 September 2019 – Published: 14 February 2020 Abstract. -
DIY Kit 14 - 240V MAINS STROBOSCOPIC LIGHT
DIY Kit 14 - 240V MAINS STROBOSCOPIC LIGHT INTRODUCTION The switch which “closes” to give the pulse of energy to This kit contains the circuit to trigger a xenon flashtube. trigger the xenon flashtube is the neon tube. Let us This flashtube is exactly the same as those seen on aircraft discuss the operation of the neon tube in general before and signal beacons and as those contained in camera flash we look at the circuit in particular. units, fast passport photo kiosks and at discos. Other uses include endoscopes, laser pumps, high speed The neon is connected as a relaxation oscillator as shown photocopiers and typsetting. The frequency of flash can in Figure 1. The neon tube itself can be seen simply to be adjusted from about once every 3 seconds to about 3 contain two electrodes in parallel to each other in a small per second. glass bulb. The air has been replaced by neon gas. When a potential difference (PD) below a critical value is applied (Actually the kit contains TWO flashtubes. The xenon across the electrodes the neon gas will ionize but conduct filled tube is the one the makes all the light. However there almost no current.As the PD approaches the critical value is another flashtube which contains neon gas. It flashes as the neon gas glows with its characteristic orange/pink well but provides a different function as will be explained colour. At about 70V (called the striking voltage) current later.) will flow across the electrodes. The PD must drop to about 60V (the extinction voltage) for current to stop flowing. -
GE Consumer & Industrial
GE Consumer & Industrial LIGHTING GE Consumer & Industrial specialty 2004⁄2005 LAMP CATALOG Specialty Lighting Lamp Products Catalog 2004/2005 GE imagination at work 000 Cover_Ideas_06 2 07/09/04, 11:56 AM 000 Cover_Ideas_06 1 07/09/04, 11:56 AM Introduction SPECIALTY Introduction This catalog lists and provides essential technical data for available General Electric lamps that are used in lighting for specialty markets worldwide including Stage/Studio/TV, Projection/Photo, Sealed Beams, Fluorescent, Incandescent and Discharge Lamps optimized for specific applications. Applications can be severe service (cold, vibration, accessibility), architectural (color, black light), industrial (appliances, germicidal, safety, low voltage, infrared/heat), transportation (aircraft, railroad, marine), and infrastructure (airport, emergency building lighting, traffic signal, sign). Lamp listings are grouped into market/application sections, each containing a “family” of lamps by application or commonalities (such as base, shape, spectral distribution, color temperature), to assist in selection or interchange. Ordering Lamps To order lamps use the GE Order Code, Description and Case Quantity columns. If a lamp is colored BLUE it is stocked in Europe, GREEN is Europe and North America, BLACK is North America only. Otherwise procurement must be through an international distributor or your GE sales representative. North America, European and International sales offices are in the appendix. Other GE Publications All the lamps in this Specialty Catalog come from other GE catalogs/websites. These catalogs and websites contain data for other lamps that may be of interest: In North America: • Lamp Products Catalog (PC 25265) • Miniature/Sealed Beam Catalog (PC 20699) • Stage and Studio SHOWBIZ (PC23766) • www.GELighting.com • or 1-800-GELAMPS In Europe: • GE Consumer and Industrial Lighting Lamp Catalogue-Spectrum • SHOWBIZ® (ENTCAT 02/2003) Lamp Index There is a sorted (numeric/alphabetic) index by description with ANSI/LIF code, if available, which provides page number. -
ANNUAL REPORT 2006 Looking, Lowercostsolarpowersolutions
WWW.SUNPOWERCORP.COM ANNUAL REPORT 2006 GERMANY BOARD OF DIRECTORS T.J. Rodgers CHAIRMAN OF THE BOARD CHIEF EXECUTIVE OFFICER CYPRESS SEMICONDUCTOR William Steve Albrecht ELEGANT SIMPLE DIRECTOR PROFESSOR & ASSOCIATE DEAN BRIGHAM YOUNG UNIVERSITY Betsy S. Atkins DIRECTOR CHIEF EXECUTIVE OFFICER BAJA VENTURES NEW YORK Thomas H. Werner DIRECTOR CHIEF EXECUTIVE OFFICER SUNPOWER CORPORATION Pat Wood III DIRECTOR EFFICIENT POWERFUL PRINCIPAL WOOD3 RESOURCES MANAGEMENT JAPAN Thomas H. Werner CHIEF EXECUTIVE OFFICER, DIRECTOR Emmanuel T. Hernandez CHIEF FINANCIAL OFFICER PM Pai CHIEF OPERATING OFFICER Dr. Richard Swanson PRESIDENT & CHIEF TECHNICAL OFFICER Thomas Dinwoodie CEO, POWERLIGHT SUBSIDIARY Howard Wenger VICE PRESIDENT, GLOBAL BUSINESS UNITS SPAIN Bruce Ledesma SunPower Corporation is a global leader in solar power. Together with our recently GENERAL COUNSEL acquired PowerLight subsidiary, we apply innovative technology across the entire value chain with the aim of delivering to our customers higher-performance, better looking, lower cost solar power solutions. SUNPOWER CORPORATION 3939 North First Street San Jose, CA 95134 USA (408) 240-5500 ©2007 SunPower Corporation. All rights reserved. Dear Stockholders, We will remember 2006 as the year that SunPower emerged as a key player within the solar power industry. For more than a decade, our company had been known within the industry for breakthrough high-efficiency solar cell technology, but it was during 2006 that we transformed this technology advantage into a major commercial presence. By the end of the year, we were among the top 10 manufacturers by production volume, and our products established a leading market position, voted the top industry brand through a global third-party survey. -
User Manual 2.3 MB
10M 25M 50M 75M 100M 10Y 25Y 50Y 75Y 100Y impact TM For EX-100A accessories and to see all of our lighting equipment, please visit our Web site. impactTM EX-100A Monolight www.impactstudiolighting.com INSTRUCTIONS Page 20 Page 1 (back cover) (front cover) 10M 25M 50M 75M 100M 10Y 25Y 50Y 75Y 100Y Thank you for your purchase of the Impact EX-100A Monolight. The One-Year Limited Warranty EX-100A Monolight is economical and lightweight, yet durable enough to give you many years of trouble-free service and enjoyment. Please read these operating instructions and safety precautions carefully before operating this equipment. Features • Three-stop range – full power to 1/8 power, steplessly • Built-in optical slave • Modeling lamp can be set to proportional or full power • Accepts Elinchrom-style reectors and head accessories (8-inch grid reector included) • Tactile, “grippy” feel that resists slipping, scratches, and shock damage • Commonly available 1/8˝ mini-plug sync input • Low 4.3V trigger voltage – safe for any camera’s circuitry Power Requirements This light comes in two models; one is designed for use with 110/120V AC power in the US and the other for 220V AC power in Europe. Neither model can be used outside of its native power region. Both are supplied with a three-prong, grounded plug. Do not attempt to defeat this safety feature. If necessary, use only grounded extension cords rated for six amps or greater. Warning There are no user-serviceable parts inside the unit. Only qualied service engineers should access the inside of the case (Danger – high-voltage parts inside). -
Jazzweek20070416.Pdf
JazzWeek with airplay data powered by jazzweek.com • April 16, 2007 Volume 3, Number 21 • $7.95 Smooth Album No. 1: Peter White, Jazz No. 1: Pat Metheny Brad Mehldau, Playin’ Favorites (Columbia/Legacy) Quartet (Nonesuch) College Jazz No. 1: Pat Metheny Brad Smooth Single No. 1: Peter White, “Mis- Mehldau, Quartet (Nonesuch) ter Magic” (Columbia/Legacy) Jazz Album Chart . 3 College Jazz Chart . 4 Smooth Jazz Album Chart . 5 Smooth Singles Chart . 6 World Music Album Chart. 7 Jazz Add Dates. 8 Jazz Radio Currents . 9 Jazz Station Panel . 12 World Music No. 1: Rara Avis, Shaktified Smooth Jazz Current Tracks. 13 (Six Degrees) Smooth Jazz Station Panel. 14 Jazz Birthdays April 16 April 24 May 1 Bennie Green (sax) (1923) Aaron Bell (1922) Ira Sullivan (1931) Herbie Mann (1930) Johnny Griffin (1928) Shirley Horn (1934) April 17 Frank Strazzeri (1930) Carlos Ward (1940) Chris Barber (1930) Joe Henderson (1937) James Newton (1953) Sam Noto (1930) Collin Walcott (1945) May 2 Han Bennink (1942) Stafford James (1946) Bing Crosby (1904) Buster Williams (1942) April 25 Richard “Groove” Holmes (1931) Jan Hammer (1948) Earl Bostic (1913) May 3 April 18 Ella Fitzgerald (1918) Yank Lawson (1911) Leo Parker (1925) Willis Jackson (1932) John Lewis (1920) Hal Galper (1938) April 26 Jimmy Cleveland (1926) April 20 Jimmy Giuffre (1921) Jymie Merritt (1926) Tito Puente (1923) Teddy Edwards (1924) May 4 Ran Blake (1935) April 27 Maynard Ferguson (1928) Beaver Harris (1936) Freddie Watts (1943) Lars Gullin (1928) Joe Bonner (1948) April 28 Richard Williams (1931) -
Ultraviolet Radiation
Environmental Health Criteria 160 Ultraviolet Radiation An Authoritative Scientific Review of Environmental and Health Effects of UV, with Reference to Global Ozone Layer Depletion V\JflVV ptiflcti1p cii ii, L?flUctd EnrrcmH Prormwe. Me World Haah6 Orgniri1ion and Fhc nIrrHbccrlT Ornrn)is5ion on Nfl-oflizirig Raditiori Prioiioii THE Ef4VIRONMEF4FAL HEALTH CI4ITERIA SERIES Acetonitrile (No. 154, 1993) 2,4-Dichloroplierioxyaceric acid (2 4 D) (No 29 Acrolein (No 127, 1991) 1984) Acrylamide (No 49, 1985) 2,4.Dichlorophenoxyucetic acd - erivirorrmerrtul Acr5lonilrile (No. 28, 1983) aspects (No. 54, 1989) Aged population, principles for evaluating the 1 ,3-Dichloroproperte, 1,2-dichloropropane and effects of chemicals (No 144, 1992) mixtures (No. 146, 1993( Aldicarb (No 121, 1991) DDT and its derivatives (No 9 1979) Aidrin and dieldrin (No 91 1989) DDT and its derivatives - environmental aspects Allethrins (No 87, 1989) (No. 83, 1989) Alpha-cypermethrirr (No 142, 1992) Deltamethrin (No 97, 1990) Ammonia (No 54, 1985) Diamirrotoluenes (No 74, 1987( Arsenic (No 18. 1981) Dichiorsos (No. 79, 1988) Asbestos and other natural mineral fibres Diethylhexyl phthalate (No. 131, 191112) (No. 53, 198€) Dirnethoate (No 90, 1989) Barium (No. 137 1990) Dimethylformnmde (No 114, 1991) Benomy( (No 143, 1993) Dimethyf sulfate (No. 48. 1985) Benzene (No 150, 1993) Diseases of suspected chemical etiology and Beryllium (No 106, 1990( their prevention principles of studies on Biommkers and risk assessment concepts (No. 72 1967) and principles (No. 155, 1993) Dilhiocarbsmats pesticides, ethylerrvthiourea, and Biotoxins, aquatic (marine and freshmaterl propylerrethiourea a general introdUCtiori (No 37, 1984) NO. 78. 1958) Butanols . four isomers (No. 65 1987) Electromagnetic Fields (No 1 '37 19921 Cadmiurrr (No 134 1992) Endosulfan (No 40. -
FTS 430/830-4 Approach Lighting System Reference Manual
FTS 430/830-4 Approach Lighting System Reference Manual Part Number F791430830 SERIAL NUMBER Flash Technology, 332 Nichol Mill Lane, Franklin, TN 37067 www.flashtechnology.com (615) 261-2000 Front Matter Abstract This manual contains information and instructions for installing, operating and maintaining the FTS 430 and FTS 830 Approach Lighting Systems. Copyright Copyright© 2018, Flash Technology®, Franklin, TN, 37067, U.S.A. All rights reserved. Reproduction or use of any portion of this manual is prohibited without express written permission from Flash Technology and/or its licenser. Trademark Acknowledgements Flash Technology is a registered trademark of SPX Corporation. All trademarks and product names mentioned are properties of their respective companies, and are recognized and acknowledged as such by Flash Technology. Applicable Specifications This equipment meets or exceeds requirements for an FAA Type L-849 Style A and E, and Type L-859, Styles B and F. Disclaimer While every effort has been made to ensure that the information in this manual is complete, accurate and up-to-date, Flash Technology assumes no liability for damages resulting from any errors or omissions in this manual, or from the use of the information contained herein. Flash Technology reserves the right to revise this manual without obligation to notify any person or organization of the revision. In no event will Flash Technology be liable for direct, indirect, special, incidental, or consequential damages arising out of the use of or the inability to use this manual. Warranty Flash Technology warrants all components, under normal operating conditions, for two years. Parts Replacement The use of parts or components, in this equipment, not manufactured or supplied by Flash Technology voids the warranty and invalidates the third party testing laboratory certification which ensures compliance with FAA Advisory Circulars 150/5345-51. -
Rmisolutions F a L L 2 0 0 2 SIP
Rocky Mountain Institute/volume xviii #3/Fall 2002 RRMMIISSoooolllluuuuttttiioioioonnnnssss newsletter S m all is Pro f it a ble Today’s electricity problems—and costs— are in the grid B y A mory B. Lovins For the first century of electrical power, as Profitable: and Jeremy Heiman generating plants became larger and more The Hidden centralized, delivery of power became Economic lectricity has been so successful more and more dependent on the grid. Benefits of providing the energy needs of citi- Driven by demand that escalated as costs Making Electrical Resources the Right Ezens and industry that many of us declined, the size of power plants grew Size, written by RMI cofounder and CEO can’t imagine life without it. Flip a switch, during the first years of the 20th century. Amory Lovins and six coauthors. Small Is a light comes on. Spin a dial, a fan begins The complexity and size of the grid Profitable builds on the assertion central to whirling. Crank a knob and a pump starts increased at the same time. But by the Lovins’s groundbreaking 1977 work, Soft pushing. Electricity has become a pervasive early 1990s, it was Energy Paths, arguing that energy efficien- and essential force in modern life because clear that utilities cy and cheaper electricity from small, it is a versatile, convenient, controllable, were no longer put- renewable sources of energy will gradually clean-to-use, and generally reliable form of ting many large replace the output of large, centralized fos- energy. Although only about one-sixth of power plants in their sil fuel-powered generating stations and the total energy delivered in the United shopping carts. -
Abls Study Guide
______________________________________ Excerpts from the ABLS STUDY GUIDE (The complete Study Guide is used as part of the ABLS Certification process. These excerpts are for use in certain seminars and courses on medical lasers that the ABLS may be associated with, but is not a substitute for the actual ABLS Certification process. Information about the Board’s Certification is available at the ABLS website: www.americanboardoflasersurgery.org) _____________________________________ © The American Board of Laser Surgery Inc., 2016. All Rights Reserved. No part of these Study Guide Excerpts may be reproduced in any form without the express written consent of the ABLS. © The American Board of Laser Surgery Inc., 2016. All Rights Reserved. 1 Introduction ---- CHAPTER 1 Fundamentals of Laser Physics, Optics and Operating Characteristics for the Clinician ---- CHAPTER 2 Surgical Delivery Systems ---- CHAPTER 3 Laser Biophysics, Tissue Interaction, Power Density and Ablative Resurfacing of Human Skin: Essential Foundations for Laser Dermatology and Cosmetic Procedures ---- CHAPTER 4 Commentary on Ethics in Cosmetic Laser Surgery ---- CHAPTER 5 Safe Use of Lasers in Surgery ---- CHAPTER 6 Considerations in the Selection of Equipment © The American Board of Laser Surgery Inc., 2016. All Rights Reserved. 2 Contents and Topics in the Study Chapter 4 5 Materials : Commentary on Ethics in Cosmetic Laser Surgery (key considerations in providing Coptihamptuemr 5patient care). The study material consists of the proprietary ABLS Study Guide on fundamental laser science, : The Safe Use of Lasers in Surgery Fordelivery cosmetic systems, practitioners biophysics/ only tissue interaction, (oriented to the needs of the actual practitioner ethics, laser safety, and equipment selection. aCsh oappopterse d6 t:o support personnel) it also includes several chaptersLasers from and two Lights: excellent Procedures books on in a Considerations in the Selection broad range of cosmeticnd laser and light Cosmetic Dermatology, 2 Ed.