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Distances to Local Group Galaxies
View metadata, citation and similar papers at core.ac.uk brought to you by CORE provided by CERN Document Server Distances to Local Group Galaxies Alistair R. Walker Cerro Tololo Inter-American Observatory, NOAO, Casilla 603, la Serena, Chile Abstract. Distances to galaxies in the Local Group are reviewed. In particular, the distance to the Large Magellanic Cloud is found to be (m M)0 =18:52 0:10, cor- − ± responding to 50; 600 2; 400 pc. The importance of M31 as an analog of the galaxies observed at greater distances± is stressed, while the variety of star formation and chem- ical enrichment histories displayed by Local Group galaxies allows critical evaluation of the calibrations of the various distance indicators in a variety of environments. 1 Introduction The Local Group (hereafter LG) of galaxies has been comprehensively described in the monograph by Sidney van den Berg [1], with update in [2]. The zero- velocity surface has radius of a little more than 1 Mpc, therefore the small sub-group of galaxies consisting of NGC 3109, Antlia, Sextans A and Sextans B lie outside the the LG by this definition, as do galaxies in the direction of the nearby Sculptor and IC342/Maffei groups. Thus the LG consists of two large spirals (the Galaxy and M31) each with their entourage of 11 and 10 smaller galaxies respectively, the dwarf spiral M33, and 13 other galaxies classified as either irregular or spherical. We have here included NGC 147 and NGC 185 as members of the M31 sub-group [60], whether they are actually bound to M31 is not proven. -
GPU Developments 2018
GPU Developments 2018 2018 GPU Developments 2018 © Copyright Jon Peddie Research 2019. All rights reserved. Reproduction in whole or in part is prohibited without written permission from Jon Peddie Research. This report is the property of Jon Peddie Research (JPR) and made available to a restricted number of clients only upon these terms and conditions. Agreement not to copy or disclose. This report and all future reports or other materials provided by JPR pursuant to this subscription (collectively, “Reports”) are protected by: (i) federal copyright, pursuant to the Copyright Act of 1976; and (ii) the nondisclosure provisions set forth immediately following. License, exclusive use, and agreement not to disclose. Reports are the trade secret property exclusively of JPR and are made available to a restricted number of clients, for their exclusive use and only upon the following terms and conditions. JPR grants site-wide license to read and utilize the information in the Reports, exclusively to the initial subscriber to the Reports, its subsidiaries, divisions, and employees (collectively, “Subscriber”). The Reports shall, at all times, be treated by Subscriber as proprietary and confidential documents, for internal use only. Subscriber agrees that it will not reproduce for or share any of the material in the Reports (“Material”) with any entity or individual other than Subscriber (“Shared Third Party”) (collectively, “Share” or “Sharing”), without the advance written permission of JPR. Subscriber shall be liable for any breach of this agreement and shall be subject to cancellation of its subscription to Reports. Without limiting this liability, Subscriber shall be liable for any damages suffered by JPR as a result of any Sharing of any Material, without advance written permission of JPR. -
Android Devices
Mobile Devices Compatible With A10050QC iOS Devices Lightning Connector iPhone 5 iPod Touch (6th generation) iPhone 5C iPad 4 iPhone 5S iPad Air iPhone 6 iPad Air 2 iPhone 6 Plus iPad mini iPhone 6S iPad mini 2 iPhone 6S Plus iPad mini 3 iPhone SE iPad mini 4 iPhone 7 iPad Pro (9.7 inch) iPhone 7 Plus iPad Pro (12.9 inch) iPod Touch (5th generation) Android Devices Micro USB Connector All Android phone support Smartphone With Quick Charge 3.0 Technology Type-C Connector Asus ZenFone 3 LG V20 TCL Idol 4S Asus ZenFone 3 Deluxe NuAns NEO VIVO Xplay6 Asus ZenFone 3 Ultra Nubia Z11 Max Wiley Fox Swift 2 Alcatel Idol 4 Nubia Z11miniS Xiaomi Mi 5 Alcatel Idol 4S Nubia Z11 Xiaomi Mi 5s General Mobile GM5+ Qiku Q5 Xiaomi Mi 5s Plus HP Elite x3 Qiku Q5 Plus Xiaomi Mi Note 2 LeEco Le MAX 2 Smartisan M1 Xiaomi MIX LeEco (LeTV) Le MAX Pro Smartisan M1L ZTE Axon 7 Max LeEco Le Pro 3 Sony Xperia XZ ZTE Axon 7 Lenovo ZUK Z2 Pro TCL Idol 4-Pro Smartphone With Quick Charge 3.0 Technology Micro USB Connector HTC One A9 Vodafone Smart platinum 7 Qiku N45 Wiley Fox Swift Sugar F7 Xiaomi Mi Max Compatible With Quick Charge 3.0 Technology Micro USB Connector Asus Zenfone 2 New Moto X by Motorola Sony Xperia Z4 BlackBerry Priv Nextbit Robin Sony Xperia Z4 Tablet Disney Mobile on docomo Panasonic CM-1 Sony Xperia Z5 Droid Turbo by Motorola Ramos Mos1 Sony Xperia Z5 Compact Eben 8848 Samsung Galaxy A8 Sony Xperia Z5 Premium (KDDI Japan) EE 4GEE WiFi (MiFi) Samsung Galaxy Note 4 Vertu Signature Touch Fujitsu Arrows Samsung Galaxy Note 5 Vestel Venus V3 5070 Fujitsu -
Active Site Separation of Photocatalytic Steam Reforming of Methane Using Gas‐Phase Photoelectrochemical System
Electronic Supplementary Material (ESI) for Chemical Communications. This journal is © The Royal Society of Chemistry 2021 Active site separation of photocatalytic steam reforming of methane using Gas‐Phase Photoelectrochemical system Tomoki Kujirai,a Akira Yamaguchi*,a Takeshi Fujita,b Hideki Abe,c Masahiro Miyauchi*a a Department of Materials Science and Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8552, Japan b Department of Environmental Science and Engineering, Kochi University of Technology, 185 Miyanokuchi, Tosayamada, Kami, Kochi 782-8502, Japan c National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan Table of Contents 1. Methods 2. GPEC system (Figure S1). 3. SRM using the GPEC system (Figure S2). 4. Cell fabrication (Figure S3). 5. ESR measurement (Figure S4). 6. The reactor for the SRM test with Pt/YSZ powder catalyst (Figure S5). 7. Measurement of the transmitted light of the cell (Figure S6). 8. Measurement of the surface temperature of the cell under UV light irradiation (Figure S7). 9. The XRD patterns of the Pt/YSZ powder catalyst and the YSZ pellet before screen printing (Figure S8). 10. The TEM image of the Pt/YSZ powder catalyst (Figure S9). 11. The UV-Vis absorption spectra of the YSZ powder and the Pt/YSZ powder catalyst, and the Tauc plot of the YSZ powder (Figure S10). 12. Thermodynamic limits of SRM calculated using NASA-CEA (Figure S11). 13. The spectrum of the Hg-Xe lamp with various cutoff filters (Figure S12). 14. The spectra of the transmitted light of the cell (Figure S13). -
Naming the Extrasolar Planets
Naming the extrasolar planets W. Lyra Max Planck Institute for Astronomy, K¨onigstuhl 17, 69177, Heidelberg, Germany [email protected] Abstract and OGLE-TR-182 b, which does not help educators convey the message that these planets are quite similar to Jupiter. Extrasolar planets are not named and are referred to only In stark contrast, the sentence“planet Apollo is a gas giant by their assigned scientific designation. The reason given like Jupiter” is heavily - yet invisibly - coated with Coper- by the IAU to not name the planets is that it is consid- nicanism. ered impractical as planets are expected to be common. I One reason given by the IAU for not considering naming advance some reasons as to why this logic is flawed, and sug- the extrasolar planets is that it is a task deemed impractical. gest names for the 403 extrasolar planet candidates known One source is quoted as having said “if planets are found to as of Oct 2009. The names follow a scheme of association occur very frequently in the Universe, a system of individual with the constellation that the host star pertains to, and names for planets might well rapidly be found equally im- therefore are mostly drawn from Roman-Greek mythology. practicable as it is for stars, as planet discoveries progress.” Other mythologies may also be used given that a suitable 1. This leads to a second argument. It is indeed impractical association is established. to name all stars. But some stars are named nonetheless. In fact, all other classes of astronomical bodies are named. -
18 January 2011 HSPA+ and LTE Device Tracker (2).Xlsx
GSMA HSPA/LTE Devices Tracking February 2011 Approval Data rate (Mb/s) Frequency (MHz) Category Vendor Model Device type Technology GCF PTCRB Downlink Uplink 450 700 800 850 900 1700 1800 1900 2100 2300 2500 2600 2700 3300 3800 Consumer Acer Iconia Netbook LTE Consumer Altair Semiconductor FourGee™ ExpressCard UE USB Modem LTE Consumer AnyData DTP960S Embedded Module LTE 50 25 x Consumer AnyData ADU960S USB Modem LTE 50 25 x Consumer BandRich BandLuxe R300 Router WCDMA HSPA+ 21 5.76 xx Consumer BandRich BandLuxe R305 Router WCDMA HSPA+ 21 5.76 x Consumer BandRich BandLuxe R306 Router WCDMA HSPA+ 21 5.76 xx Consumer BandRich BandLuxe C320 USB Modem WCDMA HSPA+ 21 5.76 xx xx Consumer BandRich BandLuxe C321 USB Modem WCDMA HSPA+ 21 x Consumer BandRich BandLuxe C325 USB Modem WCDMA HSPA+ 21 x Consumer BandRich BandLuxe C326 USB Modem WCDMA HSPA+ 21 xx xx Consumer BandRich BandLuxe C330 USB Modem WCDMA HSPA+ 21 5.76 xxx Consumer BandRich BandLuxe C331 USB Modem WCDMA HSPA+ 21 5.76 x Consumer BandRich BandLuxe C339 USB Modem WCDMA HSPA+ 21 5.76 xx Consumer BandRich BandLuxe PR30 Router WCDMA HSPA+ x 21 5.76 xxx Consumer BandRich BandLuxe PR39 Router WCDMA HSPA+ x 21 5.76 xx Consumer Billion BiPAC 6200NXL Router WCDMA HSPA+ 14.4 Consumer Cisco Cius N/A LTE Consumer CradlePoint Technology MBR90 Router LTE Consumer CradlePoint Technology MBR900 Router LTE Consumer CradlePoint Technology MBR1000 Router LTE Consumer CradlePoint Technology MBR1200 Router LTE Consumer CradlePoint Technology NFS750L N/A LTE Consumer CradlePoint Technology PCS1400L Router -
Mizuho BK Custody and Proxy Board Lot Size List OCT 27, 2020 21LADY
Mizuho BK Custody and Proxy Board Lot Size List OCT 27, 2020 Board Lot Stock Name (in Alphabetical Order) ISIN Code QUICK Code Size 21LADY CO.,LTD. 100 JP3560550000 3346 3-D MATRIX,LTD. 100 JP3410730000 7777 4CS HOLDINGS CO.,LTD. 100 JP3163300001 3726 A DOT CO.,LTD 100 JP3160590000 7063 A-ONE SEIMITSU INC. 100 JP3160660001 6156 A.D.WORKS GROUP CO.,LTD. 100 JP3160560003 2982 A&A MATERIAL CORPORATION 100 JP3119800005 5391 A&D COMPANY,LIMITED 100 JP3160130005 7745 A&T CORPORATION 100 JP3160680009 6722 ABALANCE CORPORATION 100 JP3969530009 3856 ABC-MART,INC. 100 JP3152740001 2670 ABHOTEL CO.,LTD. 100 JP3160610006 6565 ABIST CO.,LTD. 100 JP3122480001 6087 ACCESS CO.,LTD. 100 JP3108060009 4813 ACCESS GROUP HOLDINGS CO.,LTD. 100 JP3108190004 7042 ACCRETE INC. 100 JP3108180005 4395 ACHILLES CORPORATION 100 JP3108000005 5142 ACMOS INC. 100 JP3108100003 6888 ACOM CO.,LTD. 100 JP3108600002 8572 ACRODEA,INC. 100 JP3108120001 3823 ACTCALL INC. 100 JP3108140009 6064 ACTIVIA PROPERTIES INC. 1 JP3047490002 3279 AD-SOL NISSIN CORPORATION 100 JP3122030004 3837 ADASTRIA CO.,LTD. 100 JP3856000009 2685 ADEKA CORPORATION 100 JP3114800000 4401 ADISH CO.,LTD. 100 JP3121500007 7093 ADJUVANT COSME JAPAN CO.,LTD. 100 JP3119620007 4929 ADTEC PLASMA TECHNOLOGY CO.,LTD. 100 JP3122010006 6668 ADVAN CO.,LTD. 100 JP3121950004 7463 ADVANCE CREATE CO.,LTD. 100 JP3122100005 8798 ADVANCE RESIDENCE INVESTMENT CORPORATION 1 JP3047160001 3269 ADVANCED MEDIA,INC. 100 JP3122150000 3773 ADVANEX INC. 100 JP3213400009 5998 ADVANTAGE RISK MANAGEMENT CO.,LTD. 100 JP3122410008 8769 ADVANTEST CORPORATION 100 JP3122400009 6857 ADVENTURE,INC. 100 JP3122380003 6030 ADWAYS INC. 100 JP3121970002 2489 AEON CO.,LTD. 100 JP3388200002 8267 AEON DELIGHT CO.,LTD. -
Danaher Corp /De
DANAHER CORP /DE/ FORM 10-K (Annual Report) Filed 3/15/2006 For Period Ending 12/31/2005 Address 2099 PENNSYLVANIA AVE N.W., 12TH FLOOR WASHINGTON, District of Columbia 20006 Telephone 202-828-0850 CIK 0000313616 Industry Scientific & Technical Instr. Sector Technology Fiscal Year 12/31 Table of Contents SECURITIES AND EXCHANGE COMMISSION Washington, D.C. 20549 FORM 10-K (Mark One) ANNUAL REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934 For the fiscal year ended December 31, 2005 OR TRANSITION REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934 For the transition period from to Commission File Number: 1-8089 DANAHER CORPORATION (Exact name of registrant as specified in its charter) Delaware 59 -1995548 (State of incorporation) (I.R.S.Employer Identification number) 2099 Pennsylvania Ave. N.W., 12 th Floor Washington, D.C. 20006-1813 (Address of Principal Executive Offices) (Zip Code) Registrant’s telephone number, including area code: 202-828-0850 Securities Registered Pursuant to Section 12(b) of the Act: Title of each class Name of Exchanges on which registered Common Stock $.01 par value New York Stock Exchange Pacific Exchange Securities registered pursuant to Section 12(g) of the Act: NONE (Title of Class) Indicate by check mark if the registrant is a well-known seasoned issuer, as defined in Rule 405 of the Securities Act. Yes No Indicate by check mark if the registrant is not required to file reports pursuant to Section 13 or Section 15(d) of the Act. -
Form 20-F for the Fiscal Year Ended March 31, 2017
UNITED STATES SECURITIES AND EXCHANGE COMMISSION Washington, D.C. 20549 Form 20-F ‘ REGISTRATION STATEMENT PURSUANT TO SECTION 12(b) OR 12(g) OF THE SECURITIES EXCHANGE ACT OF 1934 or Í ANNUAL REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934 For the fiscal year ended March 31, 2017 or ‘ TRANSITION REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934 For the transition period from/to or ‘ SHELL COMPANY REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934 Date of event requiring this shell company report: Commission file number 1-6439 Sony Kabushiki Kaisha (Exact Name of Registrant as specified in its charter) SONY CORPORATION (Translation of Registrant’s name into English) Japan (Jurisdiction of incorporation or organization) 7-1, KONAN 1-CHOME, MINATO-KU, TOKYO 108-0075 JAPAN (Address of principal executive offices) J. Justin Hill, Senior Vice President, Investor Relations Sony Corporation of America 25 Madison Avenue, 26th Floor New York, NY 10010-8601 Telephone: 212-833-6722 E-mail: [email protected] (Name, Telephone, E-mail and Address of Company Contact Person) Securities registered or to be registered pursuant to Section 12(b) of the Act: Title of Each Class Name of Each Exchange on Which Registered American Depositary Shares* New York Stock Exchange Common Stock** New York Stock Exchange * American Depositary Shares evidenced by American Depositary Receipts. Each American Depositary Share represents one share of Common Stock. ** No par value per share. Not for trading, but only in connection with the listing of American Depositary Shares pursuant to the requirements of the New York Stock Exchange. -
Program Analysis Based Approaches to Ensure Security and Safety of Emerging Software Platforms
Program Analysis Based Approaches to Ensure Security and Safety of Emerging Software Platforms by Yunhan Jia A dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy (Computer Science and Engineering) in The University of Michigan 2018 Doctoral Committee: Professor Z. Morley Mao, Chair Professor Atul Prakash Assistant Professor Zhiyun Qian, University of California Riverside Assistant Professor Florian Schaub Yunhan Jia [email protected] ORCID iD: 0000-0003-2809-5534 c Yunhan Jia 2018 All Rights Reserved To my parents, my grandparents and Xiyu ii ACKNOWLEDGEMENTS Five years have passed since I moved into the Northwood cabin in Ann Arbor to chase my dream of obtaining a Ph.D. degree. Now, looking back from the end of this road, there are so many people I would like to thank, who are an indispensable part of this wonderful journey full of passion, love, learning, and growth. Foremost, I would like to gratefully thank my advisor, Professor Zhuoqing Morley Mao for believing and investing in me. Her constant support was a definite factor in bringing this dissertation to its completion. Whenever I got lost or stucked in my research, she would always keep a clear big picture of things in mind and point me to the right direction. With her guidance and support over these years, I have grown from a rookie to a researcher that can independently conduct research. Besides my advisor, I would like to thank my thesis committee, Professor Atul Prakash, Professor Zhiyun Qian, and Professor Florian Schaub for their insightful suggestions, com- ments, and support. -
B~F";, Roland Patch Librarian Software Power Amplifiers Non-Keyboard Dr
Keyboard Music Notation Synthesizers Software Akai Mark 01 the Unicorn Korg Jim Miller Oberheim B~f";, Roland Patch Librarian Software Power Amplifiers Non-Keyboard Dr. Ts Ashly Synthesizers Jim Miller C ~O BGW Akai Opcode Systems Carver Korg Southworth Crown Kurzweil Voyelra Technologies HH Oberheim Haller Roland Voice Editing JBL Software Mcintosh MIDI Keyboard digidesign Ramsa Controllers Jim Miller Rane ~OoQ~ Symetrix Akai Opcode Systems Kurzwell UREI Oberheim MIDI Management Yamaha Roland Systems AudiO-Technlca Akai Fostex Studio Monitor Keyboard Sampling Axxess Unlimited TASCAM Speakers Systems J.L. Cooper Yamaha Auratone E-mu Drawmer B&W Korg Sycologic Mixers CSI (M DM) Kurzweil 360 Systems Akai Eastern Acoustic Works Roland Fostex Electro-Voice Ramsa Fostex MIDI Clocks & ART Shure Fourier Non-Keyboard MIDI Timing Devices Ashly TAC/Amek JBL Professional Samplers AXE dbx TASCAM ROR AMS Fostex Fostex Yamaha UREI Akai Gartield JBL Visonik bel Korg Klark-Teknik Multi-track Yamaha E-mu Roland Recorders Reverbs Orban Kurzweil Southworth Akai AKG Rane Headphones MDB TASCAM Fostex ART AKG MIDI /SMPTE UREI Otari Alesis Audio-Technica Digital Drum Interfaces Valley People TASCAM Eventide Beyer Machines Fostex White Klark-Teknik Fostex Akai-Linn Garfield 2-track Recorders Lexicon Yamaha J.L. Cooper Roland Koss Fostex Orban E-mu Southworth Sennheiser Olari Roland Vocoders Sony Korg Korg Studer/ Revox Yamaha Stanton Oberheim MIDI /Computer Roland TASCAM Stax Roland Interfaces Delay Lines Syntovox digidesign ADSlDeltalab Sampled Sound Cassette Recorders Hi-Fi Components Opcode Systems Akai AMS MIDI-controllable Libraries Roland Denon Denon ART Signal Processors Sony ES K-Muse Southworth Fostex Audio Digital ART Optical Media Voyetra Technologies Nakamichi Professional bel Alesis Equipment Racks & Sony ES Eventide Eventide Cases EPROM Burners MIDI Accessories Lexicon Korg Studer/ Revox Anvil digidesign Akai Lexicon TASCAM Marshall Bud Oberheim Axxess Unlimited Roland Yamaha Calzone J.L. -
042Cf377-Ed0c-4715-9260-770F680082fc.Pdf
WiFi Tablets 70 Neon + The ARCHOS 70 Neon Plus is one of the most affordable tablets on the market. It includes a powerful quad-core processor running the latest Android operating system: Android™ 5.1 Lollipop®. The 7-inch IPS display provides incredible colors and wide viewing angles, perfect for enjoying your content on-the-go. The ARCHOS 70 Neon Plus is designed to offer a unique multimedia experience. AndroidTM 5.1, Lollipop® Android™ 5.1, “Lollipop” 7” IPS Capacitive Screen 1024x 600 pixels Rockchip 3126 Quad-Core CPU @ 1.3 GHz 1 GB RAM 8 GB flash memory (+ microSD slot) GB Micro SD Wifi WiFi, dual cameras, micro USB host, G-sensor, speaker... 8 4 5 90b Neon Featuring a powerful 1.2 GHz Quad-core processor and Dual-core graphics processor, the ARCHOS 90b Neon has a super smooth interface. At an affordable price, the ARCHOS 90b Neon delivers an amazing experience to meet all your needs: emails, movies, photos, web browsing… Android™ 4.4, “Kitkat” 9” Capacitive Screen 1024 x 600 pixels All Winner A33 Quad-Core CPU @ 1.2 GHz 512 MB RAM 8 GB flash memory (+ microSD slot) GB Wifi WiFi, dual cameras, micro USB host, G-sensor, 8 speaker... 6 7 101d Neon A mix between large screen and productivity, the ARCHOS 101d Neon includes a large 10.1” screen and ARCHOS media applications, perfect for your multimedia, wherever you are. Featuring a powerful Quad-core processor and Quad-core graphics processor, the ARCHOS 101d Neon offers a super smooth interface for an affordable price and delivers an amazing experience to meet all your needs.