ORACAL® 951 Premium Cast - COLOR CHART
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Color Conversion Chart
Color Conversion Chart CMYK & RGB COLOR VALUES Opalescent C-M-Y-K R-G-B Opalescent C-M-Y-K R-G-B 000009 Reactive Cloud 4-2-1-0 241-243-247 000164 Egyptian Blue 81-48-0-0 49-116-184 000013 Opaque White 4-2-2-1 246-247-249 000203 Woodland Brown 22-63-87-49 120-70-29 000016 Turquoise Opaque Rod 65-4-27-6 75-174-179 000206 Elephant Gray 35-30-32-18 150-145-142 000024 Tomato Red 1-99-81-16 198-15-36 000207 Celadon Green 43-14-46-13 141-167-137 000025 Tangerine Orange 1-63-100-0 240-119-2 000208 Dusty Blue 60-25-9-28 83-123-154 000034 Light Peach Cream 5-12-15-0 243-226-213 000212 Olive Green 44-4-91-40 104-133-42 000100 Black 75-66-60-91 10-9-10 000216 Light Cyan 62-4-9-0 88-190-221 000101 Stiff Black 75-66-60-91 10-9-10 000217 Green Gold Stringer 11-6-83-13 206-194-55 000102 Blue Black 76-69-64-85 6-7-13 000220 Sunflower Yellow 5-33-99-1 240-174-0 000104 Glacier Blue 38-3-5-0 162-211-235 000221 Citronelle 35-15-95-1 179-184-43 000108 Powder Blue 41-15-11-3 153-186-207 000222 Avocado Green 57-24-100-2 125-155-48 000112 Mint Green 43-2-49-2 155-201-152 000224 Deep Red 16-99-73-38 140-24-38 000113 White 5-2-5-0 244-245-241 000225 Pimento Red 1-100-99-11 208-10-13 000114 Cobalt Blue 86-61-0-0 43-96-170 000227 Golden Green 2-24-97-34 177-141-0 000116 Turquoise Blue 56-0-21-1 109-197-203 000236 Slate Gray 57-47-38-40 86-88-97 000117 Mineral Green 62-9-64-27 80-139-96 000241 Moss Green 66-45-98-40 73-84-36 000118 Periwinkle 66-46-1-0 102-127-188 000243 Translucent White 5-4-4-1 241-240-240 000119 Mink 37-44-37-28 132-113-113 000301 Pink 13-75-22-10 -
RAL COLOR CHART ***** This Chart Is to Be Used As a Guide Only. Colors May Appear Slightly Different ***** Green Beige Purple V
RAL COLOR CHART ***** This Chart is to be used as a guide only. Colors May Appear Slightly Different ***** RAL 1000 Green Beige RAL 4007 Purple Violet RAL 7008 Khaki Grey RAL 4008 RAL 7009 RAL 1001 Beige Signal Violet Green Grey Tarpaulin RAL 1002 Sand Yellow RAL 4009 Pastel Violet RAL 7010 Grey RAL 1003 Signal Yellow RAL 5000 Violet Blue RAL 7011 Iron Grey RAL 1004 Golden Yellow RAL 5001 Green Blue RAL 7012 Basalt Grey Ultramarine RAL 1005 Honey Yellow RAL 5002 RAL 7013 Brown Grey Blue RAL 1006 Maize Yellow RAL 5003 Saphire Blue RAL 7015 Slate Grey Anthracite RAL 1007 Chrome Yellow RAL 5004 Black Blue RAL 7016 Grey RAL 1011 Brown Beige RAL 5005 Signal Blue RAL 7021 Black Grey RAL 1012 Lemon Yellow RAL 5007 Brillant Blue RAL 7022 Umbra Grey Concrete RAL 1013 Oyster White RAL 5008 Grey Blue RAL 7023 Grey Graphite RAL 1014 Ivory RAL 5009 Azure Blue RAL 7024 Grey Granite RAL 1015 Light Ivory RAL 5010 Gentian Blue RAL 7026 Grey RAL 1016 Sulfer Yellow RAL 5011 Steel Blue RAL 7030 Stone Grey RAL 1017 Saffron Yellow RAL 5012 Light Blue RAL 7031 Blue Grey RAL 1018 Zinc Yellow RAL 5013 Cobolt Blue RAL 7032 Pebble Grey Cement RAL 1019 Grey Beige RAL 5014 Pigieon Blue RAL 7033 Grey RAL 1020 Olive Yellow RAL 5015 Sky Blue RAL 7034 Yellow Grey RAL 1021 Rape Yellow RAL 5017 Traffic Blue RAL 7035 Light Grey Platinum RAL 1023 Traffic Yellow RAL 5018 Turquiose Blue RAL 7036 Grey RAL 1024 Ochre Yellow RAL 5019 Capri Blue RAL 7037 Dusty Grey RAL 1027 Curry RAL 5020 Ocean Blue RAL 7038 Agate Grey RAL 1028 Melon Yellow RAL 5021 Water Blue RAL 7039 Quartz Grey -
Best Plants for Problem Clay Soils: Perennials
Visit us on the Web: www.gardeninghelp.org Best Plants for Problem Clay Soils: Perennials Perennials Amsonia tabernaemontana — Bluestar This Missouri native features uptight clusters of light blue star-like flowers in late spring. Its narrow willow-like leaves turn yellow to peach-colored in fall. Bluestar may require staking if grown in shade and may be pruned after flowering to maintain a compact shape. It is most attractive when grown massed, in native plant gardens, shade gardens, open woodland areas, and borders. Asclepias incarnata — Swamp milkweed Despite its common name and native habitat, swamp milkweed may be grown in the average garden. Its fragrant white, pink or mauve flowers attract butterflies and mature into slender pods with silky-haired seeds. Swamp milkweed is a good choice for sunny, low or moist areas such as stream or pond banks, borders, and butterfly gardens. Baptisia australis — Blue false indigo Blue false indigo has beautiful purplish blue lupine-like flowers borne in erect spikes above the trifoliate leaves. The flowers mature into black seed pods that rattle in the breeze and are an interesting addition to dried flower arrangements. This herbaceous perennial does best in full sun as plants grown in part shade may grow taller and need support. Due to an extensive root system, blue false indigo will tolerate drought, but it should not be disturbed once it is established. Attractive in almost any situation including borders, prairies, cottage gardens, and native plant gardens, this plant is best used as a single specimen plant or in small groups. Baptisia australis var. -
Indigo: Sources, Processes and Possibilities for Bioregional Blue
Indigo: Sources, processes and possibilities for bioregional blue Nicholas Wenner and Matthew Forkin June 2017 Photo by Kalie Cassel-Feiss by Kalie Photo Table of Contents Introduction . .3 Indigo . .4 The Indigo Process . 11 Conclusions . 15 Photo by Paige Green Green by Paige Photo Indigo Overview 2 Introduction his report was completed with funding generously provided by the Jena and Michael King TFoundation as part of Fibershed’s True Blue project . It is one project of many that support Fibershed’s larger mission: “Fibershed develops regional and regenerative fiber systems on behalf of independent working producers, by expanding opportunities to implement carbon farming, forming catalytic foundations to rebuild regional manufacturing, and through connecting end-users to farms and ranches through public education.” In this report we present the various sources of blue dye and of indigo, and motivate the use of plant-based indigo in particular . We also identify the limitations of natural dyes like indigo and the need for larger cultural and systemic shifts . The ideal indigo dye production system would be a closed-loop system that moves from soil to dye to textiles and back to soil . The indigo process has three basic steps: planting, harvesting, and dye extraction . In this document, we provide an overview of each, and detailed explorations are given in two separate documents that will be available through Fibershed by late-summer 2017 . This report is based on a literature review of academic research, natural dye books, online content, and personal interviews . It benefited greatly from conversations with (and the generosity of) many skilled artisans and natural dyers, including Rowland Ricketts, Jane Palmer, and Kori Hargreaves . -
SDS Is Correct to the Best of Our Knowledge, Information and Belief at the Date of Its Publication
SAFETY DATA SHEET Issuing Date 28-Oct-2016 Revision Date 28-Oct-2016 Revision Number 0 This document complies with the US OSHA Hazard Communication Standard (29 CFR 1910.1200), Canada WHMIS 2015 which includes the amended Hazardous Products Act (HPA) and the Hazardous Products Regulation (HPR), and Mexico’s NMX-R-019-SC-2011. 1. IDENTIFICATION OF THE SUBSTANCE/PREPARATION AND THE COMPANY/UNDERTAKING GHS product identifier Product Name Dykem Transparent Stain Bulk - Steel Blue, Steel Red and Black Other means of identification Part Number Dk Blue - Steel Blue (80200, 80300, 80400, 80600, 80700), Red - Steel Red (80296, 80396, 80496, 80696), Black (81731) Formula Code Dk Blue - Steel Blue (8706), Red - Steel Red (8705), Black (8749) UN-Number UN1263 Synonyms None Recommended use of the chemical and restrictions on use Recommended Use Staining Colors Uses advised against No information available Supplier's details Initial Supplier Supplier Address ITW Permatex Canada ITW PRO BRANDS 1-35 Brownridge Road 805 E. Old 56 Highway Halton Hills, ON, L7G 0C6 Olathe, KS 66061 Canada TEL: 1-800-443-9536 Emergency telephone number Emergency Telephone 800-535-5053 Infotrac Number 2. HAZARDS IDENTIFICATION Classification This product is considered hazardous according to the criteria set within the US OSHA Hazard Communication Standard (29 CFR 1910.1200), Canada WHMIS 2015 which includes the amended Hazardous Products Act (HPA) and the Hazardous Products Regulation (HPR), and Mexico’s NMX-R-019-SC-2011. Skin Corrosion/Irritation Category 2 _____________________________________________________________________________________________ -
Opaque Colors
When glazing, it helps to know which colors are transparent and which are opaque. Whether a particular color is transparent or opaque has to do simply with its inherent chemical makeup. An opaque color will offer more coverage than a transparent one; that much is obvious. But it is important to remember that opacity and transparency have nothing to do with color saturation/intensity or color permanence. Both groups contain fugitive colors as well as powerful ones (red can fade quickly in UV light; blue used in even small quantities will turn the mixture strongly blue). This list is provided to help you determine which colors are best used for underpainting, which are best for glazing right out of the tube, and which may require the use of a glazing medium. Opaque Oil Colors Transparent Oil Colors Whites Whites lead white zinc white titanium white transparent white Yellows Yellows cadmium yellow (all tones) aureolin (cobalt yellow) Naples yellow Indian yellow yellow ochre transparent gold ochre jaune brilliant transparent oxide yellow nickel titanate yellow stil de grain jaune Reds and Oranges Reds and Oranges cadmium red (light and dark) alizarin crimson cadmium orange rose madder (light and dark) English red ultramarine red Mars red quinacridone red Venetian red quinacridone burnt orange terra rosa transparent red oxide vermillion naphthol scarlet anthraquinoid red perinone orange Greens Greens chromium green oxide viridian permanent green phthalo green cadmium green phthalo turquoise green gold terre verte Browns Browns burnt umber burnt sienna raw umber raw sienna Pozzuoli earth brown madder alizarin transparent brown stil de grain brun Blues Blues cerulean blue ultramarine blue cobalt blue phthalo blue manganese blue indanthrone blue indigo Violets Violets cadmium purple cobalt violet Mars violet manganese violet caput mortuum violet carbazole violet quinacridone violet rose dore’ dioxazine purple Blacks and Neutrals Blacks and Neutrals lamp black ivory black peach black Davy’s gray Mars black Paynes gray . -
Ozone: Twilit Skies, and (Exo-)Planet Transits
Astronomical Science Ozone: Twilit Skies, and (Exo-)planet Transits Robert Fosbury1 the atmosphere, can be rich and varied. This article is about the effect of ozone George Koch 2 The processes that result in this palette on the colour of the twilit sky and, in the Johannes Koch 2 are geometrically complex, but comprise same vein, its appearance as the strong- a limited number of now well-understood est telluric absorption feature in the visi- physical effects. This understanding was ble spectrum of the Earth as it would be 1 ESO not gained easily. From the time when seen by a distant observer watching it 2 Lycée Français Jean Renoir, München, early humans first consciously posed the transit in front of the Sun. We present and Germany question: “What makes the sky blue?”, to analyse spectrophotometric observations the time when the processes of scatter- of sunset and also discuss observations ing by molecules and molecular density of the eclipsed Moon reported by Pallé et Although only a trace constituent gas fluctuations were elucidated, thousands al. (2009). in the Earth’s atmosphere, ozone plays of years passed, during which increas- a critical role in protecting the Earth’s ingly intensive experiments and theories surface from receiving a damaging flux were developed and carried out (Pesic, Ozone of solar ultraviolet radiation. What is not 2005). generally appreciated, however, is that Ozone (O3 or trioxygen) is an unstable the intrinsically weak, visible Chappuis Most physicists, if asked why the sky is allotrope of oxygen that most people can absorption band becomes an important blue, would answer with little hesitation: detect by smell at concentrations as influence on the colour of the entire sky “Because of Rayleigh scattering by mole low as 0.01 parts per million (ppm). -