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1

Hilliard, Elizabeth. Paint: The fired earth book of natural colour. London: Pavilion, 2001.

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2

1939-, Chodos Junko, ed. Why on earth does God have to paint?: Centripetal art. Malibu, Calif: Giotto Multimedia, 2009.

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3

Crews, Carole. Clay culture: Plasters, paints & preservation. Taos, N.M: Gourmet Adobe Press, 2009.

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4

State University College at Buffalo. Dept. of Art Conservation., ed. Molecular studies of asphalt, mummy and Kassel earth pigments: Their characterisation, identification and effect on the drying of traditional oil paint. [S.l: s.n.], 2004.

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5

Yevgeny, Barabanov, Riese Hans-Peter, and Gosudarstvennai︠a︡ Tretʹi︠a︡kovskai︠a︡ galerei︠a︡, eds. Eduard Steinberg: Heaven and earth : reflections in paints. St. Petersberg: Palace Editions, 2004.

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6

Sarajin kaetpŏl: O Chun-gyu sajinjip = Pain earth pain us : Korea 2009-2012. Sŏul-si: Kyegan Munye, 2012.

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7

Books, Golden. Defenders Of The Earth Paint with Water. Golden books, 1986.

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8

Earth Pigments and Paint of the California Indians. Paul Douglas Campbell, 2007.

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9

Merwin, Richard. Hollow Earth Affair/Royal Pain. Wizards of the Coast, 1988.

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10

Rogue, Conrad. House of earth: A complete handbook for earthen construction : cob, straw-clay, adobe, earthbags, plasters, floors, paints. 2015.

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11

B, Hadaway James, and United States. National Aeronautics and Space Administration., eds. "Seal sample fixtures": Final report. Huntsville, Ala: University of Alabama in Huntsville, 1997.

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12

Briggs, Andrew, Hans Halvorson, and Andrew Steane. This is the story of life on Earth. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198808282.003.0013.

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The story of Earth’s biosphere is looked at in the round, with a view to understanding correctly terminology such as ‘survival of the fittest’, and getting sound metaphors to underpin our understanding of genetics and natural selection. There is no need to pick Machiavellian metaphors when other less loaded ones will do. The evolutionary process has proved to be creative; it involves a rather lovely use of humble materials to improvise new structures and thus gain access to deeper and richer forms of existence. It is an open-handed process; its random element is a positive promoter of its freedom. Within this same process is the pain and tragedy of all life. None of this denies the truths of arithmetic or engineering; neither does it deny the truths of moral insight and social existence. Our meaning before God and each other is worked out within this tapestry.
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13

Wild, Ailsa, Aviva Reed, Briony Barr, Gregory Crocetti, and S. Patricia Stock. Nema and the Xenos. CSIRO Publishing, 2019. http://dx.doi.org/10.1071/9781486312177.

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This is a story about tiny creatures that live in the darkness of the soil. When a tree cries out in pain, some unexpected heroes come to the rescue. Nema and her gang of young nematodes (tiny worms) embark on a dangerous journey underground. The Xenos, a group of wise but deadly bacteria, hitch a ride. The story of how they help the tree is full of action, life-or-death challenges and microscopic warfare. It is a story of co-operation and ancient partnership, about events happening all over the Earth, in the hidden worlds beneath our feet.
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14

Hanson, Robin. The Age of Em. Oxford University Press, 2016. http://dx.doi.org/10.1093/oso/9780198754626.001.0001.

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Robots may one day rule the world, but what is a robot-ruled Earth like? Many think the first truly smart robots will be brain emulations or ems. Scan a human brain, then run a model with the same connections on a fast computer, and you have a robot brain, but recognizably human. Train an em to do some job and copy it a million times: an army of workers is at your disposal. When they can be made cheaply, within perhaps a century, ems will displace humans in most jobs. In this new economic era, the world economy may double in size every few weeks. Some say we can't know the future, especially following such a disruptive new technology, but Professor Robin Hanson sets out to prove them wrong. Applying decades of expertise in physics, computer science, and economics, he uses standard theories to paint a detailed picture of a world dominated by ems. While human lives don't change greatly in the em era, em lives are as different from ours as our lives are from those of our farmer and forager ancestors. Ems make us question common assumptions of moral progress, because they reject many of the values we hold dear. Read about em mind speeds, body sizes, job training and career paths, energy use and cooling infrastructure, virtual reality, aging and retirement, death and immortality, security, wealth inequality, religion, teleportation, identity, cities, politics, law, war, status, friendship and love. This book shows you just how strange your descendants may be, though ems are no stranger than we would appear to our ancestors. To most ems, it seems good to be an em.
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15

Verschuur, Gerrit L. Impact! Oxford University Press, 1996. http://dx.doi.org/10.1093/oso/9780195101058.001.0001.

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Most scientists now agree that some sixty-five million years ago, an immense comet slammed into the Yucatan, detonating a blast twenty million times more powerful than the largest hydrogen bomb, punching a hole ten miles deep in the earth. Trillions of tons of rock were vaporized and launched into the atmosphere. For a thousand miles in all directions, vegetation burst into flames. There were tremendous blast waves, searing winds, showers of molten matter from the sky, earthquakes, and a terrible darkness that cut out sunlight for a year, enveloping the planet in freezing cold. Thousands of species of plants and animals were obliterated, including the dinosaurs, some of which may have become extinct in a matter of hours. In Impact, Gerrit L. Verschuur offers an eye-opening look at such catastrophic collisions with our planet. Perhaps more important, he paints an unsettling portrait of the possibility of new collisions with earth, exploring potential threats to our planet and describing what scientists are doing right now to prepare for this awful possibility. Every day something from space hits our planet, Verschuur reveals. In fact, about 10,000 tons of space debris fall to earth every year, mostly in meteoric form. The author recounts spectacular recent sightings, such as over Allende, Mexico, in 1969, when a fireball showered the region with four tons of fragments, and the twenty-six pound meteor that went through the trunk of a red Chevy Malibu in Peekskill, New York, in 1992 (the meteor was subsequently sold for $69,000 and the car itself fetched $10,000). But meteors are not the greatest threat to life on earth, the author points out. The major threats are asteroids and comets. The reader discovers that astronomers have located some 350 NEAs ("Near Earth Asteroids"), objects whose orbits cross the orbit of the earth, the largest of which are 1627 Ivar (6 kilometers wide) and 1580 Betula (8 kilometers). Indeed, we learn that in 1989, a bus-sized asteroid called Asclepius missed our planet by 650,000 kilometers (a mere six hours), and that in 1994 a sixty-foot object passed within 180,000 kilometers, half the distance to the moon. Comets, of course, are even more deadly. Verschuur provides a gripping description of the small comet that exploded in the atmosphere above the Tunguska River valley in Siberia, in 1908, in a blinding flash visible for several thousand miles (every tree within sixty miles of ground zero was flattened). He discusses Comet Swift-Tuttle--"the most dangerous object in the solar system"--a comet far larger than the one that killed off the dinosaurs, due to pass through earth's orbit in the year 2126. And he recounts the collision of Comet Shoemaker-Levy 9 with Jupiter in 1994, as some twenty cometary fragments struck the giant planet over the course of several days, casting titanic plumes out into space (when Fragment G hit, it outshone the planet on the infrared band, and left a dark area at the impact site larger than the Great Red Spot). In addition, the author describes the efforts of Spacewatch and other groups to locate NEAs, and evaluates the idea that comet and asteroid impacts have been an underrated factor in the evolution of life on earth. Astronomer Herbert Howe observed in 1897: "While there are not definite data to reason from, it is believed that an encounter with the nucleus of one of the largest comets is not to be desired." As Verschuur shows in Impact, we now have substantial data with which to support Howe's tongue-in-cheek remark. Whether discussing monumental tsunamis or the innumerable comets in the Solar System, this book will enthrall anyone curious about outer space, remarkable natural phenomenon, or the future of the planet earth.
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16

Stubbe, Peter. Legal Consequences of the Pollution of Outer Space with Space Debris. Oxford University Press, 2017. http://dx.doi.org/10.1093/acrefore/9780190647926.013.68.

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This is an advance summary of a forthcoming article in the Oxford Encyclopedia of Planetary Science. Please check back later for the full article.Space debris has grown to be a significant problem for outer space activities. The remnants of human activities in space are very diverse; they can be tiny paint flakes, all sorts of fragments, or entirely intact—but otherwise nonfunctional spacecraft and rocket bodies. The amount of debris is increasing at a growing pace, thus raising the risk of collision with operational satellites. Due to the relative high velocities involved in on-orbit collisions, their consequences are severe; collisions lead to significant damage or the complete destruction of the affected spacecraft. Protective measures and collision avoidance have thus become a major concern for spacecraft operators. The pollution of space with debris must, however, not only be seen as an unfavorable circumstance that accompanies space activities and increases the costs and complexity of outer space activities. Beyond this rather technical perspective, the presence of man-made, nonfunctional objects in space represents a global environmental concern. Similar to the patterns of other environmental problems on Earth, debris generation appears to have surpassed the absorption capacity of the space environment. Studies indicate that the evolution of the space object environment has crossed the tipping point to a runaway situation in which an increasing number of collisions―mostly among debris―leads to an uncontrolled population growth. It is thus in the interest of all mankind to address the debris problem in order to preserve the space environment for future generations.International space law protects the space environment. Article IX of the Outer Space Treaty obligates States to avoid the harmful contamination of outer space. The provision corresponds to the obligation to protect the environment in areas beyond national jurisdiction under the customary “no harm” rule of general environmental law. These norms are applicable to space debris and establish the duty not to pollute outer space by limiting the generation of debris. They become all the more effective when the principles of sustainable development are taken into account, which infuse considerations of intra- as well as inter-generational justice into international law. In view of the growing debris pollution and its related detrimental effects, it is obvious that questions of liability and responsibility will become increasingly relevant. The Liability Convention offers a remedy for victims having suffered damage caused by space debris. The launching State liability that it establishes is even absolute for damage occurring on the surface of the Earth. The secondary rules of international responsibility law go beyond mere compensation: States can also be held accountable for the environmental pollution event itself, entailing a number of consequential obligations, among them―under certain circumstances―a duty to active debris removal. While international law is, therefore, generally effective in addressing the debris problem, growing use and growing risks necessitate the establishment of a comprehensive traffic management regime for outer space. It would strengthen the rule of law in outer space and ensure the sustainability of space utilization.
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17

Waking Up in America: The Possibility of an Earthy Enlightenment amidst all the excess, the stress, the pleasure, and the pain. White Cloud Press, 2004.

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18

deBuys, William. A Great Aridness. Oxford University Press, 2011. http://dx.doi.org/10.1093/oso/9780199778928.001.0001.

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With its soaring azure sky and stark landscapes, the American Southwest is one of the most hauntingly beautiful regions on earth. Yet staggering population growth, combined with the intensifying effects of climate change, is driving the oasis-based society close to the brink of a Dust-Bowl-scale catastrophe. In A Great Aridness, William deBuys paints a compelling picture of what the Southwest might look like when the heat turns up and the water runs out. This semi-arid land, vulnerable to water shortages, rising temperatures, wildfires, and a host of other environmental challenges, is poised to bear the heaviest consequences of global environmental change in the United States. Examining interrelated factors such as vanishing wildlife, forest die backs, and the over-allocation of the already stressed Colorado River--upon which nearly 30 million people depend--the author narrates the landscape's history--and future. He tells the inspiring stories of the climatologists and others who are helping untangle the complex, interlocking causes and effects of global warming. And while the fate of this region may seem at first blush to be of merely local interest, what happens in the Southwest, deBuys suggests, will provide a glimpse of what other mid-latitude arid lands worldwide--the Mediterranean Basin, southern Africa, and the Middle East--will experience in the coming years. Written with an elegance that recalls the prose of John McPhee and Wallace Stegner, A Great Aridness offers an unflinching look at the dramatic effects of climate change occurring right now in our own backyard.
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19

Lee, Jongkyung. A Redactional Study of the Book of Isaiah 13-23. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198816768.001.0001.

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This study argues that a series of programmatic additions were made to the oracles concerning the nations in Isa 13-23 during the late-exilic period by the same circle of writers who were responsible for Isa 40-55. These additions were made to create continuity between the ancient oracles against the nations from the Isaiah tradition and the future fate of the same nations as the late-exilic redactor(s) foresaw. The additions portray a two-sided vision concerning the nations. One group of passages (14:1-2; 14:32b; 16:1-4a; 18:7) depicts a positive turn for certain nations while the other group of passages (14:26-27; 19:16-17; 23:8-9, 11) continues to pronounce doom against the remaining nations. This double-sided vision is set out first in Isa 14 surrounding the famous taunt against the fallen tyrant. 14:1-2, before the taunt, paints the broad picture of the future return of the exiles and the attachment of the gentiles to the people of Israel. After the taunt and other sayings of YHWH against his enemies, 14:26-27 extends the sphere of the underlying theme of 14:4b-25a, namely YHWH’s judgement against boastful and tyrannical power(s), to all nations and the whole earth. The two sides of this vision are then applied accordingly to the rest of the oracles concerning nations in chs 13-23. To the nations that have experienced similar disasters as the people of Israel, words of hope in line with 14:1-2 were given. To the nations that still possessed some prominence and reasons to be proud, words of doom in line with 14:26-27 were decreed.
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20

Super NES Games Secrets, Greatest Tips. Rocklin, CA: Prima Publishing, 1993.

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