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This paper explores policies for the management of oil wealth in Norway, Mexico, and Russia, and applies them to the situation in Kazakhstan to create policy guidelines to improve the management of oil wealth in Kazakhstan. Ultimately the paper recommends that Kazakhstan transfer oil wealth to the oil stabilization fund

This paper explores policies for the management of oil wealth in Norway, Mexico, and Russia, and applies them to the situation in Kazakhstan to create policy guidelines to improve the management of oil wealth in Kazakhstan. Ultimately the paper recommends that Kazakhstan transfer oil wealth to the oil stabilization fund directly, that it increase the cap on annual transfers from the fund to the budget to 11 billion dollars, and that it create strict policies for the promotion of growth.
ContributorsHoyt, Christian Thomas (Co-author) / McCarty, Mark (Co-author) / Mendez, Jose (Thesis director) / Schoellman, Todd (Committee member) / Moldabekova, Saule (Committee member) / Barrett, The Honors College (Contributor) / School of International Letters and Cultures (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / Economics Program in CLAS (Contributor)
Created2013-05
Description

By studying the workflow used to create the black hole, Gargantua, in Interstellar, artists can understand how to simulate complex astronomical phenomena in other special effects software such as Houdini. This workflow utilizes a balance between scientific realism and artistic interpretation of astronomical phenomena such that simulations can maximize their

By studying the workflow used to create the black hole, Gargantua, in Interstellar, artists can understand how to simulate complex astronomical phenomena in other special effects software such as Houdini. This workflow utilizes a balance between scientific realism and artistic interpretation of astronomical phenomena such that simulations can maximize their success in film. Through significant amounts of research and study, the artists at Double Negative generated a scientifically realistic black hole in shape and physical behavior, but made creative decisions when shading and lighting their simulation. I find that DNeg’s workflow integrates well when using Houdini technology. I follow their workflow to generate a series of spiral galaxies in Houdini and find how Houdini’s node network layout allows artists to incorporate both scientific realism and creative approaches to a simulation. A strong understanding of the mechanics of the simulated astronomical event scientifically informs the look and shape of a production, while Houdini’s node network layout makes it easy for special effects artists to manipulate simulations to their own artistic interpretation of astronomical phenomena.

ContributorsJoiner, Jae (Author) / Kim, Sujin (Thesis director) / Lawson, Shawn (Committee member) / Barrett, The Honors College (Contributor) / School of Mathematical and Statistical Sciences (Contributor) / School of Art (Contributor)
Created2023-05