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Decay
In eleven sharp essays, the contributors to Decay attend to the processes and experiences of symbolic and material decay in a variety of sociopolitical contexts across the globe.They examine decay in its myriad manifestations—biological, physical, organizational, moral, political, personal, and social and in numerous contexts, including colonialism and imperialism, governments and the state, racism, the environment, and infrastructure.The volume's topics are wide in scope, ranging from the discourse of social decay in contemporary Australian settler colonialism and the ways infrastructures both create and experience decay to cultural decay in the aftermath of the Sri Lankan civil war and the relations among individual, institutional, and societal decay in an American high-security prison.By using decay as a problematic and expounding its mechanisms, conditions, and temporalities, the contributors provide nuanced and rigorous means to more fully grapple with the exigencies of the current sociopolitical moment. Contributors. Cameo Dalley, Peter D. Dwyer, Akhil Gupta, Ghassan Hage, Michael Herzfeld, Elise Klein, Bart Klem, Tamara Kohn, Michael Main, Fabio Mattioli, Debra McDougall, Monica Minnegal, Violeta Schubert
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Museums and Interactive Virtual Learning
Museums and Interactive Virtual Learning provides informal educators with practical resources that will help them to build dynamic digital engagement experiences within their own cultural organizations. Presenting vignettes from experienced museum educators and end users, as well as scientific data and practical resources, the book highlights the mutual benefits that Interactive Virtual Learning (IVL) programs offer to the museum and those visiting from a distance.Chapters mirror the step-by-step process of developing reputable IVL programs and emphasize how important it is for cultural organizations to encourage cross-departmental collaboration, if they wish to ensure that their programs align with the overall goals of the organization.Providing a thorough overview of the technologies, budget, marketing and staff requirements, the authors offer a realistic depiction of the work involved in building content for digital engagement.Emphasizing the importance of assessing existing programming, the book shows how institutions can adapt content to fit a virtual format and create inclusive digital engagement opportunities that reach local, national, and international audiences. Museums and Interactive Virtual Learning is an essential guide for professionals who are tasked with interpreting the content of a cultural organization and building lasting digital engagement opportunities.It will be particularly useful to those looking to reach diverse audiences.
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Love & Decay
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Tooth decay repair Repair all tooth decay cavities and protect teeth Removal of Plaque Stains Decay
Tooth decay repair Repair all tooth decay cavities and protect teeth Removal of Plaque Stains Decay
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Which decay?
There are several types of decay that can occur in nature, including alpha decay, beta decay, and gamma decay. Alpha decay involves the emission of an alpha particle, which consists of two protons and two neutrons. Beta decay involves the emission of a beta particle, which can be either an electron or a positron. Gamma decay involves the emission of gamma rays, which are high-energy electromagnetic radiation. Each type of decay is associated with different types of radioactive isotopes and occurs at different rates.
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What is the decay factor in an exponential decay?
The decay factor in an exponential decay is the constant factor by which the quantity decreases over time. It is typically denoted by the symbol "r" or "λ" and is a value between 0 and 1. The decay factor determines the rate at which the quantity decreases exponentially over time, with a smaller decay factor leading to a slower decay rate and a larger decay factor leading to a faster decay rate. In mathematical terms, the decay factor is the base of the exponential function that describes the decay process.
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Why do only certain atoms decay during alpha decay?
During alpha decay, only certain atoms decay because the process involves the release of an alpha particle, which is essentially a helium-4 nucleus. This means that only atoms with a nucleus that is too large and unstable can undergo alpha decay in order to become more stable. The process of alpha decay helps these unstable atoms to reduce their nuclear mass and achieve a more balanced ratio of protons and neutrons, leading to a more stable configuration. Therefore, only certain atoms with nuclei that are too large and unstable undergo alpha decay in order to achieve greater stability.
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Why can an atom simultaneously decay and not decay?
An atom can simultaneously decay and not decay due to the probabilistic nature of quantum mechanics. According to the principles of quantum mechanics, an atom exists in a superposition of states, meaning it can exist in multiple states at the same time. This superposition allows for the possibility of both decay and non-decay to coexist until the atom is observed or interacts with its environment, at which point it collapses into one of the possible states. This phenomenon is known as quantum superposition and is a fundamental aspect of the behavior of subatomic particles.
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Growth and Decay of Coral Reefs : Fifty Years of Learning
Growth and Decay of Coral Reefs: Fifty Years of Learning describes how coral reefs have alternately flourished and declined over the last 50 years and the dynamics of these changes.The study is based on recordings at 30 different locations along the Sudanese coast, visited by the author between 1971 and 1973. Beyond the Red Sea's desert shores lie some of the richest and most diverse coral reefs on our planet.Over a thousand species of reef fishes, matched by a similar abundance of living corals, creating habitats scientists were only just beginning to understand.The complexity of the inter-relations was truly mesmerizing.A single intervention, such as removal of a key species, could cause the whole community to collapse.Healthy corals were transformed into green weed-smothered reefs, accompanied by the loss of both corals and fish. Based on the author’s observations of how knowledge and perspectives have changed over the last 50 years, this book highlights lessons learned from historical records that may help maintain and reestablish coral reefs in the years to come. Topics covered include:CORAL REEF FISHFish surveysCORAL REEF PROFILESCoral growth ratesCoral distribution Corals on 'Cousteau garage'CORAL THREATSClimate changeCoral bleachingCoral diseasesCoral spongesTerpios hoshinotaCoral predatorsCoral urchinsCORAL – ALGAECORAL RESEARCHand more . . .
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Love & Decay CD
The second fulllength from the Brooklyn melodic shoegazers. For fans of Deftones, Mew, Pelican
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Slow Decay CD
New album from The Acacia Strain.
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Decay: The Mare
A new psychological horror adventure game from the creators of the successful Decay series:Sam is an addict who ends up in an institution named “Reachi...
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How to calculate the average daily decay in exponential decay?
To calculate the average daily decay in exponential decay, you can use the formula for exponential decay: A = A0 * e^(kt), where A is the amount remaining after time t, A0 is the initial amount, e is the base of the natural logarithm (approximately 2.71828), k is the decay constant, and t is the time. To find the average daily decay, you can calculate the difference in the amount remaining after one day and the initial amount, and then divide this by the initial amount. This will give you the average daily decay rate as a percentage.
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Under which radiation does an element decay during radioactive decay?
During radioactive decay, an element decays under the emission of alpha, beta, or gamma radiation. Alpha decay involves the emission of an alpha particle, which is a helium nucleus consisting of two protons and two neutrons. Beta decay involves the emission of a beta particle, which can be either an electron (beta-minus decay) or a positron (beta-plus decay). Gamma decay involves the emission of gamma rays, which are high-energy electromagnetic radiation. Each type of decay results in the transformation of the original element into a different element or isotope.
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Are there multiple decay formulas for alpha-gamma and beta decay?
Yes, there are multiple decay formulas for alpha-gamma and beta decay. Alpha decay is a type of radioactive decay in which an atomic nucleus emits an alpha particle (consisting of two protons and two neutrons) and transforms into a different nucleus. The decay formula for alpha decay is specific to the particular radioactive isotope undergoing the decay. Similarly, beta decay involves the transformation of a neutron into a proton (beta-minus decay) or a proton into a neutron (beta-plus decay) with the emission of a beta particle (an electron or positron). The decay formula for beta decay also depends on the specific isotope undergoing the decay.
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What is beta decay?
Beta decay is a type of radioactive decay in which a beta particle (either an electron or a positron) is emitted from the nucleus of an atom. This process occurs when an unstable atom undergoes a transformation in order to reach a more stable state. Beta decay can result in the conversion of a neutron into a proton, or vice versa, and is accompanied by the emission of a beta particle and an antineutrino or neutrino. This type of decay is important in the process of nuclear fission and fusion, as well as in the study of subatomic particles and the behavior of atomic nuclei.
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