2,310,241 research outputs found
Kim Kim
"Knowing that most interracial and international adoptions send children of color into Western Caucasian families, the artist and activist kimura byol-nathalie lemoine wanted to present another vision of what interracial adoption could be. To realize this, the artist Kim Waldron and kimura-lemoine decided to stage photographs of everyday life and key moments of the journey of a fictitious adoption. These photographs tell the story of a Caucasian woman adopted into a Canadian family of Korean descent. By this reversal, these images, at first sight banal, become interesting and intriguing here. The Kim Kim project elaborates Kim Waldron’s previous photographic and video work that incorporates self-portraiture into fictitious situations in order to challenge aspects of identity and social conditioning. Her photographic work uses a documentary aesthetic to make fictional propositions credible. This collaboration with kimura-lemoine uses the aesthetics of family photographs, a Korean family whose surname is Kim and Kim Waldron’s birth parents to create an imaginary and improbable tale of international adoption." -- Artexte website
Protecting Animals 25: Kim Stallwood
This episode of Knowing Animals is from the Protecting Animals series. I am joined by Kim Stallwood. Kim is a long standing animal advocate, having working for many of the world’s leading animal protection agencies in both the UK and the USA. We talk to Kim about his reflections on that work. They are outlined in his book ‘Growl: Life, Lessons, Hard Truths and Bold Strategies from an Animal Advocate’. Growl was published by Lantern Books in 2014
Author Correction: Evaluation of skin cancer resection guide using hyper‑realistic in‑vitro phantom fabricated by 3D printing
The original version of this Article contained an error in the spelling of the author Taehun Kim which was incorrectly given as Teahun Kim. The original Article has been corrected
Modern Airline Pilots\u27 Quandary: Standard Operating Procedures—to Comply or Not to Comply
Modern airline pilots are tasked every flight with the safe and efficient operation of highly automated airliners in today’s complicated global and economic environments. Airlines have developed standard operating procedures (SOP) for normal, abnormal, and emergency operations. These procedures serve as a script for crews to follow. These procedures are designed by airlines to ensure that aircraft are operated in the (1) most safe, (2) most efficient, and (3) most on-time manner. For the most part pilots will comply with SOP, but when they (1) don9t agree with SOP, (2) don9t understand SOP or the risks associated with not complying with SOP, or (3) don9t feel adequately trained to know what SOP is, it is difficult to motivate them to comply. Airlines have the means to measure compliance through Flight Operations Quality Assurance (FOQA) and Line Operations Safety Audit (LOSA). The purpose of this research is to determine if increased understanding, knowledge and awareness of the risk of noncompliance with SOP increase airline pilots’ compliance with SOP. This research explores data from line checks at a major US airline that was gathered in pursuit of understanding what drives SOP compliance. Baseline data was gathered and analyzed to determine the top 12 noncompliant items. The airline provided training during the Human Factors module in each pilots recurrent training on Pilot Intentional Non Compliance (PINC). The training including developing pilots’ understanding that while most Aviation Safety Action Program (ASAP) reports grant pilots immunity from legal action, if a violation is labeled PINC, ASAP protections do not apply. Further line checks were conducted after the pilots received the PINC training. The top 12 noncompliant items from the pre-PINC training group were compared to the same 12 items in the post-PINC training group. Significant improvement in SOP compliance was found in six of the 12 items tested. The results established that training pilots on the risk of PINC did significantly increase SOP compliance
SOP, SOP, and antichain tree property
In this paper, we study some tree properties and their related
indiscernibilities. First, we prove that SOP can be witnessed by a formula
with a tree of tuples holding 'arbitrary homogeneous inconsistency' (e.g., weak
k-TP conditions or other possible inconsistency configurations). And we
introduce a notion of tree-indiscernibility, which preserves witnesses of
SOP, and by using this, we investigate the problem of (in)equality of
SOP and SOP. Assuming the existence of a formula having SOP such
that no finite conjunction of it has SOP, we observe that the formula must
witness some tree-property-like phenomenon, which we will call the antichain
tree property (ATP, see Definition 4.1). We show that ATP implies SOP and
TP, but the converse of each implication does not hold. So the class of
NATP theories (theories without ATP) contains the class of NSOP theories
and the class of NTP theories. At the end of the paper, we construct a
structure whose theory has a formula having ATP, but any conjunction of the
formula does not have SOP. So this example shows that SOP and SOP
are not the same at the level of formulas, i.e., there is a formula having
SOP, while any finite conjunction of it does not witness SOP (but a
variation of the formula still has SOP).Comment: Fixed incorrect statement numbers when citing references. Made some
changes to the abstract. Changed the abbreviation of SSOP to SOP$^{fc}_1
Two-dimensional hetero-structure photonic crystal waveguides
학위논문(석사) - 한국과학기술원 : 물리학과, 2004.2, [ viii, 39 p. ]한국과학기술원 : 물리학과
Analysis of Noise Coupling From a Power Distribution Network to Signal Traces in High-Speed Multilayer Printed Circuit Boards
As layout density increases in highly integrated multilayer printed circuit boards (PCBs), the noise that exists in the power distribution network (PDN) is increasingly coupled to the signal traces, and precise modeling to describe the coupling phenomenon becomes necessary. This paper presents a model to describe noise coupling between the power/ground planes and signal traces in multilayer systems. An analytical model for the coupling has been successfully derived, and the coupling mechanism was rigorously analyzed and clarified. Wave equations for a signal trace with power/ground noise were solved by imposing boundary conditions. Measurements in both the frequency and time domains have been conducted to confirm the validity of the proposed model
Factors governing seawater carbonate dynamics in a macroalgal habitat
Photosynthetic organisms shift the dynamics of surface pCO2 driven by the sea surface temperature change (thermodynamic driver) by assimilating inorganic C from seawater. Here we measured net C uptake in a macroalgal habitat of coastal Korea for two years (2019-2020) and found that the macroalgal habitat contributed 5.8 g C m−2 month−1 of the net C uptake during the growing period (the cooling period, September−May). This massive C uptake changed the thermodynamics-driven seasonal dynamics such that the air−sea equilibrium of pCO2 was pushed into disequilibrium. The surface pCO2 dynamics during the cooling period was mostly influenced by the seasonal decrease in temperature and the proliferation of macroalgae, while the dynamics during the warming period (the stagnant period, June−August) closely followed that predicted based solely on the change in sea surface temperature (thermodynamic driver). In contrast to the phytoplankton-dominated off-shore waters (where phytoplankton populations are large in spring and summer), the impact of coastal macroalgae on surface pCO2 dynamics was most pronounced during the cooling period, when the magnitude of pCO2 change was as much as twice that resulting from temperature change. Our study shows that the distinctive features of the macroalgal habitat—in particular the seasonal temperature extremes (~18°C difference), the active macroalgal metabolism, and anthropogenic nutrient inputs—collectively influenced the seasonal decoupling of seawater and air pCO2 dynamics. Copyright © 2022 Kim, Lee, Han, Kim, Kim, Kim, Kim, Jeon and Shin.11Ysciescopu
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