Male preferences for female body weight follow a consistent cross-cultural pattern such that in cultures with scarce resources, heavier women are preferred, whereas in cultures with abundant resources, thinner women are preferred. We offer a social-cognitive account for these findings based on the individual experience of resource scarcity. In four studies (N=1,176), we explored the possibility that this cross-cultural relationship emerges at the individual level; that is, we investigated whether situational feelings of resource scarcity predict personal preferences within a single culture. We operationalized intraindividual resource scarcity through feelings of financial and caloric dissatisfaction. Accordingly, we hypothesized-and found-that men who feel either poor or hungry prefer heavier women than men who feel rich or full. We discuss these findings in terms of how patterns of cross-cultural norms may be evinced at the individual level through an implicit psychological mechanism.
Plastic pollution in oceans, also known as marine debris, is a growing problem at local and global scales. Anthropogenic marine debris poses a serious threat to many marine species, both through physical harm such as ingestion or entanglement and by carrying toxins and pathogens. This debris accumulates in oceanic gyres, concentrating these effects in some specific areas. In addition, marine debris may have devastating impacts on tourism and fishing-based economies, especially where ocean currents direct this debris. Recently, a nonprofit organization called The Ocean Cleanup proposed the first large-scale in situ marine debris removal project. The Ocean Cleanup is a project attempting to use large, floating, semi-fixed screens to harness ocean currents and accumulate debris, where it can be efficiently collected and disposed of or recycled. The project currently is working on implementing itself in the “Great Pacific Garbage Patch,” in the North Pacific Gyre. We examine this project case, as it is the first organization attempting to clean up marine debris at this scale. Understanding the potential efficacy and limitations of The Ocean Cleanup Project as a case study can give critical insights into how other projects could be created in the future to address marine plastic pollution worldwide. Using SWOT (strengths, weaknesses, opportunities, and threats) analysis to assess a marine debris cleanup can inform both a nuanced evaluation of the specific case as well as provide a means to explore marine debris as a complex, global environmental problem.
No scientific study would be possible without the combined brilliance and labor of a diverse community of researchers, and this is no exception. I would first like to thank all of the members of my committee who generously offered their time and knowledge towards the successful completion of this project. Thank you to my advisor, Dr. Caroline DeLong, for your tireless support in helping sculpt this design, scouring endless pages of statistics, and long hours spent on meticulous revisions. You were there every step of the way, keeping me moving regardless of the innumerable challenges that this project posed. Thank you to Dr. Kirsten Condry for your many insights, especially on how to create and process data from an elaborate repeated measures design. Thank you to Dr. Stephanie Godleski for your instrumental advice when it came to developing effective means by which to address my hypotheses, both methodologically and mathematically. This research was supported by the College of Liberal Arts' Student Research Fund and the RIT Department of Psychology.
We investigated the ability of North American river otters (Lontra canadensis) to visually discriminate between 2D objects. The otters learned to discriminate between stimuli using multiple visual features and then were tested with stimuli in which one of the features was eliminated (color or shape). Two adult otters were trained in a two-alternative forced choice task to discriminate between a red circle and a blue triangle. Test sessions included probe trials containing novel shapes, colors, or shape-color combinations. Both otters successfully learned to discriminate between stimuli varying in multiple features. One of the otters was able to successfully discriminate between novel test stimuli when either color or shape were eliminated as salient features. This study was the first to explore the ability of L. canadensis to use different visual features to recognize objects and provides some preliminary evidence for color vision in this species. This research adds to the sparse literature on perceptual and cognitive capabilities in otters and can be used to support future conservation efforts for this species.
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