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Analyze

California, USA

Misria

In this poster, we share preliminary reflections on the ways in which hermeneutic injustice emerges and operates within educational settings and interactions. Hermeneutic injustice is a type of epistemic injustice that occurs when someone’s experiences are not well understood by themselves or by others, either due to unavailability of known concepts or due to systemic barriers that produce non-knowing (Fricker 2007). In 2021, we entered into a collaborative project to design a high school curriculum on environmental injustice and climate change for California’s K-12 students. Although the project convenors aspired to support the diversity of California’s K-12 student population through representational inclusivity across the program participant, they reproduced essentialized notions of what it means to be an “included subject”. In our first inperson meetings, activities intended to invite difference in the curriculum writing and design community were encountered by participants as an opportunity to point to the margins of that community. Who was in the room and who was not? Initial counts excluded some writers whose identity was not readily apparent by race, ethnicity, or age. Some individuals who, to their consternation, were assumed to be white, revealed themselves as people of color. The project chose the “storyline model” of curriculum design to bring coherence across the teams. The model was developed by science educators to promote student agency and active learning. Lessons start with an anchoring phenomenon, which should hook students and produce enough questions to sustain inquiry cycles that culminate in consensus making. As a result, each grade-level unit of our curriculum was intended to focus on a single environmental phenomenon, like wildfire. However, informed by Gregory Bateson’s theory of learning, we sought to foreground complexity by recursively analyzing environmental injustice through case study analysis of many hazards, injustices, and places. It took multiple meetings over several months to arrive at an articulation of environmental injustice as our central phenomenon that recognizes the compounding impacts of both climate change and toxic pollution. It also required restructuring the working relationships between the project's administrative arm, the curriculum consultants, and the writing team. The image we include is a photograph of an exercise done together with another HS team as we were tasked to clarify the aims and goals of our imagined lessons. As is evidenced in the photograph, each writing team found it difficult to articulate learning outcomes as a series of checklists, or goals, separate from skill-development that represented the dynamic need for curriculum capable of examining climate change and the environmental justice needs for California’s students.

Tebbe, Margaret, Tanio, Nadine, and Srigyan, Prerna. 2023.  "Reflections on Hermeneutical Injustice in K-12 Curriculum Development." In 4S Paraconference X EiJ: Building a Global Record, curated by Misria Shaik Ali, Kim Fortun, Phillip Baum and Prerna Srigyan. Annual Meeting of the Society of Social Studies of Science. Honolulu, Hawaii, Nov 8-11.

Bridging Gaps in Publicly Accessible Data

Carly.Rospert

How are Data Gaps Worked Around:

Sarnia, and the surrounding area around chemical valley, have 9 air monitoring stations in which air pollutants are monitored from the nearby petrochemical complex. Until 2017, only data from one of these stations (the one on Christina Street in downtown Sarnia) was publicly available. This created a gap in accessiblility of important data for sarnia and the nearby AFN residents. In September 2015, the Clean Air Sarnia and Area group launched as a "community advisory panel made up of representatives from the public, government, First Nations, and industry, who are dedicated to providing the community with a clear understanding of ambient air quality in the Sarnia area." This group works to improve air quality in Sarnia by making information about air quality publicly available and by making recommendations to relevant authorities. In 2018, this group launched the website: https://reporting.cleanairsarniaandarea.com/ (also uploaded as an artifact) which allows public to access data from the air quality monitoring stations and understand how air quality compares to Ontario's standards. This site works to fill the gap of publicly available air quality data in Sarnia.

Standards Undercutting Safety

Carly.Rospert

This report from Ecojustice shows a decline in air pollution compared to Ecojustice's first report released in 2007 for the area around Chemical Valley, yet Sarnia industries continue "to release far more pollution, and in particular far more SO2 , than comparable U.S. refineries." One contributor to the continued excessive emissions is Ontario's lagging air quality standards. The report notes that "Ontario’s AAQC and air quality standards are lagging behind current science on the health impacts of air pollutants, which may put the health of residents at risk." The report highlights pollutants where Ontario's standard is above the national standard or where Ontario has no standard at all. Additionally, Sarnia's benzene emissions are exempt from Ontario's health-based standard for this chemical and are instead regulated by  "an industry technical-based standard" allowing benzene levels to be far higher than the health-based standard. The lagging, lack of, or exemption from regulation undercut efforts in monitoring and reducing emissions to a "safe" level as what is considered "safe" by standards is out of line with what is considered "safe" by health and other standards.

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Jacob Nelson

The main findings of the article are that the relationship between natural disasters and communicable diseases is not as much due to dead bodies or high trauma as it is to population displacement and a lack of preparredness of the local governing body for the disaster and the crowding of survivors that follows a disaster as this

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Jacob Nelson

1: Crowding is shown to be common in displaced populations, and local overpopulation/crowding often facillitates the transmittion of disease

2: Natural disasters that do not cause a displacement of a population are rarely associated with disease outbreaks

3: There is little or no evidence that dead bodies, as some believe, pose a epidemic risk for a population of survivors after a disaster has struck

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Jacob Nelson

"The risk for commuicable disease transmission after disasters is associated primarily with the size and characteristics of the population displaced, specifically the proximity of safe water adn functioning latrines, the nutritional status of the displaced population, the level of immunuty to vaccine-preventable diseases..., and the access to healthcare services"

"...natural disasters (regardless of type) that do not result in population displacement are rarely associated with outbreaks"

"When death is directly due to the natural disaster, human remains do not pose a rise for outbreaks"

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Jacob Nelson

Emergency response is addressed in a broad sense of the major risk factors associated with a natural disaster and epidemics. The main points they make are that preparedness, with a focus on availability of safe water and primary healthcare services, along with surveillance for the beginnings of an epidemic, are necessessay for a strong response to a disaster situation   

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Jacob Nelson

This article has been referenced in a wide variety of emergency medicine journal articles, ranging from flood protocols, use of cell phones in disaster enviroments, earthquakes and medical complications, to the costs of disaster consequences. Many of the articles referencing this paper appear to go into greater depth for some of the epidemics and diseases that were touched on in the research article. These include hepatitis E, Leptospirosis, cholera, and tetanus.

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Alexi Martin

The object of the study is the evidence in an increase of various types of epidemics (cholera, malaria, menigitis, tetnus, etc) due to displacement of a populatoin from a natural diasaster. Examples of natural disasters discussed include- hurricanes, cyclones, earthquakes and flooding. Despite popular belief (and scientific evidence) deaths due to natural diasters do not spread diasese; unless cause of widespread infection is due to contaminated water sources, malnutrition, residing in a third world country,access to healthcare and adequate bathroom facilities. These points are supported through statistics from the past twenty or more years.