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Solving the Impossible: Mediation, Negotiation and Complex Systems — APA2191.01

Instructor: Susan Sgorbati
Days & Time: TU,FR 10:30am-12:20pm
Credits: 4

This class will examine contemporary challenges through the lens of complex systems. The class will include a training in Mediation and Negotiation skills. Through readings, discussion, exercises and role-plays, the class will examine and deconstruct the complexities of current democratic and environmental issues related to local, national and global governance, We will begin with personal training and extend it to group multi-party collaborative problem-solving. 

 

Genome Jumpstart — BIO2117.01

Instructor: Amie McClellan
Days & Time: TU,FR 10:30am-12:20pm
Credits: 4

This course offers an immersive experience into the world of DNA, genes, and genomes in eukaryotic organisms.  In addition to getting a grasp of the foundational biology, students will engage with various online databases and resources, becoming familiar with the computational algorithms and methodologies used to mine and analyze the ever-increasing data generated from whole-genome sequencing, and consider how that improves our understanding of evolutionary relationships amongst organisms based on their molecular fingerprints.  In the second half of the term, students

Protein Research Methods — BIO4109.01

Instructor: Amie McClellan
Days & Time: WE 2:10pm-5:50pm
Credits: 4

Research questions in cell biology and biochemistry often require the ability to study the proteins at the heart of the inquiry.  This course will give students hands-on experience quantifying proteins, detecting protein expression, measuring enzymatic activity, assessing protein-protein interactions, purifying proteins, and visualizing fluorescently-labeled proteins in vivo.

Neuroscience — BIO4437.01

Instructor: Blake Jones
Days & Time: MO,TH 1:40pm-3:30pm
Credits: 4

This rigorous course provides a comprehensive introduction of the nervous system, including its structure, function, and development. Students will explore the principles of the cellular and molecular mechanisms that allow neurons and other specialized nervous cells to detect, encode, and transmit information; including signaling, synaptic transmission, and neuroplasticity.

GANAS — APA4154.01

Instructor: Jonathan Pitcher
Days & Time: MO,TH 1:40pm-3:30pm
Credits: 4

In terms of public action, Ganas remains a community-driven, cross-cultural association that offers students volunteer opportunities to engage with the predominantly undocumented Latine migrant worker population. We maintain relationships with local organizations and members while developing new ones, along with more conventional classes and readings. Over the past couple of years, it has ballooned into a range of simultaneous activities that are seemingly happening all of the time, with students very much at the center of said impetus.

Sustainable Agriculture, Building Regenerative and Resilient Communities — APA2348.01

Instructor: Kelie Bowman
Days & Time: TU 2:10pm-4:00pm
Credits: 2

Climate change, poverty, and food access are all compelling and urgent issues confronting our society. Growing local food is one significant way we can respond. Having received the Bennington Fair Food Initiative Grant with the mission to develop educational training programs in agriculture/food system workforce development and to create small business, this class will be practice based learning in regenerative agricultural practices and the creation of sustainable food systems.

Scanning Electron Microscopy Research Methods — ES4107.01

Instructor: Tim Schroeder
Days & Time: TU 2:10pm-4:00pm
Credits: 2

Scanning electron microscopes are a fundamental tool in the physical and life sciences. When equipped with an X-Ray spectrometer, a SEM can provide rapid physical and chemical data of specimens on extremely small scales. This class with cover the theory and practical applications of SEM imaging and analysis for advanced science students who have their own research interests. Students will be expected to develop and conduct an independent research project through this class.

How to Build a Forest — BIO2131.01

Instructor: Caitlin McDonough MacKenzie
Days & Time: TU,FR 2:10pm-4:00pm
Credits: 4

Bennington鈥檚 campus supports beautiful examples of temperate deciduous mixed hardwood forests. This class is a deep dive into forest ecology, land use change, and forest succession at a local scale. Students will explore the local forest community composition, structure, and function over the last 15,000 years and discuss the environmental conditions, disturbance dynamics, and biotic interactions responsible for the forest we have today.

Evolution — BIO4440.01

Instructor: Blake Jones
Days & Time: TU,FR 10:30am-12:20pm
Credits: 4

Evolution is the unifying theory of biology, explaining the diversity of life on Earth and the mechanisms that drive adaptation and speciation. This course will explore the core principles of evolutionary biology, including natural selection, genetic drift, gene flow, mutation, and the interplay between evolutionary processes and ecological contexts. We will examine key evolutionary events, from the origins of life to the development of complex traits, using case studies across diverse taxa.

Environment and Public Action — APA2122.01

Instructor: David Bond
Days & Time: MO,TH 1:40pm-3:30pm
Credits: 4

Today it is clear that the environment matters. In activism and scholarship and public policy, the environment has become a potent (if sometimes obligatory) point of reference. Less attention, however, has focused on the emergence of the environment itself as a converging field of action for advocacy, science, and statecraft. In this seminar, we will reflect not only on what we know of the environment but also on how we came to know the environment.