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2021

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A Touchy Subject: Optimality and Coreference, Jill de Villiers, Jacqueline Cahillane, and Emily Altreuter

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Assessing Dual Language Learners of Spanish and English: Development of the QUILS: ES, Jill de Villiers, Aquiles Iglesias, Roberta Golinkoff, Kathy Hirsh-Pasek, Mary Sweig Wilson, and Ratna Nandakumar

Scar Literature, Sabina Knight

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Children's Sensitivity to Prosody and Ostension in Answers to Wh-Questions, Bethany Stoddard and Jill de Villiers

2020

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Biodiversity in the Campus Landscape: A Meta-Evaluation of Landscape Metrics and Rating Systems, Tess Abbot, Isabel Aries, Rachael Drinker, and Sarah Evantash

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Marxist and Socialist Feminism, Elisabeth Armstrong

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Searching for the Golden Rule: A Case Study of Two White Novice Teachers' Beliefs and Experiences of Respect in Urban Schools, Shannon Audley

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Abortion Regulation in the Age of COVID-19, Carrie N. Baker

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Amplification of Structural Inequalities: Research Sabbaticals During COVID-19, Carrie N. Baker

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Increase Access to Abortion Pills Via Telemedicine Abortion, Carrie N. Baker

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Why GWSS Still Matters, Carrie N. Baker

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Amplifying Our Voices: Feminist Scholars Writing for the Public, Carrie N. Baker, Aviva Dove-Viebahn, Michele Tracy Berger, Carmen Rios, and Karon Jolna

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Digital Authoritarianism: Finding Our Way Out of the Darkness, Naazeen Barma, Brent Durbin, and Andrea Kendall-Taylor

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Semester-Long Course-Based Research Project in Second-Semester Organic Chemistry: Synthesizing Potential Lead Compounds for the Treatment of a Neglected Tropical Disease, Kerry L. Barnett, Kevin M. Shea, Catherine McGeough, Kristine Trotta, Steven A. Williams, Minh Ly, and Kathryn Aloisio

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Carbon Neutrality Should Not Be the End Goal: Lessons for Institutional Climate Action From U.S. Higher Education, Alexander R. Barron, Maya Domeshek, Lucy Metz, Laura Draucker, and Aaron L. Strong

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Carbon Pricing Approaches for Climate Decisions in U.S. Higher Education: Proxy Carbon Prices for Deep Decarbonization, Alexander R. Barron, Breanna J. Parker, Susan Stratton Sayre, Shana S. Weber, and Dano Weisbord

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The Role of Latency and Task Complexity in Predicting Visual Search Behavior, Leilani Battle, R. Jordan Crouser, Audace Nakeshimana, Ananda Montoly, Remco Chang, and Michael Stonebraker

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Teaching Introductory Statistics with DataCamp, Benjamin Baumer, Andrew P. Bray, Mine Çetinkaya-Rundel, and Johanna S. Hardin

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Insiders/Outsiders and the U.S. Stage, Len Berkman

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Recital 1: Program, Peter Bloom

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Recital 5: The Schwanengesang Poets: Rellstab, Heine, and Seidl: Program, Peter Bloom

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Recital 6: Program, Peter Bloom

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Recital 8: Program, Peter Bloom

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Reducing Smith College’s Dining GHG emissions: An analysis of beef and milk substitutions, Emelyn Chiang, Aidan Coffin Ness, Frances Duncan, and Kelsey Towne

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Robert de Reims: Songs and Motets, Eglal Doss-Quinby, Gaël Saint-Cricq, and Samuel N. Rosenberg

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Evolution of Magnetic-Field-Induced Ordering in the Layered Structure Quantum Heisenberg Triangular-Lattice Antiferromagnet Ba3CoSb2O9, Nathanael Alexander Fortune, Q. Huang, T. Hong, J. Ma, E. S. Choi, S. T. Hannahs, Z. Y. Zhao, X. F. Sun, Y. Takano, and H. D. Zhou

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Thinking Beyond Thought: Tsongkhapa and Mipham on the Conceptualized Ultimate, Jay L. Garfield

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CleanLaw: Joe Goffman and Alex Barron on Carbon Pricing Models, Joe Goffman and Alexander R. Barron

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Community Characteristics, Victimization, and Psychological Adjustment Among School-Aged Adopted Children With Lesbian, Gay, and Heterosexual Parents, Abbie E. Goldberg and Randi L. Garcia

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La France d’outre-mer: rêves coloniaux d’hier et réalités postcoloniales d’aujourd’hui, Jonathan Gosnell

Recital 5: The Schwanengesang Poets: Rellstab, Heine, and Seidl, William Hite and Jiayan Sun

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Electrifying Landscape Management, Rachel Hollander, Lauren McGue, Neva Richardson, and Amanda Smith

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Exploring Embodied Carbon within Smith College Construction, Larissa Holland, Rebecca Miller, and Lydia Sheyda

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The Akedah in Jewish Tradition, Joel Kaminsky

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A Near-Term to Net Zero Alternative to the Social Cost of Carbon for Setting Carbon Prices, Noah Kaufman, Alexander R. Barron, Wojciech Krawczyk, Peter Marsters, and Haewon McJeon

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Slack for (A)synchronous Course Communication, Albert Y. Kim, R. Jordan Crouser, and Benjamin Baumer

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What Does it Take to Reduce Massachusetts Emissions 50% by 2030? Challenges Meeting Climate Goals Under Current Legislation (S.2500), Lucy E. Metz, Alice I. Bell, Talia W. Deady, and Alexander R. Barron

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First-Semester Organic Chemistry During COVID-19: Prioritizing Group Work, Flexibility, and Student Engagement, Leslie A. Nickerson and Kevin M. Shea

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Burying Bertha: Race and the Ungraveable Body in Jane Eyre, Cornelia D.J. Pearsall

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The Implicated 'I': Fictitiousness, Fury, Form, Cornelia D.J. Pearsall

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Dietary Fish Oil Supplement Induces Age-Specific Contractile and Proteomic Responses in Muscles of Male Rats, David W. Russ, Kalina Dimova, Emily Morris, Marguerite Pacheco, Sean M. Garvey, and Stylianos P. Scordilis

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Supplementary Movie 01A: Gfap Forms Glial Bridges Which are Interlaced Through the Forebrain Commissures, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 01B: gfap+ Glial Cell Membranes Overlap with Axons of Forebrain Commissures, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 01C: Olig2+ Cells Densely Populate the Telencephalon and Extend Processes Towards the AC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 01D: fli1a+ Cells Track the Tract of the AC to Form Vasculature in the Telencephalon., Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 01E: The 48 hpf Forebrain Commissural Cell Architecture Exhibits Many Multiprocess Cell Types Which Interact With the Forebrain Commissures, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 02A: Glial Membranes and Gfap Form Overlapping but Non-Coincident Glial Bridges at 22 hpf, Prior to Commissure Formation, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 02B: The Gfap+ Glial Bridge is Superficial to the Forebrain Commissures, While Glial Membranes are Instead Coincident with POC Axons at 24 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 02C: The Gfap+ Glial Bridge is Superficial to the Forebrain Commissures, While Glial Membranes are Densely Coincident with POC Axons at 28 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 02D: The Gfap+ Glial Bridge is Superficial to the Forebrain Commissures, While Glial Membranes are Instead Coincident with POC Axons at 36 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 03: Time-Lapse Microscopy Showing First Pathfinding Axons of the POC and AC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 04: Pioneering Axons of the AC Navigate in Association with and Through gfap+ Glial Membranes, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05A: 03D Visualization of gfap+ Cells with Radial Glial Morphology Which Surround the POC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05B: 3D Visualization of gfap+ Cells with Dorsal Commissural Glial Morphology are Found Dorsal to the POC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05C: 3D Visualization of gfap+ Cells with Ventral Commissural Glial Morphology are Found Ventral to POC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05D: 3D Rendering of gfap+ Cells with Radial Glial Morphology, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05E: 3D Rendering of gfap+ Cells with Dorsal Commissural Glial Morphology are Found Dorsal to the POC, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 05F: 3D Rendering of gfap+ Cells with Ventral Commissural Glial Morphology, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 06A: olig2+ Cells Heavily Populate the Diencephalon and Lightly Populate the Telencephalon at 22 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 06B: olig2+ Cells Heavily Populate the Diencephalon and Increase in Cell Number in the Telencephalon at 24 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 06C: The olig2+ Population has Greatly Increased in the Telencephalon by 28 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 06D: olig2+ Populations Have Greatly Expanded by 36 hpf and Exhibit Many Multiprocess Contacts with the Forebrain Commissures, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 07A: gfap+ and olig2+ Populations are Forebrain Progenitors at 22 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 07B: gfap+ and olig2+ Populations are Each Discrete Forebrain Progenitors at 24 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 07C: Telencephalic and Diencephalic gfap+ and olig2+ Differentially Contribute to Glial Lineages, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 08A: gfap+ and olig2+ Lineage Neurons are Evident at 24 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 08B: gfap+ and olig2+ Lineage Neurons Have Increased in Number at 28 hpf, but Differentially Contribute to Telencephalic Versus Diencephalic Populations, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 09A: fli1a+ Cells Form Vascular-Like Processes Ventral and Superficial to the POC at 24 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 09B: fli1a+ Cells Follow the Tract of the AC as They Form Telencephalic Projections at 28 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 09C: fli1a+ Cells Form Vascular-Like Structures in the Forebrain, While Superficially Coating the Forebrain at 36 hpf, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 10: flk+ Cells Form Vascular Structures Throughout the Forebrain, with Midline Structures Connecting the Diencephalon and Telencephalon, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 11A: The Early, 22 hpf, Forebrain Commissural Cell Architecture is Constructed from Several Interacting Cell Types, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Supplementary Movie 11B: The 28 hpf Forebrain Commissural Cell Architecture Exhibits Differently Timed Cell Contributions Between the Telencephalon and Diencephalon, Jake Schnabl; Michael Barresi; and Barresi Lab, Smith College

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Characterizing the Diverse Cells that Associate with the Developing Commissures of the Zebrafish Forebrain, Jake Schnabl, M.P.H Litz, Caitlin Schneider, N. PenkoffLidbeck, Sarah Bashiruddin, M. S. Schwartz, Kristin Alligood, and Michael Barresi

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Explore 2020 Theses and Dissertations, ScholarWorks, Smith College

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Spotlight on: Year on Climate Change, Smith College

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Recital 1: The Complete Etudes, Jiayan Sun

Recital 8: Piano Sonatas 3, Jiayan Sun

Recital 6: A Benefit Concert To Support People Fighting the Coronavirus in Hubei Province, China, Jiayan Sun, Joel Pitchon, and Marie-Volcy Pelletier

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A Carbon Offset Roadmap for Smith College: Establishing a New Approach, Rachel Twerdowsky and Jemara Sheely

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Towards a General Solution for Layout of Visual Goal Models with Actors: Supplemental Material, Yilin Lucy Wang and Alicia M. Grubb

2019

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Using the VAST Challenge in Undergraduate CS Research, Christopher P. Andrews and R. Jordan Crouser

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Peace and the Barrel of the Gun in the Internationalist Women’s Movement, 1945–49, Elisabeth Armstrong

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Kinematic Links and the Coevolution of MHD Winds, Jets, and Inner Disks from a High-resolution Optical [ [OI] Survey, Andrea Banzatti, Ilaria Pascucci, Suzan Edwards, Min Fang, Uma Gorti, and Mario Flock

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Glial Bridge Development: 22 hpf, Barresi Lab, Smith College

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Glial Bridge Development: 24 hpf, Barresi Lab, Smith College

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Glial Bridge Development: 26 hpf, Barresi Lab, Smith College

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Glial Bridge Development: 28 hpf, Barresi Lab, Smith College

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Glial Bridge Development: 30 hpf, Barresi Lab, Smith College

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Slit1a Rescue: Role of slit1a, HSS1A, Barresi Lab, Smith College

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Slit1a Rescue: Role of slit1a, HSS1AYOT, Barresi Lab, Smith College

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Slit1a Rescue: Role of slit1a, non-HSS1AYOT, Barresi Lab, Smith College

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Slit1a Rescue: Role of slit1a, WT, Barresi Lab, Smith College

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Validation Experiment: Wild Type, Probability, Barresi Lab, Smith College

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Validation Experiment: Wild Type, Psi, Barresi Lab, Smith College

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Validation Experiment: Wild Type, Raw, AT, Barresi Lab, Smith College

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Validation Experiment: Wild Type, Raw, Gfap, Barresi Lab, Smith College

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Validation Experiment: You-too, Probability, Barresi Lab, Smith College

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Validation Experiment: You-too, Psi, Barresi Lab, Smith College

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Validation Experiment: You-too, Raw, Barresi Lab, Smith College