Middlebury

 

Sections

« Winter 2013 Spring 2013 Fall 2013 »

BIOL0140A-S13

CRN: 21129

Ecology and Evolution

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140U-S13

CRN: 22490

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140V-S13

CRN: 21130

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140W-S13

CRN: 21131

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140X-S13

CRN: 21132

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140Y-S13

CRN: 21557

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0140Z-S13

CRN: 21135

Ecology and Evolution
Ecology and Evolution Lab

Ecology and Evolution
In this introduction to ecology and evolutionary biology we will cover the topics of interspecific interactions (competition, predation, mutualism), demography and life-history patterns, succession and disturbance in natural communities, species diversity, stability and complexity, causes of evolutionary change, speciation, phylogenetic reconstruction, and population genetics. The laboratory component will examine lecture topics in detail (such as measuring the evolutionary response of bacteria, adaptations of stream invertebrates to life in moving water, invasive species and their patterns of spread). We will emphasize experimental design, data collection in the field and in the laboratory, data analysis, and writing skills. 3 hrs. lect./disc./3 hrs. lab

BIOL0145A-S13

CRN: 21116

Cell Biology and Genetics

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145U-S13

CRN: 21186

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145V-S13

CRN: 21136

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145W-S13

CRN: 21140

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145X-S13

CRN: 21142

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145Y-S13

CRN: 21558

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0145Z-S13

CRN: 21143

Cell Biology and Genetics
Cell Biology and Genetics Lab

Cell Biology and Genetics
In this introduction to modern cellular, genetic, and molecular biology we will explore life science concepts with an emphasis on their integral nature and evolutionary relationships. Topics covered will include cell membrane structure and function, metabolism, cell motility and division, genome structure and replication, the regulation of gene expression and protein production, genotype to phenotype relationship, and basic principles of inheritance. Major concepts will be illustrated using a broad range of examples from plants, animals, and microorganisms. Current topics in biology will be integrated into the course as they arise. 3 hrs. lect./1 hr. disc./3 hrs. lab

BIOL0202A-S13

CRN: 21513

Comparative Vertebrate Biology

Comparative Vertebrate Biology
This course will explore the evolution of the vertebrate classes and the adaptations that allow them to live in almost every habitat on Earth. We will study the phylogeny, anatomy, physiology, and ecology of the major extinct and extant taxa of vertebrates and discuss how each group solves the problems of finding food, finding mates, and avoiding predators. Laboratory exercises will focus on the comparative anatomy of a cartilaginous fish (the dogfish shark) and a mammal (the cat). Students will learn to identify the anatomical structures of the vertebrate body and observe the evolutionary homologies. Occasional field trips will introduce the local vertebrate fauna in their natural habitat. (BIOL 0140 or BIOL 0145) 3 hrs. lect./3 hrs. lab

BIOL0202Y-S13

CRN: 21536

Comparative Vertebrate Biology
Comparative Vert. Biology Lab

Comparative Vertebrate Biology
This course will explore the evolution of the vertebrate classes and the adaptations that allow them to live in almost every habitat on Earth. We will study the phylogeny, anatomy, physiology, and ecology of the major extinct and extant taxa of vertebrates and discuss how each group solves the problems of finding food, finding mates, and avoiding predators. Laboratory exercises will focus on the comparative anatomy of a cartilaginous fish (the dogfish shark) and a mammal (the cat). Students will learn to identify the anatomical structures of the vertebrate body and observe the evolutionary homologies. Occasional field trips will introduce the local vertebrate fauna in their natural habitat. (BIOL 0140 or BIOL 0145) 3 hrs. lect./3 hrs. lab

BIOL0202Z-S13

CRN: 21537

Comparative Vertebrate Biology
Comparative Vert. Biology Lab

Comparative Vertebrate Biology
This course will explore the evolution of the vertebrate classes and the adaptations that allow them to live in almost every habitat on Earth. We will study the phylogeny, anatomy, physiology, and ecology of the major extinct and extant taxa of vertebrates and discuss how each group solves the problems of finding food, finding mates, and avoiding predators. Laboratory exercises will focus on the comparative anatomy of a cartilaginous fish (the dogfish shark) and a mammal (the cat). Students will learn to identify the anatomical structures of the vertebrate body and observe the evolutionary homologies. Occasional field trips will introduce the local vertebrate fauna in their natural habitat. (BIOL 0140 or BIOL 0145) 3 hrs. lect./3 hrs. lab

BIOL0216A-S13

CRN: 20831

Animal Behavior

Animal Behavior
The behavior of animals primarily from an ethological perspective, with respect to genetics, physiology, evolution, and other biological factors. The course follows the history and methods of studying individual and social behaviors like feeding, courtship, mating, parental care, defense, predation, and migration. We examine live animals in the field and lab to illustrate such processes as instinct, learning, and communication. Discussion topics include behaviorism, intelligence, and sociobiology, analytical methods from tracking animals in the field to computerized motion analysis in the lab are utilized, and students design their own research projects. Oral, written, and independent projects are required. (BIOL 0140 or BIOL 0145) 2.5 hrs. lect./1 hr. video screen./3 hrs lab

BIOL0216Y-S13

CRN: 20832

Animal Behavior
Animal Behavior Lab

Animal Behavior
The behavior of animals primarily from an ethological perspective, with respect to genetics, physiology, evolution, and other biological factors. The course follows the history and methods of studying individual and social behaviors like feeding, courtship, mating, parental care, defense, predation, and migration. We examine live animals in the field and lab to illustrate such processes as instinct, learning, and communication. Discussion topics include behaviorism, intelligence, and sociobiology, analytical methods from tracking animals in the field to computerized motion analysis in the lab are utilized, and students design their own research projects. Oral, written, and independent projects are required. (BIOL 0140 or BIOL 0145) 2.5 hrs. lect./1 hr. video screen./3 hrs lab

BIOL0216Z-S13

CRN: 20833

Animal Behavior
Animal Behavior Lab

Animal Behavior
The behavior of animals primarily from an ethological perspective, with respect to genetics, physiology, evolution, and other biological factors. The course follows the history and methods of studying individual and social behaviors like feeding, courtship, mating, parental care, defense, predation, and migration. We examine live animals in the field and lab to illustrate such processes as instinct, learning, and communication. Discussion topics include behaviorism, intelligence, and sociobiology, analytical methods from tracking animals in the field to computerized motion analysis in the lab are utilized, and students design their own research projects. Oral, written, and independent projects are required. (BIOL 0140 or BIOL 0145) 2.5 hrs. lect./1 hr. video screen./3 hrs lab

BIOL0314A-S13

CRN: 20518

Molecular Genetics

Molecular Genetics
This course will focus on the structure and function of nucleic acids in both prokaryotes and eukaryotes. Lectures will center on molecular mechanisms of mutation, transposition, and recombination, the regulation of gene expression, and gene control in development, immune diversity and carcinogenesis. Readings from the primary literature will complement the textbook and classroom discussions. The laboratory will provide training in both classic and contemporary molecular-genetic techniques including nucleic acid isolation and purification, cloning, electroporation, nick-translation, Southern/Northern blotting, DNA sequencing, PCR and RT-PCR. (BIOL 0140 and BIOL 0145 or waiver) 3 hrs. lect./4 hrs. lab./1 hr. prelab.

BIOL0314X-S13

CRN: 21405

Molecular Genetics
Pre-Lab

Molecular Genetics
This course will focus on the structure and function of nucleic acids in both prokaryotes and eukaryotes. Lectures will center on molecular mechanisms of mutation, transposition, and recombination, the regulation of gene expression, and gene control in development, immune diversity and carcinogenesis. Readings from the primary literature will complement the textbook and classroom discussions. The laboratory will provide training in both classic and contemporary molecular-genetic techniques including nucleic acid isolation and purification, cloning, electroporation, nick-translation, Southern/Northern blotting, DNA sequencing, PCR and RT-PCR. (BIOL 0140 and BIOL 0145 or waiver) 3 hrs. lect./4 hrs. lab./1 hr. prelab.

BIOL0314Z-S13

CRN: 20519

Molecular Genetics
Molecular Genetics Lab

Molecular Genetics
This course will focus on the structure and function of nucleic acids in both prokaryotes and eukaryotes. Lectures will center on molecular mechanisms of mutation, transposition, and recombination, the regulation of gene expression, and gene control in development, immune diversity and carcinogenesis. Readings from the primary literature will complement the textbook and classroom discussions. The laboratory will provide training in both classic and contemporary molecular-genetic techniques including nucleic acid isolation and purification, cloning, electroporation, nick-translation, Southern/Northern blotting, DNA sequencing, PCR and RT-PCR. (BIOL 0140 and BIOL 0145 or waiver) 3 hrs. lect./4 hrs. lab./1 hr. prelab.

BIOL0323A-S13

Cross-Listed As:
BIOL0323B-S13

CRN: 21117

Plant Community Ecology

Plant Community Ecology
This course will explore the structure and dynamics of plant communities, with a particular emphasis on temperate forest communities. We will investigate patterns in community diversity and structure, explore how plant populations and plant communities respond to environmental disturbances, and investigate the effects of anthropogenic influences (climate change, introduced species, habitat conversion) on plant communities. Labs will emphasize fieldwork at local research sites, and will provide exposure to techniques of experimental design in plant ecology and basic approaches to describing plant community structure and dynamics. (BIOL 0140) 3 hrs. lect./3 hrs. lab.

BIOL0323B-S13

Cross-Listed As:
BIOL0323A-S13

CRN: 21309

Plant Community Ecology

Plant Community Ecology
This course will explore the structure and dynamics of plant communities, with a particular emphasis on temperate forest communities. We will investigate patterns in community diversity and structure, explore how plant populations and plant communities respond to environmental disturbances, and investigate the effects of anthropogenic influences (climate change, introduced species, habitat conversion) on plant communities. Labs will emphasize fieldwork at local research sites, and will provide exposure to techniques of experimental design in plant ecology and basic approaches to describing plant community structure and dynamics. (BIOL 0140) 3 hrs. lect./3 hrs. lab.

BIOL0323Z-S13

CRN: 21119

Plant Community Ecology
Plant Community Ecology Lab

Plant Community Ecology
This course will explore the structure and dynamics of plant communities, with a particular emphasis on temperate forest communities. We will investigate patterns in community diversity and structure, explore how plant populations and plant communities respond to environmental disturbances, and investigate the effects of anthropogenic influences (climate change, introduced species, habitat conversion) on plant communities. Labs will emphasize fieldwork at local research sites, and will provide exposure to techniques of experimental design in plant ecology and basic approaches to describing plant community structure and dynamics. (BIOL 0140) 3 hrs. lect./3 hrs. lab.

BIOL0350A-S13

CRN: 21978

Endocrinology

Endocrinology is a branch of animal physiology devoted to the study of hormones and the endocrine glands that produce them. Hormones are essential for maintaining homeostasis and coordinating biological functions such as growth, reproduction, metabolism, and reaction to stress. This course will cover the diverse mechanisms that hormones use to influence physiology and behavior. We will consider hormone function from comparative, clinical, and environmental perspectives with an emphasis on the behavioral response to hormones. Lectures will describe the cellular and molecular basis of endocrine regulation and consider the function of each of the major hormone groups produced by the body, such as hypothalamic, pituitary, adrenal, and sex steroids. Weekly journal article discussions will focus on current topics in endocrinology. (BIOL 0140 and BIOL 0145) 3 hrs. lect.

BIOL0370A-S13

Cross-Listed As:
BIOL0370B-S13

CRN: 22309

Animal Physiology

Animal Physiology
This course examines the body functions of animals and humans using general physiological principles and a comparative approach. Lectures will cover the function of each of the major physiological systems (nervous, endocrine, muscular, etc.) and will describe how animal physiology has been shaped by evolution to allow animals to survive in a wide range of environmental conditions. Lectures will focus mainly on physiological processes occurring at the molecular, cellular, and organismal levels. Occasional journal article discussions will provide case studies of current topics in animal physiology. Laboratory exercises, reports and oral presentations emphasize experimental design, analysis and independent study using various methodological approaches including electrophysiology, neurotransmitter manipulations, nutritional analysis, and exercise physiology. (BIOL 0140 and BIOL 0145 or BIOL 0216). 3 hrs. lect/3 hrs. lab.

BIOL0370B-S13

Cross-Listed As:
BIOL0370A-S13

CRN: 22588

Animal Physiology

Animal Physiology
This course examines the body functions of animals and humans using general physiological principles and a comparative approach. Lectures will cover the function of each of the major physiological systems (nervous, endocrine, muscular, etc.) and will describe how animal physiology has been shaped by evolution to allow animals to survive in a wide range of environmental conditions. Lectures will focus mainly on physiological processes occurring at the molecular, cellular, and organismal levels. Occasional journal article discussions will provide case studies of current topics in animal physiology. Laboratory exercises, reports and oral presentations emphasize experimental design, analysis and independent study using various methodological approaches including electrophysiology, neurotransmitter manipulations, nutritional analysis, and exercise physiology. (BIOL 0140 and BIOL 0145 or BIOL 0216). 3 hrs. lect/3 hrs. lab.

BIOL0370Y-S13

CRN: 22372

Animal Physiology
Animal Physiology Lab

Animal Physiology
This course examines the body functions of animals and humans using general physiological principles and a comparative approach. Lectures will cover the function of each of the major physiological systems (nervous, endocrine, muscular, etc.) and will describe how animal physiology has been shaped by evolution to allow animals to survive in a wide range of environmental conditions. Lectures will focus mainly on physiological processes occurring at the molecular, cellular, and organismal levels. Occasional journal article discussions will provide case studies of current topics in animal physiology. Laboratory exercises, reports and oral presentations emphasize experimental design, analysis and independent study using various methodological approaches including electrophysiology, neurotransmitter manipulations, nutritional analysis, and exercise physiology. (BIOL 0140 and BIOL 0145 or BIOL 0216). 3 hrs. lect/3 hrs. lab.

BIOL0370Z-S13

CRN: 22373

Animal Physiology
Animal Physiology Lab

Animal Physiology
This course examines the body functions of animals and humans using general physiological principles and a comparative approach. Lectures will cover the function of each of the major physiological systems (nervous, endocrine, muscular, etc.) and will describe how animal physiology has been shaped by evolution to allow animals to survive in a wide range of environmental conditions. Lectures will focus mainly on physiological processes occurring at the molecular, cellular, and organismal levels. Occasional journal article discussions will provide case studies of current topics in animal physiology. Laboratory exercises, reports and oral presentations emphasize experimental design, analysis and independent study using various methodological approaches including electrophysiology, neurotransmitter manipulations, nutritional analysis, and exercise physiology. (BIOL 0140 and BIOL 0145 or BIOL 0216). 3 hrs. lect/3 hrs. lab.

BIOL0392A-S13

Cross-Listed As:
BIOL0392B-S13

CRN: 21979

Conservation Biology

Conservation Biology
This course will focus on advanced topics in applied ecology and population genetics as they relate to the protection and restoration of biological integrity in the natural world. Emphasis will be placed on in-depth exploration of current issues, such as the design of nature reserves, genetic and demographic factors associated with population decline, metapopulation analysis, connectivity, and large-scale ecological processes. This course will involve reading from the primary literature, discussion, computer modeling, and writing assignments, and will build upon the information presented in the prerequisite courses. (BIOL 0140)

BIOL0392B-S13

Cross-Listed As:
BIOL0392A-S13

CRN: 22579

Conservation Biology

Conservation Biology
This course will focus on advanced topics in applied ecology and population genetics as they relate to the protection and restoration of biological integrity in the natural world. Emphasis will be placed on in-depth exploration of current issues, such as the design of nature reserves, genetic and demographic factors associated with population decline, metapopulation analysis, connectivity, and large-scale ecological processes. This course will involve reading from the primary literature, discussion, computer modeling, and writing assignments, and will build upon the information presented in the prerequisite courses. (BIOL 0140)

BIOL0490A-S13

CRN: 22361

Seminar in Plant Ecology

Seminar in Plant Ecology
Global climate change has led to a huge effort to collect data on the state of the planet, including measurements of temperature, atmospheric and oceanographic conditions, and species distributions and phenologies. Ecologists have never had access to such quantities of data, and thus need new methods for their description and analysis. In this course we will explore how to use statistical models to make sense of these data: how to develop, choose, and fit the best model for a particular data set. The course will be project-based, culminate in an independent project, and use the statistical software, R. (BIOL 0140 and one statistics course required, no R experience required.) 3 hr. sem./3 hr. lab

BIOL0490Z-S13

CRN: 22459

Seminar in Plant Ecology
Seminar in Plant Ecology Lab

Seminar in Plant Ecology
Global climate change has led to a huge effort to collect data on the state of the planet, including measurements of temperature, atmospheric and oceanographic conditions, and species distributions and phenologies. Ecologists have never had access to such quantities of data, and thus need new methods for their description and analysis. In this course we will explore how to use statistical models to make sense of these data: how to develop, choose, and fit the best model for a particular data set. The course will be project-based, culminate in an independent project, and use the statistical software, R. (BIOL 0140 and one statistics course required, no R experience required.) 3 hr. sem./3 hr. lab

BIOL0500B-S13

CRN: 20313

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500C-S13

CRN: 20314

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500D-S13

CRN: 20315

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500E-S13

CRN: 20316

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500F-S13

CRN: 20317

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500G-S13

CRN: 20318

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500H-S13

CRN: 20319

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500I-S13

CRN: 20865

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500J-S13

CRN: 20866

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500L-S13

CRN: 21185

Independent Study

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0500Z-S13

CRN: 20732

Independent Study
Discussion

Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0500, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. This course is not open to seniors; seniors should enroll in BIOL 0700, Senior Independent Study. (Approval required) 3 hrs. disc.

BIOL0700B-S13

CRN: 21204

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700C-S13

CRN: 21205

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700D-S13

CRN: 21206

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700E-S13

CRN: 21207

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700F-S13

CRN: 21208

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700G-S13

CRN: 21209

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700H-S13

CRN: 21210

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700I-S13

CRN: 21211

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700J-S13

CRN: 21212

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700L-S13

CRN: 21214

Senior Independent Study

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0700Z-S13

CRN: 21215

Senior Independent Study
Discussion

Senior Independent Study
In this course students complete individual projects involving laboratory and/or field research or extensive library study on a topic chosen by the student and a faculty advisor. Prior to registering for BIOL 0700, a student must have discussed and agreed upon a project topic with a member of the Biology Department faculty. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. (Approval required; open only to seniors) 3 hrs. disc.

BIOL0701B-S13

CRN: 21953

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701C-S13

CRN: 21954

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701D-S13

CRN: 21955

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701E-S13

CRN: 21956

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701F-S13

CRN: 21957

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701G-S13

CRN: 21958

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701H-S13

CRN: 21959

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701I-S13

CRN: 21960

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701J-S13

CRN: 21961

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701L-S13

CRN: 22567

Senior Thesis

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc

BIOL0701Z-S13

CRN: 22533

Senior Thesis
Discussion

Senior Thesis
Seniors majoring in Biology who have completed one or more semesters of BIOL 0500 or BIOL 0700 and who plan to complete a thesis should register for BIOL 0701. In this course students will produce a written thesis, deliver a public presentation of the research on which it is based, and present an oral defense of the thesis before a committee of at least three faculty members. Additional requirements include participation in weekly meetings with disciplinary sub-groups and attending all Biology Department seminars. Open to Biology and joint Biology/Environmental Studies majors. (BIOL 0500 or BIOL 0700; Approval required) 3 hrs. disc