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Biological and Evolutionary Anthropology Course
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Biological and Evolutionary Anthropology Course

Explore the full sweep of human evolution — from primate origins to modern genomics — through the rigorous lens of biological anthropology. This course equips you with the scientific tools to analyze fossil evidence, genetic variation, and adaptive diversity across human populations. Whether you're pursuing academic research or deepening your understanding of what makes us human, this is where science meets our deepest origins.

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What you will learn:

  • Trace hominin evolution from early australopiths through anatomically modern Homo sapiens.

  • Apply population genetics principles, including Hardy-Weinberg equilibrium, to real human data.

  • Analyze primate morphology, behavior, and cognition as a comparative baseline for human evolution.

  • Evaluate fossil and ancient DNA evidence to assess competing models of modern human origins.

  • Interpret human biological variation in skin pigmentation, altitude adaptation, and immune response.

  • Understand ethical responsibilities in genomic research, skeletal analysis, and community engagement.

How you study in practice Biological and Evolutionary Anthropology Course

How you practice Biological and Evolutionary Anthropology Course

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Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Anthropology and Evolution

  • Lesson 1 • Core Principles of Evolutionary Theory

    Covers natural selection, adaptation, and common descent as foundational mechanisms. These principles underpin every subsequent topic in the course.

  • Lesson 2 • Defining Biological Anthropology

    Introduces the four-field approach and the specific domain of biological anthropology. Positions the discipline within broader science and sets the stage for evolutionary analysis.

  • Lesson 3 • Scientific Method in Anthropology

    Covers hypothesis formation, peer review, and the role of falsifiability in anthropological research. Equips students to critically evaluate primary literature throughout the course.

  • Lesson 4 • Genetics and Heredity Basics

    Introduces DNA structure, Mendelian inheritance, and mutation as sources of variation. Provides the genetic vocabulary needed for population and evolutionary genetics chapters.

  • Lesson 5 • The Fossil Record and Deep Time

    Explains geological time scales, stratigraphy, and how fossils are dated. Students understand how deep time contextualizes human evolutionary history.

Chapter 2See details

Population Genetics and Microevolution

  • Lesson 1 • Forces of Microevolution

    Analyzes mutation, gene flow, genetic drift, and natural selection as agents of allele frequency change. Each force is illustrated with human population examples.

  • Lesson 2 • Hardy-Weinberg Equilibrium

    Defines the null model of no evolution and its five assumptions. Serves as the baseline against which real evolutionary change is measured.

  • Lesson 3 • Molecular Markers and Phylogenetics

    Introduces SNPs, microsatellites, and mitochondrial DNA as tools for reconstructing population history. Connects molecular data to macroevolutionary patterns covered later.

  • Lesson 4 • Human Genetic Variation Patterns

    Describes clinal variation, FST statistics, and the distribution of diversity within versus between populations. Challenges typological race concepts with empirical data.

  • Lesson 5 • Adaptation at the Molecular Level

    Examines signatures of positive selection in the human genome, including selective sweeps. Bridges microevolutionary mechanisms with phenotypic adaptations discussed in later chapters.

Chapter 3See details

Primate Biology and Behavior

  • Lesson 1 • Primate Taxonomy and Diversity

    Classifies living primates from prosimians to apes using morphological and molecular criteria. Establishes the phylogenetic context for understanding human uniqueness.

  • Lesson 2 • Primate Ecology and Conservation

    Examines habitat requirements, dietary strategies, and threats to primate survival. Contextualizes primate research within conservation biology and fieldwork ethics.

  • Lesson 3 • Primate Cognition and Tool Use

    Reviews evidence for theory of mind, cultural transmission, and tool manufacture in great apes. Establishes cognitive precursors to human language and technology.

  • Lesson 4 • Primate Social Organization

    Compares solitary, pair-bonded, and multi-male group structures across primate taxa. Social patterns inform models of early hominin social life.

  • Lesson 5 • Primate Morphological Adaptations

    Analyzes grasping hands, forward-facing eyes, and dental formulas as primate hallmarks. These traits provide the morphological baseline for interpreting hominin fossils.

Chapter 4See details

Hominin Origins and Early Evolution

  • Lesson 1 • Stone Tool Industries and Behavior

    Introduces Oldowan and Acheulean technologies and debates over their cognitive demands. Tool use marks a behavioral threshold connecting early hominins to later Homo.

  • Lesson 2 • The Human-Ape Divergence

    Reviews molecular clock estimates and fossil candidates for the last common ancestor of humans and chimpanzees. Establishes the temporal and phylogenetic starting point for hominin evolution.

  • Lesson 3 • Early Hominin Diet and Ecology

    Uses stable isotope analysis and dental microwear to reconstruct australopith diets. Dietary shifts are linked to habitat change and encephalization trends.

  • Lesson 4 • Bipedalism: Origins and Mechanics

    Analyzes skeletal indicators of bipedal locomotion and competing hypotheses for its origin. Bipedalism is the defining hominin locomotor adaptation and shapes all subsequent anatomy.

  • Lesson 5 • Australopithecus Diversity

    Compares gracile and robust australopith species across Africa using cranial and postcranial evidence. Demonstrates adaptive radiation and mosaic evolution in early hominins.

Chapter 5See details

The Genus Homo: Emergence and Dispersal

  • Lesson 1 • Out of Africa I: Early Dispersals

    Traces Homo erectus dispersal routes into Asia and Europe using fossil site chronology. Evaluates ecological and behavioral factors enabling range expansion.

  • Lesson 2 • Interbreeding and Archaic Introgression

    Presents ancient DNA evidence for gene flow between modern humans and archaic populations. Students assess the functional significance of introgressed alleles in living humans.

  • Lesson 3 • Neanderthals: Biology and Behavior

    Analyzes Neanderthal cold-adapted anatomy, Mousterian technology, and symbolic behavior evidence. Neanderthals serve as the key comparative case for modern human origins.

  • Lesson 4 • Archaic Homo Species in the Middle Pleistocene

    Reviews Homo heidelbergensis, Homo naledi, and Denisovans as Middle Pleistocene diversity. Highlights the complexity of the hominin tree before modern humans.

  • Lesson 5 • Origins of Homo habilis and Homo erectus

    Compares cranial capacity, body proportions, and tool associations of early Homo species. Establishes the anatomical grade separating Homo from australopiths.

Chapter 6See details

Origins and Spread of Modern Humans

  • Lesson 1 • Multiregional Versus Recent African Origin

    Contrasts the two major models of modern human origins and evaluates evidence for each. Students practice weighing competing hypotheses using fossil and genetic data.

  • Lesson 2 • Anatomical Modernity: Defining Features

    Identifies the cranial and postcranial traits distinguishing modern humans from archaic Homo. Provides the morphological criteria used to classify fossil specimens as modern.

  • Lesson 3 • African Fossil Record of Early Homo sapiens

    Reviews key African sites and their chronology to establish Africa as the cradle of modern humans. Fossil evidence is integrated with genetic data on African diversity.

  • Lesson 4 • Out of Africa II: Global Dispersal

    Maps dispersal routes into Eurasia, Australia, and the Americas using genetic and archaeological evidence. Students evaluate timing, routes, and population bottlenecks.

  • Lesson 5 • Upper Paleolithic Behavioral Revolution

    Examines blade technology, cave art, personal ornaments, and long-distance trade as markers of behavioral modernity. Links cognitive evolution to archaeological signatures.

Chapter 7See details

Human Biological Variation and Adaptation

  • Lesson 1 • Body Size, Shape, and Climate

    Applies Bergmann's and Allen's rules to human body proportions across climatic zones. Students interpret skeletal data as evidence of thermoregulatory adaptation.

  • Lesson 2 • Immune System Variation and Disease

    Analyzes HLA diversity, pathogen-driven selection, and population differences in disease susceptibility. Bridges evolutionary biology with epidemiology and global health.

  • Lesson 3 • Nutritional Adaptation and Diet

    Examines amylase gene copy number, lactase persistence, and fatty acid metabolism as dietary adaptations. Connects evolutionary history to contemporary diet-related health disparities.

  • Lesson 4 • Skin Pigmentation and UV Radiation

    Explains the genetic basis of melanin variation and its adaptive relationship to UV radiation gradients. Integrates folate and vitamin D hypotheses into a unified model.

  • Lesson 5 • High-Altitude Adaptation

    Compares Tibetan, Andean, and Ethiopian high-altitude adaptations at genetic and physiological levels. Demonstrates convergent and divergent evolutionary solutions to hypoxia.

Chapter 8See details

Advanced Topics in Evolutionary Anthropology

  • Lesson 1 • Brain Evolution and Cognitive Complexity

    Traces encephalization trends, neural reorganization, and language evolution across the hominin lineage. Links neurological change to behavioral and social complexity.

  • Lesson 2 • Biocultural Evolution and Niche Construction

    Examines how human cultural practices modify selective environments through niche construction. Integrates gene-culture coevolution as a uniquely human evolutionary dynamic.

  • Lesson 3 • Life History Theory and Human Evolution

    Applies life history trade-offs to explain human longevity, extended childhood, and menopause. Connects reproductive strategies to brain size and social complexity.

  • Lesson 4 • Evolutionary Medicine and Future Directions

    Applies evolutionary frameworks to chronic disease, microbiome research, and emerging genomic technologies. Prepares students to engage with the frontier of biological anthropology.

  • Lesson 5 • Paleogenomics and Ancient DNA

    Reviews ancient DNA recovery, authentication, and population genomic analysis of prehistoric humans. Demonstrates how genomics has transformed understanding of human prehistory.

Certification

Your valid completion certificate

This course is for you:

  • Undergraduate biology students: seeking a human-focused evolutionary science foundation.

  • Aspiring physical anthropologists: building credentials before graduate school applications.

  • Healthcare professionals: wanting evolutionary context behind population health disparities.

  • Science journalists: covering human origins, genetics, or paleoanthropology topics accurately.

  • Museum educators: deepening content knowledge for human evolution exhibit programming.

  • Curious lifelong learners: fascinated by where humanity came from and why we differ.

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