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<CourseUnit xmlns="http://www.manchester.ac.uk/CUICourseUnitDetails" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.manchester.ac.uk/CUICourseUnitDetails.xsd">
  <UnitCode Applicant="Y" Label="Unit code" Student="Y">
    <Code>BIOL21232</Code>
  </UnitCode>
  <UnitTitle Applicant="Y" Label="Unit title" Student="Y">
    <Title>Fundamentals of Evolutionary Biology</Title>
  </UnitTitle>
  <MaxUnits Applicant="Y" Label="Credit rating" Student="Y">
    <Units>10</Units>
  </MaxUnits>
  <TeachingPeriods Applicant="Y" Label="Teaching period(s)" Student="Y">
    <Period>Semester 2</Period>
  </TeachingPeriods>
  <AcademicCareer Applicant="Y" Label="Academic career" Student="Y">
    <Value>Undergraduate</Value>
  </AcademicCareer>
  <UnitLevel Applicant="Y" Label="Unit level" Student="Y">
    <Level>Level 2</Level>
  </UnitLevel>
  <StaffList Applicant="Y" Label="Teaching staff" RoleLabel="Course Unit Role" Student="Y">
    <StaffMember>
      <Name>David Gerrard</Name>
      <Role>Unit coordinator</Role>
    </StaffMember>
  </StaffList>
  <OfferedBy Applicant="Y" Label="Offered by" Student="Y">
    <OrganisationList>
      <Organisation>
        <OrgName></OrgName>
      </Organisation>
    </OrganisationList>
    <GroupList>
      <Group>
        <GroupName></GroupName>
      </Group>
    </GroupList>
    <FheqLevels>
      <FheqLevel>
        <LevelNumber>1</LevelNumber>
        <LevelName>FHEQ level (Framework for Higher Education Qualifications) ' Middle part of Bachelors ' </LevelName>
      </FheqLevel>
    </FheqLevels>
    <Ects>
      <MaxUnits>European Credit Transfer &amp; Accumulation System Rating :   5.0</MaxUnits>
    </Ects>
  </OfferedBy>
  <MarketingOverview Applicant="Y" Label="Marketing Course unit overview" Student="">
    <Content>&lt;p&gt;Fundamentals of Evolutionary Biology aims to provide a deep understanding of the mechanisms that underlie the evolution of biological systems. By blending classical theory with cutting-edge examples, this unit will demonstrate how microevolutionary processes lead to the macroevolutionary patterns of life on earth. Fundamental evolutionary concepts and techniques will be used to explain some of the greatest mysteries of life on earth, such as the evolution of sexual reproduction and the origin of modern humans.&lt;/p&gt;</Content>
  </MarketingOverview>
  <UnitOverview Applicant="" Label="Course unit overview" Student="Y">
    <Content>&lt;p&gt;Fundamentals of Evolutionary Biology aims to provide a deep understanding of the mechanisms that underlie the evolution of biological systems. By blending classical theory with cutting-edge examples, this unit will demonstrate how microevolutionary processes lead to the macroevolutionary patterns of life on earth. Fundamental evolutionary concepts and techniques will be used to explain some of the greatest mysteries of life on earth, such as the evolution of sexual reproduction and the origin of modern humans.&lt;/p&gt;</Content>
  </UnitOverview>
  <Aims Applicant="Y" Label="Aims" Student="Y">
    <Content>&lt;p&gt;This unit aims to provide a deep understanding of the mechanisms that underlie the evolution of biological systems. By blending classical theory with cutting-edge examples, this unit will demonstrate how microevolutionary processes lead to the macroevolutionary patterns of life on earth. Fundamental evolutionary concepts and techniques will be used to explain some of the greatest mysteries of life on earth, such as the evolution of sexual reproduction and the origin of modern humans.&lt;/p&gt;</Content>
  </Aims>
  <LearningOutcomes Applicant="Y" Label="Learning outcomes" Student="Y">
    <Content>&lt;p&gt;Upon completion of the unit, students will be able to:&lt;/p&gt;&lt;ul&gt;	&lt;li&gt;		Understand the theoretical basis behind how the forces governing evolution (e.g. mutation, natural selection) work to cause heritable change in natural populations&lt;/li&gt;	&lt;li&gt;		Understand the principles and techniques needed to infer phylogenetic relationships among populations and species&lt;/li&gt;	&lt;li&gt;		Understand how the processes of speciation and extinction work to create patterns of biodiversity over space and time&lt;/li&gt;	&lt;li&gt;		Appreciate how evolutionary forces act to create complex biological systems&lt;/li&gt;	&lt;li&gt;		Apply evolutionary concepts to understand the evolution of modern humans&lt;/li&gt;&lt;/ul&gt;</Content>
  </LearningOutcomes>
  <Knowledge Applicant="Y" Label="Knowledge and understanding" Student="Y">
    <Content></Content>
  </Knowledge>
  <IntellectualSkills Applicant="Y" Label="Intellectual skills" Student="Y">
    <Content></Content>
  </IntellectualSkills>
  <PracticalSkills Applicant="Y" Label="Practical skills" Student="Y">
    <Content></Content>
  </PracticalSkills>
  <TransferableSkills Applicant="Y" Label="Transferable skills and personal qualities" Student="Y">
    <Content></Content>
  </TransferableSkills>
  <EmployabilitySkillsList Applicant="Y" Label="Employability skills" Student="Y">
    <Skill>
      <SkillId>Analytical skills</SkillId>
      <SkillDescription>Quantitative reasoning</SkillDescription>
    </Skill>
    <Skill>
      <SkillId>Problem solving</SkillId>
      <SkillDescription>Ability to analyse and solve basic problems in evolutionary biology</SkillDescription>
    </Skill>
    <Skill>
      <SkillId>Research</SkillId>
      <SkillDescription>Ability to understand research approaches in evolutionary biology</SkillDescription>
    </Skill>
  </EmployabilitySkillsList>
  <Syllabus Applicant="Y" Label="Syllabus" Student="Y">
    <Content>&lt;ul&gt;	&lt;li&gt;		Evolutionary Forces (mutation, natural selection, genetic drift, migration and non-random mating)&lt;/li&gt;	&lt;li&gt;		Phylogenetics and Phlyogeography (concepts and methods to build phylogenetic trees, using phylogenies to study relationships among taxa, geographic patterns of biodiversity)&lt;/li&gt;	&lt;li&gt;		Speciation and Macroevolution (mechanisms of speciation, rates of speciation and extinction over time, adaptive radiations)&lt;/li&gt;	&lt;li&gt;		Co-evolution and the Evolution of Sex (host-parasite evolution, evolution of virulence, the cost of sexual reproduction, hypotheses for the advantages of sex, why is there a 1:1 sex ratio?)&lt;/li&gt;	&lt;li&gt;		Comparative anatomy (homology and modification of form)&lt;/li&gt;	&lt;li&gt;		Human Evolution (origin of modern humans, relationships with Neanderthals, global migration patterns)&lt;/li&gt;&lt;/ul&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</Content>
  </Syllabus>
  <TeachingMethods Applicant="Y" Label="Teaching and learning methods" Student="Y">
    <Content></Content>
  </TeachingMethods>
  <AssessmentMethods Applicant="Y" Label="Assessment methods" Student="Y">
    <IntroText> </IntroText>
    <Method>
      <MethodId>0</MethodId>
      <MethodName>Other</MethodName>
      <MethodWeight>20%</MethodWeight>
    </Method>
    <Method>
      <MethodId>1</MethodId>
      <MethodName>Written exam</MethodName>
      <MethodWeight>80%</MethodWeight>
    </Method>
    <OtherDescription>&lt;p&gt;20% on-campus mid-term MCQ assessment (online but in PC cluster).&lt;br/&gt;80% end of unit exam to comprise short answer questions (50% of exam) and one essay (50% of exam).&amp;nbsp;&lt;/p&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</OtherDescription>
  </AssessmentMethods>
  <FeedbackMethods Applicant="Y" Label="Feedback methods" Student="Y">
    <Content>&lt;p&gt;Provided via (i) assessed mid-unit online assessed exercises, (ii) an online discussion forum for students and lecturers, and (iii) an end-of-unit review session with students and lecturers.&lt;/p&gt;</Content>
  </FeedbackMethods>
  <RequirementsList Applicant="Y" Label="Pre/co-requisites" Student="Y">
    <Requirement>
      <UnitCode>BIOL10521</UnitCode>
      <UnitTitle>Genes, Evolution and Development</UnitTitle>
      <RequirementType>Pre-Requisite</RequirementType>
      <Description>Compulsory</Description>
    </Requirement>
    <AdditionalRequirement>BIOL21232 Pre-requisites is BIOL10521</AdditionalRequirement>
  </RequirementsList>
  <AcademicPrograms Applicant="Y" Label="Academic programmes" Student="Y">
    <AcademicProgram>
      <Program>BSc(Hons) Biology</Program>
      <Plan>BSc(Hons) Biology</Plan>
      <Level>Second Year</Level>
      <Requirement>Optional</Requirement>
    </AcademicProgram>
  </AcademicPrograms>
  <FreeChoice Applicant="Y" Label="Available as a free choice unit?" Student="Y">
    <Content>N</Content>
  </FreeChoice>
  <Accreditation Applicant="Y" Label="Accreditation" Student="Y">
    <Content></Content>
  </Accreditation>
  <RecommendedReading Applicant="Y" Label="Recommended reading" Student="Y">
    <Content></Content>
  </RecommendedReading>
  <StudyHours Applicant="Y" Label="Study hours" Student="Y">
    <IntroText> </IntroText>
    <ScheduledHours Applicant="Y" Label="Scheduled activity hours" Student="Y">
      <ActivityHours>
        <ActivityType>Assessment written exam</ActivityType>
        <Hours>1.3</Hours>
      </ActivityHours>
      <ActivityHours>
        <ActivityType>Lectures</ActivityType>
        <Hours>22</Hours>
      </ActivityHours>
    </ScheduledHours>
    <PlacementHours Applicant="Y" Label="Placement hours" Student="Y">
      <ActivityHours>
        <ActivityType></ActivityType>
        <Hours>0</Hours>
      </ActivityHours>
    </PlacementHours>
    <TotalHours Applicant="Y" Label="Independent study hours" Student="Y">
      <Hours>76.7</Hours>
    </TotalHours>
  </StudyHours>
  <Notes Applicant="Y" Label="Additional notes" Student="Y">
    <Content></Content>
  </Notes>
</CourseUnit>
