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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>CHEM10022</Code>
  </UnitCode>
  <UnitTitle Applicant="Y" Label="Unit title" Student="Y">
    <Title>Chemistry for Bioscientists 2</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 1</Level>
  </UnitLevel>
  <StaffList Applicant="Y" Label="Teaching staff" RoleLabel="Course Unit Role" Student="Y">
    <StaffMember>
      <Name>Jonathan Waltho</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) ' First part HE study/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 style="color: rgb(60, 60, 60); font-family: Arial, sans-serif;"&gt;&lt;strong&gt;This course unit detail provides the framework for delivery in 21/22&amp;nbsp;and may be subject to change due to any additional Covid-19 impact.&amp;nbsp; Please see Blackboard / course unit related emails for any further updates.&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Part A:&amp;nbsp; Reactions of Molecules Relevant To Biological Systems&lt;/strong&gt;&lt;/p&gt;&lt;p style="color: rgb(60, 60, 60); font-family: Arial, sans-serif;"&gt;The first 14 lectures will cover the basics of reaction mechanisms and describe a range of functional groups and their reactions. The lectures will illustrate the biological relevance of esterification, imine formation, amide bond formation, glycosylation, methylation, addition across double bonds, phosphate diester, and aromatic/heteroaromatic chemistry.&amp;nbsp; Specific biological molecule classes used to illustrate these reaction types will include;&amp;nbsp;&lt;em&gt;peptides&lt;/em&gt;&amp;nbsp;(peptide bond formation, methylation);&amp;nbsp;&lt;em&gt;lipids&lt;/em&gt;&amp;nbsp;(esterification, electrophilic addition to alkenes); and&amp;nbsp;&lt;em&gt;carbohydrates&lt;/em&gt;&amp;nbsp;(esterification and alkylation, imine formation, enolisation, glycosylation).&lt;/p&gt;&lt;p style="color: rgb(60, 60, 60); font-family: Arial, sans-serif;"&gt;&lt;strong&gt;Part B: Analysing Molecular Structure and Function&lt;/strong&gt;&lt;/p&gt;&lt;p style="color: rgb(60, 60, 60); font-family: Arial, sans-serif;"&gt;The remaining lectures will introduce and explain the utility of a range of techniques for analyzing and determining molecular structures, covering NMR, fluorescence, IR and UV spectroscopic methods and mass spectrometry.&lt;/p&gt;</Content>
  </MarketingOverview>
  <UnitOverview Applicant="" Label="Course unit overview" Student="Y">
    <Content>&lt;div&gt;	&lt;ul&gt;		&lt;li&gt;			Reaction mechanisms&lt;/li&gt;		&lt;li&gt;			Organic chemistry reactions&lt;/li&gt;		&lt;li&gt;			Biological organic molecules and their properties&lt;/li&gt;		&lt;li&gt;			UV visible spectroscopy&lt;/li&gt;		&lt;li&gt;			Infra red spectroscopy&lt;/li&gt;		&lt;li&gt;			NMR spectroscopy&lt;/li&gt;	&lt;/ul&gt;&lt;/div&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</Content>
  </UnitOverview>
  <Aims Applicant="Y" Label="Aims" Student="Y">
    <Content>&lt;ul&gt;	&lt;li&gt;		to illustrate the importance of key functional group properties and reaction mechanisms to the understanding of biochemical properties&lt;/li&gt;	&lt;li&gt;		to appreciate the analytical methods available for molecular structure analysis.&lt;/li&gt;&lt;/ul&gt;</Content>
  </Aims>
  <LearningOutcomes Applicant="Y" Label="Learning outcomes" Student="Y">
    <Content>&lt;p&gt;After completing the course unit students should be able to:&lt;/p&gt;&lt;ul&gt;	&lt;li&gt;		Describe and explain general types of reaction mechanism (substitution, addition, elimination), building on knowledge of molecular structure, thermodynamics and kinetics gained in CHEM10021.&lt;/li&gt;	&lt;li&gt;		Identify functional groups and fully describe mechanisms of their reactivity in chemical reaction relevant to biological systems, &lt;em&gt;e.g&lt;/em&gt;. as part of metabolic processes, or a toxic response.&lt;/li&gt;	&lt;li&gt;		Explain how molecules may be sensitive to particular spectroscopic techniques and describe how such techniques are applied in structure and function analysis of biological molecules.&lt;/li&gt;	&lt;li&gt;		Predict and interpret spectra of simple molecules.&lt;/li&gt;	&lt;li&gt;		Interpret and derive useful information from mass spectrometry data of proteins and peptides.&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></SkillId>
      <SkillDescription></SkillDescription>
    </Skill>
  </EmployabilitySkillsList>
  <Syllabus Applicant="Y" Label="Syllabus" Student="Y">
    <Content></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>1</MethodId>
      <MethodName>Written exam</MethodName>
      <MethodWeight>100%</MethodWeight>
    </Method>
  </AssessmentMethods>
  <FeedbackMethods Applicant="Y" Label="Feedback methods" Student="Y">
    <Content>&lt;p&gt;The lectures are supported by workshops and eLearning material on Blackboard (online assignments and assessments).&amp;nbsp; The workshops develop problem-solving skills related to chemical concepts, provide key support for lecture material, provide formative assessment and feedback on progress and valuable exam preparation.&amp;nbsp; The eLearning modules provide summative assessment at certain stages as the course progresses.&amp;nbsp; Feedback in the case of these assessments is received as a mark or grade.&amp;nbsp; The online questions provide important exam practise and guide self-study through the lecture material.&amp;nbsp; The eLearning component is thus an integral part of the course and includes a discussion forum.&lt;/p&gt;</Content>
  </FeedbackMethods>
  <RequirementsList Applicant="Y" Label="Pre/co-requisites" Student="Y">
    <Requirement>
      <UnitCode>CHEM10021</UnitCode>
      <UnitTitle>Chemistry for Bioscientists 1</UnitTitle>
      <RequirementType>Pre-Requisite</RequirementType>
      <Description>Compulsory</Description>
    </Requirement>
    <AdditionalRequirement></AdditionalRequirement>
  </RequirementsList>
  <AcademicPrograms Applicant="Y" Label="Academic programmes" Student="Y">
    <AcademicProgram>
      <Program></Program>
      <Plan></Plan>
      <Level></Level>
      <Requirement></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>&lt;p&gt;&lt;u&gt;NOTE&lt;/u&gt;: Bruice, PY &lt;em&gt;Organic Chemistry&lt;/em&gt; is the recommended general text, however, alternatives are also listed below. Lecturers may also recommend reading specific elements of their teaching material.&lt;/p&gt;&lt;ul&gt;	&lt;li&gt;		Bruice, PY () &lt;em&gt;Organic Chemistry, 4th (or 3rd) edition. &lt;/em&gt;Prentice Hall&lt;/li&gt;	&lt;li&gt;		Carey, FA () &lt;em&gt;Organic Chemistry. &lt;/em&gt;McGraw-Hill, Inc.&lt;/li&gt;	&lt;li&gt;		Fox, MA &amp;amp; Whitesell, JA () &lt;em&gt;Organic Chemistry. &lt;/em&gt;Bartlett and Jones&lt;/li&gt;&lt;/ul&gt;</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>2</Hours>
      </ActivityHours>
      <ActivityHours>
        <ActivityType>Lectures</ActivityType>
        <Hours>24</Hours>
      </ActivityHours>
      <ActivityHours>
        <ActivityType>Practical classes &amp; workshops</ActivityType>
        <Hours>6</Hours>
      </ActivityHours>
      <ActivityHours>
        <ActivityType>Tutorials</ActivityType>
        <Hours>3</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>65</Hours>
    </TotalHours>
  </StudyHours>
  <Notes Applicant="Y" Label="Additional notes" Student="Y">
    <Content></Content>
  </Notes>
</CourseUnit>
