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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>GEOG60941</Code>
  </UnitCode>
  <UnitTitle Applicant="Y" Label="Unit title" Student="Y">
    <Title>Environmental Remote Sensing</Title>
  </UnitTitle>
  <MaxUnits Applicant="Y" Label="Credit rating" Student="Y">
    <Units>15</Units>
  </MaxUnits>
  <TeachingPeriods Applicant="Y" Label="Teaching period(s)" Student="Y">
    <Period>Semester 1</Period>
  </TeachingPeriods>
  <AcademicCareer Applicant="Y" Label="Academic career" Student="Y">
    <Value>Postgraduate Taught</Value>
  </AcademicCareer>
  <UnitLevel Applicant="Y" Label="Unit level" Student="Y">
    <Level>Level 6</Level>
  </UnitLevel>
  <StaffList Applicant="Y" Label="Teaching staff" RoleLabel="Course Unit Role" Student="Y">
    <StaffMember>
      <Name>Angela Harris</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) ' Masters/Integrated Masters P4 ' </LevelName>
      </FheqLevel>
    </FheqLevels>
    <Ects>
      <MaxUnits>European Credit Transfer &amp; Accumulation System Rating :   7.5</MaxUnits>
    </Ects>
  </OfferedBy>
  <MarketingOverview Applicant="Y" Label="Marketing Course unit overview" Student="">
    <Content>&lt;p&gt;Remote sensing provides a unique means of capturing vast quantities of spatially referenced data with complete coverage, synoptically and at a range of spatial and temporal scales. Thus, remote sensing is a fundamental tool for use in environmental modelling and in decision-support for environmental management.&lt;/p&gt;&lt;p&gt;The aim of this unit is to provide students with the knowledge and skills to enable them to use digital data for reliable thematic and quantitative information extraction. The unit places emphasis on the use of some of the more advanced computer-based techniques used for information extraction from remotely sensed data to support environmental applications. Specifically, we will be using the relatively new online Google Earth Engine Code Editor platform to code remote sensing processing operations in JavaScript.&lt;/p&gt;</Content>
  </MarketingOverview>
  <UnitOverview Applicant="" Label="Course unit overview" Student="Y">
    <Content>&lt;p&gt;The unit uses structured exercises and computer-based labs to reinforce concepts introduced in the lectures and to provide hands-on experience of image processing and image interpretation. Students are also expected to read and cite relevant peer-reviewed literature for all assessed work.&lt;/p&gt;&lt;p&gt;The course uses the open access online platform Google Earth Engine (GEE) as the main processing software. The course requires students to code image processing operations, although no previous coding experience is assumed.&lt;/p&gt;&lt;p&gt;Examples of topics covered include:&lt;/p&gt;&lt;p&gt;· The electromagnetic spectrum&lt;/p&gt;&lt;p&gt;· Spectral signatures&lt;/p&gt;&lt;p&gt;· Sensors and their characteristics&lt;/p&gt;&lt;p&gt;· Change detection&lt;/p&gt;&lt;p&gt;· Time series analysis&lt;/p&gt;</Content>
  </UnitOverview>
  <Aims Applicant="Y" Label="Aims" Student="Y">
    <Content>&lt;p&gt;To provide an understanding of the different ways in which remote sensing data can be used to monitor the Earth&amp;#39;s surface. The unit provides a firm foundation in the principles and practice of remote sensing across a range of scales and perspectives&lt;/p&gt;</Content>
  </Aims>
  <LearningOutcomes Applicant="Y" Label="Learning outcomes" Student="Y">
    <Content>&lt;p&gt;By the end of the unit students will have an appreciation for the range of remote sensing systems available to address environmental issues and will be able to make decisions about the best techniques and technology to utilise for different environmental applications. These skills will be especially for those seeking careers in the environmental or data science commercial sectors and for those seeking to go into research careers.&lt;/p&gt;</Content>
  </LearningOutcomes>
  <Knowledge Applicant="Y" Label="Knowledge and understanding" Student="Y">
    <Content>&lt;ul&gt;&lt;li&gt;Understand of key principles in Earth observation (EO), including: spectral signatures, vegetation indices; image classification; image spatial, temporal, spectral and radiometric resolution.&lt;/li&gt;&lt;li&gt;Develop an awareness of the wide range of remote sensing systems and understand how and why they suit different environmental applications.&lt;/li&gt;&lt;/ul&gt;</Content>
  </Knowledge>
  <IntellectualSkills Applicant="Y" Label="Intellectual skills" Student="Y">
    <Content>&lt;ul&gt;&lt;li&gt;Handle and apply technical concepts in EO and critically evaluate the results.&lt;/li&gt;&lt;li&gt;Critically assess and evaluate the suitability of EO satellite derived products for particular applications.&lt;/li&gt;&lt;li&gt;Develop research skills including reading, critically judging and evaluating scientific.&lt;/li&gt;&lt;/ul&gt;</Content>
  </IntellectualSkills>
  <PracticalSkills Applicant="Y" Label="Practical skills" Student="Y">
    <Content>&lt;ul&gt;&lt;li&gt;Handle remote sensing data from a range of systems using computers and appropriate software.&lt;/li&gt;&lt;li&gt;Apply key algorithms to interpret remotely sensed imagery.&lt;/li&gt;&lt;li&gt;Manage raster data and other spatial data files.&lt;/li&gt;&lt;li&gt;Source appropriate EO images from online image archives.&lt;/li&gt;&lt;/ul&gt;</Content>
  </PracticalSkills>
  <TransferableSkills Applicant="Y" Label="Transferable skills and personal qualities" Student="Y">
    <Content>&lt;ul&gt;&lt;li&gt;Communicate and express geospatial ideas and results in written, oral and visual form (e.g. images and graphs).&lt;/li&gt;&lt;li&gt;Develop skills of time management and bibliographic research.&lt;/li&gt;&lt;/ul&gt;</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>&lt;p&gt;The unit uses structured exercises and computer-based labs to reinforce concepts introduced in the lectures and to provide hands-on experience of image processing and image interpretation. Students are also expected to read and cite relevant peer-reviewed literature for all assessed work.&lt;/p&gt;&lt;p&gt;The unit uses the open access online platform Google Earth Engine (GEE) as the main processing software. The unit requires students to code image processing operations, although no previous coding experience is assumed.&lt;/p&gt;&lt;p&gt;Examples of topics covered include:&lt;/p&gt;&lt;p&gt;Fundamentals of remote sensing, Electromagnetic spectrum, Spectral signatures, Platforms, sensors and their characteristics used in remote sensing, Data quality control, Monitoring land surfaces, Time series analysis from space.&lt;/p&gt;</Content>
  </Syllabus>
  <TeachingMethods Applicant="Y" Label="Teaching and learning methods" Student="Y">
    <Content>&lt;p&gt;In person:&lt;/p&gt;&lt;p&gt;Lectures - Highlighting key points of required knowledge and explaining key concepts and theories (8 hours).&lt;br/&gt;Tutorial/Discussion sessions - Checking required understanding of the main concepts (3 hours).&lt;br/&gt;Computer workshops are used for students to gain hands-on experience and learning (6 hours).&lt;br/&gt;Assessment workshops – Answering questions related to the assessment (6 hours).&lt;br/&gt;Guided independent study (127 hours) – Additional reading, research and preparation for unit assessments.&lt;/p&gt;&lt;p&gt;E-learning approaches:&lt;/p&gt;&lt;p&gt;A virtual learning environment - Delivery of &amp;nbsp;all materials related to the unit.&lt;/p&gt;</Content>
  </TeachingMethods>
  <AssessmentMethods Applicant="Y" Label="Assessment methods" Student="Y">
    <IntroText> </IntroText>
    <Method>
      <MethodId>0</MethodId>
      <MethodName>Other</MethodName>
      <MethodWeight>100%</MethodWeight>
    </Method>
    <OtherDescription>&lt;p&gt;A poster on the potential of EO for long term environmental monitoring (500 words 20%).&lt;/p&gt;&lt;p&gt;A 2,500 word research paper demonstrating the use of one or more time-series data processing approaches to address an environmental research question/application of the students own choosing (80%).&lt;/p&gt;</OtherDescription>
  </AssessmentMethods>
  <FeedbackMethods Applicant="Y" Label="Feedback methods" Student="Y">
    <Content>&lt;p&gt;&lt;strong&gt;Formative Assessment Tasks&lt;/strong&gt;&lt;br/&gt;Quizzes complete online and in class&lt;br/&gt;Asynchronous - Written feedback provided immediately.&lt;br/&gt;Synchronous - Verbal feedback in class, immediately after each question is answered.&lt;br/&gt;Computer practical exercises&lt;br/&gt;Written answers are provided 5-7 days after the session.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Assessment Tasks&lt;/strong&gt;&lt;br/&gt;Poster - Written feedback within 3 working weeks of submission.&lt;br/&gt;Research paper - Written feedback within 3 working weeks of submission.&lt;p&gt;&lt;/p&gt;&lt;/p&gt;</Content>
  </FeedbackMethods>
  <RequirementsList Applicant="Y" Label="Pre/co-requisites" Student="Y">
    <Requirement>
      <UnitCode></UnitCode>
      <UnitTitle></UnitTitle>
      <RequirementType></RequirementType>
      <Description></Description>
    </Requirement>
    <AdditionalRequirement></AdditionalRequirement>
  </RequirementsList>
  <AcademicPrograms Applicant="Y" Label="Academic programmes" Student="Y">
    <AcademicProgram>
      <Program>MSc Env.Montrng, Modlng &amp; Reco</Program>
      <Plan>MSc Env.Montrng, Modlng &amp; Reco</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Optional</Requirement>
    </AcademicProgram>
    <AcademicProgram>
      <Program>MSc Env.Montrng, Modlng &amp; Reco</Program>
      <Plan>MSc Env.Montrng, Modlng &amp; Reco</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Optional</Requirement>
    </AcademicProgram>
    <AcademicProgram>
      <Program>MSc GIS</Program>
      <Plan>MSc GIS</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Mandatory</Requirement>
    </AcademicProgram>
    <AcademicProgram>
      <Program>MSc GIS</Program>
      <Plan>MSc GIS</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Mandatory</Requirement>
    </AcademicProgram>
    <AcademicProgram>
      <Program>MSc Envtl Impact Asst &amp; Mgmt</Program>
      <Plan>MSc Envtl Impact Asst &amp; Mgmt</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Optional</Requirement>
    </AcademicProgram>
    <AcademicProgram>
      <Program>MSc Envtl Impact Asst &amp; Mgmt</Program>
      <Plan>MSc Envtl Impact Asst &amp; Mgmt</Plan>
      <Level>PGDT Taught Component</Level>
      <Requirement>Optional</Requirement>
    </AcademicProgram>
  </AcademicPrograms>
  <FreeChoice Applicant="Y" Label="Available as a free choice unit?" Student="Y">
    <Content>Y</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;strong&gt;Basic reading&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;Campbell, J.B. (2007), Introduction to Remote Sensing.&lt;/p&gt;&lt;p&gt;Lillesand, T., Kieffer, R.W., and Chipman, J. (2008) Remote Sensing and Image Interpretation&lt;/p&gt;&lt;p&gt;Online reading list&lt;/p&gt;&lt;p&gt;https://www.readinglists.manchester.ac.uk/leganto/readinglist/searchlists/338988755210001631?auth=CAS&lt;/p&gt;</Content>
  </RecommendedReading>
  <StudyHours Applicant="Y" Label="Study hours" Student="Y">
    <IntroText> </IntroText>
    <ScheduledHours Applicant="Y" Label="Scheduled activity hours" Student="Y">
      <ActivityHours>
        <ActivityType>Lectures</ActivityType>
        <Hours>8</Hours>
      </ActivityHours>
      <ActivityHours>
        <ActivityType>Practical classes &amp; workshops</ActivityType>
        <Hours>15</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>127</Hours>
    </TotalHours>
  </StudyHours>
  <Notes Applicant="Y" Label="Additional notes" Student="Y">
    <Content></Content>
  </Notes>
</CourseUnit>
