CMA433 Environmental Scence & Building Services Engineering Assignment Brief 2026

School

Universiti Teknologi MARA (UiTM)

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Assignment Type

Individual Assignment

Subject

CMA433 Environmental Scence & Building Services Engineering

Uploaded by Malaysia Assignment Help

Date

06/18/2026

CMA433 Assignment Brief

Project Title Sustainable Adaptive Reuse of Heritage Buildings through Environmental and Building Services
Assessment 40% of continuous coursework

A. Introduction

The adaptive reuse of heritage buildings has emerged as a sustainable strategy that conserves cultural identity while enhancing functional performance and economic viability. By integrating environmental control systems and efficient building services, heritage structures can be transformed into high-performing, climate-responsive buildings that meet contemporary needs without compromising historical significance. This assignment aims to expose students to the interrelationship between environmental science and building services engineering through a real-world case study. It challenges students to identify, evaluate, and propose suitable environmental and building services strategies that enhance user comfort, environmental performance, and property value of a selected heritage building.

B.  Objectives

The aims of this project is to analyse the interrelationship between environmental control principles and building services engineering in the adaptive reuse of heritage buildings, and to propose feasible interventions that improve indoor environmental quality and service efficiency. The specific objectives are:

  • Analyse a selected heritage building and identify its environmental and service-related challenges.
  • Evaluate the potential of adaptive reuse strategies that integrate environmental measures (thermal comfort, lighting, acoustics, and ventilation) with modern building services systems (water supply, wastewater, electrical, and communication).
  • Propose sustainable interventions that improve building performance and extend its lifecycle.
  • Demonstrate effective teamwork, leadership, and presentation skills through collaborative project execution.

C.  Task & Deliverables

Part A: Case Study Selection and Analysis (Week 1–3)

  • Select an existing heritage building (preferably within Malaysia) that has undergone or is suitable for adaptive reuse.
  • Gather information on its location, historical background, architectural features, current use, and existing environmental and services conditions.
  • Identify the main issues or deficiencies in thermal performance, ventilation, lighting, sound, and building services systems.

Part B: Environmental and Services Assessment (Week 4–7)

  • Analyse the building using environmental principles covered in the syllabus (thermal environment, air movement, lighting, acoustics).
  • Assess existing building services systems (water supply, drainage, electrical distribution, communication).

Part C: Proposal for Adaptive Reuse and Integration (Week 8–10)

  • Propose adaptive reuse strategies to upgrade the building function (e.g., cultural center, boutique hotel, co-working space).
  • Integrate environmental control measures and building services improvements such as renewable energy systems, water conservation, and smart controls.
  • Provide technical justification for each proposed intervention, supported by sketches, diagrams, and relevant calculations.

Part D: Presentation and Submission (Week 11 & Week 14)

  • A physical presentation demonstrating concept, clarity and teamwork with an overall duration of fifteen (15) minutes shall be conducted by each team (Week 11).
  • Prepare a comprehensive report by Week 14 (min 25 pages).

D.  Assessment Criteria

1. Technical Content

This component assesses the students’ understanding and application of environmental science principles and building services systems within the context of adaptive reuse. Marks will be awarded for accurate technical descriptions, appropriate use of terminology, and the ability to relate theoretical knowledge to the selected case study. Students should demonstrate an integrated understanding of environmental control systems such as thermal comfort, lighting, ventilation, and acoustic performance, as well as the design and operation of essential building services installations.

2. Analysis & Evaluation

Students are expected to exhibit analytical depth in identifying and evaluating existing environmental and service-related issues within the chosen heritage building. This includes the ability to interpret data, assess system performance, and critically discuss potential challenges and limitations. Evaluation should lead to logical conclusions supported by quantitative or qualitative evidence, reflecting students’ capability to apply engineering reasoning to real-world building conditions.

3. Proposal & Creativity

Marks in this category reflect the quality, feasibility, and innovation of the proposed adaptive reuse strategies. Students should propose creative yet practical solutions that integrate sustainability principles with modern building services improvements. Proposals should demonstrate originality, sound technical judgment, and consideration of environmental efficiency, user comfort, and property value enhancement, while respecting the building’s heritage significance.

4. Report Organization & Presentation

This criterion evaluates the clarity, structure, and professionalism of both the written report and oral presentation. Reports should be logically organized, visually supported with relevant diagrams, sketches, and data, and properly referenced following academic conventions. During presentation, students should communicate their ideas confidently and coherently using appropriate visual aids, demonstrating both technical understanding and presentation skills.

5. Teamwork & Leadership

This component measures the effectiveness of collaboration and leadership within the group. Each member is expected to contribute meaningfully and take interchangeable roles as team leader or team member. The team should demonstrate collective problemsolving, equitable task distribution, and evidence of mutual support and coordination throughout the project development and presentation phases. 

E.  Submission Format

  • Report in A4 size, single spacing, 12 pt Arial.
  • Include figures, diagrams, and photos where relevant.
  • References in APA 7th Edition format.
  • Submission via Ufuture by Week 14.

CMA433 Assignment Rubric

Group Report Rubric (Total: 100 Marks)

Assessment

Criteria

Excellent (80–100) Good (60–79) Satisfactory (40–59) Weak (0–39) Marks (%)
Technical Content Exceptional understanding of environmental and building services concepts; accurate application of theories and calculations with strong technical justification. Good understanding of key concepts; minor gaps in accuracy or explanation. Basic understanding; limited depth or minor misconceptions. Lacks understanding; content inaccurate or irrelevant. 25
Analysis & Evaluation Comprehensive analysis with clear identification of issues and critical evaluation of systems. Clear analysis with reasonable discussion and supporting evidence. Limited analysis; discussion lacks depth or evaluation. Minimal or no analysis; fails to identify key issues. 25
Proposal & Creativity Innovative and feasible adaptive reuse strategies integrating environmental and services systems effectively. Relevant and practical strategies with some creativity. Basic proposals lacking innovation or justification. Weak or unrealistic proposals. 25
Report Organization & Presentation Excellent structure, clarity, visuals, and referencing (APA 7th). Well-organized with minor

issues in clarity or formatting.

Acceptable structure but lacks flow or consistency. Poorly organized, unclear, and poorly formatted. 15
Teamwork & Leadership Strong collaboration, clear role interchange, equitable contribution. Good teamwork with minor imbalance. Some uneven

contribution or unclear structure.

Poor collaboration; minimal participation. 10

Individual Presentation Rubric (Total: 100 Marks)

Assessment Criteria Excellent (80–100) Good (60–79) Satisfactory (40–59) Weak (0–39) Marks (%)
Technical Knowledge & Understanding Comprehensive understanding of environmental and building services concepts; clear and accurate explanations; confident responses to questions. Good understanding with minor inaccuracies; reasonable explanations and responses. Partial understanding; basic explanations lacking depth. Inaccurate or vague responses; lacks understanding. 25
Application & Analysis Strong ability to connect theory to case study; critical analysis and logical solutions. Good analysis with relevant examples. Limited analysis or weak theoretical link. No clear analytical reasoning or relevance. 20
Communication & Delivery Skills Highly confident, articulate, fluent; excellent voice projection, tone, and audience engagement. Generally clear and confident; minor articulation issues. Understandable

but lacks confidence or engagement.

Weak, monotone, unprepared, or unclear delivery. 20
Visual Aids & Use of Media Professional, attractive visuals; effectively support presentation and align with content. Clear and relevant visuals with minor design issues. Basic visuals lacking clarity or consistency. Poor or missing visuals; uncoordinated. 15
Appearance & Professionalism Excellent professional appearance; appropriate attire, confident posture, positive demeanor. Neat and presentable; minor lapses in professionalism. Acceptable appearance; lacks effort or formality. Untidy or unprofessional; poor body language. 10
Time Management & Preparedness Well-prepared; manages time effectively with logical flow. Mostly prepared; minor timing or structural issues. Some lack of preparation; pacing uneven. Poorly prepared; disorganized and off-time. 10

 

 

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