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MGTS75232 学分

管理学课程

昆士兰大学·University of Queensland·布里斯班
💪 压力
5 / 5
⭐ 含金量
5 / 5
✅ 通过率
0%

📖 课程概览

### 课程定位 MGTS7523(System Dynamics)是 UQ 管理学方向的重要课程,核心目标是把管理理论转化为可执行的组织决策与团队协作能力。课程不仅服务后续高阶管理与战略课程,也直接对应职场中的沟通协调、项目推进与跨团队管理场景。 ### 技术栈与学习内容 内容通常覆盖组织行为、战略管理、领导力、运营改进、变革管理与商业沟通,并结合案例分析、情境决策和团队项目。你需要掌握的不只是概念本身,还要能在复杂约束下做取舍、说明理由、并输出可落地建议。 ### 课程结构 课程一般按 13 周推进:前段打基础框架,中段进入案例与作业,后段综合评估。常见考核包括 Quiz/Tutorial、案例报告、小组展示和期末评估。评分除正确性外,更关注分析结构、论证深度与表达清晰度。 ### 适合人群 适合希望提升管理思维、沟通表达、项目推进与团队协作能力的同学,尤其适合准备咨询、产品、运营、项目管理和综合管理岗位的人。建议每周稳定投入 8-12 小时,坚持“预习-练习-复盘”节奏。

🧠 大神解析

### 📊 课程难度与压力分析 MGTS7523(System Dynamics)整体难度在超难区间,课程压力通常在 Week 4-7 逐步上升。前期内容偏概念与框架,容易低估难度;中期后案例分析、团队任务和阶段评估叠加,时间管理要求明显提高。与同类课程相比,这门课更重视持续输出与表达质量,不是靠期末突击就能稳住高分。Quit Week 常见于第一次高权重报告返分后,若不及时调整方法,后续会较被动。 ### 🎯 备考重点与高分策略 建议优先掌握 7 类高频点:1)核心管理框架定义与边界;2)案例拆解路径;3)组织问题诊断逻辑;4)方案比较与取舍依据;5)数据与证据支撑;6)结构化表达与答题模板;7)跨章节综合判断。HD 与 Pass 的主要差异在“可执行性与说服力”:高分答案会给出清晰结论、证据链和实施路径。复习建议分三轮:概念查漏、案例重做、限时模拟。 ### 📚 学习建议与资源推荐 学习顺序建议是:先看课程目标与 rubric,再看 lecture,再做 tutorial/case,最后写周复盘。资源上优先官方课件、课程讨论区、UQ Library 案例库;外部可补充 Harvard Business Review、McKinsey/BCG Insights、Coursera 管理课程。每周建议做一次“错因归类”,按概念错、案例分析错、表达错、协作错四类记录,提分效率更高。 ### ⚠️ 作业与 Lab 避坑指南 常见扣分点包括:结论先行但证据不足、框架套用生硬、忽略情境约束、团队分工不清导致输出不一致、格式与引用不规范。建议采用 D-7 完成主体、D-3 统一逻辑和分工、D-1 校对表达与排版的节奏。若有分组作业,务必在早期确定责任边界和交付标准,避免截止日前返工。 ### 💬 过来人经验分享 我以前上管理课最容易踩的坑是“只会背框架,不会用框架分析真实案例”,结果写作业时很空。后来我强制自己每次都写“问题-原因-方案-风险”四段,分数和效率都明显提升。最有用的习惯是每周开一次 20 分钟小复盘,把本周最容易失分的点记下来,下周先修它。给新同学一句话:管理课拼的不是记忆力,而是结构化思考和执行细节。

📅 每周课程大纲

Week 1Systems Thinking Introduction In week 1, there will be an overview of the course, including assessment and software requirements. There will be an introduction to the field of system dynamics and the philosophy of using this approach for managing complex problems. We will cover the "Macquarie Island" and "pDu Pont" cases as an entry point to thinking in systems. Exercise - We will unpack the Macquarie Island case using the UQ Cases app.
### 📖 核心知识点:Systems Thinking Introduction In week 1, there will be an overview of the course, including assessment and software requirements. There will be an introduction to the field of system dynamics and the philosophy of using this approach for managing complex problems. We will cover the "Macquarie Island" and "pDu Pont" cases as an entry point to thinking in systems. Exercise - We will unpack the Macquarie Island case using the UQ Cases app. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Systems Thinking Introduction In week 1, there will be an overview of the course, including assessment and software requirements. There will be an introduction to the field of system dynamics and the philosophy of using this approach for managing complex problems. We will cover the "Macquarie Island" and "pDu Pont" cases as an entry point to thinking in systems. Exercise - We will unpack the Macquarie Island case using the UQ Cases app., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Systems Thinking Introduction In week 1, there will be an overview of the course, including assessment and software requirements. There will be an introduction to the field of system dynamics and the philosophy of using this approach for managing complex problems. We will cover the "Macquarie Island" and "pDu Pont" cases as an entry point to thinking in systems. Exercise - We will unpack the Macquarie Island case using the UQ Cases app.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
SystemsThinkingIntroductionInweek1therewillbean
💡 学习提示
总结 Systems Thinking Introduction In week 1, there will be an overview of the course, including assessment and software requirements. There will be an introduction to the field of system dynamics and the philosophy of using this approach for managing complex problems. We will cover the "Macquarie Island" and "pDu Pont" cases as an entry point to thinking in systems. Exercise - We will unpack the Macquarie Island case using the UQ Cases app. 的核心概念与适用场景
为第1周生成 5 道练习题并给出解题步骤
Week 2Systems Method In this seminar, we will introduce Sterman's "Systems Method" and Senge's "Ice-berg" model Exercise - We will use the "Lobster Game" as an example of illustrating the first step of the Systems Method (problem articulation). We will then develop an Iceberg model for the "Lobster Game"
### 📖 核心知识点:Systems Method In this seminar, we will introduce Sterman's "Systems Method" and Senge's "Ice-berg" model Exercise - We will use the "Lobster Game" as an example of illustrating the first step of the Systems Method (problem articulation). We will then develop an Iceberg model for the "Lobster Game" 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Systems Method In this seminar, we will introduce Sterman's "Systems Method" and Senge's "Ice-berg" model Exercise - We will use the "Lobster Game" as an example of illustrating the first step of the Systems Method (problem articulation). We will then develop an Iceberg model for the "Lobster Game", analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Systems Method In this seminar, we will introduce Sterman's "Systems Method" and Senge's "Ice-berg" model Exercise - We will use the "Lobster Game" as an example of illustrating the first step of the Systems Method (problem articulation). We will then develop an Iceberg model for the "Lobster Game"”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
SystemsMethodInthisseminarwewillintroduceSterman's"Systems
💡 学习提示
总结 Systems Method In this seminar, we will introduce Sterman's "Systems Method" and Senge's "Ice-berg" model Exercise - We will use the "Lobster Game" as an example of illustrating the first step of the Systems Method (problem articulation). We will then develop an Iceberg model for the "Lobster Game" 的核心概念与适用场景
为第2周生成 5 道练习题并给出解题步骤
Week 3Causal Loop Modelling In this seminar, we will introduce the concept of Causal Loop Diagrams (CLD) as step 2 of Sterman's "Systems method". This will include the importance of naming variables correctly, allocating polarities, and identifying causality. Activity: We will be using Vensim PLE software to develop our first CLDs - for this, we will revisit the "Lobster Game" from week 2. Students will present their observations from the Lobster Game activity to each other.
### 📖 核心知识点:Causal Loop Modelling In this seminar, we will introduce the concept of Causal Loop Diagrams (CLD) as step 2 of Sterman's "Systems method". This will include the importance of naming variables correctly, allocating polarities, and identifying causality. Activity: We will be using Vensim PLE software to develop our first CLDs - for this, we will revisit the "Lobster Game" from week 2. Students will present their observations from the Lobster Game activity to each other. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Causal Loop Modelling In this seminar, we will introduce the concept of Causal Loop Diagrams (CLD) as step 2 of Sterman's "Systems method". This will include the importance of naming variables correctly, allocating polarities, and identifying causality. Activity: We will be using Vensim PLE software to develop our first CLDs - for this, we will revisit the "Lobster Game" from week 2. Students will present their observations from the Lobster Game activity to each other., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Causal Loop Modelling In this seminar, we will introduce the concept of Causal Loop Diagrams (CLD) as step 2 of Sterman's "Systems method". This will include the importance of naming variables correctly, allocating polarities, and identifying causality. Activity: We will be using Vensim PLE software to develop our first CLDs - for this, we will revisit the "Lobster Game" from week 2. Students will present their observations from the Lobster Game activity to each other.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
CausalLoopModellingInthisseminarwewillintroducethe
💡 学习提示
总结 Causal Loop Modelling In this seminar, we will introduce the concept of Causal Loop Diagrams (CLD) as step 2 of Sterman's "Systems method". This will include the importance of naming variables correctly, allocating polarities, and identifying causality. Activity: We will be using Vensim PLE software to develop our first CLDs - for this, we will revisit the "Lobster Game" from week 2. Students will present their observations from the Lobster Game activity to each other. 的核心概念与适用场景
为第3周生成 5 道练习题并给出解题步骤
Week 4Structure and Behaviour of Dynamic Systems In this seminar we will be taking a close look at the fundamental systems thinking principle that links systems structure with observed systems behaviour. This provides further insight into Sterman's "systems Method", specifically step 2. We will also be looking at the recent emergence, and opportunities (and challenges) of using AI to develop causal loop diagrams Exercise - We will look at the concept of 'Policy Resistance' through a case that looks at Traffic Congestion.
### 📖 核心知识点:Structure and Behaviour of Dynamic Systems In this seminar we will be taking a close look at the fundamental systems thinking principle that links systems structure with observed systems behaviour. This provides further insight into Sterman's "systems Method", specifically step 2. We will also be looking at the recent emergence, and opportunities (and challenges) of using AI to develop causal loop diagrams Exercise - We will look at the concept of 'Policy Resistance' through a case that looks at Traffic Congestion. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Structure and Behaviour of Dynamic Systems In this seminar we will be taking a close look at the fundamental systems thinking principle that links systems structure with observed systems behaviour. This provides further insight into Sterman's "systems Method", specifically step 2. We will also be looking at the recent emergence, and opportunities (and challenges) of using AI to develop causal loop diagrams Exercise - We will look at the concept of 'Policy Resistance' through a case that looks at Traffic Congestion., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Structure and Behaviour of Dynamic Systems In this seminar we will be taking a close look at the fundamental systems thinking principle that links systems structure with observed systems behaviour. This provides further insight into Sterman's "systems Method", specifically step 2. We will also be looking at the recent emergence, and opportunities (and challenges) of using AI to develop causal loop diagrams Exercise - We will look at the concept of 'Policy Resistance' through a case that looks at Traffic Congestion.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
StructureandBehaviourofDynamicSystemsInthisseminarwe
💡 学习提示
总结 Structure and Behaviour of Dynamic Systems In this seminar we will be taking a close look at the fundamental systems thinking principle that links systems structure with observed systems behaviour. This provides further insight into Sterman's "systems Method", specifically step 2. We will also be looking at the recent emergence, and opportunities (and challenges) of using AI to develop causal loop diagrams Exercise - We will look at the concept of 'Policy Resistance' through a case that looks at Traffic Congestion. 的核心概念与适用场景
为第4周生成 5 道练习题并给出解题步骤
Week 5System Archetypes This is the final instalment of the systems thinking component of this subject. For this seminar we will look at 'System Archetypes' and how they can be used to help kick-start the process of developing a causal loop diagram, or used to summarise (and simplify) an existing causal loop diagram. We will be overviewing the following system archetypes and how they might relate to systems of interest: Fixes that Fail; Shifting the Burden; Limits to Growth; Eroding Goals; Escalation; Success to the Successful; Tragedy of the Commons Activity - we will play the multiplayer game 'Sustainable Fish SD', which is based on the Tragedy of the Commons archetype. This provides an immersive and experiential way of learning about one of the most important archetypes.
### 📖 核心知识点:System Archetypes This is the final instalment of the systems thinking component of this subject. For this seminar we will look at 'System Archetypes' and how they can be used to help kick-start the process of developing a causal loop diagram, or used to summarise (and simplify) an existing causal loop diagram. We will be overviewing the following system archetypes and how they might relate to systems of interest: Fixes that Fail; Shifting the Burden; Limits to Growth; Eroding Goals; Escalation; Success to the Successful; Tragedy of the Commons Activity - we will play the multiplayer game 'Sustainable Fish SD', which is based on the Tragedy of the Commons archetype. This provides an immersive and experiential way of learning about one of the most important archetypes. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: System Archetypes This is the final instalment of the systems thinking component of this subject. For this seminar we will look at 'System Archetypes' and how they can be used to help kick-start the process of developing a causal loop diagram, or used to summarise (and simplify) an existing causal loop diagram. We will be overviewing the following system archetypes and how they might relate to systems of interest: Fixes that Fail; Shifting the Burden; Limits to Growth; Eroding Goals; Escalation; Success to the Successful; Tragedy of the Commons Activity - we will play the multiplayer game 'Sustainable Fish SD', which is based on the Tragedy of the Commons archetype. This provides an immersive and experiential way of learning about one of the most important archetypes., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“System Archetypes This is the final instalment of the systems thinking component of this subject. For this seminar we will look at 'System Archetypes' and how they can be used to help kick-start the process of developing a causal loop diagram, or used to summarise (and simplify) an existing causal loop diagram. We will be overviewing the following system archetypes and how they might relate to systems of interest: Fixes that Fail; Shifting the Burden; Limits to Growth; Eroding Goals; Escalation; Success to the Successful; Tragedy of the Commons Activity - we will play the multiplayer game 'Sustainable Fish SD', which is based on the Tragedy of the Commons archetype. This provides an immersive and experiential way of learning about one of the most important archetypes.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
SystemArchetypesThisisthefinalinstalmentofthesystems
💡 学习提示
总结 System Archetypes This is the final instalment of the systems thinking component of this subject. For this seminar we will look at 'System Archetypes' and how they can be used to help kick-start the process of developing a causal loop diagram, or used to summarise (and simplify) an existing causal loop diagram. We will be overviewing the following system archetypes and how they might relate to systems of interest: Fixes that Fail; Shifting the Burden; Limits to Growth; Eroding Goals; Escalation; Success to the Successful; Tragedy of the Commons Activity - we will play the multiplayer game 'Sustainable Fish SD', which is based on the Tragedy of the Commons archetype. This provides an immersive and experiential way of learning about one of the most important archetypes. 的核心概念与适用场景
为第5周生成 5 道练习题并给出解题步骤
Week 6Stock and Flow Models In this seminar, we transition from systems thinking to system dynamics modelling. The first step is to get acquainted with the software that we will be using to develop our models (Stella Architect software). The teaching team will give a demonstration of how to use Stella Architecture to create a simple population model (population models are often central to challenges that are addressed using system dynamics). Activity: We will build and run a simple population model.
### 📖 核心知识点:Stock and Flow Models In this seminar, we transition from systems thinking to system dynamics modelling. The first step is to get acquainted with the software that we will be using to develop our models (Stella Architect software). The teaching team will give a demonstration of how to use Stella Architecture to create a simple population model (population models are often central to challenges that are addressed using system dynamics). Activity: We will build and run a simple population model. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Stock and Flow Models In this seminar, we transition from systems thinking to system dynamics modelling. The first step is to get acquainted with the software that we will be using to develop our models (Stella Architect software). The teaching team will give a demonstration of how to use Stella Architecture to create a simple population model (population models are often central to challenges that are addressed using system dynamics). Activity: We will build and run a simple population model., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Stock and Flow Models In this seminar, we transition from systems thinking to system dynamics modelling. The first step is to get acquainted with the software that we will be using to develop our models (Stella Architect software). The teaching team will give a demonstration of how to use Stella Architecture to create a simple population model (population models are often central to challenges that are addressed using system dynamics). Activity: We will build and run a simple population model.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
StockandFlowModelsInthisseminarwetransitionfrom
💡 学习提示
总结 Stock and Flow Models In this seminar, we transition from systems thinking to system dynamics modelling. The first step is to get acquainted with the software that we will be using to develop our models (Stella Architect software). The teaching team will give a demonstration of how to use Stella Architecture to create a simple population model (population models are often central to challenges that are addressed using system dynamics). Activity: We will build and run a simple population model. 的核心概念与适用场景
为第6周生成 5 道练习题并给出解题步骤
Week 7Dynamic of stocks and flows In this seminar, we will look at how system dynamics simulation models can be used for group-level decision making. The importance of understanding how different stocks and flows within a system will be experienced through participating in the Climate Interactive's "En-ROADS" simulation. Activity: En-ROADS simulation
### 📖 核心知识点:Dynamic of stocks and flows In this seminar, we will look at how system dynamics simulation models can be used for group-level decision making. The importance of understanding how different stocks and flows within a system will be experienced through participating in the Climate Interactive's "En-ROADS" simulation. Activity: En-ROADS simulation 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Dynamic of stocks and flows In this seminar, we will look at how system dynamics simulation models can be used for group-level decision making. The importance of understanding how different stocks and flows within a system will be experienced through participating in the Climate Interactive's "En-ROADS" simulation. Activity: En-ROADS simulation, analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Dynamic of stocks and flows In this seminar, we will look at how system dynamics simulation models can be used for group-level decision making. The importance of understanding how different stocks and flows within a system will be experienced through participating in the Climate Interactive's "En-ROADS" simulation. Activity: En-ROADS simulation”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
DynamicofstocksandflowsInthisseminarwewill
💡 学习提示
总结 Dynamic of stocks and flows In this seminar, we will look at how system dynamics simulation models can be used for group-level decision making. The importance of understanding how different stocks and flows within a system will be experienced through participating in the Climate Interactive's "En-ROADS" simulation. Activity: En-ROADS simulation 的核心概念与适用场景
为第7周生成 5 道练习题并给出解题步骤
Week 8Team presentations Teams will present in class the outcomes of their research into addressing a 'dynamic problem' for the systems thinking project.
### 📖 核心知识点:Team presentations Teams will present in class the outcomes of their research into addressing a 'dynamic problem' for the systems thinking project. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Team presentations Teams will present in class the outcomes of their research into addressing a 'dynamic problem' for the systems thinking project., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Team presentations Teams will present in class the outcomes of their research into addressing a 'dynamic problem' for the systems thinking project.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
TeampresentationsTeamswillpresentinclasstheoutcomesof
💡 学习提示
总结 Team presentations Teams will present in class the outcomes of their research into addressing a 'dynamic problem' for the systems thinking project. 的核心概念与适用场景
为第8周生成 5 道练习题并给出解题步骤
Week 9Dynamics of Simple Structures In this seminar, we will look at the dynamics of simple structures. This will be exemplified by building a simple supply-demand-pricing model. The ability to build and understand a simple model that can capture the dynamics of price signals is an important capability for students. Activity: Build a simple economics stock and flow model using Stella Architect
### 📖 核心知识点:Dynamics of Simple Structures In this seminar, we will look at the dynamics of simple structures. This will be exemplified by building a simple supply-demand-pricing model. The ability to build and understand a simple model that can capture the dynamics of price signals is an important capability for students. Activity: Build a simple economics stock and flow model using Stella Architect 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Dynamics of Simple Structures In this seminar, we will look at the dynamics of simple structures. This will be exemplified by building a simple supply-demand-pricing model. The ability to build and understand a simple model that can capture the dynamics of price signals is an important capability for students. Activity: Build a simple economics stock and flow model using Stella Architect, analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Dynamics of Simple Structures In this seminar, we will look at the dynamics of simple structures. This will be exemplified by building a simple supply-demand-pricing model. The ability to build and understand a simple model that can capture the dynamics of price signals is an important capability for students. Activity: Build a simple economics stock and flow model using Stella Architect”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
DynamicsofSimpleStructuresInthisseminarwewilllook
💡 学习提示
总结 Dynamics of Simple Structures In this seminar, we will look at the dynamics of simple structures. This will be exemplified by building a simple supply-demand-pricing model. The ability to build and understand a simple model that can capture the dynamics of price signals is an important capability for students. Activity: Build a simple economics stock and flow model using Stella Architect 的核心概念与适用场景
为第9周生成 5 道练习题并给出解题步骤
Week 10In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail
### 📖 核心知识点:In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail, analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
In-classModelDesignChallengeTheIn-classModelDesignChallengeoccurs
💡 学习提示
总结 In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail 的核心概念与适用场景
为第10周生成 5 道练习题并给出解题步骤
Week 11In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail
### 📖 核心知识点:In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail, analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
In-classModelDesignChallengeTheIn-classModelDesignChallengeoccurs
💡 学习提示
总结 In-class Model Design Challenge The In-class Model Design Challenge occurs during this class - see the assessment section of the course profile for detail 的核心概念与适用场景
为第11周生成 5 道练习题并给出解题步骤
Week 12Dimensionless Multipliers; Value-add of models In this seminar, we will be looking at the power (and the problem) of including fuzzy cause-effect relationships in system dynamics models using dimensionless multipliers. We will also explore the use of model interfaces and how these can provide value for your model, and used to better communicate your models to end-users (stakeholders) Exercise - Revisit our economics model from week 9 and build a user interface that allows a potential non-modeller to use your model
### 📖 核心知识点:Dimensionless Multipliers; Value-add of models In this seminar, we will be looking at the power (and the problem) of including fuzzy cause-effect relationships in system dynamics models using dimensionless multipliers. We will also explore the use of model interfaces and how these can provide value for your model, and used to better communicate your models to end-users (stakeholders) Exercise - Revisit our economics model from week 9 and build a user interface that allows a potential non-modeller to use your model 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Dimensionless Multipliers; Value-add of models In this seminar, we will be looking at the power (and the problem) of including fuzzy cause-effect relationships in system dynamics models using dimensionless multipliers. We will also explore the use of model interfaces and how these can provide value for your model, and used to better communicate your models to end-users (stakeholders) Exercise - Revisit our economics model from week 9 and build a user interface that allows a potential non-modeller to use your model, analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Dimensionless Multipliers; Value-add of models In this seminar, we will be looking at the power (and the problem) of including fuzzy cause-effect relationships in system dynamics models using dimensionless multipliers. We will also explore the use of model interfaces and how these can provide value for your model, and used to better communicate your models to end-users (stakeholders) Exercise - Revisit our economics model from week 9 and build a user interface that allows a potential non-modeller to use your model”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
DimensionlessMultipliersValue-addofmodelsInthisseminarwewill
💡 学习提示
总结 Dimensionless Multipliers; Value-add of models In this seminar, we will be looking at the power (and the problem) of including fuzzy cause-effect relationships in system dynamics models using dimensionless multipliers. We will also explore the use of model interfaces and how these can provide value for your model, and used to better communicate your models to end-users (stakeholders) Exercise - Revisit our economics model from week 9 and build a user interface that allows a potential non-modeller to use your model 的核心概念与适用场景
为第12周生成 5 道练习题并给出解题步骤
Week 13Material and Information Delays In this seminar we will start with an overview of how material and information delays can influence the dynamics of a system e.g. what happens if you need to make a decision when the information that you use to make your decision is no longer relevant (i.e. old information)? As an extension of the content from the previous week, we will continue to look at how we can make our simulation models more palatable for non-modellers (stakeholders), including understanding design elements that help (rather than hinder) its usefulness for intended end-users.
### 📖 核心知识点:Material and Information Delays In this seminar we will start with an overview of how material and information delays can influence the dynamics of a system e.g. what happens if you need to make a decision when the information that you use to make your decision is no longer relevant (i.e. old information)? As an extension of the content from the previous week, we will continue to look at how we can make our simulation models more palatable for non-modellers (stakeholders), including understanding design elements that help (rather than hinder) its usefulness for intended end-users. 本周内容基于 UQ 官方 Course Profile 的学习活动安排。建议按“概念理解→练习验证→场景迁移”三步推进,确保知识能应用到作业与考试场景。 - **核心概念/公式**: Material and Information Delays In this seminar we will start with an overview of how material and information delays can influence the dynamics of a system e.g. what happens if you need to make a decision when the information that you use to make your decision is no longer relevant (i.e. old information)? As an extension of the content from the previous week, we will continue to look at how we can make our simulation models more palatable for non-modellers (stakeholders), including understanding design elements that help (rather than hinder) its usefulness for intended end-users., analysis, modelling, application ⏰ **本周节奏**: 难度 ⭐⭐⭐ | 预计投入 8h(Lecture 2h + 自学 3h + 作业/Lab 3h) 🎯 **考试关联**: 常见考法为概念辨析 + 场景应用,建议按“问题-方法-理由”组织答案。 🧪 **Tutorial/Lab**: 围绕“Material and Information Delays In this seminar we will start with an overview of how material and information delays can influence the dynamics of a system e.g. what happens if you need to make a decision when the information that you use to make your decision is no longer relevant (i.e. old information)? As an extension of the content from the previous week, we will continue to look at how we can make our simulation models more palatable for non-modellers (stakeholders), including understanding design elements that help (rather than hinder) its usefulness for intended end-users.”完成练习并复盘错因。 📌 **作业关联**: 对应本周作业模块,建议本周完成第一版。 ⚠️ **易错点**: 只记结论不做推导,综合题容易失分。 ,MGTS7523)
MaterialandInformationDelaysInthisseminarwewillstart
💡 学习提示
总结 Material and Information Delays In this seminar we will start with an overview of how material and information delays can influence the dynamics of a system e.g. what happens if you need to make a decision when the information that you use to make your decision is no longer relevant (i.e. old information)? As an extension of the content from the previous week, we will continue to look at how we can make our simulation models more palatable for non-modellers (stakeholders), including understanding design elements that help (rather than hinder) its usefulness for intended end-users. 的核心概念与适用场景
为第13周生成 5 道练习题并给出解题步骤

📋 作业拆解

Assignment 1

12h
核心考察
框架应用与论证逻辑
完成 MGTS7523 案例问题分析与结论输出。
要求
提交结构化报告

Assignment 2

16h
核心考察
方案设计与风险评估
完成综合管理情境分析并提出执行建议。
要求
提交报告/展示材料

🕐 课表安排

2026 S2 学期课表 · 每周 3 小时

Lecture
Fri11:00 (60)📍 -
Workshop
Fri12:00 (120)📍 50-S201 Hawken Engineering Building, Collaborative Room
👤 讲师:Richards,Russell✉️ r.richards@business.uq.edu.au

📋 课程信息

学分
2 Credit Points
含金量
5 / 5
压力指数
5 / 5
课程类型
elective
期中考试
2001年7月1日

💬 学生评价

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