Learning objective
Hardware Components
Computer Parts
Welcome to Computer Parts! In this strand, you will explore the essential physical components that make up digital devices, learning how hardware elements work together to process, store, and display information.
Screen & Keys
Identifying basic external computer parts and buttons.
Let's Go!
Learn
Computers are made of physical parts called hardware! The screen shows pictures and text, the keyboard lets you type, the mouse lets you point, and the power button turns it on.
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Identify External Parts!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Point to the screen and keyboard.
Identify the power button and mouse correctly.
Label screen, keyboard, mouse, and power button on a diagram.
Explain the purpose of the main external computer parts.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for Screen & Keys includes:
- Core Deliverable: Identify External Parts!
- Target Quality: Label screen, keyboard, mouse, and power button on a diagram.
- Excellence & Polish: Explain the purpose of the main external computer parts.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: See, Think, Wonder
Achievement pathway
- Foundation: Point to the screen and keyboard.
- Developing: Identify the power button and mouse correctly.
- Secure: Label screen, keyboard, mouse, and power button on a diagram.
- Mastering: Explain the purpose of the main external computer parts.
Curriculum links
Curriculum strand: CM.01.B.1.1
Outcome: CP-O-01 โ Identifying basic external computer parts and buttons.
PYP: Form ยท Physical components work together to power digital tools.
Learner profile: Inquirer
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
Locked level
Level 2: Inside vs Outside
Complete the previous learning check to unlock this next level.
Inside vs Outside
Distinguishing internal components from external peripherals.
Learning objective
Learning About: Internal vs External. Learning To: Classify hardware parts. Learning To Be: Communicator.
Let's Go!
Learn
While external peripherals (like keyboards and monitors) let us interact with the computer, internal components (like the motherboard and battery) stay safe inside the protective case to process data.
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Classify Inside vs Outside!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Identify external computer casing.
Distinguish between parts outside the case vs parts inside.
Classify components into External Peripherals vs Internal Hardware.
Explain why internal parts need protective outer casing.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for Inside vs Outside includes:
- Core Deliverable: Classify Inside vs Outside!
- Target Quality: Classify components into External Peripherals vs Internal Hardware.
- Excellence & Polish: Explain why internal parts need protective outer casing.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: Zoom In
Achievement pathway
- Foundation: Identify external computer casing.
- Developing: Distinguish between parts outside the case vs parts inside.
- Secure: Classify components into External Peripherals vs Internal Hardware.
- Mastering: Explain why internal parts need protective outer casing.
Curriculum links
Curriculum strand: CM.01.B.1.1
Outcome: CP-O-02 โ Distinguishing internal components from external peripherals.
PYP: Function ยท External controls interact with hidden internal hardware.
Learner profile: Communicator
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
Locked level
Level 3: CPU & Memory
Complete the previous learning check to unlock this next level.
CPU & Memory
Understanding the CPU as the brain and RAM as temporary memory.
Learning objective
Learning About: CPU & RAM. Learning To: Compare processing & memory. Learning To Be: Thinker.
Let's Go!
Learn
The CPU (Central Processing Unit) calculates instructions like a brain. RAM (Random Access Memory) acts like a temporary workbench holding the apps and tabs you have open right now!
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Explore CPU & RAM Roles!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Identify the CPU as the computer's processor.
Describe RAM as temporary working memory.
Explain the roles of CPU (brain) vs RAM (workbench) in running apps.
Predict what happens when RAM fills up during heavy multitasking.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for CPU & Memory includes:
- Core Deliverable: Explore CPU & RAM Roles!
- Target Quality: Explain the roles of CPU (brain) vs RAM (workbench) in running apps.
- Excellence & Polish: Predict what happens when RAM fills up during heavy multitasking.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: Think, Puzzle, Explore
Achievement pathway
- Foundation: Identify the CPU as the computer's processor.
- Developing: Describe RAM as temporary working memory.
- Secure: Explain the roles of CPU (brain) vs RAM (workbench) in running apps.
- Mastering: Predict what happens when RAM fills up during heavy multitasking.
Curriculum links
Curriculum strand: CM.02.B.1.1
Outcome: CP-O-03 โ Understanding the CPU as the brain and RAM as temporary memory.
PYP: Change ยท Processing units and memory chips process data at high speeds.
Learner profile: Thinker
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
Locked level
Level 4: Motherboard & Power
Complete the previous learning check to unlock this next level.
Motherboard & Power
Exploring the motherboard circuit highway and power supply unit (PSU).
Learning objective
Learning About: Motherboard & Power. Learning To: Connect system components. Learning To Be: Principled.
Let's Go!
Learn
The Motherboard is the master circuit board that connects every part together! The Power Supply Unit (PSU) transforms wall electricity into safe, regulated power for every component.
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Trace Motherboard Connections!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Identify the motherboard as the main printed circuit board.
Describe how the Power Supply Unit (PSU) delivers electricity.
Trace how signals travel along motherboard buses between CPU, RAM, and Storage.
Explain electrical safety precautions when handling power components.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for Motherboard & Power includes:
- Core Deliverable: Trace Motherboard Connections!
- Target Quality: Trace how signals travel along motherboard buses between CPU, RAM, and Storage.
- Excellence & Polish: Explain electrical safety precautions when handling power components.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: See, Think, Wonder
Achievement pathway
- Foundation: Identify the motherboard as the main printed circuit board.
- Developing: Describe how the Power Supply Unit (PSU) delivers electricity.
- Secure: Trace how signals travel along motherboard buses between CPU, RAM, and Storage.
- Mastering: Explain electrical safety precautions when handling power components.
Curriculum links
Curriculum strand: CM.02.B.1.1
Outcome: CP-O-04 โ Exploring the motherboard circuit highway and power supply unit (PSU).
PYP: Connection ยท Electrical circuits connect components and distribute regulated power.
Learner profile: Principled
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
Locked level
Level 5: GPU & Cooling
Complete the previous learning check to unlock this next level.
GPU & Cooling
Graphics processing units (GPUs) and thermal management systems.
Learning objective
Learning About: GPU & Cooling. Learning To: Manage thermal performance. Learning To Be: Knowledgeable.
Let's Go!
Learn
GPUs contain thousands of mini-cores built specifically for rendering 3D graphics and video games. Because intense processing creates extreme heat, heat sinks and fans keep temperatures safe!
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Analyze Graphics & Thermal Control!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Identify dedicated Graphics Processing Units (GPUs).
Explain why high-performance chips generate heat.
Compare heat sinks, thermal paste, and cooling fans in heat dissipation.
Evaluate hardware choices for 3D gaming vs office productivity.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for GPU & Cooling includes:
- Core Deliverable: Analyze Graphics & Thermal Control!
- Target Quality: Compare heat sinks, thermal paste, and cooling fans in heat dissipation.
- Excellence & Polish: Evaluate hardware choices for 3D gaming vs office productivity.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: I used to think...
Achievement pathway
- Foundation: Identify dedicated Graphics Processing Units (GPUs).
- Developing: Explain why high-performance chips generate heat.
- Secure: Compare heat sinks, thermal paste, and cooling fans in heat dissipation.
- Mastering: Evaluate hardware choices for 3D gaming vs office productivity.
Curriculum links
Curriculum strand: CM.03.B.1.1
Outcome: CP-O-05 โ Graphics processing units (GPUs) and thermal management systems.
PYP: Perspective ยท Specialized processors and cooling systems optimize hardware performance.
Learner profile: Knowledgeable
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
Locked level
Level 6: Diagnostics & Upgrades
Complete the previous learning check to unlock this next level.
Diagnostics & Upgrades
Hardware diagnostics, component upgrading, and sustainability.
Learning objective
Learning About: Diagnostics & Upgrades. Learning To: Upgrade hardware sustainably. Learning To Be: Reflective.
Let's Go!
Learn
Computers are modular! Instead of throwing away an entire machine when it slows down, replacing a slow hard drive with an SSD or adding more RAM extends its lifespan and dramatically reduces e-waste.
Hardware & Systems Lab
Level 1: Hardware ArchitectureTitle
TypeDescription
Level 1: Click on external peripherals (Monitor, Keyboard, Mouse) to explore how they connect.
Try it yourself
Plan a Hardware Upgrade!
๐ Open a practice space
๐ Student Project GuideSuccess Criteria & WAGOLL (What A Good One Looks Like)
๐ฏ Task Success Criteria (Rubric)
Identify common hardware fault symptoms (e.g. RAM beep codes, overheating throttling).
Run diagnostic software to test RAM and storage health.
Plan a modular hardware upgrade path (adding RAM or SSD) to boost performance.
Evaluate the environmental and economic benefits of upgrading vs replacing hardware.
๐ What A Good One Looks Like (WAGOLL)
A top-tier student project for Diagnostics & Upgrades includes:
- Core Deliverable: Plan a Hardware Upgrade!
- Target Quality: Plan a modular hardware upgrade path (adding RAM or SSD) to boost performance.
- Excellence & Polish: Evaluate the environmental and economic benefits of upgrading vs replacing hardware.
When you finish creating your project in your software, copy the share link or take a screenshot and publish it onto your student portfolio website!
Reflect
Learning check
Teacher setup, curriculum links and progress descriptors
Spark support
Routine: Step Inside
Achievement pathway
- Foundation: Identify common hardware fault symptoms (e.g. RAM beep codes, overheating throttling).
- Developing: Run diagnostic software to test RAM and storage health.
- Secure: Plan a modular hardware upgrade path (adding RAM or SSD) to boost performance.
- Mastering: Evaluate the environmental and economic benefits of upgrading vs replacing hardware.
Curriculum links
Curriculum strand: CM.03.B.1.1
Outcome: CP-O-06 โ Hardware diagnostics, component upgrading, and sustainability.
PYP: Reflection ยท Upgrading modular hardware extends device lifespan and reduces e-waste.
Learner profile: Reflective
Competency tags
Gate support
Accessibility alternative:
Teacher override: allow
