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80 courses found

Showing 1–24 of 80

ROBOTICS & AUTONOMYMechatronics
SED-05681Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Young Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Young Explorer pathway uses clear, age-appropriate activities to interpret robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Young ExplorerFoundations & Core Concepts6 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05682Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Junior Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Junior Explorer pathway uses structured learning and authentic scientific tasks to design robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Junior ExplorerFoundations & Core Concepts8 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05683Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Secondary Foundation

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Secondary Foundation pathway uses structured learning and authentic scientific tasks to compare robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Secondary FoundationFoundations & Core Concepts8 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05684Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Advanced Secondary

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Advanced Secondary pathway uses structured learning and authentic scientific tasks to evaluate robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Advanced SecondaryFoundations & Core Concepts10 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05685Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Pre-University

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Pre-University pathway uses structured learning and authentic scientific tasks to investigate robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Pre-UniversityFoundations & Core Concepts10 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05686Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Undergraduate Foundation

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Undergraduate Foundation pathway uses structured learning and authentic scientific tasks to analyse robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Undergraduate FoundationFoundations & Core Concepts12 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05687Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Undergraduate Advanced

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Undergraduate Advanced pathway uses structured learning and authentic scientific tasks to model robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Undergraduate AdvancedFoundations & Core Concepts12 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05688Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Postgraduate

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Postgraduate pathway uses structured learning and authentic scientific tasks to test robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

PostgraduateFoundations & Core Concepts14 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05689Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Professional Development

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Professional Development pathway uses structured learning and authentic scientific tasks to interpret robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Professional DevelopmentFoundations & Core Concepts14 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05690Robotics & Autonomous Systems

Mechatronics: Foundations & Core Concepts — Research & Specialist

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Research & Specialist pathway uses specialist evidence and advanced scientific practice to design robot design, testing, feedback and mission-based engineering, with a particular emphasis on foundations & core concepts.

Research & SpecialistFoundations & Core Concepts16 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05691Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Young Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Young Explorer pathway uses clear, age-appropriate activities to design robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Young ExplorerLaboratory & Practical Skills10 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05692Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Junior Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Junior Explorer pathway uses structured learning and authentic scientific tasks to compare robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Junior ExplorerLaboratory & Practical Skills12 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05693Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Secondary Foundation

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Secondary Foundation pathway uses structured learning and authentic scientific tasks to evaluate robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Secondary FoundationLaboratory & Practical Skills14 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05694Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Advanced Secondary

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Advanced Secondary pathway uses structured learning and authentic scientific tasks to investigate robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Advanced SecondaryLaboratory & Practical Skills16 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05695Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Pre-University

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Pre-University pathway uses structured learning and authentic scientific tasks to analyse robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Pre-UniversityLaboratory & Practical Skills18 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05696Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Undergraduate Foundation

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Undergraduate Foundation pathway uses structured learning and authentic scientific tasks to model robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Undergraduate FoundationLaboratory & Practical Skills20 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05697Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Undergraduate Advanced

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Undergraduate Advanced pathway uses structured learning and authentic scientific tasks to test robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Undergraduate AdvancedLaboratory & Practical Skills20 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05698Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Postgraduate

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Postgraduate pathway uses structured learning and authentic scientific tasks to interpret robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

PostgraduateLaboratory & Practical Skills22 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05699Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Professional Development

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Professional Development pathway uses structured learning and authentic scientific tasks to design robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Professional DevelopmentLaboratory & Practical Skills24 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05700Robotics & Autonomous Systems

Mechatronics: Laboratory & Practical Skills — Research & Specialist

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Research & Specialist pathway uses specialist evidence and advanced scientific practice to compare robot design, testing, feedback and mission-based engineering, with a particular emphasis on laboratory & practical skills.

Research & SpecialistLaboratory & Practical Skills26 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05701Robotics & Autonomous Systems

Mechatronics: Research Methods & Experimental Design — Young Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Young Explorer pathway uses clear, age-appropriate activities to compare robot design, testing, feedback and mission-based engineering, with a particular emphasis on research methods & experimental design.

Young ExplorerResearch Methods & Experimental Design12 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05702Robotics & Autonomous Systems

Mechatronics: Research Methods & Experimental Design — Junior Explorer

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Junior Explorer pathway uses structured learning and authentic scientific tasks to evaluate robot design, testing, feedback and mission-based engineering, with a particular emphasis on research methods & experimental design.

Junior ExplorerResearch Methods & Experimental Design14 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05703Robotics & Autonomous Systems

Mechatronics: Research Methods & Experimental Design — Secondary Foundation

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Secondary Foundation pathway uses structured learning and authentic scientific tasks to investigate robot design, testing, feedback and mission-based engineering, with a particular emphasis on research methods & experimental design.

Secondary FoundationResearch Methods & Experimental Design16 guided hoursOnline • In-person • Hybrid
ROBOTICS & AUTONOMYMechatronics
SED-05704Robotics & Autonomous Systems

Mechatronics: Research Methods & Experimental Design — Advanced Secondary

Explore Mechatronics through sensing, control, mechanics and autonomous behaviour. This Advanced Secondary pathway uses structured learning and authentic scientific tasks to analyse robot design, testing, feedback and mission-based engineering, with a particular emphasis on research methods & experimental design.

Advanced SecondaryResearch Methods & Experimental Design18 guided hoursOnline • In-person • Hybrid
Need a specialised variation?The catalogue is designed as a broad application catalogue. Course scope, schedule, delivery and availability are confirmed after application.
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