What Each Domain Aims to Achieve

About the Proteus Labs Content Set

Proteus Labs is the largest single content catalogue reviewed across the five STEM partners so far by lab count: roughly 75 individually documented mixed-reality science labs organised into 12 categories.

Orientation & Lab Skills (Tutorials — 5 modules)

Before any subject-specific lab, students complete short tutorials that teach the mixed-reality lab environment itself: reading a virtual balance, taking volume measurements, and following laboratory safety and instrument-identification procedures. These are explicitly mapped to engineering-practice standards (planning and carrying out investigations) rather than to a single content area, since their purpose is procedural fluency before the content-specific labs begin.

Chemistry (Chemical & Physical Properties, Solutions, Acids & Bases, Gases, Kinetics & Thermodynamics, Chemical Equilibrium, Electrochemistry — 38 modules)

This is the largest single subject area. Students identify and separate substances by their physical properties (density, melting/boiling point, filtration, distillation); prepare, dilute, and analyse solutions; explore acid-base behaviour through pH measurement, indicators, and multiple titration exercises; investigate gas laws (pressure–volume, temperature–volume, solubility–temperature relationships); study reaction kinetics and thermodynamics (reaction rate, surface area, concentration, Hess's Law, endothermic/exothermic reactions, specific heat capacity); examine qualitative chemical equilibrium and Le Chatelier's Principle; and carry out electrochemistry labs (water electrolysis, conductivity). Nearly every lab in this group maps to the NGSS "HS-PS1 Matter and Its Interactions" or "HS-PS3 Energy" core ideas.

Biology (12 modules)

Biology labs span cell-level and organism-level investigation: centrifugation, blood typing, observation of animal and plant cells, DNA extraction from plant material, seed germination, and analysis of stool and saliva samples (linked to digestion/enzyme function). A river-water chemistry lab connects ecosystem health to human impact. Three further labs — Köhler illumination, focusing a microscope, and river-water observation — are listed but marked as not yet live (TBD 2026), extending the microscopy strand once released.

Physics — Electricity (9 modules)

Students build and read basic circuits (resistors, series and parallel circuit assembly, current/brightness relationships, Kirchhoff's law), and investigate static electricity, magnetic fields, solenoids, and energy efficiency — grounding electrical-energy and force-field NGSS core ideas in hands-on circuit-building that would otherwise require a physical electronics kit.

Physics — Mechanics (10 modules)

These labs cover force, motion, and energy: effective/resultant force, constant acceleration, spring deformation and restoring force, mechanical energy of a moving object, kinetic energy, rolling motion on inclined ramps, and two applied-mechanics labs (operating a hoist; mechanical advantage in theatre stage design.

Full Module List

Tutorials (5)

Module
001 – Balance Tutorial
002 – Introduction Tutorial
003 – Volume Tutorial
034 – Introduction to laboratory safety
042 – Introduction to laboratory instruments

Chemical and Physical Properties (13)

Module
004 – Osmosis
005 – Identification of elements through bright flames
006 – Gas Identification
007 – Separation of Solid and Liquid Products
008 – Product separation using boiling point 1
009 – Product separation using boiling point 2
010 – Melting point and density
011 – Density
012 – Physical properties and identification of products
013 – Nutrients
014 – Heavy metal extraction
015 – Metal properties
016 – The law of conservation of mass

Biology (12)

Module
021 – Centrifugation
023 – Blood and blood groups
024 – Observation of animal cells
025 – Observation of plant cells
026 – Vegetal DNA
027 – Germination
028 – Analysis of stools
029 – Observation of saliva
030 – Chemistry of river water
031 – Köhler illumination (TBD 2026 — not yet live)
032 – Focusing microscope (TBD 2026 — not yet live)
033 – Observation of river water (TBD 2026 — not yet live)

Solutions (5)

Module
038 – Preparation of solution by dissolution
039 – Changing the solubility of a solid
040 – Precipitation
041 – Preparation of a solution
043 – Dilutions

Acids & Bases (7)

Module
046 – pH
047 – Acid-base titration 1
048 – The pH of strong and weak acids
049 – Using pH indicators
050 – Conductivity and pH
051 – Stoichiometry
052 – Acid-base titration 2

Gases (5)

Module
053 – The pressure of gases
054 – Relationship between volume and pressure of a gas 1
055 – Relationship between volume and pressure of a gas 2
056 – Relationship between a gas's temperature and its volume
057 – Relationship between gas solubility and temperature

Kinetics and Thermodynamics (9)

Module
059 – Reaction rate and enthalpy
060 – Reaction rate between molecules
061 – Influence of contact surface on reaction rate 1
062 – Influence of contact surface on reaction rate 2
063 – Influence of concentration on reaction rate 1
064 – Influence of concentration on reaction rate 2
065 – Hess's Law
066 – Endothermic & exothermic reactions
067 – Specific heat capacity

Chemical Equilibrium (2)

Module
070 – The qualitative aspect of chemical equilibrium
071 – Le Chatelier's Principle

Electrochemistry (2)

Module
072 – Water electrolysis
073 – Conductivity

Electricity (9)

Module
074 – Reading a resistor
075 – Electrical circuit assembly
076 – Assembling an electrical circuit in parallel
077 – Impact of current on the brightness of a lamp
078 – Static electricity
079 – Magnetic fields
080 – Solenoids
081 – Energy efficiency
110 – Kirchhoff law

Mechanical Physics (10)

Module
082 – Effective force
083 – The mechanical energy of a moving object
084 – Constant acceleration
085 – Relationship between spring deformation and the restoring force it exerts
086 – The operation of a hoist
087 – Mechanical advantage in theater stage design
088 – Relationship between resultant force and acceleration
091 – Kinetic energy
092 – Reverse bungee (TBD 2026 — not yet live)
106 – Rolling motion on inclined ramps

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