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Topic 1 - Systems IB Topics 1.1.1, 1.1.2, 1.1.3

Topic 1 - Systems

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Topic 1 - Systems. IB Topics 1.1.1, 1.1.2, 1.1.3. Systems. A system is an assemblage of parts and the relationships between them that constitute a whole. System Types. Open Both matter and energy are exchanged across the boundaries of the system. System Types. Closed - PowerPoint PPT Presentation

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Page 1: Topic 1 - Systems

Topic 1 - SystemsIB Topics 1.1.1, 1.1.2, 1.1.3

Page 2: Topic 1 - Systems

Systems A system is an

assemblage of parts and the relationships between them that constitute a whole

Page 3: Topic 1 - Systems

System Types Open

Both matter and energy are exchanged across the boundaries of the system

Page 4: Topic 1 - Systems

System Types Closed

Energy is exchanged, but no matter is exchanged

Page 5: Topic 1 - Systems

System Types Isolated

No matter or energy is exchanged

Page 6: Topic 1 - Systems

System Components Systems consist of:

Storages Of matter and

energy Flows

Inputs into, outputs out of the system

Processes Transfer or

transform energy or matter

Page 7: Topic 1 - Systems

Topic 1 - EnergyIB Topic 1.1.4

Page 8: Topic 1 - Systems

Energy Energy exists in

multiple forms: Light Heat Chemical Electrical

Page 9: Topic 1 - Systems

1st Law of Thermodynamics Energy cannot be

created or destroyed, it can only change forms

Page 10: Topic 1 - Systems

1st Law of Thermodynamics (related to ecosystems) All the energy into

a system must equal the energy stored plus energy lost

Page 11: Topic 1 - Systems

2nd Law of Thermodynamics Energy goes from

a concentrated form to a dispersed form

(Useable energy to non-useable energy)

Page 12: Topic 1 - Systems

2nd Law of Thermodynamics (related to ecosystems) New energy needs

to be added to the system

Page 13: Topic 1 - Systems

Topic 1 - EquilibriaIB Topic 1.1.5

Page 14: Topic 1 - Systems

Equilibrium Static Equilibrium

No input or outputs of matter or energy

No change in the system over time

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Equilibrium Steady-State

Equilibrium Inputs and

outputs of matter and energy

System remains stable over time

Page 16: Topic 1 - Systems

Stable vs Unstable Equilibrium Stable Unstable

Page 17: Topic 1 - Systems

Topic 1 - FeedbackIB Topic 1.1.6

Page 18: Topic 1 - Systems

Feedback Positive Feedback

A change in the system leads to increased change

The system goes away from equilibrium

Negative Feedback Changes in the

system lead to stability

The system maintains equilibrium

Page 19: Topic 1 - Systems

Examples:

Page 20: Topic 1 - Systems

Topic 1 – Transfers and TransformationsIB Topic 1.1.7

Page 21: Topic 1 - Systems

Transfers Energy and matter

move through a system without changing state

Usually involve a change in location

Page 22: Topic 1 - Systems

Transformations The change of

energy or matter to a new product

Involve a change of state

Page 23: Topic 1 - Systems

Topic 1 – Flows & StoragesIB Topic 1.1.8

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Flows Inputs and

Outputs Energy and matter

moving from one place to another

Page 25: Topic 1 - Systems

Storages (stocks) Matter and energy

is stored in stocks or resevoirs

Page 26: Topic 1 - Systems

Topic 1 - ModelsIB Topic 1.1.10

Page 27: Topic 1 - Systems

Models A model can be

any representation of a real system.

Ex: Aquarium Diagram Computer Model

Page 28: Topic 1 - Systems

Models Advantages Disadvantages