Environmental Systems & Societies SL
Environmental Systems & Societies SL
9
Chapters
219
Notes
Unit 1 - Foundations Of Environmental Systems & Societies
Unit 1 - Foundations Of Environmental Systems & Societies
Eco-Movement Milestones & Future Paths
Unlock Your Eco Vision: EVS Guide
Unveiling EVS: A Systems Approach Guide
Unpack ESS: Eco vs Techno Value Systems
Eco Values: Tech vs. Nature in Biodiversity
Unlocking Earth's Worth: Biosphere's True Value
Eco & Society Insights
Energy & Carbon Systems Explained!
Eco-Systems Unveiled: Open & Closed Secrets
Unraveling Eco Models: Secrets & Snags
Thermodynamics Simplified: Easy Science Guide!
Ecosystem Energy Dynamics Explained!
Model Myths Unraveled: ESS Insights
Unlock Eco-Systems: Open, Closed, Isolated
Ace IB ESS Exam: Models Unveiled!
Thermodynamics in ESS: Key Laws Explained
Energy Dynamics & Chains
Nature's Balance: Secrets of Eco Equilibrium
Balance: Secrets of Nature's Feedback
Unlocking Climate Secrets: Tipping Points
Eco Stability: Secrets & Strategies
Green Future: Sustain vs. Strain?
Nature's Marvels: Eco Goods & Services
Ecosystem Services Unveiled
5 Pillars of Thriving Societies
Eco-Insight: The MA Ecosystem Review
Eco Impact 101: IB ESS Study Guide
Savor the Environment: Less Pollution!
Clearing the Haze: Point vs Non-Point Pollution
Eco Hazards: POPs & Pollution Impacts
Pollution's Impact: Acute vs. Chronic
Pollutant Showdown: Heroes & Villains
Nitrates' Ripple Effect: Ecosystem to Hydrosphere
Pollution Control: A 3-Step Guide
DDT Debate: Savior or Curse?
Eco-Basics: Species, Habitat & Niche
Ecology's Wild Side: Habitats & Niches
Unlocking Nature's Secrets: Abiotic Factors
Eco-Drama: The Biotic Factors Tale
Eco-Dynamics: Predators & Prey Balance
Plant-Eater Facts: Eco Thrills & Spills!
Thriving Together: The Magic of Mutualism
Disease Dynamics & Population Impact
Eco-Battle: Survival in Scarce Resources
Max Pop Support: Eco-Capacity Explained
Nature's Network: Ecosystems Unveiled
Unveil Life's Energy Secrets: Respiration & Photosynthesis
Secrets of Nature's Powerhouses
Food Chain Secrets: Ecology Unveiled
Eco-Impact Deep Dive: Humans & Nature
Unit 2 - Ecosystems & Ecology
Unit 2 - Ecosystems & Ecology
Unit 3 - Biodiversity & Conservation
Unit 3 - Biodiversity & Conservation
Unit 4 -Water & Aquatic Food Production Systems & Societies
Unit 4 -Water & Aquatic Food Production Systems & Societies
Unit 5 - Soil Systems & Terrestrial Food Production Systems & Societies
Unit 5 - Soil Systems & Terrestrial Food Production Systems & Societies
Unit 6 - Atmospheric Systems & Societies
Unit 6 - Atmospheric Systems & Societies
Unit 7 - Climate Change & Energy Production
Unit 7 - Climate Change & Energy Production
Unit 8 - Human Systems & Resource Use
Unit 8 - Human Systems & Resource Use
Internal Assessment
Internal Assessment
IB Resources
Unit 1 - Foundations Of Environmental Systems & Societies
Environmental Systems & Societies SL
Environmental Systems & Societies SL

Unit 1 - Foundations Of Environmental Systems & Societies

Unlock Eco-Systems: Open, Closed, Isolated

Word Count Emoji
574 words
Reading Time Emoji
3 mins read
Updated at Emoji
Last edited on 5th Nov 2024

Introduction

To understand how the environment functions, we often look at it as a 'system'. A system is essentially a group of interacting, interrelated, or interdependent elements forming a complex whole. In Environmental Systems and Societies, we categorize these systems as open, closed, or isolated, based on how they exchange matter and energy with their surroundings.

Open systems

An open system exchanges BOTH matter and energy with its surroundings.

 

Real-World Example: A Lake Ecosystem
Consider a lake: it's like a bustling city of organisms! Fish, algae, insects and even the microorganisms - everyone's busy exchanging materials and energy. Water and nutrients flow into the lake from streams or groundwater, and organisms use sunlight (energy) to photosynthesize. Fish may swim out, birds may fly in, water evaporates - this place is always interacting with the world around it. It's like a constant party where guests (matter and energy) are always arriving and leaving!

Closesd systems

Now, think about a party where people can't enter or leave, but they can still talk and text with friends outside. This is a closed system! It can exchange energy but not matter with its surroundings.
 

Real-world example Our home planet, Earth! ๐ŸŒŽ It's pretty much a giant party floating in space. Energy, like sunlight, can enter, and energy, like heat, can leave. But generally, matter stays where it is (except for a few lightweight gases like helium escaping or a few spacecrafts we occasionally send out).

Isolated systems

This is like a party happening in a vault! No one can get in or out, and no communication is allowed with the outside world. In an isolated system, neither matter nor energy is exchanged with the surroundings.


Real-world example -The Universe ๐ŸŒŒ is a pretty classic example of an isolated system (as far as we know). It doesn't interact with anything else because, well, there's nothing else out there!

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IB Resources
Unit 1 - Foundations Of Environmental Systems & Societies
Environmental Systems & Societies SL
Environmental Systems & Societies SL

Unit 1 - Foundations Of Environmental Systems & Societies

Unlock Eco-Systems: Open, Closed, Isolated

Word Count Emoji
574 words
Reading Time Emoji
3 mins read
Updated at Emoji
Last edited on 5th Nov 2024

Introduction

To understand how the environment functions, we often look at it as a 'system'. A system is essentially a group of interacting, interrelated, or interdependent elements forming a complex whole. In Environmental Systems and Societies, we categorize these systems as open, closed, or isolated, based on how they exchange matter and energy with their surroundings.

Open systems

An open system exchanges BOTH matter and energy with its surroundings.

 

Real-World Example: A Lake Ecosystem
Consider a lake: it's like a bustling city of organisms! Fish, algae, insects and even the microorganisms - everyone's busy exchanging materials and energy. Water and nutrients flow into the lake from streams or groundwater, and organisms use sunlight (energy) to photosynthesize. Fish may swim out, birds may fly in, water evaporates - this place is always interacting with the world around it. It's like a constant party where guests (matter and energy) are always arriving and leaving!

Closesd systems

Now, think about a party where people can't enter or leave, but they can still talk and text with friends outside. This is a closed system! It can exchange energy but not matter with its surroundings.
 

Real-world example Our home planet, Earth! ๐ŸŒŽ It's pretty much a giant party floating in space. Energy, like sunlight, can enter, and energy, like heat, can leave. But generally, matter stays where it is (except for a few lightweight gases like helium escaping or a few spacecrafts we occasionally send out).

Isolated systems

This is like a party happening in a vault! No one can get in or out, and no communication is allowed with the outside world. In an isolated system, neither matter nor energy is exchanged with the surroundings.


Real-world example -The Universe ๐ŸŒŒ is a pretty classic example of an isolated system (as far as we know). It doesn't interact with anything else because, well, there's nothing else out there!

Unlock the Full Content! File Is Locked Emoji

Dive deeper and gain exclusive access to premium files of Environmental Systems & Societies SL. Subscribe now and get closer to that 45 ๐ŸŒŸ

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