Earth has many parts. 
Our world has many parts. 
Air and water move around the Earth. 
Water moves in a big loop. Sunlight turns water into mist. Then it falls as rain.
Ice and rocks are parts too. 
All these parts work together to make our weather.
Earth has a complex climate system. This system is made of five main parts. 

These parts work together. The Sun provides power for the system. 
Earth has a complex climate system. Climate is the average weather over a long time, usually 30 years. 
Energy from the Sun is the main engine for this system. 
Water moves through a process called the hydrological cycle. 
Chemical elements also move through the climate system in cycles. 
Humans can change how this system works. People burn fossil fuels, which releases carbon into the atmosphere. This creates more greenhouse gases. These gases allow sunlight in but block heat from leaving. This causes the surface temperature to rise. Humans also release cooling aerosols, but they have a smaller effect. 
The Earth's climate system is a massive, interconnected network of different parts. Climate is not just daily weather. It is the statistical characterization of the system, representing average weather patterns over long periods, typically 30 years. This system is driven by the movement of energy, water, and chemical elements. When these components interact, they determine the temperature and conditions of our planet. 
Energy from the Sun is the primary driving force for the entire system. The Sun provides more energy to the tropical regions than to the polar regions. This temperature difference creates a massive energy imbalance. To fix this, the atmosphere and oceans move heat from the equator toward the poles. In the atmosphere, warm air rises, flows poleward, and sinks as it cools. The rotation of the Earth diverts this moving air, creating distinct atmospheric cells. 
Ocean circulation also helps transport heat across the globe. One major process is the thermohaline circulation, which relies on differences in water density. Saltier water is denser and sinks, while warmer water moves to replace it. This movement is also influenced by wind and a process called upwelling. Upwelling brings colder water from deep below to the surface, which can cool the air above. The oceans cover 71% of the Earth's surface and hold much more heat than the atmosphere. 
The climate system consists of five main interacting components. The atmosphere is the layer of air surrounding the Earth, made mostly of nitrogen (78%), oxygen (21%), and argon (0.9%). The hydrosphere includes all liquid water, with most of it in the oceans. The cryosphere contains all frozen water, such as sea ice, snow, and ice sheets. The lithosphere is the Earth's rocky outer layer, including mountains that shape wind patterns. Finally, the biosphere includes all living things, from tiny phytoplankton to large plants. 
Water moves through the system via the hydrological cycle. Sunlight evaporates water from oceans and lakes, leaving salt and minerals behind. This evaporated freshwater eventually falls back to the surface as precipitation. This cycle is a major way energy moves through the climate. Plants also contribute through evapotranspiration, where they take up water and release it into the air. This process helps regulate how much water stays in the soil versus running into rivers.
Chemical elements also move through these components in biogeochemical cycles. The carbon cycle is vital because it controls greenhouse gases like carbon dioxide and methane. In the fast cycle, plants use photosynthesis to take carbon dioxide from the atmosphere. In the slow cycle, volcanoes release carbon from the Earth's crust through degassing. Rain can also dissolve rocks through weathering, which carries minerals into the sea. 
Human activities are significantly changing these natural cycles. Burning fossil fuels moves carbon from the lithosphere into the atmosphere. This increases the concentration of greenhouse gases. These gases allow visible sunlight to reach the surface but block infrared radiation from escaping. This process causes surface temperatures to rise. While humans also release cooling aerosols, the warming effect of greenhouse gases is much stronger.
Changes in the climate can happen through internal variability or external forcing. Internal variability includes natural shifts like the El Niño–Southern Oscillation. These can redistribute heat between the deep ocean and the atmosphere for years at a time. External forcing refers to changes from outside the system, such as variations in solar intensity or volcanic eruptions. When changes occur, they can trigger feedback processes. These feedbacks can amplify the original change, leading to cascading effects throughout the entire system.
🖼️ Images & Media (6)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.