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H₂O on the go, the water cycle – introduction

Earth is called the blue planet due to the abundance of water. About 70% of the surface of the Earth is covered by water, and it is the only natural substance that can be found on Earth in all three states – liquid, solid and gas. Due to this unique property, water can be found just about everywhere.

Liquid, solid and gas

Rivers, groundwater, lakes, the world’s five oceans and rain represent the liquid phase of water.

Dynamic and complex: the global water cycle

Water in the Earth system is influencing all aspects of life on Earth. Pathways, storage, transfers and transformations have an effect on the global climate and human welfare. Within this interactive 4 scientists talk about some of the complex aspects of the water cycle.
    
To use this interactive, move your mouse or finger over any of the labelled boxes and click to obtain more information.

Rights: University of Waikato

In its gaseous state, water vapour is evaporated by the Sun’s solar radiation from the surface of water bodies like oceans or lakes, and from the surface of plants and the land. Water vapour can also evaporate directly from its frozen state.

Snow and ice represent the solid form of water and can be found in the Earth’s polar icecaps and on top of high mountains. Some of the snow and ice melts and turns into liquid water. In the polar regions, ice can stay frozen for thousands of years.

Only a small amount of the total amount of water (about 0.3%) is directly useable for human consumption.

Water’s journey

Measuring temperature, oxygen and algal concentrations in water

David Hamilton testing water

Professor David Hamilton measures temperature, oxygen and algal concentrations in the water. When David studies lakes in New Zealand, he needs to think about where the water came from before it entered a lake and what influences the land around the lake has on water quality.

Rights: Professor David Hamilton

If you leave some water on a saucer by a window, it will eventually evaporate. This happens only if there is enough thermal (heat) energy available for the water molecule to vibrate so vigorously that the molecules ‘break’ out of their liquid structure and turn into a gas.

But why do the oceans not dry up? In fact, most of the evaporation occurs from ocean water. Much of the evaporated water rains back into the oceans again. Some falls on the land surface and might spend some time on there as ice, snow, groundwater or in streams, or it may be stored in lakes before it returns back to sea.

Earth’s system

In this video, 4 New Zealand scientists – Dave Campbell, Louis Schipper, David Hamilton and Keith Hunter – talk about how the water cycle is part of Earth’s system. They point out that Earth’s system consists of 4 subsystems – the geosphere, hydrosphere, atmosphere and biosphere – which all interact with each other.

In the past, scientists used to think of Earth’s subsystems as working in isolation. In recent times, however, they have realise how important one system is to another.

When you watch this video, note when the scientists draw attention to where systems overlap. (Dave Campbell is talking about the biosphere extending into the atmosphere and geosphere.)

Jargon alert
Paradigm – a set of concepts or models.

Rights: The University of Waikato

This journey is called the hydrological cycle. It describes the exchange of water in every form between the Earth’s systems and is part of what makes the Earth so unique.

Meet the scientists

David Hamilton, Louis Schipper, Dave Campbell and Keith Hunter are New Zealand scientists who each study one aspect of the hydrological cycle. In their studies, they need to consider the Earth as a whole, dynamic and interacting system.

Take up the challenge

The Hub has a number of activities that model aspects of the water cycle.

Other teaching resources include:

Question bank

The H₂O on the go, the water cycle – question bank provides an initial list of questions the water cycle and places where their answers can be found. The questions support an inquiry approach.

Key terms

For explanations of key concepts, see H2O on the go – key terms.

Timeline

Explore the timeline to look at events in our water cycle from millions of years ago to the present.

Related content

Observing water introduces our Material World resources for NZ Curriculum levels 1 and 2 that explore the characteristics of solids, liquids, gases and bubbles by observing water and its unusual properties.

Published: 28 May 2009