Zanzibar Education Panel

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There is no single solution to global warming, which is primarily a problem of too much heat-trapping carbon dioxide (CO 2 ), methane and...

Discuss the solutions to Global Warming

There is no single solution to global warming, which is primarily a problem of too much heat-trapping carbon dioxide (CO2), methane and nitrous oxide in the atmosphere. The technologies and approaches outlined below are all needed to bring down the emissions of these gases by at least 80 percent by mid-century. To see how they are best deployed in each region of the world, use the menu at left. The solutions to Global Warming includes:
1. Boosting energy efficiency: The energy used to power, heat, and cool our homes, businesses, and industries is the single largest contributor to global warming. Energy efficiency technologies allow us to use less energy to get the same or higher level of production, service, and comfort. This approach has vast potential to save both energy and money, and can be deployed quickly.
 
2. Greening transportation: The transportation sector's emissions have increased at a faster rate than any other energy-using sector over the past decade. A variety of solutions are at hand, including improving efficiency (miles per gallon) in all modes of transport, switching to low-carbon fuels, and reducing vehicle miles traveled through smart growth and more efficient mass transportation systems.
 
3. Revving up renewables: Renewable energy sources such as solar, wind, geothermal and bioenergy are available around the world. Multiple studies have shown that renewable energy has the technical potential to meet the vast majority of our energy needs. Renewable technologies can be deployed quickly, are increasingly cost-effective, and create jobs while reducing pollution.
 
4 .Phasing out fossil fuel electricity: Dramatically reducing our use of fossil fuels especially carbon-intensive coal is essential to tackle climate change. There are many ways to begin this process. Key action steps include: not building any new coal-burning power plants, initiating a phased shutdown of coal plants starting with the oldest and dirtiest, and capturing and storing carbon emissions from power plants. While it may sound like science fiction, the technology exists to store carbon emissions underground. The technology has not been deployed on a large scale or proven to be safe and permanent, but it has been demonstrated in other contexts such as oil and natural gas recovery. Demonstration projects to test the viability and costs of this technology for power plant emissions are worth pursuing.
 
5. Managing forests and agriculture: Taken together, tropical deforestation and emissions from agriculture represent nearly 30 percent of the world's heat-trapping emissions. We can fight global warming by reducing emissions from deforestation and forest degradation and by making our food production practices more sustainable.
 
6. Exploring nuclear: Because nuclear power results in few global warming emissions, an increased share of nuclear power in the energy mix could help reduce global warming but nuclear technology poses serious threats to our security and, as the accident at the Fukushima Diaichi plant in Japan illustrates to our health and the environment as well. The question remains: can the safety, proliferation, waste disposal, and cost barriers of nuclear power be overcome?
 
7. Developing and deploying new low-carbon and zero-carbon technologies: Research into and development of the next generation of low-carbon technologies will be critical to deep mid-century reductions in global emissions. Current research on battery technology, new materials for solar cells, harnessing energy from novel sources like bacteria and algae, and other innovative areas could provide important breakthroughs.

. Weathering refers to a processes where by rocks disintegrate into small particles due to the agents of weathering such as water, ice, w...

Discuss the factors that influences weathering

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Weathering refers to a processes where by rocks disintegrate into small particles due to the agents of weathering such as water, ice, wind, wave, etc. The process results from the forces of weather, that is, changes in temperature, frost action and rain action.The factors which incluences the weathering process includes:

1. Climate;Different areas with different climatic elements experience different types of weathering e.g. block disintegration are experienced in arid areas while frost action is experienced in temperate regions and mountainous regions of tropics.

2. Topography; Weathering is faster on steep slopes than on gentle slopes because weathered material is washed away quickly exposing the rock once again to agents while on gentle slopes materials remain in one position shielding the rock from weathering agents.

3 Nature of rocks; Dark coloured rocks absorb more heat than light coloured ones hence break faster due to excessive expansion and contraction. A rock with different minerals may disintegrate faster due to differential expansion and contraction of minerals.
A well jointed rock will break faster because physical and chemical agents can penetrate faster e.g. by freezing and thawing. Fine textured rocks have a large surface area on which chemical processes can act e.g. Limestone.

4.Biological organisms; Bacteria facilitate rotting of organic matter producing organic acids which reacts with some minerals causing the rock to break up.
Plant roots and burrowing animals penetrate rocks resulting in cracks providing passage for agents such as water to act on rocks.  People accelerate the rate of weathering by exposing rocks buried deep below by digging, blasting and drilling.