Answer:
<h3>The changes which take place in a long period of time are called slow changes whereas, the changes which take place in a short period of</h3><h3> time are called fast changes.</h3><h3>Examples:</h3><h3>(a) Rusting of iron, ripening of fruits, growing of trees are slow changes.</h3><h3>(b) Burning of paper, stretching of a rubber band, blowing of balloons, bursting of crackers are fast changes.</h3><h3 />
Explanation:
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When a yoruba sculptor created a human form, he or she made the head disproportionately large. The Yoruba is a west African tribe which is one of the finest artistic traditions in Africa. The arts of Yoruba are as numerous as their deities, and many objects are placed on shrines to honor the gods and the ancestors.
The biggest terrestrial mammals on Earth are African elephants. Their wider ears, which resemble the continent of Africa somewhat, help to distinguish them from their Asian kin. (Elephants in Asia have more compact, rounder ears.)
<h3>What are the large species of elephant?</h3>
Scientists have discovered that there are actually two species of African elephants, despite the fact that they were previously considered to be a single species. Both of these species are endangered.
While forest elephants are smaller creatures that dwell in the woods of Central and West Africa, savanna elephants are larger creatures that wander the plains of sub-Saharan Africa. Savanna elephants are classified as endangered by the International Union for the Conservation of Nature, whereas forest elephants are classified as severely endangered.
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Answer:
Water vapor. The most abundant greenhouse gas, but importantly, it acts as a feedback to the climate. Water vapor increases as the Earth's atmosphere warms, but so does the possibility of clouds and precipitation, making these some of the most important feedback mechanisms to the greenhouse effect.
Explanation:
Is any property that is measurable, whose value describes a state of a physical system. The changes in the physical properties of a system can be used to describe its transformations or evolutions between its momentary states.