Answer: Non-renewable energy comes from sources that will run out or will not be replenished in our lifetimes—or even in many, many lifetimes.
Most non-renewable energy sources are fossil fuels: coal, petroleum, and natural gas. Carbon is the main element in fossil fuels. For this reason, the time period that fossil fuels formed (about 360-300 million years ago) is called the Carboniferous Period.
All fossil fuels formed in a similar way. Hundreds of millions of years ago, even before the dinosaurs, Earth had a different landscape. It was covered with wide, shallow seas and swampy forests.
Plants, algae, and plankton grew in these ancient wetlands. They absorbed sunlight and created energy through photosynthesis. When they died, the organisms drifted to the bottom of the sea or lake. There was energy stored in the plants and animals when they died.
Over time, the dead plants were crushed under the seabed. Rocks and other sediment piled on top of them, creating high heat and pressure underground. In this environment, the plant and animal remains eventually turned into fossil fuels (coal, natural gas, and petroleum). Today, there are huge underground pockets (called reservoirs) of these non-renewable sources of energy all over the world.
Advantages and Disadvantages
Fossil fuels are a valuable source of energy. They are relatively inexpensive to extract. They can also be stored, piped, or shipped anywhere in the world.
However, burning fossil fuels is harmful for the environment. When coal and oil are burned, they release particles that can pollute the air, water, and land. Some of these particles are caught and set aside, but many of them are released into the air.
Burning fossil fuels also upsets Earth’s “carbon budget,” which balances the carbon in the ocean, earth, and air. When fossil fuels are combusted (heated), they release carbon dioxide into the atmosphere. Carbon dioxide is a gas that keeps heat in Earth’s atmosphere, a process called the “greenhouse effect.” The greenhouse effect is necessary to life on Earth, but relies on a balanced carbon budget.
The carbon in fossil fuels has been sequestered, or stored, underground for millions of years. By removing this sequestered carbon from the earth and releasing it into the atmosphere, Earth’s carbon budget is out of balance. This contributes to temperatures rising faster than organisms can adapt.
Answer:
atoms are neutral or they have equal number of proton and electron but ions can be cation(positively charged) or anion(negatively charged) based on the number of electron the atm lose and gain respectively
An atom is the smallest unit of matter, with a neutral charge. An ion, however, is an atom that has either gained or lost electrons, giving it a net positive or negative charge. The difference between an atom and an ion is thus primarily about their charge.
An atom is the fundamental unit of matter made up of protons, neutrons, and electrons. In a neutral atom, the number of electrons (which carry a negative charge) equals the number of protons (which carry a positive charge). This makes the overall charge of an atom neutral.
An ion, on the other hand, is an atom that has gained or lost electrons, thus it has a net charge, as the number of electrons does not equal the number of protons. Positive ions, or cations, form when an atom loses electrons, and negative ions, or anions, form when an atom gains electrons.
For example, the anion of chlorine is chloride, and the anion of sulfur is sulfide. The difference between an atom and an ion, therefore, lies primarily in their charge, stemming from the shift in the balance between their numbers of protons and electrons.
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Why can you only change 1 variable in an experiment??? #Science
B)2,1,1,2
C)3,2,1,4
D)1,2,2,1
Explanation:
According to the law of conservation of mass, mass can neither be created nor be destroyed. Thus the mass of products has to be equal to the mass of reactants. The number of atoms of each element has to be same on reactant and product side. Thus chemical equations are balanced.
Thus in the reactants, there are 2 atoms of hydrogen , 1 atom of oxygen and 4 atoms of flourine.Thus there will be atoms of hydrogen , 1 atom of oxygen and 4 atoms of flourine in the product as well.
Learn more about conservation of mass
Answer:
. If both parents have wavy hair, what is
the phenotype (and genotype) ratio for
their offspring?
A.3:1 (curly to straight)
B.All wavy haired offspring
C. 1:2:1 (curly: wavy: straight)
D.9:3:3:1
Explanation: