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Ionic bonding is the complete transfer of valence electron(s) between atoms. It is a type of chemical bond that generates two oppositely charged ions. In ionic bonds, the metal loses electrons to become a positively charged cation, whereas the nonmetal accepts those electrons to become a negatively charge
Conceptually, one can define three generations of renewables technologies, reaching back more than 100 years .
First-generation technologies emerged from the industrial revolution at the end of the 19th century and include hydropower, biomass combustion and geothermal power and heat. Some of these technologies are still in widespread use.
Second-generation technologies include solar heating and cooling, wind power, modern forms of bioenergy and solar photovoltaics. These are now entering markets as a result of research, development and demonstration (RD&D) investments since the 1980s. The initial investment was prompted by energy security concerns linked to the oil crises (1973 and 1979) of the 1970s but the continuing appeal of these renewables is due, at least in part, to environmental benefits. Many of the technologies reflect significant advancements in materials.
Third-generation technologies are still under development and include advanced biomass gasification, biorefinery technologies, concentrating solar thermal power, hot dry rock geothermal energy and ocean energy. Advances in nanotechnology may also play a major role.
Answer:
The diagram has no problem
Explanation:
Exactly correct
Answer:
The correct answer is : Released as the heat.
Explanation:
Exergonic reactions that are occurs on it own as there is no need of the energy to initiate these reactions whereas endergonic reactions requires some amount of the energy to initiate it and the required energy come from the exergonic reactions provide a large amount of energy in by breaking the bonds.
Endergonic reactions require less amount than that is released from that released from the exergonic reaction. The energy that is left is lost as the heat after consumed energy by endergonic reaction.
Thus, the correct answer is : Released as the heat.