What is a disadvantage for organisms that reproduce asexually rather than sexually?
Responses
The offspring receive less genetic material.
The offspring receive less genetic material.
The offspring take more time to grow and develop.
The offspring take more time to grow and develop.
The offspring resemble the parent, which makes it difficult to distinguish them from each other.
The offspring resemble the parent, which makes it difficult to distinguish them from each other.
The offspring are genetically identical to each other, which reduces their ability to adapt to any changes in the environment.
Answer:
The offspring are genetically identical to each other, which reduces their ability to adapt to any changes in the environment.
Explanation:
If there was a disease (as an example) that negatively effected both organisms that reproduce asexually and sexually, the organisms that reproduce asexually would have a disadvantage. Offspring of the organisms that reproduce sexually contain the genetic material of both parents. This would lead to a higher chance of the ability to adapt to any changes, or even a chance of being immune to that disease. However, offspring of the organisms that reproduce asexually are only replicates of the parent. This means that the asexually produced offspring and the parent organism could be harmed more than the sexually produced offspring and parent organism. The organism would have reduced abilities to adapt according to the changes in the enviroment.
The major disadvantage for organisms that reproduce asexually is option 4 that the offspring are genetically identical to each other, which reduces their ability to adapt to any changes in the environment.
Asexual reproduction is a type of reproduction where only a single parent is involved in creating offspring. The offspring reproduced are genetically identical to the parent. while this form of reproduction has many advantages including rapid and quick reproduction, it posses some major drawbacks as well.
As the genetic diversity is absent in asexual reproduction, adapting and surviving in the dynamic environment is tough for the offspring. Difficulty in catching up with the changing circumstances can sometimes lead to harm to upcoming species.
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Which of the following equations follows the Law of Conservation of Mass?
2Na + Cl > NaCl
C + 4H2 > CH4
C2H4 + 3O2 > 2CO2 + 2H2O
3H2O > 3H2 + 3O2
Answer: C2H4 + 3O2 > 2CO2 + 2H2O
Explanation:
The law of conservation of mass has been given as the mass cannot be created nor be destroyed in a chemical reaction. The law of conservation of mass has equal weight of the reactants and the products.
The mass of following reactions can be given as:
28 g + 3(32)g = 2(44)g + 2(18)g Mass
124 g = 124 g
Thus, the reaction follows the law of conservation of mass.
12g + 4(2)g = 16g
20g = 16g
The reactant and product mass has not been equal, thus not follows the law of conservation of mass.
3(18) = 3(2) + 3(32)
54g = 102g
The reactant and product mass has not been equal, thus not follows the law of conservation of mass.
2(23) + 36.5 = 58.5 g
81.5g = 58.5g
The reactant and product mass has not been equal, thus not follows the law of conservation of mass.
The reaction that has been following the law of conservation of mass has been reaction 1. Thus, option 3 is correct.
Which of the following equations follows the Law of Conservation of Mass?
2Na + Cl > NaCl
C + 4H2 > CH4
C2H4 + 3O2 > 2CO2 + 2H2O
3H2O > 3H2 + 3O2
C2H4 + 3O2 > 2CO2 + 2H2O
The mass of the following reactions can be given:
28 g + 3(32)g = 2(44)g + 2(18)g Mass
124 g = 124 g
Thus, the reaction follows the law of conservation of mass.
The mass in an isolated system can neither be created nor be destroyed but can be transformed from one form to another.
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Answer:
A!
Explanation:
Answer:
A
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