The relationship between distance and gravity in this graph is inverseproportional.
In this graph, the relationship between distance and gravity is represented by an inverse proportional relationship. As the distance increases, the force of gravity decreases, and as the distance decreases, the force of gravity increases.
This can be explained by the inverse square law of gravitation. According to this law, the force of gravity between two objects is inversely proportional to the square of the distance between them.
For example, if the distance doubles, the force of gravity decreases to one-fourth of its original value. If the distance is halved, the force of gravity increases to four times its original value.
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B)Homologous chromosomes failed to separate, resulting in recombination.
C)Homologous chromosomes failed to separate, resulting in nondisjunction.
D)Homologous chromosomes failed to separate, resulting in independent
assortment
Answer:
The correct option is C) Homologous chromosomes failed to separate, resulting in non-disjunction.
Explanation:
Non- disjunction can be described as a phenomenon in which the chromosomes fail to separate during cell division, resulting in both the chromosomes being transferred to a single gamete.
Non- disjunction can occur in three types:
Answer:
c
Explanation:
The two components of a 5-methyluridine are thymine and ribose pentose sugar. Here thymine will joined with the ribose pentose sugar . Thymine is the nucleic acid . There are two types of nucleic bases . Purine and pyramidine . Hence purine comes under pyramidine. Thymine is represnted by T symbole.
The statement “Decomposers are those organisms that recycle matter in the ecosystem” describes decomposers. Decomposers are organisms that break down dead or decaying organisms, and in doing so, they carry out the natural process of decomposition.
Answer: Yes
Explanation: Peridot is indeed a real gemstone. It is a transparent green variety of the mineral olivine. Peridot is formed under specific geological conditions, typically in volcanic rocks known as basalt and in certain types of metamorphic rocks. Its vibrant green color is a result of iron content within the crystal structure.
Historically, peridot has been found in various locations around the world, including Egypt, Myanmar, and the United States (Arizona and Hawaii). It is a popular gemstone used in jewelry, and its color can range from a light, yellowish-green to a more intense, rich green.
Peridot is also known by other names such as "chrysolite" and "Olivine." As with any gemstone, the quality and value of peridot are determined by factors like color, clarity, size, and overall appearance. You can visit CabochonsForSale to explore its types and feature.