Answer:
1. heterozygous
2.homozygous
Explanation:
hope this helps!!! ( i am really sorry if i get the second one wrong im not sure if its homozygous but i think it is) have a wonderfull day!
b) the speed at which phototrophs make organic matter
c) how energy moves from organism to organism
d) how producers carry out photosynthesis
the arrows in a food chain represent how energy moves from organism to organism
option C is correct.
In a food chain, the arrows represent the flow of energy from one organism to another. The direction of the arrows shows the transfer of energy as one organism is consumed by another.
The food chain illustrates the feeding relationships between different organisms in an ecosystem, showing who eats whom and how energy is passed along the chain.
Grass (producer) → Rabbit (primary consumer) → Fox (secondary consumer)
In this example, the arrow from grass to rabbit indicates that the rabbit obtains energy by consuming the grass. Similarly, the arrow from the rabbit to the fox shows that the fox gets its energy by consuming the rabbit. The arrows represent the flow of energy through the ecosystem, as each organism transfers energy to the next link in the chain when it is consumed.
Learn more about food chain at:
#SPJ6
(b) muscle tissue in animals
(c) nervous tissue in animals
Grade 8 Science
Answer: Osmosis
Explanation:
Osmosis is a type of simple diffusion in which water molecules diffuse through a selectively permeable membrane from areas of high water concentration to areas of lower water concentration.
Like rods, each cone cell has an outer segment, an inner segment, a cell body, and a synaptic terminal. The outer segment consists of the numerous membrane disks containing the photopigments. The inner segment contains the cell's endoplasmic reticulum, golgi apparatus, and mitochondria.
Answer : If we later run the same distance in less time, the speed will be increases.
Explanation :
First we have to calculate the speed.
Formula used :
Given:
Distance = 100 m
Time = 25 s
Now put all the given values in the above formula, we get:
From the formula we conclude that, the there is an inverse relationship between speed and time at constant distance.
As, the time increases, the speed will be decreases and vice-verse.
As per question, if we later run the same distance in less time, the speed will be increases.
Hence, if we later run the same distance in less time, the speed will be increases.