Answer: The correct answer is Plantae kingdom.
A cell with chloroplast and a cell wall made of cellulose would likely belong to plantae kingdom. This is because cell wall of plants is primarily made up of cellulose, which is a carbohydrate that provides rigidity to the cell wall.
Chloroplast is a specialized membrane bound organelle present in green plants and algae. It is the site of synthesizing food through photosynthesis.
Thus, Plantae kingdom is the right answer.
Answer:
The potential energy is 50 joules, 75 joules and 100 joules
Explanation:
Potential energy is the energy stored in an object by virtue of its position relative to others objects. For example a heavy ball placed at an elevated position.
The potential energy is given as:
Where is the potential energy of the object, m is the mass of the object, h is the height in which the object is placed and g is the acceleration due to gravity.
For 1.0 meters:
m = 5.0 kg g = 10 m/s² h = 1 meters
The potential energy is 50 joules
For 1.5 meters:
m = 5.0 kg g = 10 m/s² h = 1.5 meters
The potential energy is 75 joules
For 2.0 meters:
m = 5.0 kg g = 10 m/s² h = 2 meters
The potential energy is 100 joules
a. They can cross Yummious letus with a fungus to stimulate protein synthesis.
b. They can take mutant fungal DNA and insert it into Yummious letus
c. They can add DNA from Bigous moldkillae into the soil around Yummious letus.
d. They can insert the gene for the protein from plant species Bigous moldkillae into a chromosome in Yummious letus.
Answer:
The correct option is D) They can insert the gene for the protein from plant species Bigous moldkillae into a chromosome in Yummious letus.
Explanation:
Biotechnology can be described as the technology in which the genome of organisms are altered so that organisms with better qualities can be produced. In the scenario discussed in the question, techniques of biotechnology can be used to insert the fungus-killing gene of Bigous moldkillae into the genome of the Yunnious letus. In this way, the Yunnious letus species will become resistant to the fungal infections.