Answer:
The one cell of a unicellular organism must be able to perform all the functions necessary for life. These functions include metabolism, homeostasis and reproduction. Specifically, these single cells must transport materials, obtain and use energy, dispose of wastes, and continuously respond to their environment.
Answer: A. Julie loves chicken noodle soup, but her cold is making it taste bland.
Sensory interaction is the interaction among various sense organs of the body. It depicts how one sense organ influence the response from other sense organ. Taste and smell are examples of senses which are dependent on each other and can influence the response generated by external stimuli. For example, food tastes are bland when a person is not able to inhale it's smell. Julie loves chicken noodle soup, but her cold is making it taste bland. Here, the taste of noodle depends upon smell of food as, Julie is not able to inhale the smell of food therefore, the taste is bland. Hence, this illustrates the best example for sensory interaction.
Answer:
to get the breast milk flowing
Explanation:
Some women have difficulty to let-down their milk. In such cases, oxytocin nasal spray is prescribed to help bring about let-down of breast milk
b. monomer.
c. disaccharide.
d. polysaccharide.
Glucose is a monomer, a molecule that can join together with other molecules to form a larger structure such as a polymer or polysaccharide.
Glucose is classified as a monomer. In the context of biochemistry, a monomer is a molecule that can join together with other molecules to form a larger complex, known as a polymer. Examples of polymers include proteins, nucleic acids, and polysaccharides. However, glucose itself is a simple sugar and acts as a building block for these larger structures. As such, it is a monomer, not a polymer or a polysaccharide. It is also not a disaccharide, which is a sugar composed of two monomers, such as sucrose (a disaccharide made of glucose and fructose).
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If the rate of photosynthesis significantly increased, More glucose and oxygen would be produced: Photosynthesis produces glucose and oxygen as byproducts. If the rate of photosynthesis significantly increased, more glucose and oxygen would be produced.
The rate of photosynthesis refers to the amount of carbon dioxide that a plant can convert into organic compounds, such as sugars and starches, per unit of time through the process of photosynthesis. If the rate of photosynthesis significantly increased then:
Carbon dioxide levels would decrease: Photosynthesis uses carbon dioxide from the atmosphere as a reactant. If the rate of photosynthesis significantly increased, carbon dioxide levels in the atmosphere would decrease.
Oxygen levels would increase: As mentioned earlier, photosynthesis produces oxygen as a byproduct. If the rate of photosynthesis significantly increased, oxygen levels in the atmosphere would increase.
The plant would grow faster: Photosynthesis provides energy to the plant, which it uses to grow. If the rate of photosynthesis significantly increased, the plant would have more energy available and would be able to grow faster.
To know more about photosynthesis:
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adhesion.
B)
cohesion.
C)
buoyancy.
D)
capillary action.
Answer:
The answer is cohesion.
Explanation: