What is causing the loss of wetlands?

Answers

Answer 1
Answer: Humans are causing the loss of wetlands
Answer 2
Answer: Urbanization, Mining, boats, and industries.

Related Questions

The above picture represents the different stages a cell goes through in its "lifetime." Specific genes within the DNA, called inhibitors, stop the cell cycle in G1 phase. This process helps to keep the DNA unaltered and the cells dividing at the correct rate. If cells continue through the cell cycle, uncontrolled, _________ may likely develop.
Which of these implants itself into the wall of the uterus during pregnancy?
Research indicates that dreaming may be responsible for inspiring creativity by __________.A. stimulating beta waves, which are responsible for waking brain activity B. rehearsing the daily activities for which one may need preparation C. allowing for the emergence of old data in useful, new patterns D. giving the brain long periods of rest where it is not overworked
In what way do the particular proteins in our bodies depend on our DNA.
What bone protects your brain?​

Compare and contrast carbohydrates and proteins.Describe the function of each macromolecule.
Explain one way they are the same and one way they are different.

Answers

Carbohydrates and proteins are two types of macromolecules that play critical roles in living organisms.

How carbohydrates are made?

Carbohydrates are organic molecules made up of carbon, hydrogen, and oxygen atoms. They are primarily used as a source of energy for the body, but they also serve other functions such as structural support, cell signaling, and cell recognition. Some examples of carbohydrates include sugars, starches, and fibers.

Proteins, on the other hand, are organic molecules made up of amino acids. They have a wide range of functions, including structural support, enzyme catalysis, transport, storage, communication, and defense.

One way that carbohydrates and proteins are similar is that they are both macromolecules that are essential to life. They are both made up of smaller building blocks - monomers - that are linked together through chemical bonds to form more complex structures.

One way that carbohydrates and proteins are different is that their functions are distinct. While carbohydrates are primarily used as a source of energy, proteins have a wide range of functions that are critical to the structure and function of the body.

In summary, carbohydrates and proteins are both important macromolecules with distinct functions. Carbohydrates are primarily used as a source of energy, while proteins have a wide range of functions critical to the structure and function of the body. While they share similarities as macromolecules, their functions are distinct and serve different purposes in the body.

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Answer:

1.Carbohydrates are used for energy (glucose). Fats are used for energy after they are broken into fatty acids. Protein can also be used for energy, but the first job is to help with making hormones, muscle, and other proteins. Broken down into glucose, used to supply energy to cells.

2.Nucleic acids: Stores and transfers info. Carbohydrates; Store energy, provide fuel, and build structure in body, main source of energy, structure of plant cell wall. Lipid: Insulator and stores fat and energy. Protein: Provide structural support,transport, enzymes, movement, defense.

Explanation:

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HELP ME PLEASE!! THIS IS A TEST!!! PLEASE!!!Stuart is listing the changes to matter and energy that occur during the process of photosynthesis which of these examples should he include in his list?

A.) changes in chemical energy converts carbohydrates into smaller molecules
B.) changes in light energy convert chemical energy stored in carbohydrates
C.) changes that convert chemical energy into heat and light
D.) changes in nuclear energy converts hydrogen and oxygen into carbon
PLEASE AND THANK YOU!!!! HELP MEEE!!!​

Answers

the answer would be C. None of the other answers choices have anything to do with photosynthesis

The main function of _____ tissue is communication between different parts of the body.connective
epithelial
nervous
muscular

Answers

Neevous tissue bevause the brain sends signals around the body

Answer:

nervous

Explanation:

The nervous tissue is one of the four basic tissues of the organism, it is formed by two types of cellular elements, it represents the fundamental component of the structures and organs that make up the nervous system. The main function of the nervous tissue is to capture internal and external stimuli and transform them into nerve impulses. All modifications of the external or internal environment and sensory stimuli such as temperature, pressure, light, sounds and taste, among others, are detected, examined and transmitted by nerve cells. On the other hand, the nervous tissue is in charge of coordinating the motor, glandular, and visceral functions of the individual.

Hemophilia is a recessive disorder found on the X chromosome of males abd females. Patricia is a healthy carrier of hemophilia and Sam is completely healthy. Compete the Punnett squre below.

Answers

XH Xh (carrier)
___________

XH / XHXH XHXh (carrier)

Y /XHY XhY (has hemophilia)
(healthy)

X represents the X chromosome and Y represents the Y chromosome which males have. H represents the dominant trait (healthy) and h represents the recessive (hemophilia)

What does the right hemisphere of the brain control?

Answers

Answer:

The right hemisphere controls the left side of the body and our creativity.

Explanation:

The right hemisphere coordinates the left side of the body, and performs tasks that have do with creativity and the arts.

The left side of the brain is responsible for controlling the right side of the body and controls the way we think logically.

Final answer:

The right hemisphere of the brain primarily controls the left side of the body and is often associated with spatial and nonverbal reasoning. It's important to note, however, that the brain functions as a whole unit and most functions are distributed globally around the cerebrum.

Explanation:

The right hemisphere of the brain primarily controls the left side of the body. It plays a significant role in spatial and nonverbal reasoning, arousal, negative emotions, and pitch perception. Language processing, a task typically associated with the left hemisphere, can cross over to the right hemisphere via the corpus callosum, which bridges the two hemispheres together.

While the left hemisphere tends to be dominant in language functions in about 95% of the population, it must be noted that the brain functions as a whole and most of its functions are globally distributed. Misconceptions of people being 'right-brained' or 'left-brained' oversimplify the complex nature of the cerebral hemispheres.

In certain cases of intractable epilepsy, the corpus callosum is surgically severed as a treatment option, resulting in 'split-brain' patients. These patients highlight the roles of the individual hemispheres as we observe their behaviors and abilities post-surgery.

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Arrange the following terms in order of increasing specialization: oligopotency, pleuripotency, unipotency, multipotency.

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