Answer:
<h3>He needs 5 more months of savings for him to reach his goal. </h3>
Explanation:
Given the equation that models Damon's saving plan as y = 500 + 400x where x represents the number of months since last week and y represents the total amount he's saved for the vacation. Since he estimates that he'll need about $2,500 for the trip, therefore y = $2,500.
In order to determine how many more months of saving (x) it will take to reach his goal, the following steps must be taken by Damon (Damon true statements)
Step 1:
y = 500 + 400x
Step 2: Subtract 500 from both sides
y - 500 = 500 + 400x - 500
y-500 = 400x
Step 3: Substitute y = $2500 into the resulting equation and solve for x
400x = 2500-500
Step 4: Take the difference of the value at the right hand side of the equation
400x = 2000
Step 5: Divide both sides by the coefficient of x (i.e 400)

Step 6: Get the value of x
x = 5
Inorganic compounds if they are considered semiconductors contain 4 valence electrons.
Inorganic compounds that semiconductors tend to have a mean of 4 valence electrons and their conductivity may be increased by using doping. Insulators have a much larger band gap than semiconductors. Examples of inorganic compounds include salts, minerals, acids, and metals. Examples of programs of inorganic chemistry consist of designing pills, batteries, electronics, and cleansing merchandise.
A semiconductor is made from a non-carbon primarily based fabric which includes silicon, gallium, or arsenide. Inorganic semiconductors are utilized in all common sense and memory chips. comparison with organic semiconductors.
The inorganic semiconductors are primarily based on solid-state structures of group III, IV, and V elements and metal oxides/chalcogenides, the organic semiconductors are π-conjugated carbon-based molecular/polymeric structures that are sure through relatively weak intermolecular interactions.
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Answer:
Tunneling nanotubes.
Explanation:
Tunneling nanotubes refer to certain very thin and elongated tubules that emerge from the membrane of a cell and allows it to connect and communicate with other neighboring cells over relatively long distances. Because of their very small size, tunneling nanotubes were only discovered until 1999, and their role in cell communication is still not fully understood. It is known that they're capable of transmitting and conducting cell-surface proteins, cytoplasmic vesicles and calcium signals between cells. However, they can also act as vectors for viruses such as HIV.
American Troops is your answer c: