Which of the following is not a way that oil production could potentially affect aquatic viability?

Answers

Answer 1
Answer: Since you have not presented any choices that would tell us which is NOT a way that oil production could potentially affect aquatic viability, I'll just go ahead and answer what are ways that oil could affect aquatic viability.

-Offshore drilling contaminates and disturbs habitats of aquatic creatures
-Transport of oil across seas or oceans might lead to oil spill
-Waste products from energy factories using oil still would disturb habitat

Answer 2
Answer:

answer: c- interruption of water flow


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Two cars start from rest at a red stop light. When the light turns green, both cars accelerate forward. The blue car accelerates uniformly at a rate of 5.8 m/s2 for 3.3 seconds. It then continues at a constant speed for 9.8 seconds, before applying the brakes such that the car’s speed decreases uniformly coming to rest 255.79 meters from where it started. The yellow car accelerates uniformly for the entire distance, finally catching the blue car just as the blue car comes to a stop.3)How far does the blue car travel before its brakes are applied to slow down?

Water moves from Earth's surface to the atmosphere and back to Earth's surface again in a process known as the water cycle. Which of the following is the major form of energy driving the water cycle?A. nuclear energy
B. geothermal energy
C. solar energy
D. chemical energy

Answers

That's heat from the sun, which evaporates the water. (Choice-C)

Answer:

That's heat from the sun, which evaporates the water. (Choice-C)

Explanation:

Scientists studying a region in southern Florida have noticed drastic changes in the availability of freshwater. Which of the following probably did NOT contribute to these changes? A. Several years of declining rainfall B. Decrease in the population of pond plants C. Building of new homes in the area D. Construction of a dam on the local river

Answers

Answer:

C. Building of new homes in the area

I'm not totally sure but I think this is the best answer.

Describe how Rutherford's experiments changed the accepted scientific model of the atom.I need to know ASAP Thanks

Answers

Rutherford's experiment conclude that: atoms are not solid, atoms are hollow and most of the space is vacuum and the positive charge in an atom is not spread evenly .

What is conclusion of  Rutherford's experiment?

Rutherford's observations lead him to draw the following conclusions:

  1. Most of the space in an atom is unoccupied since a significant portion of the -particles bombarded towards the gold sheet went through the sheet without any deflection.
  2. Because some of the -particles were somewhat deflected by the gold sheet, the positive charge in an atom is not spread evenly. An atom's positive charge is confined to a very small volume.
  3. Only a few of the -particles had deflection angles that were nearly 180 degrees, meaning that very few of the -particles were deflected back. As a result, in relation to the total volume of an atom, the positively charged particles' volume is extremely small.

Learn more about Rutherford's experiment here:

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Rutherford's model of the atom (ESAAQ) Rutherford carried out some experiments which led to a change in ideas around the atom. His new model described the atom as a tiny, dense, positively charged core called a nucleus surrounded by lighter, negatively charged electrons.

Which section of the graph represents negative acceleration?

Answers

The area between the 10 and the 12.
C, because it going down, which is negative and also it change in speed

What is the value of relative humidity when the air is saturated?​

Answers

Answer:

100 percent

Explanation:

Relative humidity is the water-vapour content of the air relative to its content at saturation. Saturated air, for example, has a relative humidity of 100 percent, and near the Earth the relative humidity very rarely falls below 30 percent.

6. A 73-kg woman stands on a scale in an elevator. Thescale reads 810 N. What is the magnitude and
direction of the elevator's acceleration?

A. 0.23 m/s2 up
B. 1.3 m/s2 up
C. 6.5 m/s2 down
D. 11 m/s2 down

Answers

The magnitude and direction of the elevator's acceleration would be 1.296 ms^(-2) \: upward

Given the Parameters :

  • Scale, reading, N = 810 N

  • Mass, m = 73 kg
  • Acceleration due to gravity, g = 9.8 m/s²

The Normalforce can be calculated using the relation :

N = mg + ma

N = m(g + a)

g + a = (N)/(m)

a = (N)/(m) - g

Substituting the Parameters into the equation :

a = (810)/(73) - 9.8

a = 11.0959 - 9.8

a = 1.296 ms^(-2)

Scale reading > weight of woman (73 × 9.8)

810 < 715.4 (acceleration will be upward)

Therefore, the acceleration of the elevator would be a = 1.296 ms^(-2) \: upward

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Answer:

b

Explanation:

n = m(g +a)

n= normal force (N)

m=mass (kg)

g=acceleration of gravity

a= acceleration of elevator

rearrange:

a= n/m - g

a= (810 N/73 kg) - 9.8 m/s ^2

a= 1.3 m/s ^2 up

and the acceleration is upwards bc her weight is less than the scale reading