The movement of deep ocean currents is mainly caused by:?

Answers

Answer 1
Answer: The relationship between the density of ocean water and the formation of deep currents. Difference in the tempature and salinity and the resulting differences in density cause variations int he movement of deep currents. For example, the deepest current , The Antarctic Bottom Water, is denser than the North Atlantic Deep Water. Both currents spread across the ocean floor as they flow toward eachother. Because less dense water always flows on top of denser water, The north Atlantic Deep Water flows on top of the Atlantic Bottom Water when the currents meet.

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The muscular system and the skeletal system of the human body work together toA. allow movement.
B. perform respiration.
C. transport nutrients.
D. protect the integumentary system.

Answers

 A. Allow movement.  
Muscles connect to your skeleton and they contract and move the skeleton along. They help the process of movement happen in a smoother manner.
A. Because they connect together for movement of the body.

the image of a mountain can be seen on the surface of calm water. what property of light is demonstrated?

Answers

Answer:

It is Reflection of light from water surface

Explanation:

When light coming from the mountains incident on the stationary water surface then major proportion of light gets reflected from the surface of water and this will received by the observer eye.

We also know that when light beam gets reflected into the form of beam then it is known as regular reflection.

Here when water surface is calm then the surface is assumed to be plane and in this case the light gets reflected by the surface of water in same direction and we got a good image in the water.

So this property of image is due to reflection of light.

I say it's the regular reflection

What kind of friction exists between solid objects moving in water?static friction
sliding friction
rolling friction
drag

Answers

Answer:

Drag friction.

Explanation:

If you have a solid object, go through air, it experiences drag because the air molecules push back a tiny bit. This drag is enhanced because in water, the molecules are more resistant than air, that's why if you try to run in knee deep water, you experience much more drag than when you are running with your legs out of the water.

Global warming refers specifically to an increase in

Answers

I think it is C hope it helped

The answer is C. hope it helps

A kitten pushes a ball of yarn rolling toward it at 1.00 cm/s with its nose, displacing the ball of yarn 17.5 cm in the opposite direction in 2.00 s. What is the acceleration of the ball of yarn?

Answers

The problem is very unclear.  The way I understand it is like this: 
The yarn is rolling toward the cat, and from the instant the cat first touches
the yarn, it moves 17.5 cm 2 sec, in the direction opposite to the way it was
rolling.

Average speed during the 2 seconds after the bump = 17.5 / 2 = 8.75 cm/s .

Average speed = (1/2) (final speed away from the cat - 1 cm/sec towards the cat)

8.75 cm/s = (1/2) (final speed + 1)
Multiply each side by 2 :
17.5 = final speed + 1
Final speed = 16.5 cm/s

Acceleration = (change in speed) / (time for the change)

Acceleration = (16.5 + 1) / (20) = 0.875 cm/s² .


My confidence level in this one is not excessive, but I'll submit it anyway,
and somebody else can explain to me where I went wrong.



What ph must organisms maintain

Answers

Explanation:pH (7)

The degree of acidity or alkalinity (basic) is important in organisms. The body must constantly maintain a near neutral pH (7) in the blood and body tissues. To do this, the body produces buffers that can neutralize acids.

Final answer:

Organisms must maintain a specific pH level according to their biological requirements and environment. The majority of human body cells operate within a pH range of 7.2 to 7.6. Depending on their tolerances, microorganisms like neutrophiles, acidophiles, and alkaliphiles can thrive in varying pH levels.

Explanation:

In biological terms, the pH level is an important parameter that organisms need to maintain for survival and optimal functioning. Each type of organism has a different optimal pH range, often within a narrow window, depending on its biological requirements and environment.

Most cells in our bodies, for instance, operate within a pH scale ranging from 7.2 to 7.6. A deviation from this range could adversely affect the functioning of cells and proteins, potentially inducing coma or causing death.

Many microorganisms fall into categories like neutrophiles, acidophiles, or alkaliphiles, based on their optimal pH conditions. Neutrophiles, such as most bacteria, grow best at neutral pH close to 7.0. Acidophiles, on the other hand, grow best at a pH near 3.0, while alkaliphiles have an optimal pH range of 8 to 10.5.

These optimal pH values, minimum and maximum growth pH, cover a wide range, playing a significant role for microorganisms' survival and in food preservation. For example, the optimal growth pH of Salmonella spp. is between 7.0-7.5, but it can tolerate a minimum growth pH of around 4.2.

Extreme acidophiles and alkaliphiles can survive in astonishingly harsh conditions, with some acidophiles living at pH values near zero and alkaliphiles at pH levels around 13. However, conditions that are too acidic or alkaline could break down critical biological molecules like proteins and DNA, therefore posing substantial challenges for organisms' survival.

Learn more about Optimal pH for Organisms here:

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