Frozen water has less density than liquid water. How does this property of water affect life on earth?

Answers

Answer 1
Answer: I think that Ice is denser than water to regulates the life of an organism living in the ice that would capable of them in living there. There are called Thermophiles that lives in by the sulfuric vents at the bottom of the oceans and if ice would be at the bottom, they would survive their.
Answer 2
Answer:

Answer:

Water has various properties as frozen ice is less dense as 0.9340 g/cm cube compared to density of water at room temperature is 997 kg/m cube.

Explanation:

  • The dissolving effect of water is fundamental to life from son earth and it's due to this property of water that makes it more mobile and more elastic. As wherever water goes it carries with it the dissolved salts, nutrients and other chemicals that support life.
  • If water is at room temperature it can be used with other substances as to from compounds and give the desired results upon reacting with the various elements. As most liquids contract when they are cooled to ice forms that we have seen in glaciers the ice caps and polar landmasses have life frozen in freshwaters.
  • Ice can carry along with it various types of gases and rare earth that can be remained preserved inside the earth for years. Even earth core consists of liquid water which is itself a sign that life on earth is a result of the changing forms of water sphere on earth.

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Theory of macroeconomics dominated the Reagan administration.A. industrialization

B. socialism

C. stagflation

D. supply-side economics

Answers

Theory of macroeconomics which dominated the Reagan administration was supply-side economics. The answer to your question is D. I hope this is the answer that you are looking for and it comes to your help.

It is D supply side exonomics

PLEASE HELPPPfrom the illustration above classify #1
a: bird
b: fish
c: amphibian
d: insect
e: mollusk
f: mammal
g: reptile
h: none of these

Answers

The classifications of the below-illustrated organisms are as follows:

  • #1 = Reptile.
  • #2 = Mammal.
  • #3 = Bird.
  • #4 = Amphibian.

What are the characteristics of Reptiles?

The characteristics of reptiles are as follows:

  • They perform locomotion through crawling or creeping mode.
  • They are mostly terrestrial animals.
  • Their body is covered by dry and cornified skin.
  • They do not possess external ear openings.
  • Their heart is typically three-chambered, but exceptionally crocodiles have a four-chambered heart.

Mammals are mammary glands in order to feed their young ones. Amphibians have the ability to live in both water and terrestrial habitats. They have two pairs of limbs. The Body is divisible into the head and trunk.

Birds are classified into the category of Aves. The presence of feathers is one of the most important characteristics of this type of classification.

Therefore, the classifications of the below-illustrated organisms are mentioned above very briefly.

To learn more about Reptiles, refer to the link:

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Answer:

#1 is a reptile

Explanation:

I’m pretty sure only reptiles have scales

Strawberry plants reproduce by using _____.

Answers

They use their stolon or as other people call it, their runner. They do it asexually.
the reproduce by using strawberry's their use there stolons.

A dependent variable isa. directly changed by the experimenter.
b. manipulated by changes to the independent variable.
c. a variable that is kept constant.
d. a variable that is used as a control

Answers

b.

a dependent variable depends on the independent variable

a dependent variable depends on the independent variable

The location of the neritic zone is determined by ______(A) The productivity of the ecosystem

(B) The average water temperature

(C) The amount of sunlight

(D) The location of the continental shelf

Answers

the answer is D. 
hope it helps:)
D. the location of the continental 
shelf 

Give 3 differences between autotrophs and heterotrophs?

Answers

Answer:

Autotrophs -

Autotrophs prepare their own food by the process called photosynthesis or by some other raw materials or Energy. Autotrophs are also known as producers.

Some examples of Autotrophs are :

  • Plants
  • Fungi
  • Bacteria

Heterotrophs -

Heterotrophs can not prepare their own food and they depends upon autotrophs. Heterotrophs are also known as consumers.

Some examples of Heterotrophs are :

  • Humans
  • Birds
  • Dogs

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Final answer:

Autotrophs and heterotrophs differ in their energy source, nutritional mode, and carbon source. Autotrophs can produce their own food through photosynthesis or chemosynthesis, while heterotrophs rely on consuming other organisms for energy.

Explanation:

Autotrophs and heterotrophs are two types of organisms that differ in how they obtain energy. Here are three key differences between them:

  1.  
  2. Energy Source: Autotrophs can convert sunlight or inorganic compounds into energy through photosynthesis or chemosynthesis, respectively. This means they can produce their own food. Heterotrophs, on the other hand, obtain energy by consuming organic matter. They rely on consuming other organisms for their energy needs.
  3.  
  4. Nutritional Mode: Autotrophs are capable of synthesizing their own organic compounds, including carbohydrates, proteins, and lipids. They can produce these essential molecules through metabolic processes. Heterotrophs, however, rely on consuming preformed organic compounds for their nutritional needs. They cannot synthesize these molecules on their own.
  5.  
  6. Carbon Source: Autotrophs utilize carbon dioxide from the atmosphere or dissolved in water as their carbon source for photosynthesis. They convert this carbon dioxide into organic compounds. Heterotrophs, on the other hand, obtain their carbon from the organic compounds they consume. They break down these organic compounds to release energy.

Understanding these differences helps us appreciate the diverse ways in which organisms obtain and utilize energy.

Learn more about differences between autotrophs and heterotrophs here:

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