What science was developed later which was found to support Darwin's theory?

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Answer 1
Answer:

The best answer would most likely be genetics or genetic theory.


There were many doubts about Darwin's theory because Darwin could not yet describe the mechanism of inheritance. Mendel's work on inheritance was already published, 2 years earlier, but this eluded Darwin. It was only till after Darwin's death that the science of genetics came about.


This union brought about the "modern synthesis," a theory that proposes that both genetics and natural selection is a result of evolutionary changes.


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What was Rudolf Virchows contribution to the cell theory?

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Answer:

Virchow is credited with several very important discoveries. His most widely known scientific contribution is his cell theory, which built on the work of Theodor Schwann. He was one of the first to accept the work of Robert Remak, who showed the origins of cells was the division of pre-existing cells.

Explanation:

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Answer:

Rudolf Virchow's most widely known scientific contribution is the cell theory, which built on the work of Theodor Schwann. He was one of the first to accept the work of Robert Remak, who showed the origins of cells was the division of pre-existing cells.

Explanation:

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Which characteristic do cyclones and anticyclones have in common?

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Cyclones and anticyclones are both air pressures caused by the Earth’s rotation.  They are rotating winds responsible for the weather conditions we experienced in a short or long period of time on a scale of days or weeks. 

Their one most common characteristic is their wind movement. They are both winds moving in a circular motion

Though we don’t often hear about anticyclones; however, it is the exact opposite of cyclones or ‘storms’.  

Their one most common characteristic is that they are both winds moving in a circular motion. They are rotating winds responsible for the weather conditions we experienced in a short or long period of time on a scale of days or weeks. 


Explain why multicellularity of an organism requires cell-to-cell communication.

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In a multicellular organism, it's important that the cells communicate to coordinate the activities of the organism as a whole and carry out certain functions. 

How might having the anther atop a tall filament make it more likely that plants will be pollinated?

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When the filament is tall, the anther is more exposed to different pollination agents. There are more chances that pollen grains stick on the animals' and insects' bodies or get blown by winds.

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Flowers are reproductive structures in charge of the plant's sexual reproduction.

There are feminine and masculine reproductive structures.

The masculine structures include stamens, which are composed of anthers and filaments.

  • The anther produces pollen grains of male sex cells.

  • The filament provides support to the anther.

Mature pollen grains are driven to the stigma of the same flower or other flowers for the fertilization process.

Different agents are in charge of this transport: animals, wind, insects, water streams.

When filaments are tall, the anthers are more exposed and not protected by the flower.

So these anthers are more accessible for different agents.

  • There are higher chances that insects and animals that visit the flowers take the pollen in their bodies.

  • There are more chances that accidental pollination by animals occurs when they get in touch with this pollen and accidentally take it to another flower.

  • As the anther is more exposed, the wind can transport pollen easier.

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Make connections: How might having the anther atop a tall filament make it more likely that plants will be pollinated? It gets the pollen grains up higher. That makes it more likely that a visiting insect will pick them up.4. ... When the pollen forms on the stamen, the pistils are not ready to receive it.

How do decomposers obtain energy?

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they gain energy by breaking down the food they eat. Such as: dead animal bodies.
Decomposers get energy (and nutrients) by breaking down dead organisms and animal wastes. 

An olympic bronze medal is madethese elements- copper, zinc and tin. state the number of types of atoms in the medal. explain your answer.​

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An olympic bronze medal is given to an athlete who achieves third position in any sports. An olympic bronze medal is made up of 3 elements; copper, zinc and tin.

What is the composition of metal?

Olympic Games are the world's foremost sports competition. There are three classes of medal to be won by an athlete in a sports. These include gold, silver, and bronze, awarded to first, second, and third positions, respectively.

The bronze medals are presented to the second runner-up of the sports. These are made of copper, zinc, tin, and a very small amount of silver. In Olympic Games, each bronze medal contained 1% silver element and the remaining 99% was made from coinage bronze element. Bronze coinage is made up of 97% copper, 2.5% zinc, and 0.5% tin.

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Answer:

3 atoms

Explanation:

Copper atom, zinc atom and tin atom