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Why do multicellular organisms need specialized tissues?

Cell specialization is necessary to support multicellular life because multicellular organisms need different tissues. This means it needs cells to make up those tissues and perform different functions.


How do you use multicellular specialized tasks in one sentence?

In a multicellular cell each organelle has a specialized task


How are multicellular organisms more efficient than unicellular organisms?

it is...... the thing that is on the moon


The cells of multicellular organisms are often?

specialized to carry out specific functions, which contributes to the overall functioning of the organism. This specialization allows for efficient division of labor among different cell types, which is essential for the proper growth, development, and functioning of multicellular organisms.


Why are specialized cells important to multi-cellular organisms?

Because multicellular organisms has many organs that perform functions.And specialized cells are important because they make the function for the cell.


What is the difference of between uncellular and multicellular?

The main difference between unicellular organisms and multicellular organisms is that unicellular organisms are made up of a single cell, while multicellular organisms are made up of multiple cells that are specialized to perform different functions. Multicellular organisms have a higher level of complexity and organization compared to unicellular organisms.


In addition to being able to grow larger what is another benefit of being multicellular?

Another benefit of being multicellular is the ability to specialize different cells for different functions, leading to increased efficiency and complexity in organisms. Specialized cells can perform specific tasks, such as nutrient uptake or movement, allowing for more sophisticated biological processes to occur within multicellular organisms.


In multicellular organisms different type of cells can perform different types of tasks this is best described as?

This phenomenon is best described as cell differentiation. In multicellular organisms, cells develop into specialized types that perform distinct functions, allowing for the efficient execution of various biological tasks. This specialization enables the organism to maintain homeostasis and respond effectively to its environment.


What is meant by the term multicellular?

Multicellular refers to organisms that are made up of more than one cell. These cells are specialized to perform different functions within the organism, allowing for more complexity and larger size compared to single-celled organisms. Organisms such as plants, animals, and fungi are examples of multicellular organisms.


Organisms that have groups of specialized cells organized into organs are always .?

Organisms that have groups of specialized cells organized into organs are always multicellular. This level of organization allows for greater complexity and efficiency in carrying out life processes. In multicellular organisms, different types of cells can perform specific functions, contributing to the overall functionality and survival of the organism. Examples include humans, plants, and animals.


Which term describes a process that takes place only in multicellular organisms and wher cells have different and specialized functions?

The term is "cell differentiation," where cells in multicellular organisms undergo changes to become specialized for specific functions. This process allows for the creation of various cell types to perform diverse tasks within the organism.


Do all multicellur organisms have organ?

Not all multicellular organisms have organs. While many complex multicellular organisms, such as animals and plants, possess specialized organs that perform specific functions, simpler multicellular organisms, like certain types of algae and sponges, may lack distinct organs and instead have simple structures that serve basic life processes. The presence and complexity of organs vary significantly across different groups of multicellular life.