Water is able to absorb a lot of energy before it begins to heat, which means that the oceans are fairly stable in temperature. This has led to development of life in the waters. Additionally, this means that surface water is stable and available for consumption.
Aquatic organisms or terrestrial organisms do not adapt better when there are temperature fluctuations. Changes in temperatures will a direct affect on the organisms which may hinder proper adaptations.
a system to classify organisms. kingdom, phylum, class, order, family, genus, species. in that order of broadest to specific. a way to remember the order is : King Phillip Chases Old Fat Girl Scouts
The total dry weight of the organisms in an ecosystem is called biomass. Biomass represents the total amount of organic matter present in living organisms within a specific area or trophic level. It is an essential measure of the energy stored in an ecosystem.
Yes, organisms are classified into taxonomic groups based on their shared characteristics and evolutionary relationships. The correct way to classify organisms is by using the hierarchical system of classification laid out by renowned scientist Carl Linnaeus, which includes groups such as kingdom, phylum, class, order, family, genus, and species.
Chemical communication is a type of communication between organisms where chemical signals are used to convey information. This can involve the release of pheromones, which can trigger specific behaviors or responses in other individuals of the same species.
Usually a high specific heat capacity is an advantage as more energy is required to cause the substance to boil. For example water has a high specific heat capacity as it has hydrogen bonds between molecules, which means that more energy is required to move the molecules around and hence cause boiling. This is an advantage for a few reasons: 1) Water remains at a relatively stable temperature (i.e) ponds, oceans which means that the organisms living in there do not have to deal with extreme temperatures.2) Sweating. As it has a high specific heat capacity, water can absorb a lot of heat and transport it away from the body before it evaporates. This is an advantage to organisms that cannot use a lot of water for sweating because they live in a desert environment.
Aquatic organisms or terrestrial organisms do not adapt better when there are temperature fluctuations. Changes in temperatures will a direct affect on the organisms which may hinder proper adaptations.
specific heat capacity
The specific heat capacity of polyester is 2.35degrees
Biomes are communities classified according to predominant vegetation and distinguished by their adaptation to organisms in a specific environment. The two main classifications of Biomes are: Terrestrial biomes (land) and Aquatic biomes (water).
No. Metals have a relatively low specific heat.
There is no "maximum capacity" for any of the kingdoms, and we don't know of any specific number of how many will be there. All that we know is that whoever is worthy of a given kingdom of glory will go there because of his or her individual merits and not as compared to others.
Usually caves or to be more specific terrestrial biomes.
Nature does not inherently favor smaller organisms over larger ones. The size advantage of organisms depends on their specific environmental conditions, such as resource availability, competition, and predation pressures. In some situations, being smaller may be advantageous, while in others, larger organisms may have the upper hand.
No, a forest is a specific type of terrestrial ecosystem characterized by dense tree cover. Terrestrial ecosystems include a broader range of environments such as grasslands, deserts, and tundra. Each terrestrial ecosystem has unique characteristics and species composition.
No, aluminum has a lower specific heat capacity than iron. The specific heat capacity of aluminum is about 0.90 J/g°C, while iron has a specific heat capacity of about 0.45 J/g°C.
Water has a high specific heat capacity compared to other common substances. This means it can absorb a lot of heat energy without a significant increase in temperature, making it useful for regulating temperature in living organisms and in the environment.