Answer:
Around one to five days
what tool can turn waste into inert and non-toxic substances?
Answer:
An incinerator is a widely used tool for transforming garbage into inert and non-toxic compounds. It burns garbage at high temperatures, turning it into ash and gases. While the gases are typically cleaned to remove any pollutants before being released into the atmosphere, the ash can be further processed to lessen its toxicity and make it acceptable for disposal. Another choice might be a gasification system, which heats trash at high temperatures in an oxygen-poor atmosphere to create syngas. This syngas can be turned into electricity or utilised as fuel.
hope it helps!A thermal oxidizer is the appropriate response to this query. Industrial equipment called thermal oxidizers is used to convert hazardous waste into inert, non-toxic chemicals.
What is the scenario with the heat and oxygen ?Heat, oxygen, and a catalyst are used in their operation to transform dangerous substances into innocuous ones. The dangerous material's molecules are broken down by heat, oxygen, and a catalyst, which also speeds up the process.
In order to properly dispose of hazardous waste materials, thermal oxidizers are frequently employed in the chemical, pharmaceutical, and petrochemical sectors.
Additionally, they are utilised in facilities that burn medical waste and when biomass is converted into electricity. Thermal oxidizers are made to guarantee that hazardous items are disposed of properly and safely while minimising the quantity of pollutants discharged into the environment.
Thermal oxidizers can transform trash into inert, non-toxic materials with a high degree of efficiency and economy. They are designed to be used in a variety of applications and are capable of breaking down a wide range of materials. Thermal oxidizers are reliable, durable, and easy to maintain, making them an ideal solution for waste management.
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Scientists isolate cells in various phases of the cell cycle. they find a group of cells that have 1.5 times more dna than g1 phase cells. the cells of this group are _____.
Scientists isolate cells in various phases of the cell cycle. They find a group of cells that have 1.5 times more DNA than G1 phase cells. The cells of this group are in the S phase of the cell cycle.
The cell cycle is a series of events that occur within a cell as it grows and divides. Cells spend the majority of their time in interphase, where they develop, duplicate chromosomes, and develop for cell division. Cells then exit interphase, proceed through mitosis, and divide completely.
The S phase (synthetic phase) is the phase of the cell cycle during which DNA is replicated and occurs between the G1 and G2 phases. Since accurate replication of the genome is critical for successful cell division, the processes occurring during S phase are tightly regulated and largely conserved.
In S phase, the cell synthesizes a complete copy of DNA in the nucleus. It also replicates microtubule-organizing structures called centrosomes.
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Complete question :
Scientists isolate cells in various phases of the cell cycle. They find a group of cells that have 1.5 times more DNA than G1 phase cells. The cells of this group are ______.
1.in the S phase of the cell cycle
2.in the M phase of the cell cycle
3.between the G1 and S phases in the cell cycle
4.in the G2 phase of the cell cycle
are natural selection and evolution always promoting the development of a better, more perfect species?
The natural selection and evolution are not always promoting the development of a better, more perfect species. They only work in making the species able to survive in the changing surroundings.
Natural selection is the phenomenon where the organisms that adapt better to the changing environments are able to survive and live longer. By survival, the phenomenon means the ability to reproduce and produce offspring like its own to maintain the continuity of species.
Evolution is the process of morphological changes that help the species to adapt and survive better. It is a long-term phenomenon that make take generations to appear.
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Question 2: Analyze Fossil Layers
This diagram shows three layers of rock.
Part A
What is unusual about the arrangement of the fossils in the diagram?
Layer C would be above layer A because the top layer should be younger than the bottom layer.
What are fossils?The preserved remains of an animal, such as its bones, or the imprints of its activity, such as its footprints, are known as fossils.
Whole-body fossils can be formed by freezing, drying, and encasing in tar or resin to preserve bodily tissues.
In river valleys, cliffs, hillsides, and man-made exposures like quarries and road cuttings, sedimentary rocks of the appropriate age are exposed, and these are the places where fossils are most frequently found.
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6. what does it mean that dna strands are antiparallel and complementary? draw a strand of dna with 6 nucleotides to support your answer.
DNA strands are antiparallel and complementary means that they are running in the opposite direction but parallel to one another.
Antiparallel is a term used in biochemistry to describe the relationship between two biopolymers that are parallel to one another but run in opposing directions (alignments). One illustration of this concept is provided by the fact that the two strands of a DNA double helix run in the opposite direction beside each other.
Two individual strands of DNA, both of which are single strands, whose nucleotide sequences are designed in such a way that they will pair with each other and bind together at any point along their lengths is called complementary strands.
The structure is attached
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what is true about blood typing? what is true about blood typing? type ab blood contains antigens a and b. type ab blood contains neither a nor b antigen. type o blood contains antigens a and b. type b blood contains a antigen.
True. Blood typing is a way to determine the type of antigens in a person's blood. Type AB blood contains both antigens A and B, while type O blood contains neither antigen A nor B. Type B blood contains antigen A.
What is antigens?An antigen is any substance that the body recognizes as being foreign, triggering the production of an antibody. Antigens can be proteins, carbohydrates, lipids, or other molecules found on the surface of cells, viruses, fungi, and bacteria. Antigens can also be toxins or other foreign substances, such as those from a snake bite or a bee sting. The immune system recognizes antigens as being foreign and produces specific antibodies to bind to and neutralize the antigen.
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9.
What does it mean for an organism to have high fitness?
A.
Organisms with high fitness in an environment can survive and reproduce.
B.
Organisms with high fitness can survive in any environment.
C.
Organisms with high fitness do not produce many offspring.
D. Organisms with high fitness developed beneficial traits during their lifetime.
An organism with high fitness in a particular environment can survive as well as reproduce.
The correct option is option A.
Natural selection is very important in evolution. According to natural selection, only the organisms which have those characteristics which can help them thrive in a particular environment survive whereas the ones which do not have cannot survive and reproduce.
An organism which has high fitness is going to have adaptations that are well suited to their particular environment allowing them survive as well as reproduce. An organism that has low fitness has characteristics which are not well suited to their particular environment meaning they almost will certainly die without reproducing.
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A client had an open reduction internal fixation of a distal radius fracture 3 months ago. The client developed complex regional pain syndrome 2 months after the surgery. Currently, the client has decreased functional use of the dominant upper extremity and is scheduled to begin an 8-week work hardening program. What should be the initial goal of this intervention?
The primary objective of this intervention is to investigate whether Complex Regional Pain Syndrome (CRPS), which is particularly common in the population of distal radius fractures (DRF).
It causes persistent pain and disability in many of its victims two to six years after it first manifests. Three months ago, an open reduction internal fixation of a distal radius fracture was performed on a patient. Two months following the procedure, the patient experienced complex regional pain syndrome.
The client will soon start an 8-week work hardening program and has currently reduced functional use of the dominant upper extremity. Chronic pain known as complex regional pain syndrome (CRPS) typically affects the arm or leg. CRPS frequently occurs following an injury, surgery, or stroke.
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Which nucleotide bases have a double ring structure?
Answer:
Adenine and Guanine
Explanation:
Both have a double ring structure
What are 5 basic differences between prokaryotic and eukaryotic gene structure?
Answer:
The structure and chemical composition of the DNA in both the eukaryotic and prokaryotic cells are different. The prokaryotic cells have no nucleus, no organelles and a very small amount of DNA. On the other hand, the eukaryotic cells have nuclei and cell organelles, and the amount of DNA present is large.
Explanation:
pls mark brainliest
Photosynthesis converts the ______ energy in sunlight into the ______ energy in sugars.
Photosynthesis converts the solar energy in sunlight into chemical energy in sugars.
Photosynthesis is the process by which plаnts use sunlight, wаter, аnd cаrbon dioxide to creаte oxygen аnd energy in the form of sugаr. Most life on Eаrth depends on photosynthesis. The process is cаrried out by plаnts, аlgаe, аnd some types of bаcteriа, which cаpture energy from sunlight to produce oxygen ([tex]O_{2}[/tex]) аnd chemicаl energy stored in glucose (а sugаr). Herbivores then obtаin this energy by eаting plаnts, аnd cаrnivores obtаin it by eаting herbivores.
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calculate the number of possible chromosome combinations that might occur in a gametic cell, given an organism with five pairs of chromosomes.
The number of possible chromosome combinations in a gametic cell depends on the number of chromosomes and the mechanism of chromosome segregation during meiosis.
In an organism with five pairs of chromosomes, the number of chromosomes in a gametic cell would be half of the number of chromosomes in the organism's diploid cells. That means the gametic cells would have 5 chromosomes.
During meiosis, chromosomes are randomly segregated into the gametic cells, and this process generates unique combinations of chromosomes in each cell. The number of possible combinations of chromosomes in a gametic cell can be calculated using the formula 2^n, where n is the number of chromosomes.
In this case, the number of possible chromosome combinations in a gametic cell would be 2^5, which is equal to 32. Therefore, there are 32 possible combinations of chromosomes that might occur in a gametic cell in an organism with five pairs of chromosomes.
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a white stallion and a white mare, each heterozygous for all these genes, are mated. what is the least abundant phenotype in the live offspring? hint: first determine the frequencies of all possible phenotypes in the live offspring, then pick the lowest one.
Chestnut and spotted are the least common phenotypes among live offspring. Option 5 is correct.
Stallion genotype = Ww Oo Bb
Mare genotype = Ww Oo Bb
Both parents share the same genotype. As a result, the gametes produced would be identical. We may utilize Punnett square in two halves to discover the potential gametes. Sixteen of the 64 outcomes are fatal. Chestnut spotted is the least common. A gene is the most basic physical and functional component of heredity.
DNA is the building block of genes. Some genes act as blueprints for protein synthesis. However, many genes do not encode proteins. Our genes carry information that is passed down across generations. For example, genes are responsible for one child having blonde hair like their mother and their sibling having dark hair like their father.
The complete question is
A white stallion and a white mare, each heterozygous for all these genes, are mated. what is the least abundant phenotype in the live offspring?
White Black, solid Black, spottedChestnut, solid Chestnut, spottedTo know more about the Genes, here
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How do the finches of the galapagos illustrate natural selection?
The Galapagos finches, which are found in the Pacific Ocean near Ecuador, are frequently used to demonstrate natural selection theory.
These finches come in a variety of forms and sizes that vary from island to island. While the finches' beaks appear identical on the surface, they differ due to their distinct diets.
These nutritional variations show that the finches have adapted to their different islands' specific environments, allowing them to live and prosper.
In 1835, Charles Darwin discovered the disparities among the finches, and their distinctions were eventually used to prove his theory of natural selection. According to this hypothesis, organisms spontaneously develop through time depending on their capacity to adapt to their surroundings.
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how do these positions align with cells
The organelles are best represented by each type of plant component:
Main office → Controls and manages the activities at the factory, initiate products, and provides the blueprints for the products (nucleus).Assembly Line → Important products are built from raw materials on the assembly line. (ribosome)Conveyer Belt → Moves the products to the shipping department. (ER)Packaging and Shipping → Packs products and sends them out for distribution. (Apparatus Golgi)Generator → Produces the electricity required to run the factory. (Mitochondrion)Doors to the outside with a buzzer to only let approved personnel and products into the factory → Determines what can leave the factory and what can enter the factory. (Plasma membrane)Recycle center → Breaks down old or damaged products to use the parts. (Lysosomes)Like a city, cell city has factories that supply the needs of its citizens, a waste disposal/processing site, and a transportation system.
The nucleus is analogous to the main office, because it is the center of factory activity and provides the blueprint for the product, namely protein.Ribosomes are analogous to an assembly line because they are the raw materials on an assembly line.The endoplasmic reticulum is analogous to a conveyor belt, because it is responsible for transporting products to the shipping department.The golgi apparatus is analogous to packaging and shipping because it is in charge of packing products and sending them for distribution.Mitochondria are analogous to generators because they produce the energy needed to run factories, namely protein synthesis.The plasma membrane is analogous to the door to the outside, meaning that the results of protein synthesis will exit through the plasma membrane.Lysosomes are analogous to recycling centers because they break down old or damaged products or molecules to use spare parts.Learn more about organelles at https://brainly.com/question/16601148.
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some viruses are associated with cancer. there are a variety of ways in which viruses may affect a cell in a way that may lead to the formation of a tumor. based on your knowledge of the life cycles of viruses and of molecular genetics, what is one way that this might happen?
A large portion of the cancer research community is unaware of the significant burden that viral infections have on cancer patients.
According to the International Agency for Research on Cancer, viruses are the primary cause of one in five cancer cases worldwide1,2. These malignancies pose unique public health issues for underprivileged and immunosuppressed populations in rich nations as well as the developing globe. Most significantly, there are clear objectives for diagnosis, prevention, and treatment of these malignancies.
On a global level, vaccination campaigns against the hepatitis B virus (HBV) and the human papillomavirus (HPV), two human tumour viruses, have already started to change long-standing cancer patterns. This Timeline article examines how modern technology can be used to identify infectious and describes common characteristics of human cancer viruses.
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how many times must the calvin cycle turn for the plant cell to be able to produce one molecule of glucose?
The Calvin cycle, also known as the light-independent reactions of photosynthesis, is a series of biochemical reactions that take place inside a plant cell to produce a molecule of glucose from carbon dioxide and water.
What is photosynthesis?Photosynthesis is a process used by plants and other organisms to convert sunlight into energy. During photosynthesis, light energy is converted into chemical energy, which is then used to produce glucose.
In order for the cell to produce one molecule of glucose, the Calvin cycle must turn three times. This is because the cycle involves three main steps: carbon fixation, reduction, and regeneration of the starting material. In the first step, carbon dioxide is combined with the five-carbon sugar ribulose bisphosphate (RuBP) to form two molecules of the three-carbon compound, 3-phosphoglycerate (PGA). In the second step, each of the two molecules of PGA is reduced to the three-carbon sugar, glyceraldehyde 3-phosphate (G3P). In the third and final step, G3P molecules are used to regenerate the RuBP molecules that were used in the first step, allowing the cycle to begin again. Therefore, the cycle must turn three times in order to produce one molecule of glucose.
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The escaping infrared radiation will probably hit at least how many other
greenhouse gas molecules before reaching space?
The escaping infrared radiation will probably hit at least ten greenhouse gas molecules before reaching space.
What are Greenhouse gases?This is referred to as the gas that absorbs and emits radiant energy within the thermal infrared range, causing the greenhouse effect and they are responsible for having an influence on the earth's energy balance.
In the atmosphere there are about ten types and the naturally occurring ones can be seen below;
water vapor (H2O),carbon dioxide (CO2)methane (CH4)nitrous oxide (N2O)Read more about Greenhouse gases here https://brainly.com/question/19521661
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types of genetic variation that frequently occurs between individuals of the same species include: (select all that apply for credit)
Types of genetic variation that frequently occurs between individuals of the same species include length of a)chromosmes, e)different alleles, f)CNVs, g)SNPs.So,correct options are a,e,f,g.
Genetic variation is the distinction in DNA among individuals[1] or the distinctions between populations.[2] The numerous wellsprings of hereditary variety incorporate change and hereditary recombination. Transformations are a definitive wellsprings of hereditary variety, however different systems, like hereditary float, add to it, too.
Genetic variation can be distinguished at many levels. Distinguishing hereditary variety is conceivable from perceptions of phenotypic variety in either quantitative characteristics (qualities that fluctuate consistently and are coded for by numerous qualities (e.g., leg length in canines)) or discrete attributes (qualities that fall into discrete classes and are coded for by one or a couple of qualities (e.g., white, pink, or red petal variety in specific flowers)).[citation needed]
Genetic variation can likewise be distinguished by looking at variety at the degree of compounds utilizing the course of protein electrophoresis. Polymorphic qualities have more than one allele at every locus. A big part of the qualities that code for proteins in bugs and plants might be polymorphic, though polymorphisms are more uncommon among vertebrates.
Hence,correct options are a,e,f,g.
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(Complete question) is:
Types of genetic variation that frequently occurs between individuals of the same species include: (select all that apply for credit)
a) lengths of chromosomes
b)numbers of chromosomes
c)different genes
d)different banding patterns on Geimsa stained karyotypes
e)different alleles
f)CNVs
g)SNPs
flaming the mouth of the tube containing sterilized nutrient broth is not necessary before introducing a specimen from bacterial culture. question 2 options: true false
It is not essential to flame the opening of the tube holding sterilized nutrient broth before inserting a sample from a bacterial culture, which is True.
By forcing air out of the tube and obstructing the entry of airborne pollutants, this generates a convection current. Insert the inoculating loop while retaining the culture tube at an angle, then remove a loopful of inoculum. By doing this, it is made sure that no bacteria may enter the vessel's mouth and infect the culture or the media. Convection currents are created away from the entrance of the bottle when its mouth is passed through a flame, aiding in the prevention of contamination. To completely purge (something or someone) of all living organisms in order to sterilise it (as by the use of steam or dry heat) Sterilize surgical tools in an autoclave. to euthanize cats and dogs by surgery in order to stop them from reproducing.
Sterilization can be accomplished by combining heat, chemicals, irradiation, high pressure, and filtration. Examples include the application of dry heat, UV radiation, gas vapor sterilants, chlorine dioxide gas, and steam under pressure.
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the biological species concept relies on a disruption of which aspect of population genetics?
The biological species concept relies on a disruption of the gene flow between populations.
The concept defines a species as a group of populations that are reproductively isolated from other populations and cannot interbreed to produce fertile offspring.
In other words, the biological species concept defines a species based on the reproductive barriers that prevent gene flow between populations.
The idea behind this concept is that if two populations cannot interbreed, they are considered to be separate species, even if they have similarities in their physical characteristics or other traits.
This focus on reproductive isolation as the defining factor for species is what sets the biological species concept apart from other species concepts.
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If the field of views under 400x is 500micrometer,how many 100micrometer long cells could be seen end to end across the field of view( to the nearest 0.10 of a cell)
For the long cells, at 400x magnification you will be able to see 0.45mm, or 450 microns.
What do you mean by magnification?Magnification is the process of enlarging the apparent size, not physical size, of something. This enlargement is quantified by a calculated number also called "magnification".
Magnification is the ability of a microscope to produce an image of an object at a scale larger (or even smaller) than its actual size. Magnification serves a useful purpose only when it is possible to see more details of an object in the image.
There are two types of magnification lenses Simple and Compound lenses. Simple Lenses: It refers to a simple lens that we use to magnify an object. Also, a single lens is the lens that we use to read the newspaper, magnify the things or objects in the front.
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what is the ecological role of saprotrophic bacteria?
Answer:
Saprotrophic bacteria play an important ecological role as decomposers, breaking down dead organic matter and recycling nutrients back into the ecosystem. They help to maintain a balance of nutrients in the environment and facilitate the natural process of decay. By breaking down dead plant and animal material, saprotrophic bacteria provide a source of food and energy for other organisms and help to prevent buildup of excess organic matter, which can lead to environmental problems such as soil or water pollution.
Saprotrophic bacteria play a crucial ecological role in breaking down dead organic matter and recycling nutrients in the environment. Without these bacteria, the balance of nutrients in ecosystems would be disrupted, and the growth and survival of other organisms would be compromised.
Saprotrophic bacteria are a type of microorganisms that play an essential ecological role in breaking down organic matter and recycling nutrients in the environment. They are commonly found in soil, water, and decaying plant and animal matter.
The ecological role of saprotrophic bacteria is to decompose dead organic matter, such as dead plants and animals, and convert them into inorganic compounds, such as carbon dioxide, water, and mineral nutrients. This process of decomposition is known as "saprotrophic decomposition" or "decay." By breaking down organic matter, saprotrophic bacteria release important nutrients like nitrogen, phosphorus, and sulfur back into the environment, making them available for other organisms to use.
The decomposition of organic matter by saprotrophic bacteria also helps to maintain the balance of nutrients in the ecosystem. Nutrient-rich soils support the growth of plants, which, in turn, provide food for herbivores, and eventually for predators at the top of the food chain. Without saprotrophic bacteria, organic matter would accumulate, and nutrients would become locked up, making them unavailable to other organisms.
Saprotrophic bacteria also play an important role in the carbon cycle, as they release carbon dioxide into the atmosphere during the decomposition process. This helps to regulate the balance of atmospheric gases and contributes to the global carbon cycle.
In addition to their ecological role, saprotrophic bacteria have practical applications in industries such as waste management and bioremediation. They can be used to treat organic waste and clean up polluted environments by breaking down contaminants into harmless compounds.
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which land mammal has the most teeth in the world?
the maximum amount of gas that can be inspired after a normal tidal expiration is the inspiratory capacity true or false
The given statement "The maximum amount of gas that can be inspired after a normal tidal expiration is the inspiratory capacity" is true because it is the maximum amount of air which can be inspired.
Lung volumes or the lung capacities basically refer to the volume of the air which is present in the lungs during the different phases of the respiratory cycle. The average total lung capacity of a particular adult human male is about 6 liters of air.
Inspiratory capacity is basically the maximum volume of air which can possibly be inspired after we have reached the end of a normal, quiet expiration. It can be represented as the common abbreviation IC and is basically the sum of the tidal volume or the TV and the inspiratory reserve volume or the IRV.
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why does ecology need to study the biotic and abiotic elements?(1 point) responses it is studying a species. it is studying a species. it is studying the community. it is studying the community. it is studying a population. it is studying a population. it is studying the ecosystem.
Ecology needs to study the biotic and abiotic elements because it is studying the ecosystem.
Thus, the correct answer is It is studying the ecosystem (D).
Ecology is а brаnch of science, including humаn science, populаtion, community, ecosystem аnd biosphere. Ecology is the study of orgаnisms, the environment аnd how the orgаnisms interаct with eаch other аnd their environment. It is studied аt vаrious levels, such аs orgаnism, populаtion, community, biosphere аnd ecosystem.
Аn ecologist’s primаry goаl is to improve their understаnding of life processes, аdаptаtions аnd hаbitаts, interаctions аnd biodiversity of orgаnisms. The mаin аim of ecology is to understаnd the distribution of biotic аnd аbiotic fаctors of living things in the environment. The biotic аnd аbiotic fаctors include the living аnd non-living fаctors аnd their interаction with the environment.
Your options aren't well arranged, but most probably your options were
A. it is studying a species.
B. it is studying the community.
C. it is studying a population.
D it is studying the ecosystem.
Thus. D is the correct answer.
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give reason for flower of hibiscus is complete.
Answer:
The hibiscus flower is complete ( or a complete flower ) because it is a perfect flower and has the main parts a flower should have. These are the sepals, petals, stigma and stamen.
What animas are complex animas ?
A microscopic, see-through water flea is the most complex animal ever studied, genomically speaking
What are the most complex animals?Students are based on complex animals, specifically the major vertebrate groups: fishes, amphibians, reptiles, birds, and mammals. particular examples of vertebrates illustrate the dissimilar characteristics of complex animals. Millions of animals on Earth range from simple animals, such as sponges and worms, to more complex animals.
Nonetheless, during the way of evolution, the transition to multicellularity occurs separately as many as 20 different times in lineages from algae to plants to fungi. But animals were the first to grow complex bodies, emerging as the most dramatic example of early multicellular success.
So we can conclude that Examples of complex animals involve fishes; amphibians, such as frogs reptiles, such as snakes, lizards, and turtles
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Complex animals are typically referred to as multicellular organisms that have specialized structures and functions for different body parts, such as the nervous, digestive, and reproductive systems. Examples of complex animals include mammals, birds, reptiles, and insects.
What classifies an animal as complex?The classification of an animal as complex or not is based on its level of organization and the presence of certain structures and characteristics. Complex animals typically have more advanced structures, such as specialized organs and tissues, a nervous system, and a digestive system.
They are also often multicellular and capable of developing different cell types and tissues. Examples of complex animals include mammals, birds, reptiles, and most invertebrates. The exact criteria for classifying an animal as complex can vary among different scientific disciplines.
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What does your body use to transduce specific external stimuli into neural activity?
Our body uses sensory receptors to transduce specific external stimuli into neural activity.
In general , Sensory receptors are known as the specialized cells or tissues present throughout the body and are made to detect different kinds of stimuli these are light, sound, touch, taste, and smell. These sensory receptor gets activated with the specific outer stimulus, that can generates an electrical signal which travels towards the brain in direction of sensory neurons.
Hence, There are many type of sensory receptors designed for detecting various types of stimuli. Example includes , photoreceptors in the eye detect light, chemoreceptors in the nose detect different types of molecules in the air we breathe. These receptors obtain stimulus and convert it into neural activity that brain can interpret.
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the complexity and variety of organic molecules is due togroup of answer choicestheir interaction with water.the chemical versatility of carbon atoms.the fact that they can be synthesized only in living organisms.the variety of rare elements in organic molecules.
The complexity and variety of organic molecules is due to: (b) .the chemical versatility of carbon atoms.
Organic molecules are the groups of atoms that contain carbon and hydrogen atoms in it. These molecules are present inside the living organisms and make up the essential components. The example of such organic molecules are: proteins, amino acids, carbohydrates, vitamins, etc.
Carbon atom is the atom of the periodic table with atomic number 6. It is the most unique element due to its characteristics properties like the catenation property. The carbon atom makes up the whole dry biomass of the living organisms.
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