Answer:
The Harris Benedict Equation is a formula that determines the total daily energy expenditure (calories) using BMR with some activity factors.
Basal Metabolic Rate (BMR) is defined as the amount of calories one would burn without doing anything for 24 hours. It uses variables of weight, age, height and gender to calculate BMR.
BMR calculation = 447.593 + (9.247 x weight in kg) + (3.098 x height in cm) - (4.330 x age in years)
In Harris Benedict Equation, BMR is multiplied by activity factor to determine calories need.
The activity factors in Harris Benedict Equation are:
for no exercise = 1.2
exercise for 1 to 3 days/week or light exercise = 1.375
exercise for 3-5 days/week or moderate exercise = 1.55
exercise for 6-7 days a week or hard exercise = 1.725
exercise for 2 times training = 1.9
So, calculation for my calorie needs is as following:
BMR = 447.593 + (9.247 x 50 kg) + (3.098 x 164.592 cm) - (4.330 x 23 in years) = 974.945
Calorie needs = BMR x 1.55
= 974.945 x 1.55
= 1511.16 calories
Answer:
The Harris Benedict Equation is a formula that determines the total daily energy expenditure (calories) using BMR with some activity factors.
Basal Metabolic Rate (BMR) is defined as the amount of calories one would burn without doing anything for 24 hours. It uses variables of weight, age, height and gender to calculate BMR.
BMR calculation = 447.593 + (9.247 x weight in kg) + (3.098 x height in cm) - (4.330 x age in years)
In Harris Benedict Equation, BMR is multiplied by activity factor to determine calories need.
The activity factors in Harris Benedict Equation are:
for no exercise = 1.2
exercise for 1 to 3 days/week or light exercise = 1.375
exercise for 3-5 days/week or moderate exercise = 1.55
exercise for 6-7 days a week or hard exercise = 1.725
exercise for 2 times training = 1.9
So, calculation for my calorie needs is as following:
BMR = 447.593 + (9.247 x 50 kg) + (3.098 x 164.592 cm) - (4.330 x 23 in years) = 974.945
Calorie needs = BMR x 1.55
= 974.945 x 1.55
= 1511.16 calories
Explanation:
The objects of the solar system can be analyzed and interpreted by.
This is science not bio
Please answer this question 1-2 sentences
The objects of solar system can be analyzed and interpreted by interdependence of science, engineering and technology.
New abilities, materials, or methods that can be applied through engineering to achieve technological advancements are made possible by scientific advancements. In turn, technological developments give scientists new tools for exploring the natural world at various scales, collecting, managing, and analysing data, and accurately simulating ever-more complicated systems.
The sizes of an object's layers (such as its crust and atmosphere), surface features (such as volcanoes), and orbital radius are a few examples of scale attributes. Data examples include numerical data, illustrations in the form of images, and models.
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which of the follwing is/are abiotic factors/s that could affect the reproduction and surrvival of a grass specis? choose all
To determine the abiotic factors that could affect the reproduction and survival of a grass species, we need to consider the non-living components of the environment that can impact the species.
Here are some common abiotic factors that can affect grass species:
Temperature: Extreme temperatures, both hot and cold, can impact the growth, development, and reproduction of grass species. They may have specific temperature requirements for successful reproduction and survival.
Precipitation: Adequate water availability is crucial for the growth and survival of grass species. Insufficient or excessive rainfall can affect germination, growth, and reproductive processes.
Light: Grass species require sunlight for photosynthesis, which is essential for their growth and development. The availability of light can influence their reproduction and survival.
Soil composition and nutrients: The composition of the soil, including its fertility and nutrient content, can impact the growth, health, and reproductive success of grass species. Nutrient deficiencies or imbalances can affect their ability to reproduce and survive.
pH levels: The pH levels of the soil can influence the grass species' ability to take up nutrients and thrive. Different grass species have different pH requirements for optimal growth and reproduction.
Wind: Strong winds can physically damage grasses and disperse their seeds. Wind can also affect pollination processes, especially in wind-pollinated grass species.
These abiotic factors play important roles in shaping the ecology of grass species and can directly impact their reproduction and survival.
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What is a nerve’s long threadlike bundle that conducts electrical impulses?
Answer:
A nerve is actually a long threadlike bundle of dendrites that conduct electrical impulses. Dendrite word derived from the Greek word 'dendron' which means tree. They carry messages in the form of electrical impulses to cell body, there are also wire like nerves called axon.
Explanation:
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Almost ____ million older adults benefit from the federal government's oaa nutrition program.
The federal government's OAA program benefits around three million senior citizens.
OAA program:
ACL's Administration on Aging (AoA) offers funds to states under the Older Americans Act (OAA) program to aid in the funding of nutrition programs for senior citizens nationwide.Both nutritious meals delivered to clients' homes and group meals provided in venues like senior centers and places of worship are included in these programs. The programs also offer a number of other services, such as nutrition screening, evaluation, education, and counseling. A crucial connection is also made between nutrition services and other in-home and community-based assistance such as transportation, domestic and home-health aide services, physical exercise and chronic illnesses self-management programs, house renovation and adaptation, and falls prevention programs.The OAA Program's objectives
The OAA's Title III-C permits the provision of nutrition services. The services are created to enhance the overall health and wellbeing of senior citizens and are meant to:
Reduce older individuals' hunger, food insecurity, and malnutritionPromote elderly people's socializingEncourage elderly people's health and wellbeingLearn more about the OAA program here:
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What is a phospholipid molecule made of?
Why do organelles like mitochondria and chloroplasts have their own DNA? (1 point)
ODNA is used to code for proteins, which these organelles synthesize.
Answer: they used to be free living. I just took the quiz
Explanation: They used to be free-living prokaryotes that functioned as unicellular organisms
Organelles like mitochondria and chloroplasts have their own DNA because they were individual organisms at one time, according to a theory.
What are mitochondria and chloroplast?Mitochondria is an organ of cells that is the storehouse of energy. It is cucumber-shaped and presents inside the cytoplasm of eukaryotic cells. It is a membrane-bound cell organelle.
Chloroplast is an organelle that is present in only plants and photosynthesis-performing organisms. It is spherical shaped and green-colored pigment.
Before times, they were individual organisms. And these organisms still have their own DNA because they synthesize proteins inside the cell.
Thus, according to a belief, the reason why organelles like mitochondria and chloroplasts have their own DNA is that they were once separate species.
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Which of these is required in order for a cell to make a cytoskeleton? a lysosomes b endoplasmic reticulum c ribosomes d Golgi apparatus
The correct answer is b) endoplasmic reticulum. The endoplasmic reticulum is required for a cell to make a cytoskeleton because it is involved in the synthesis and folding of proteins, including those that form the cytoskeleton's structure. The cytoskeleton is important for maintaining cell shape and enabling cell movement. Lysosomes, ribosomes, and the Golgi apparatus have other specific functions in the cell but are not directly responsible for making the cytoskeleton.
The cytoskeleton is a framework that aids in maintaining the internal organisation and shape of cells. It also offers mechanical support, allowing cells to perform critical processes like division and mobility. There isn't just one cytoskeletal element.
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homologous or analogous
Homologous and analogous are two biological terms that are frequently used to compare structures or functions of different organisms.
Homologous refers to structures or functions that are similar due to common ancestry, while analogous refers to structures or functions that are similar due to convergent evolution. Homologous structures are those that share a common ancestry. They have a similar basic structure, but may have different functions. An example of homologous structures is the wings of bats, birds, and insects.
Although these structures have different functions in each organism, they share a similar structure due to their common ancestry. Homologous structures are important evidence for evolution, as they demonstrate that different species share a common ancestor with a similar structure that has been modified over time to perform different functions.
Analogous structures, on the other hand, are those that have a similar function, but do not share a common ancestry. They have evolved independently in different organisms to perform similar tasks. An example of analogous structures is the wings of birds and insects.
Although they serve a similar function (flight), they have different basic structures and are not related by common ancestry. Analogous structures are important evidence for convergent evolution, as they demonstrate that different species can evolve similar structures to adapt to similar environmental pressures.
In conclusion, homologous structures are similar due to common ancestry, while analogous structures are similar due to convergent evolution. Understanding the differences between these two concepts is important in understanding the mechanisms of evolution and the relationships between different organisms.
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In carnations, the alleles for flower color exhibit incomplete dominance. Red
flowers have the RR genotype. Pink flowers have the RW genotype. White
flowers have the WW genotype.
If a red flower and a pink flower are crossed, what is the expected genotypic
ratio of their offspring?
A. 2 RR:2 RW:0 WW
B. 1 RR: 3 RW:0 WW
C. O RR:2 RW: 2 WW
D. 1 RR:2 RW: 1 WW
which of the following fire-management methods reduces outbreaks of pests and diseases?A. preventing firesB. suppressing a fire altogether C. suppressing a fire at earl
Controlled burning is an ordinary practice used to acchieve different goals. Controlled burning is a fire-management methods that reduces outbreaks of pests and diseases. Option D is correct.
When talking about controlled burning, we are referring to the use of fire in an ecosystem by an expert team. Controlled fires must be done under specific meteorological conditions. These include temperature range and humidity, among others, to avoid fire expansion.
The expert team must control the fire dimensions and guide it to an end point, which might be a water flow, rocks, a road, among others.
Some ecosystems depend on natural fires to remain stable. When the practice of controlled fire is well-done, it helps to restore these ecosystems' health and to avoid future damages. Controlled fire practice has several land management goals.
Ecosystem health restorationNutrient recycleInvasive species controlPestes / Plagues controlSpace for new native vegetationFlammable fuels reductionIncidental uncontrolled fires reductionAmong these goals, one of the followed goals is to control the outbreaks of pests and diseases.
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Full Question ;
which of the following fire-management methods reduces outbreaks of pests and diseases?
A. preventing fires
B. suppressing a fire altogether
C. suppressing a fire at early stages
D. controlled burning
What are four sources of evidence for evolution upon which darwin based his ideas on common ancestry? provide an example of each.
Charles Darwin based his ideas on common ancestry and evolution on a variety of sources of evidence, including the following four:
1. Fossil Record: Fossil evidence shows that there have been changes in organisms over time. For example, the fossil record of horses shows that they have evolved from small, three-toed ancestors to large, single-toed animals over millions of years.
2. Comparative Anatomy: Comparing the anatomy of different species can reveal similarities and differences that suggest common ancestry.
For example, the similar forelimb structure in humans, bats, whales, and other mammals suggest that they share a common ancestor.
3. Comparative Embryology: The study of embryonic development in different species can reveal similarities and differences that suggest common ancestry.
For example, all vertebrate embryos pass through a stage where they have gill slits, suggesting that they share a common ancestor with fish.
4. Biogeography: The geographic distribution of species can provide evidence for evolution and common ancestry.
For example, the similarities in plant and animal species on either side of the Atlantic Ocean suggest that they share a common ancestor but were separated by the formation of the ocean.
These sources of evidence for evolution provide support for the idea of common ancestry, which suggests that all species on Earth share a common ancestor and have evolved over time through a process of natural selection.
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you are a marathon runner and need energy for tomorrow's race. how would eating pasta (and pie) help your body produce the energy it needs? Be sure to describe what will happen when you are running the race ( and breathing hard).
In pea plants, tall stems are dominant to short stems, and purple flower color is dominant to white flower color.
a. If a homozygous tall, white plant is crossed with a homozygous short, purple plant, what will be the phenotype of the F1 generation?
b. If an F1 plant from this cross is then crossed with to a homozygous tall white plant, what will be the possible phenotypes of the offspring, and in what expected proportions?
a. If a homozygous tall, white plant is crossed with a homozygous short, purple plant, the phenotype of the F1 generation will be heterozygous tall, purple plants. b. If an F1 plant from this cross is then crossed with to a homozygous tall white plant, the possible phenotypes of the offspring will be heterozygous tall, purple plants and heterozygous tall, white plants in 1:2 expected proportions.
a. Homozygous tall, white plant is crossed with a homozygous short, purple plant, the phenotype of the F1 generation will be heterozygous tall, purple. A Punnett square can be used to determine the F1 offspring. The genotype of the homozygous tall, white parent would be TTWW and the genotype of the homozygous short, purple parent would be ttww.
Therefore, the F1 offspring will be heterozygous tall, purple plants (TtWw).
b. If an F1 plant from this cross is then crossed with a homozygous tall white plant, the possible phenotypes of the offspring would be heterozygous tall, purple plants and heterozygous tall, white plants. The expected proportions of the offspring are:
1/4 of the offspring would be homozygous tall, white (TTWW).
1/4 of the offspring would be homozygous short, purple (ttww).
1/2 of the offspring would be heterozygous for both traits (TtWw).
A Punnett square can be used to determine the offspring of the cross.
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explain why a fresh wound on the skin bleeds more on a hot day than a cold day
Answer: This is more of a guess based on what I already know about liquid in certain temperatures but I would say it would have to be related to the blood having a harder time congealing due to the molecules moving faster because of the temperature. You probably already know that atoms move faster in higher temperatures as opposed to cooler ones, therefore the process of congealment and essentially transitioning from liquid to solid would be easier/quicker in cooler temperatures where the atoms in and around the wound would be moving slower.
Explanation:
i give out brainlist!
H()m()zygous is another word for what?
Answer:
a relationship between
Genotype and phenotype
Explanation:
Answer:
H()m()zygous is another word for purebred; having identical pairs of genes for any given pair of hereditary characteristics.
what is a distinctive feature of all eukaryotic cells?
A distinctive feature of all the eukaryotic cells is the presence of membrane bound organelles and a presence of a well defined nucleus.
Eukaryotic organisms basically include algae, fungi, protozoans, plants, and animals. Some of the eukaryotic cells are independent as well as single-celled microorganisms, whereas other eukaryotic cells are a part of multicellular organisms. Eukaryotic cells are basically defined by the presence of well defined a nucleus which is surrounded by a complex nuclear membrane.
Eukaryotic cells also have a presence of membrane-bound organelles in their cytoplasm. The genome of these cells is found to be packaged in multiple, rod-shaped chromosomes compared to the single as well circular-shaped chromosome that characterizes most prokaryotic cells.
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Nine-banded armadillos give birth to four genetically identical offspring at a time. What does this fact suggest about the development of these organisms? the young undergo metamorphosis the embryo undergoes radial and indeterminate cleavage the first cell division of the fertilized egg is perpendicular to the vertical axis of the egg the species has a hemocoel
The correct option is D.Nine-banded armadillos give birth to four genetically identical offspring at a time. This fact suggests that the first cell division of the fertilized egg is perpendicular to the vertical axis of the egg.
Hence, the correct option is D. Nine-banded armadillos give birth to four genetically identical offspring at a time Nine-banded armadillos are unique because they always give birth to genetically identical offspring. They are one of only a few mammals to do so. This implies that the first cell division of the fertilized egg is perpendicular to the vertical axis of the egg. The nine-banded armadillo is unique because of its ability to produce genetically identical quadruplets from one fertilized egg.
Cleavage is a series of mitotic cell divisions that take place in the zygote after fertilization. The zygote undergoes mitosis as it migrates through the oviduct, increasing the number of cells but not the size of the egg mass. These mitotic divisions are known as cleavage. The zygote's cytoplasm is divided among cells during cleavage. In humans, cleavage continues for about four days after fertilization, culminating in the formation of a 16-cell stage called the morula.
Radial cleavage is the type of cleavage in which the cells divide in a perpendicular direction to the axis of the embryo. The plane of the mitotic spindle is perpendicular to the vertical axis in animals that have radial cleavage. The resulting cells are the same size and shape in radial cleavage, and they are arranged in a symmetrical pattern around the polar axis.The ability of cells to develop into complete organisms in indeterminate cleavage is called indeterminate cleavage. The cells produced by indeterminate cleavage are similar in nature. In indeterminate cleavage, the fate of the cells is undetermined at the time of the first few cell divisions.
This is why it is known as indeterminate cleavage.A hemocoel is a blood-filled cavity that is present in the bodies of certain invertebrates. It is formed from a split in the mesodermal layer. The fluid inside the hemocoel, also known as hemolymph, serves to distribute nutrients and oxygen to various parts of the body, as well as remove waste and toxins. The invertebrate circulatory system is made up of a hemocoel, which is not a closed system, and a heart.
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The adaptations of a pelican include its long, pouch-like beak. Why is the beak of the pelican an example of an adaptation?
A.
The beak is a unique feature that is found only in pelicans.
B.
All birds have beaks, but the beaks vary among different species.
C.
The shape and structure of the beak have remained the same over many generations.
D.
The shape and structure of the beak are inherited and help the pelican survive in its environment
Answer:
D. The shape and structure of the beak are inherited and help the pelican survive in its environment
Explanation:
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How can a shipwreck that is left in place on the ocean floor benefit marine life?.
Answer:
Nutrition and Shelter
Explanation:
the remaining fossils and foods can be used as nutrition for algae and fish living in that area. as well as the shelter used for fish to hide and reproduce/rest/cool down.
Answer:
I got you
Explanation: How can a shipwreck that is left in place on the ocean floor benefit marine life - The fossil fuel in its engines can become food for algae and fish. Its interior can release oxygen from the surface to the deep ocean. It can provide a hard surface where organisms can attach and live. Also, the wreck can become an artificial Reef and protection from predators.
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What is the average for the following set of measurements?
7.1 g, 9.8 g, 2.3 g, 8.5 g, 7.4 g, 5.7 g
A. 9.8 g
B. 6.8 g
C. 8.2 g
• D. 40.8 g
Answer:
6.8g
Explanation:
All numbers are added together and you divide the total but the amount of numbers given.
All numbers added equals to 40.8
Numbers given equals 6
40.8 divided by 6 equals 6.8
a double-stranded dna oligonucleotide and a double-stranded rna oligonucleotide of identical sequence (substituting u for t) are both present in an aqueous solution near neutral ph. apart from the presence of u in rna versus t in dna, how will their helical structures differ?
In terms of their helical structures, DNA and RNA differ in several ways. Firstly, DNA typically forms a double-stranded helix, with the two strands held together by hydrogen bonds between complementary base pairs.
These base pairs consist of adenine (A) paired with thymine (T), and cytosine (C) paired with guanine (G). In contrast, RNA typically forms a single-stranded helix, although it can fold back on itself to form double-stranded regions. RNA also contains the base uracil (U), which pairs with adenine (A) in a similar manner to thymine (T) in DNA.
In terms of the specific question posed, a double-stranded DNA oligonucleotide and a double-stranded RNA oligonucleotide of identical sequence (substituting U for T) would differ primarily in their helical structure due to the difference in base pairing. In RNA, uracil (U) would pair with adenine (A), while in DNA, thymine (T) would pair with adenine (A).
This difference in base pairing would affect the overall shape of the molecule, as well as the stability of the helix. In particular, the hydrogen bonding between uracil (U) and adenine (A) is weaker than that between thymine (T) and adenine (A), meaning that the RNA helix may be less stable than the DNA helix.
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what is a population? group of answer choices all of the organisms of a single species existing at a particular time a group of individuals of a single species that occupy the same general area and all the abiotic factors that affect them a group of organisms that occupy the same general area a group of individuals of a single species that occupy the same general area
A population is, option C: a group of organisms that occupy the same general area.
A population is a collection of creatures belonging to the same species that coexist in a certain location. Within a given area, more than one population may exist. It's possible for populations of Saguaro cacti, Cactus Wrens, and Bark Scorpions to coexist in the same places. As a result, choice C is the right response.
There are five organizational levels, and each level is given with its size in descending order, from tiny to huge. Organism, population, community, ecosystem, and biosphere are a few of them. A population is a collection of members of the same species that live in a specific geographical area. They mix genetically and engage in resource competition.
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Translate this RNA strand into amino acids
3’-UCAAGUCAUUAG-5’
________________________________
Answer:
AGUUCAGUAAUC
Explanation:
This might be slightly wrong, it was somewhat difficult for me to keep up with which letter I was on. Adenine always pairs with Uracil and Guanine always pairs with Cytosine.
Amino acids for given RNA strand is Serine - Leucine - Cysteine - Aspartic acid - Leucine.
There are 20 amino acids that are present in nature and are necessary for a number of biological functions. Although the molecular structures of these amino acids vary, they all have a core backbone made up of an amino group, a carboxyl group, and a side chain. Each amino acid is distinct due to its side chain, which also gives it special characteristics and abilities. Hydrophobic, hydrophilic, acidic, basic, and aromatic side chains can all be divided into different categories. How amino acids interact with their surroundings and other compounds is determined by this classification. Amino acids for given RNA strand is Serine - Leucine - Cysteine - Aspartic acid - Leucine.
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what are the functions of the White blood cells in the body
Answer:
2 protect ur body
Explanation:
Answer:
2 protect your body from deseses
solve it according to the question please.
the subject is petroleum, so please solve it regardibg
this.
F- Explain the global carbon-climate cycle during the Cretaceous period. (Write only one paragraph describing what happened during the Cretaceous geological period in order to have good source rocks.)
During the Cretaceous period, high temperatures and abundant vegetation resulted in increased \(CO_2\) levels, leading to the accumulation of organic matter and the formation of good source rocks for oil and gas.
During the Cretaceous period, spanning from approximately 145 to 66 million years ago, the global carbon-climate cycle played a crucial role in the development of favorable conditions for the formation of good source rocks. The period was characterized by high global temperatures and abundant vegetation, resulting in increased carbon dioxide \((CO_2)\) levels in the atmosphere.
The elevated \(CO_2\) levels fueled vigorous photosynthesis, leading to the accumulation of organic matter in marine and terrestrial ecosystems. As this organic matter was buried and subjected to heat and pressure over millions of years, it transformed into oil and gas, creating potential source rocks. The warm climate and prolific vegetation during the Cretaceous, along with the subsequent geological processes, contributed to the formation of the rich hydrocarbon reserves that are vital to our energy resources today.
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The correct question is:
Explain the global carbon-climate cycle during the Cretaceous period. (Write only one paragraph describing what happened during the Cretaceous geological period in order to have good source rocks.)
In pea plants, purple flowers (P) are dominant over white flowers (p). If two heterozygous purple-flowered plants are crossed with each other, then what are the possible genotypes of the offspring?
Hint: work it out in a Punnett square!
Group of answer choices
Pp and pp
Pp, PP and pp
PP and pp
Pp only
Answer:Genotype of heterozygous purple plant is: Pp
Cross = Pp × Pp
Offspring: = PP, Pp, Pp, pp
In short, Your Answer would be Option D
Hope this helps!
Explanation:
a compound light microscope has more than one
A compound light microscope is a microscope with more than one lens and its own light source.
Does a compound light microscope have more than one lens?A microscope having multiple lenses and a separate light source is called a compound light microscope. Ocular lenses are located in the binocular eyepieces of this type of microscope, while objective lenses are located in a rotating nosepiece that is located closer to the specimen.
A compound microscope is a microscope that magnifies a sample's picture using several lenses.
Therefore, the objective lens, which is commonly 4x, 10x, 40x, or 100x, is compounded (multiplied) by the eyepiece, which is typically 10x, to produce a high magnification of 40x, 100x, 400x, and 1000x in a compound microscope. Using two lenses instead of simply one magnifying lens allows for higher magnification.
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See full question below
A compound light microscope has more than one ----------
The spotted eagle ray (Aetobatus narinori) shares the same class, Elasmobranchii, as white sharks (Carcharodon carcharias). What would be true about an organism that shares the same genus as the eagle ray? a) It would be equally related to eagle rays and white sharks. b) It could also share the same genus as white sharks. c) It would be more closely related to white sharks than the eagle ray. d) It could be in a different class than eagle rays. e) It would be more closely related to the eagle ray than to white sharks.
It could also share the same genus as white sharks. A genus is a category of biological classification ranking between family and species.
Option b is correct.
The first name given to a species is its genus name. Animals or plants that belong to the same genus have a number of characteristics in common. Each genus is made up of one or more species.What is Elasmobranchii?Sharks, rays, and skates belong to the Elasmobranchii class. Their skeletons are made up of cartilage instead of bone, they have several rows of teeth, and they breathe through five to seven gill slits on the sides of their heads.
Spotted Eagle Ray and White Sharks are part of the Elasmobranchii class. This does not, however, imply that they belong to the same genus. When two organisms share the same class, it indicates that they have several traits in common, such as having a skeleton made of cartilage and five to seven gill slits on the sides of their heads. The organisms in the same class are similar in general but not necessarily related more closely at the species or genus level.
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need help help me 30 points ik its not alot but need help
Answer:
could u possibly make the same question but with two picture cause all i can see are words ..plz
Tracey was learning about structural organization in animals. What level of structural
organization BEST describes an egg?
A. a cell
B. a tissue
C. a system
D. an organ
Answer:
A
Explanation:
Egg cell
The level of structural organization which best describes an egg is: A. a cell.
A cell can be defined as the fundamental (basic) structural, functional, and smallest unit of life, that is typically found in all living organisms such as animals.
The structure of an egg is similar to those of cells found in living organism, which are structurally layered with various cell organelles.
An egg shell is selectively permeable because it acts as an outer membrane just like in living cells to prevent unwanted materials from going into the egg.
In conclusion, the level of structural organization in animals cells can best be describe by using an egg.
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