Compare and contrast the numbers of bones and composition of infant skulls and adult skulls

Answers

Answer 1

Answer:

Explanation:

The skull is located in the head. The bone of the skull of a new born is not fused at birth this is to enable passage during birth from the female opening while the skull bone of an adult at joined or linked to the other by sutures, this allows for growth of the skull as the child develops.

At birth the bone is 44 and are separated by a structure called fontanels this indicates the softness of the head. This fontanels allows growth of the skull as the child's develops.


Related Questions

Which of the following statements about electromagnetic radiation is true?
The shorter the wavelength, the more energy is carried.
The sun produces a low-energy radio waves.
The sun produces high-energy gamma rays.
All statements are correct.

Answers

Each of the claims is true. Let's look at the following as an explanation for this:

A wave's energy is directly inversely related to its frequency. As a result, as frequency increases, wavelength decreases and wave energy increases. Solar radiation, which is a subset of the vast range of energy known as the electromagnetic radiation spectrum, is how the entire amount of solar energy that reaches the Earth. Infrared, radio waves, X-rays, gamma rays, ultraviolet light, and visible light are all types of solar radiation. One technique to transport heat is by radiation.

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1.If rTMS is deemed a success, this treatment could be applied to other disorders by doing what?
2.Your aunt has Parkinson's. Which of the following treatments is most likely to help her?

1.If rTMS is deemed a success, this treatment could be applied to other disorders by doing what?2.Your

Answers

Answer: B

Explanation:

1) If rTMS is deemed a success, it could be applied to other disorders by;

Option C; Increasing activity in the brain region involved.

2) The treatment most likely to help your aunt who has parkinson's is;

Option B; DBS

       1) rTMS is an acronym that means repetitive transcranial magnetic stimulation. The way it is used is that a coil is held above a part of the brain and recurring high magnetic pulses are targeted at specific brain structures.

This means that the activity of the region of the brain involved is stimulated.

Thus, when applied to other disorders, it could also be a success by increasing the activity in the brain region that is involved.

      2) Parkinson's disease is a neurological movement disorder. Now the best way to treat it is to transmit electrical impulses to a specific area of the brain that is responsible for the movement/motor symptoms that Parkinson's disease caused. This is done because electrical impulses interrupt the abnormal activity that occurs in the brain's circuitry which causes the symptoms of the Parkinson's' disease.

The treatment that goes through this process is called Deep Brain Simulation (DBS)

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In clover plants, the pattern on the leaves is determined by a single gene with multiple alleles that are related in a dominance series. The gene is not pleiotropic. Seven different alleles of this gene are known; an allele that determines the absence of a pattern is recessive to the other six alleles, each of which produces a different pattern All heterozygous combinations of alleles show complete dominance
a. How many different kinds of leaf patterns (including the absence of a pattern) are possible in a population of clover plants in which all seven alleles are represented? phenotype that could be represented by only a single genotype? you can identify a few plants representative of all possible pattern types. Explain this finding.
b. What is the largest number of different genotypes that could be associated with any one phenotype? Is there any
c. In a particular field, you find that the large majority of clover plants lack a pattern on their leaves, even though you can identify a few plants representative of all possible pattern types.explain this finding

Answers

Answer:

The correct answer is -

a. 7

b. 7 (p1p1, p1p2, p1p3, p1p4, p1p5, etc

c. p7 is abundant

Explanation:

According the question the dominance of the big leaves is p7 > p6 >p5 >p4 >p3 >p2 >p1 where 1 represent least dominance and 7 represent most dominance  

let represent the phenotype with the numbers 1 to 7 and genotype with a combination of these numbers so the genotype in respect of phenotype would be :

p7p7,p7p6, p7p5, p7p4, p7p3, p7p2, p7p1 - most dominant 7

p6p6, p6p5, p6p4, p6p3, p6p2, p6p1 - 6

p5p5, p5p4, p5p3, p5p2, p5p1 - 5

p4p4, p4p3, p4p2, p4p1 - 4

p3p3, p3p2, p3p1 - 3

p2p2, p2p1 - 2

p1p1- 1 least dominant

Thus, there are 28 different combinations or patterns of genotypes. 7 phenotypes patterns.

In camellia plants, flower color is controlled by a single gene with codominant alleles. A camellia plants with red flowers (R) is crossed with a camellia plant with white flowers (WW). What are the expected phenotypes of the offspring of this cross?
O A. All will have both red and white flowers.
• B. All will have red flowers.
O c. Half will have red flowers and half will have white flowers.
• D. All will have pink flowers.

Answers

Half will have red flowers and half will have white flowers (option c).

In camellia plants, flower color is controlled by a single gene with codominant alleles. In this case, one parent plant has red flowers (R), while the other parent plant has white flowers (WW).

When two organisms with codominant alleles are crossed, both alleles are expressed equally in the offspring. Therefore, in this cross, the offspring will inherit one allele for red flowers (R) from the red-flowered parent and one allele for white flowers (W) from the white-flowered parent.

The possible combinations of alleles that the offspring can inherit are RW and RW.

When the alleles RW and RW combine, the resulting genotypes are RR (red-flowered) and RW (pink-flowered). However, since the allele for white flowers (W) is recessive to the allele for red flowers (R), the plants with the RW genotype will exhibit the dominant red flower phenotype.

Therefore, half of the offspring will have the RR genotype and display red flowers, while the other half will have the RW genotype and also display red flowers. None of the offspring will have the WW genotype, so there won't be any white flowers.

Hence, the expected phenotypes of the offspring of this cross are that half will have red flowers and half will have white flowers. Thus, the correct option is c.

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Mark this and return
How is energy related to the change of state
represented by the model?
O Atoms gain energy as a gas changes to a solid.
Atoms gain energy as a gas changes to a liquid.
Atoms lose energy as a gas changes to a solid.
Atoms lose energy as a gas changes to a liquid.

Mark this and returnHow is energy related to the change of staterepresented by the model?O Atoms gain

Answers

The energy is related to the change of state represented by the model by: D. Atoms lose energy as a gas changes to a liquid.

What is Atoms?

A model of the transition from a gas to a liquid is shown in the accompanying image. It demonstrates how atoms or molecules change from being widely scattered as in a gas to being concentrated as in a liquid.

The atoms in this process move from a higher-energy state  to a lower-energy state releasing or losing energy in the process. The most common kind of energy loss is heat.

Therefore the correct option is d.

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Name three human activities that are changing the natural world. Why do these activities make it important to understand evolution?
Explain Lamarck's ideas about how organisms changed over time.

Answers

Answer: Overharvesting, this can bring the species to extinction. Destruction of habitat is self explanatory, it can also lead to a lot of inbreeding which comes with mutations and not so good things. Pollution also fits in the same category of destruction of habitat also affecting the oxygen living things breathe.

Its correct on edge

Answer:

1. Deforestation. Cutting of trees results to the endangered habitats of animals and the soil compaction is becoming less and less.

2. Hunting. Killing animals mercilessly and selling them off reduces their numbers and increase the fear of humans

3. Genetic engineering. Modifying the cell structure of a plant or animal increases possible risk of cancer, toxicity in the soil and others.

Explanation:

) Some students investigated the effect of the different concentrations of sugar in four drinks, A, B, C and D, on the movement of water across a partially permeable membrane. The students: • made four bags from artificial partially permeable membrane • put equal volumes of 5% sugar solution in each bag • weighed each bag containing the sugar solution • placed one bag in each of the drinks, A, B, C and D • after 20 minutes removed the bags containing the sugar solution and weighed them again. (i) The bag in drink A got heavier after 20 minutes. Explain why.
A contains 0.1% sugar solution.
B contains 4.2% sugar solution.
C contains 6.9% sugar solution.
D contains 10.6% sugar solution.

Answers

Answer:

Concentration of sugar in the bag was higher than in the drink or higher concentration of water outside the bag or in the drink boiling tube so water moved in (to the tubing by osmosis.

Explanation:

Concentration of sugar in the bag was higher than in the drink or higher concentration of water outside the bag or in the drink boiling tube so water moved in (to the tubing by osmosis.

The bag in drink A got heavier after 20 minutes because the water from outside traveled inside the bag via osmosis. Therefore, option (A) is correct concentration of the drink.

What is osmosis?

The process of osmosis refers to the transfer of water molecules from a solution that contains a high concentration of water molecules to a solution that contains a lower concentration of water molecules. This transfer takes place through the membrane of a cell, which is only partially permeable.

The states of hypertonicity, isotonicity, and hypotonicity are the three categories of osmotic conditions.

Within a live cell, osmosis plays a significant part in the movement of nutrients as well as the excretion of metabolic waste products. Within a cell, it regulates the flow of water and the levels of intracellular fluid so that they are more stable. Osmosis is responsible for both the regulation of cell-to-cell diffusion as well as the preservation of the mechanical structure of a cell.

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You are researching an enzymatic protein in the lab and make the following observations. The usual form of the protein is globular (spherical) however, when a sample of the protein is treated with a chemical that reduces disulfide bonds, the rate of enzymatically driven product formation decreases dramatically and multiple globular proteins can be detected in the sample. From these observations you conclude: A. The primary structure of the protein contains multiple cysteine residues that are hydrolyzed by the chemical reductant. B. The protein is most likely composed of multiple polypeptide chains that are held together by disulfide bonds C. The protein is most likely composed of a helices that are held together by disulfide bonds. D. The primary and secondary structure of the protein depends on disulfide bonds. E. None of the provided statements are reasonable conclusions based on the observations,

Answers

Answer:The protein is most likely composed of multiple polypeptide chains that are held together by disulfide bonds

Explanation:

The Disulfide bonds in protein membranes are usually seen in bacteria and eukaryotes.

Answer:

Option B

Explanation:

Since the usual shape of the protein is supposed to be globular and even after treatment, it still produces the same globular proteins despite the reduction of its disulphide bonds.

The disulphide bonds should have disrupted the shape formation if it had been a mechanism for its shape formation but since multiple globular polypeptide resulted from the treatment it can be assumed that the multiple polypeptide chains are held together by disulfide bonds which are hydrolyzed by the chemical.

similarities between organic and inorganic fertilizer​

Answers

Answer:

Organic fertilizers are natural, in that the nutrients they possess are strictly comprised of plant- or animal-based materials. ... Cow manure, decaying leaves, and food compost are all forms of organic fertilizer. Inorganic fertilizer is synthetic, comprised of minerals and synthetic chemicals.

Explanation:

How do biologists define life, and what were the origins of life? ( Penn Foster )

Answers

Biologists define life as a characteristic of organisms that demonstrate growth, reproduction, adaptation, response to stimuli, and metabolism.

It is a complex system with a set of physical and chemical properties that distinguish living things from non-living things.Life on Earth is thought to have emerged around 4 billion years ago, through a process known as abiogenesis or biopoesis.

The origin of life has been widely debated over the years, but the leading scientific theory suggests that life emerged spontaneously from non-living matter in the form of a chemical reaction.There are two leading hypotheses about the origin of life on Earth: the "RNA World" hypothesis and the "Metabolism First" hypothesis.

Both theories rely on complex chemical processes that took place under certain environmental conditions, such as the presence of water, heat, and the presence of certain chemicals and minerals.Based on the available evidence, it seems that life emerged gradually over time through a series of chemical reactions.

These reactions led to the formation of simple organic molecules, which eventually combined to form more complex compounds such as amino acids and proteins. Eventually, these compounds came together to form the first living cells, marking the beginning of biological evolution.

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Which of the following is "not" likely to cause a magnet to lose
its magnetism?
a. Striking it with a hammer.
b. Cooling it.
c. Dropping it repeatedly on the ground.
d. Heating it.


The magnetic field of a magnet is strongest
a. at its north pole.
b. at its south pole.
c. in the middle.
d. at both of its poles.

Answers

The answers include the following:

The following which is "not" likely to cause a magnet to lose its magnetism is cooling it and is therefore denoted as option B.The magnetic field of a magnet is strongest at at both of its poles and is denoted as option D.

What is a Magnet?

This is referred to as a material or object that produces a magnetic field and it has two poles which are the North and south poles in which the magnetic field of a magnet is strongest.

Cooling a magnet will not cause a magnet to lose its magnetism but instead the magnetism will increase because the molecules within the magnet will move slower because they have less kinetic energy so there is less vibration within the magnet's molecules thereby resulting in more concentrated magnetic field that strengthens the magnet.

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what opposes the sliding motion of two
surfaces that are in contact.

Answers

Answer:

Friction: A force that opposes the motion of objects that touch as they move past each other. Friction acts at the surface where objects are in contact.

Explanation:

The force that acts against your pushing force is called friction. is a force that resists the motion between two surfaces in contact. When you try to slide two surfaces across each other, the force of friction resists the sliding motion.

A terrestrial biome has long, cold winters and short, cool summers. The precipitation is low, and the ground remains frozen for most of the year. Plants such as lichens and mosses that can withstand dry and cold conditions are found in this biome.

Which biome is characterized by these factors?


coniferous forest
savannah
tropical rainforest
tundra

ANSWER: tundra

Answers

Tundra biome is the terrestrial biome which is characterized by long, cold

winters and short, cool summers.

The tundra biome is found in the polar desert regions where there are long

periods of winter. There is very little precipitation which is usually in the

form of snow.

This biome contains less nutrients and doesn't support much plant or animal

life. Plants such as lichens and mosses which are able to withstand dry and

cold conditions are found in this biome.

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Please help me

What is the advantage of porous bones in birds?
A. their holes assist in ridding the bird of wastes
B. their holes help keep the feathers intact
C. they are lighter, which helps with flight
D. they are lighter, which makes the bird need less food

Answers

Answer:

C. But see the answer under C. Apparently C is the accepted answer.

Explanation:

A. Not A.I don't think that's a problem for gulls especially on beaches.

B. Not B.  Their feather do not look like they need much help in keeping their feathers attached when in flight.

C. This is not really the answer, but it is the best answer of these 4. The actual answer is that the bones are porous for better air intake which provides more oxygen and hence they are better able to fly.

D. Not D. Food has nothing to do with the problem. Birds get an adequate amount of food without their wings being porous. See the answer for C.

Answer:

C. they are lighter, which helps with flight

Explanation:

Have a great day

A scientist used a microscope to observe a prepared sample on a slide. The scientist's observations are shown.
Smooth Muscle
Nucleus
The drawing illustrates which two levels of biological organization? Choose TWO answers.
cell
tissue
organ
organ system
organism

Answers

Cell and tissue are the two biological organisation levels that are represented in the drawing. The smooth muscle is a type of tissue made up of cells, and the nucleus is a cellular organelle.

The smallest unit of life, cells are the fundamental building elements of all living things. Tissues are collections of cells that collaborate to carry out particular tasks.

Organs are created through the combination of cells and tissues. Organ systems, in turn, create organisms.

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What are the cell organelles and each of their functions?

Answers

Answer:

Cell organelles are specialized structures within a cell that play a vital role in the cell's overall function. There are several different types of organelles, each with its own specific role. The nucleus is the control center of the cell and houses the cell's genetic material. The ribosome is responsible for producing proteins. The endoplasmic reticulum manufactures and transports molecules. The mitochondria provide energy for the cell. The Golgi apparatus is responsible for sorting and packaging molecules for transport. The lysosomes are responsible for breaking down large molecules. The vacuoles store nutrients and other molecules. The cytoskeleton is a network of protein fibers that helps maintain the shape of the cell and aids in transport. Finally, the chloroplast is responsible for photosynthesis in plant cells.

A steroid hormone approaches its target cell. Which will happen first?

The hormone will enter the nucleus
The hormone will combine with proteins to form lipoproteins
The hormone and its receptor will interact with the DNA
The hormone and its receptor will enter the cell’s nucleus

Answers

When a steroid hormone approaches its target cell, the action that will happen first is that the hormone will pass through the plasma membrane and then enter the nucleus. Thus, the correct option for this question is A.

What is a Steroid hormone?

A steroid hormone may be defined as a group of substances that are significantly derived from cholesterol which exerts a wide range of effects on processes such as growth, metabolism, and sexual differentiation.

A steroid hormone directly initiates the production of proteins within a target cell. Steroid hormones get diffuse through the cell membrane. It is thought that, because of their lipophilic nature, free steroid hormones enter target cells primarily by passive diffusion through the cell membrane.

Therefore, the correct option for this question is A.

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Is a volcano part of the lithosphere? Explain. NO WEIRD LINKS!

Answers

Answer: Tectonic activity is responsible for some of Earth's most dramatic geologic events: earthquakes, volcanoes, orogeny (mountain-building), and deep ocean trenches can all be formed by tectonic activity in the lithosphere.

Please give me brainlest if this helps.

1. Over time, the climate of an island became drier, which resulted in changes to the populations of various island finch species. Finch populations with a certain beak shape thrived, while those not having that beak shape decreased, Which of the following describes a necessary condition for thesechanges in the finch populations to occur?

Answers

Answer:

A necessary condition for the changes in the finch populations to occur in response to the drier climate would be:

- Variation in beak shape within the initial population: There must have been existing genetic variation in the population of finches regarding beak shape. Some finches would have had the beak shape that provided an advantage in obtaining food resources in the drier climate, while others would have had different beak shapes.

Without this initial variation in beak shape, there would be no opportunity for natural selection to act and favor individuals with the advantageous beak shape. Therefore, the presence of genetic variation within the population is necessary for the changes in the finch populations to occur.

Based on the theory of natural selection, the necessary condition for the changes in the finch populations to occur is limited food resources. Option B

What does natural selection say?

Natural selection is the process by which populations of living organisms adapt and change over time.

Natural selection occurs when there is variation within a population of a species, and some individuals are better able to survive and reproduce than others.

These individuals are more likely to pass on their genes to the next generation, and the population will gradually change over time.

The above answer is based on the full question below;

Over time, the climate of an island became drier, which resulted in changes to the populations of various island finch species. Finch populations with a certain beak shape thrived, while those not having that beak shape decreased, Which of the following describes a necessary condition for these changes in the finch populations to occur?

A. fewer mutations B. limited food resources C. limited beak variations D. overproduction of offspring

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Katie wants to make ball-and-stick models of the four macromolecules. She has colored balls for each of the elements in these molecules, including the following.

Answers

Answer:

I don't really understand what the question is, but I'm pretty sure you're asking for which molecules that will be needed; Carbon, Hydrogen, Oxygen, Nitrogen, Phosphorus

Explanation:

-Carbohydrate consists mainly of Carbon, Hydrogen, Oxygen, simple sugars have the basic formula of (CH2O)n. Some modification can be made to the sugar, but the main formula consists only with Carbon, Hydrogen, Oxygen.

-Proteins consists mainly of Carbon, Hydrogen, Oxygen, and Nitrogen for the amide groups. Some amino acid will need Sulfur for it's R Group.

-Fats consists mainly of Carbon, Hydrogen, and Oxygen just like Glucose.

-Nucleic Acids consists mainly of Carbon, Hydrogen, Oxygen, Nitrogen, and Phosphorus for the backbone of the Nucleic Acid. Nitrogen will be needed for the Nitrogenous Base.

I hope this is the answer you're looking for!

Lab 9: Kingdom Plantae (12 Points) Introduction Plants are defined as multicellular eukaryotes with cell walls made of cellulose. Nearly all of them contain chlorophyll and carry out photosynthesis. Being photoautotrophs, plants can make all their own organic molecules. All they need is energy from light, carbon from carbon dioxide, water, and various elements (like N, P, K, Ca, and Mg). Water can be absorbed into a plant by osmosis, but it can only travel a few cells away from a source. In order to transport water long distances, some groups of plants have specialized tissues (vascular tissue). Plants without vascular tissues must live in wet areas and cannot grow very tall. Consult the plant lecture, slides, and links on Canvas for more information on defining features of plants and groups of plants. Part 1: Comparing major groups of plants Within the plant kingdom, biologists separate plants into four major groups: bryophytes (mosses and llverworts), pteridophytes (ferns), gymnosperms (conifers), and anglosperms (flowering plants). The separations are primarily based on anatomical structures, particularly the ones they use to transport water in their bodies, and on the different ways in which plants reproduce sexually. **What to submit for this activity** Use the information from lectures, the textbook, and any other sources of your choice to fill out the table comparing the four major groups of plants. Submit your completed table as part of what you upload to the Canvas lab assignment for this week. (5 Points) What are one or more examples? Do they have vascular tissue (xylem and phloem)? Which part of the life cycle/generation is more dominant in structure? (Gametophyte or Sporophyte?) What other characteristics can help you identify this group? (List at least 2 or more) Mosses and liverworts (Bryophytes) Ferns and relatives (Pteridophytes) Conifers (Gymnosperms) Flowering plants (Angiosperms)​

Answers

Mosses and liverworts (Bryophytes):

- Example: Mosses (e.g., Sphagnum moss) and liverworts (e.g., Marchantia)

- Vascular tissue: No true vascular tissue (lack xylem and phloem)

- Dominant structure: Gametophyte generation is more dominant in structure

- Other characteristics:

  1. Lack of true roots, stems, and leaves; instead, they have rhizoids.

  2. Reproduce via spores and require water for fertilization.

Ferns and relatives (Pteridophytes):

- Example: Ferns (e.g., Polypodium) and horsetails (e.g., Equisetum)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Reproduce via spores produced in structures called sporangia.

  2. Exhibit well-developed leaves called fronds and often have underground stems (rhizomes).

Conifers (Gymnosperms):

- Example: Conifers such as pine trees (e.g., Pinus) and spruces (e.g., Picea)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Produce seeds in cones.

  2. Typically have needle-like or scale-like leaves and are often evergreen.

Flowering plants (Angiosperms):

- Example: Flowering plants include roses (e.g., Rosa), sunflowers (e.g., Helianthus), and oak trees (e.g., Quercus)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Produce flowers for sexual reproduction.

  2. Seeds are enclosed within fruits.

  3. Have a wide range of forms, from small herbs to large trees.

Please note that the examples provided are just a few representatives of each plant group, and there are many more species within each group.Mosses and liverworts (Bryophytes):

- Example: Mosses (e.g., Sphagnum moss) and liverworts (e.g., Marchantia)

- Vascular tissue: No true vascular tissue (lack xylem and phloem)

- Dominant structure: Gametophyte generation is more dominant in structure

- Other characteristics:

  1. Lack of true roots, stems, and leaves; instead, they have rhizoids.

  2. Reproduce via spores and require water for fertilization.

Ferns and relatives (Pteridophytes):

- Example: Ferns (e.g., Polypodium) and horsetails (e.g., Equisetum)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Reproduce via spores produced in structures called sporangia.

  2. Exhibit well-developed leaves called fronds and often have underground stems (rhizomes).

Conifers (Gymnosperms):

- Example: Conifers such as pine trees (e.g., Pinus) and spruces (e.g., Picea)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Produce seeds in cones.

  2. Typically have needle-like or scale-like leaves and are often evergreen.

Flowering plants (Angiosperms):

- Example: Flowering plants include roses (e.g., Rosa), sunflowers (e.g., Helianthus), and oak trees (e.g., Quercus)

- Vascular tissue: Have true vascular tissue (xylem and phloem)

- Dominant structure: Sporophyte generation is more dominant in structure

- Other characteristics:

  1. Produce flowers for sexual reproduction.

  2. Seeds are enclosed within fruits.

  3. Have a wide range of forms, from small herbs to large trees.

Please note that the examples provided are just a few representatives of each plant group, and there are many more species within each group.

Part D Consider the results of each solution. Did any one solution work best? Could you combine or modify the solutions to develop a better method for removing the oil from the water?​

Answers

No one solution worked best for removing oil from water. It is possible to combine or modify the solutions in order to develop a better method for removing the oil from the water, such as using a combination of physical, chemical, and biological methods in order to remove more of the oil from the water. Additionally, the effectiveness of the chosen method will depend on the type of oil, the specific contaminants present, and the environmental conditions of the water.

The difference in solar energy received at different latitudes drives atmospheric circulation.
O True
O False

Answers

Answer: The difference in solar energy received at different latitudes drives atmospheric circulation. Places that get more solar energy have more heat. The air over the areas receiving less heat is cooler and so it sinks. The rising warm air and sinking cool air create wind which moves air and heat around the planet. so it would true if not true then false

Explanation:

Answer:

True

Explanation:

I studied this

A group of scientists are studying the genome of the Drosophila Fly. In
these flies, the allele for long wings is dominant over the allele for short
wings. What phenotype would a heterozygous genotype have?
A. Long wings
B. Short wings
C. LI
D. LL

Answers

Answer:

A. Long wings

Explanation:

Long wings - LL or Ll

Short wings - ll

Heterozygous genotype means one dominant and one recessive allele. So, the genotype would be Ll.

Therefore, the phenotype would be long wings.

Hope that helps.

Describe how the process of photosynthesis uses sunlight to produce glucose and how this molecule is broken down in the cell to produce energy / ATP.

Answers

Photosynthesis is the process by which b) glucose is synthesized. In the reactions of photosynthesis, carbon dioxide and water are the reactants. They are converted into glucose (sugar) and oxygen gas, and the reaction is powered by the sun's energy. Chlorophyll is the green pigment that absorbs light energy from the sun, utilizing this energy to drive the reactions in photosynthesis. The glucose that is created serves as food for the plants and for nearly every other living thing. Glucose stores the sun's energy in its chemical bonds and this energy can be accessed later when the glucose is broken apart through cellular respiration.

I need to know what is the best drug combination for this there are two criteria that i need to meet

side effects have to be none to mild
drug resistance has to be under 20%
malaria population has to be decrease

I need to know what is the best drug combination for this there are two criteria that i need to meet

Answers

The best drug combination for malaria with the criteria that side effects have to be none to mild, drug resistance has to be under 20%, and malaria population has to decrease is the combination of artemether-lumefantrine (AL) and piperaquine-dihydroartemisinin (PQ-DHA).

Malaria is an infectious disease caused by a protozoan parasite. Artemether-lumefantrine (AL) and piperaquine-dihydroartemisinin (PQ-DHA) are two antimalarial medications that work by killing the malaria parasite in the body. They are also effective against drug-resistant malaria strains and have been shown to have minimal side effects.AL and PQ-DHA are included in combination treatments for malaria.

The benefits of using these drugs together include better efficacy, fewer side effects, and less likelihood of drug resistance. They work together to ensure that the malaria parasite is destroyed effectively.According to clinical studies, the combination of AL and PQ-DHA has been shown to reduce the number of malaria infections and have less than 20% drug resistance. Additionally, these medications have minimal side effects, such as headache, dizziness, and vomiting.

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Match these terms with the following definitions. A) collenchyma cellsB) dermal tissueC) dicot rootsD) dicot stemsE) monocot leavesF) monocot stems,G) sclerenchyma cellsH) vascular tissue.I. Provides protectionII. Xylem and phloemIII. Support of herbaceous plantsIV. Supports woody plantsV. Vascular tissue in x-shapeVI. Vascular tissue scattered in bundlesVII. BranchingVIII. Vascular tissue in parallel bundles

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A) The collenchyma cells are cells with a thick deposit of cellulose in their cell walls, and it is a supporting tissue in growing organisms of both herbaceous and woody plants - III

B) The dermal tissue is the extremely thin outer layer of a plant, and it's main function is to protect the plant from injury and water loss - I

C) Dicot roots forms one single thick root, being different than the monocot roots in shape. The vascular tissue is arranged in X-shape. - V

D) Dicot stems are the axial structure of the plant, providing the new living tissue that's necessary for the plant to grow (getting taller and wider, and also growing branches). Therefore, it plays an important role in branching. - VII

E) The monocot leafs presents a vascular tissue in parallel bundles - VIII

F) The monocot stems presents a vascular tissue scattered in bundles. - VI

G) The schlerenchima cells are usually dead cells containing lignin supporting the plant, which makes it rigid. - IV

H) The vascular tissue is responsible for distributing nutrients through the plant (xylem) and, also, for conducting everything that leaves the plant on its way out (phloem). - II

A form used to characterize particle size

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Laser diffraction is a widely used particle sizing technique for materials ranging from hundreds of nanometers up to several millimeters in size.

As a result of meiosis:one diploid cell has divided twice forming 4 haploid cells.gametes are producedgenetic variation increases.All of these choices are correct

As a result of meiosis:one diploid cell has divided twice forming 4 haploid cells.gametes are producedgenetic

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Meiosis is a process of cell reproduction and like mitosis consists of prophase, metaphase, anaphase and telophase. However, unlike mitosis, meiosis performs these processes twice, so it has prophase 2, metaphase 2, anaphase 2 and telophase 2.

Importantly, between meiosis 1 and meiosis 2 no replication of genetic material occurs, so at the end of telophase 2, 4 haploid daughter cells will be obtained, which means that they will have only half of the genetic material.

Because of this, this is a process that is used for the formation of gametes (sperm and eggs).

In addition to this, during meiosis 1 homologous chromosomes exchange their genetic material in a process called crossing-over.

Therefore, the answer is D, all options are correct.

As a result of meiosis:one diploid cell has divided twice forming 4 haploid cells.gametes are producedgenetic
As a result of meiosis:one diploid cell has divided twice forming 4 haploid cells.gametes are producedgenetic

A crane has a sharp and pointed beak while the duck has a flat beak.Explain why

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Answer:

The crane has a sharp and pointed beak adapted for catching and grasping prey. The sharp beak allows the crane to effectively stab and pierce its prey, such as fish, frogs, or small animals. The pointed shape helps the crane to accurately target its prey and secure a firm grip.

On the other hand, the duck has a flat beak, which is better suited for its specific feeding habits. Ducks are primarily filter feeders, and their flat beak enables them to sift through water or mud to collect small organisms, insects, and plants. The flat beak acts like a sieve, allowing the duck to strain out food particles while retaining water.

The difference in beak shape between the crane and the duck reflects their distinct feeding strategies and ecological roles. Each species has evolved its beak shape to optimize its ability to capture and consume the specific types of food sources available in their respective habitats.

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