Fruits have helped angiosperms spread their seeds.
Fruit bodies of plants are mature ovaries which is usually fleshy or not. the color/smell/taste of fruit attracts animals to eat the fruit and ingest the seeds. Through evolutionary processes plants “know” that animals travel, so when the animal poops out the seed, the seed will be able to germinate into a new plant in a new area, thus spreading it
The success of angiosperms can largely be attributed to the evolution of their reproductive structures, mainly flowers and fruits. Their numerous dispersal strategies, resulting from their varied fruit structures, in addition to their unique double fertilization process contribute to their wide distribution and dominance in terrestrial habitats.
Explanation:The success of angiosperms, or flowering plants, which comprise about 90 percent of all plant species, is significantly attributed to the evolution of flowers and fruits. Flowers have allowed plants to establish cooperative evolutionary relationships with animals, particularly insects, for the effective dispersion of their pollen. On the other hand, fruits serve dual purpose - they protect the developing embryos and function as agents of dispersal. The differing structures of fruits reflect the varied dispersal strategies that assist in seed distribution, contributing to the widespread success of angiosperms.
Many fruits, such as tomatoes, green peppers, corn, and avocados, are formed to attract animals that eat the fruit and then distribute the seeds through their digestive systems. Other fruits like rice, wheat, and nuts are classified as dry fruits and are designed for wind dispersal. This variety in fruit structure and reflects angiosperms' versatile modes of seed dispersal.
Furthermore, the unique double fertilization process in angiosperms, the creation of a diploid zygote and formation of a triploid cell endosperm, contributes to the resilient success of angiosperms, making them the dominant plant life in terrestrial habitats.
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Consider the dna sequence 5'-gattaca-3'. if the strand with this sequence forms a double helix with another dna strand, the sequence on the other strand should be ____. 3'-gattaca-5' 5'-ctaatgt-3' 3'-ctaatgt-5' 3'-ctaatgt-3' 5'-ctaatgt-3'
Answer:
It would be CTAATGT
In DNA, the sequence 5'-GATTACA-3' can form a double helix with another DNA strand having the sequence 3'-CTAATGT-5'.
Deoxyribonucleic acid (DNA) is a molecule formed by two antiparallel strands where nucleotides (i.e., their building blocks) interact by hydrogen bonds.Both DNA strands are linked together by hydrogen bonds between pairs of nucleotides.The complementary base-pair rule indicates that Adenine (A) always pairs with Thymine (T) in the opposite DNA strand, whereas Guanine (G) always pairs with Cytosine (C). Guanine pairs with Cytosine by three (3) hydrogen bonds; whereas Adenine pairs with Thymine by two (2) hydrogen bonds.In conclusion, in DNA, the sequence 5'-GATTACA-3' can form a double helix with another DNA strand having the sequence 3'-CTAATGT-5'.
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All of the following are part of a plants organizational structure except:
A. atoms
B. organs
C. tissues
D. systems
E. cells
Explanation:
a because plants dont have atoms they have mulculs
All of the following are part of a plants organizational structure except atoms. So, the correct option is (A).
What are Plants structure?Plant cells are defined as complex structures which contain several organelles lacking in animal cells which are cell wall, central vacuole and plastids i.e. chloroplast. There are three main tissue types called epidermal, ground and vascular tissue. Each tissue type contains specialized cells which have unique functions.
Plants have two organ systems:
1. The root system
2 .The shoot system
The root system is below ground consisting of roots which are specialized in the absorption of water and nutrients. The shoot system consists of stems and leaves present above the ground. Stems function to support the plant and transport materials (conduction), and leaves function in photosynthesis.
Thus, all of the following are part of a plants organizational structure except atoms. So, the correct option is (A).
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Why are a variety monomers needed to produce the complex molecules necessary for life
Answer:
the statement that best explains why a variety of monomers are needed to produce the complex molecules necessary for life is that Different monomers contain different kinds of atoms needed to produce different end products.
Monomers are small organic molecules that join together via dehydration synthesis reactions to form larger biological molecules known as polymers. Different types of monomers can combine in various ways, creating a diverse group of macromolecules. Three major classes of biological macromolecules - complex carbohydrates, nucleic acids, and proteins - are composed of monomers that link together through dehydration synthesis reactions.
A condition in which the arteries are hardened and have reduced elasticity is _____.
What part of the human ear contains the eardrum? A. The middle ear B. The lower ear C. The outer ear D. The inner ear
Answer:
A. The middle ear
Explanation:
In the anatomy of humans and various other tetrapods, the eardrum, also called the tympanic membrane or myringa, is a thin, cone-shaped membrane that separates the external ear from the middle ear.
The “middle ear” is the part which consists of eardrum.
Option: A
Explanation:
The organ which helps humans to hear is the ear which is consisted of three parts: the outer, inner and the middle ear. The “outer ear” consists the “pinna” which projects from the “side of the head”, the “inner end” of which is “closed by the eardrum” which lies in the middle ear. The outer ear performs the task of collecting the sound waves and transferring them to the eardrum. The middle ear also consists of three tiny bones named collectively as hammer, anvil and stirrup, they are called the auditory ossicles.
BRAINLIEST AND 100 POINTS WILL BE GIVEN!! PLEASE HELP! I HAVE A C AND I NEED TO GET MY GRADE UP!!!
1) During which moon phase do spring tides occur?
new moon and full moon
first quarter and third quarter
waxing gibbous and waning gibbous
waxing crescent and waning crescent
2) How often do spring and neap tides occur?
twice a day
twice a month
every 27.3 days
every 24 hours
3) During which phase of the moon does a lunar eclipse occur?
full moon
third quarter
waxing gibbous
waning crescent
4) Which movement causes day and night on Earth?
rotation of Earth
revolution of Earth around the Sun
Earth’s elliptical orbit in space
moon’s orbit around Earth
5) CHECK ALL THAT APPLY. What occurs during a solar eclipse?
Earth is closest to the Sun.
There are small tides across Earth.
The moon’s shadow falls on Earth.
The moon is covered in Earth’s shadow.
The moon is between Earth and the Sun.
6) How long is the lunar cycle?
14 days
24 hours
365 days
27.3 days
7) In which direction does the Sun appear to move across the sky?
from west to east
from east to west
from north to south
from south to north
ANSWER ALL OF THEM. IF YOU ONLY ANSWER ONE OR TWO I WILL REPORT!! IF YOU CAN ANSWER ALL OF THEM CORRECTLY ILL GIVE YOU 100 MORE POINTS ON A DIFFERENT QUESTION!!
1. Spring tides occur during new moon and full moon phase . Option 1
2. Spring and neap tides occur twice a month. Option 2
3. Lunar eclipse occur during the full moon phase. Option 1
4. The rotation of Earth causes day and night on Earth. Option 1
5. Things that occur during solar eclipse are
The moon’s shadow falls on Earth.
The moon is between Earth and the Sun.
The moon is covered in Earth’s shadow.
6. Lunar cycle is 27.3 days
7. The Sun appear to move from east to west across the sky. Option 2
What is an eclipse?An eclipse is a remarkable celestial phenomenon in which one celestial body passes into the shadow of another, causing a temporary obscuration of light.
The two main types are solar and lunar eclipses. A solar eclipse happens when the Moon moves between the Earth and the Sun, resulting in the Sun's light being partially or completely blocked. Lunar eclipses occur when the Earth is positioned between the Sun and the Moon, causing Earth's shadow to fall on the lunar surface.
This can lead to a dimming or reddening of the Moon. Eclipses hold scientific significance as opportunities for studying celestial interactions and have cultural importance as awe-inspiring events that have intrigued societies throughout history.
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enzymes that move certain phospholipids between leaflets have also which of the following properties?
A. play a role establishing and maintaining membrane lipid asymmetry
B. Transport proteins
C.Blocks post-synaptic membrane
D.Interacts with neighboring epithelial cells, or basal membrane
E. All of these are correct.
Answer:
A. play a role establishing and maintaining membrane lipid asymmetry
Explanation:
Proteins that move move certain phospholipids between leaflets are transmembrane proteins via "flip-flop" transition have also the possibility to maintain membrane lipid asymmetry. There are few types of such proteins:
flipases-move lipids from the exterior to the interior side of the membrane, energy requiredflopases-move lipids in reverse comparing to flipases, energy requiredscramblases-no energy required, bidirectionalBecause of the action of those proteins, cytosolic side of plasma membrane differs from exoplasmic side (asymmetry).
Is the current generation more wasteful than our ancestors?
Answer:
Yes, Because there are lots of Trash on the ocean than the past, People From the past are alot more less wasteful as of now soooo yeah.
Explanation:
The current generation is more wasteful than our ancestors because, in the current generation, there is more useful for those items which pollute the environment.
What is waste?Waste materials are those items that pollute the natural environment. These are non-natural products. They are made up of chemicals and other synthetic products.
These products are plastic and other chemicals. Before times, there was less use of plastic and other chemicals. So, the ancestors did not pollute the environment.
The current generation will be producing more waste because there is more use of plastic and another chemical.
Thus, the reason the current generation is more wasteful than our forefathers is that there are more uses for products that harm the environment.
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Describe how you produced summated contractions with the isolated muscles and how you produced a tetanus contraction. explain how summation of twitches is accomplished in vivo and how a sustained, complete tetanus contraction is produced.
Answer:
d
Explanation:
Summation of twitches and tetanus contractions explained in muscle physiology.
Summation of twitches: Summation in vivo occurs when successive stimuli are added together, resulting in greater contraction of the motor unit due to the release of more Ca++ ions triggering additional sarcomeres to contract. This leads to increased muscle tension.
Tetanus contraction: Complete tetanus is produced when the stimulus frequency is so high that the relaxation phase disappears completely, resulting in continuous contractions. This is achieved by increasing motor neuron signaling and activating more motor units in a muscle.
Production of summated contractions and tetanus: By increasing the frequency of motor neuron signaling, muscle tension rises, leading to incomplete tetanus which further progresses to complete tetanus, producing sustained, strong muscle contractions.
Covalent bond means that the atoms involved will _____. exchange valence electrons gain valence electrons share valence electrons lose valence electrons
Answer:
Share valence electrons
Explanation:
Covalent bonds are also known as molecular bonds. This is the type of bond that occurs between non-metals and non-metals. This type of bond can happen between two of the same elements or with other elements that are usually positioned near each other in the periodic table.
This is different from ionic bonds where atoms are lost or gained. This type of bonds occur between metals and non-metals.
What is one observable adaptation of the redbud tree that makes it a member of the legume family?
Answer: I think one observable adaptation of the redbud tree that makes it a member of the legume family is the shape of the fruit.
Explanation: Different species might look dissimilar but the unity among organisms becomes apparent from an analysis of internal structures, the similarity of their chemical processes, and the evidence of common ancestry
Final answer:
The redbud tree exhibits an adaptation for symbiosis with nitrogen-fixing bacteria, forming nodules on its roots for nitrogen fixation, a characteristic trait of the legume family.
Explanation:
One observable adaptation of the redbud tree that identifies it as a member of the legume family is its ability to form symbiotic relationships with nitrogen-fixing bacteria. These bacteria, specifically from the genus Rhizobium, form nodules on the roots of legume plants such as the redbud tree. Inside these nodules, the bacteria convert atmospheric nitrogen into a form that the plant can use, a critical process called nitrogen fixation. This mutualistic interaction is vital for legumes, allowing them to grow in nitrogen-poor soils, and is a distinctive feature of this family.
Define. Diffusion. Endocytosis. Exocytosis. Phagocytosis. Osmotic pressure.
Diffusion is the movement of the molecule (in gaseous form) from a region of high concentration to a region of low concentration until equilibrium is achieved. The movement of these molecules is always down the gradient and the movement of the molecules is stochastic
Endocytosis is the uptake of large molecule, that can't pass through the pores of the cell membrane, by a cell. It involves the invagination of the cell membrane engulfing the materials and budding off into a vesicle. The materials are therefore internalized and are transported into the cell.
Exocytosis is the reverse of endocytosis. The material comes from inside of the cell and carried in a vesicle. The vesicle binds with the cell membrane and the part in contact with the cell membrane diffuses off. The contents of the vesicle are therefore emptied outside of the cell.
Phagocytosis is the ingestion of an organism such as bacteria by another cell such as a phagocytic immune cell or amoeba. The process of phagocytosis is similar to that of endocytosis. However, this process is aided by cell membrane receptors on the surface of the phagocyte that recognizes and binds the epitopes of the bacteria.
Osmotic pressure is the bare minimum pressure required to be exerted to prevent the movement of water, by osmosis, from a low concentrated solution to a higher concentrated solution through a semipermeable membrane.
Please I only have a few minutes left!
Study the image. (the one with the moon)
Which phase of the moon is shown?
full moon
first quarter
waning gibbous
waxing crescent
~~~~~~~~~~~~~~~~~~~~~~
Look at the diagram of a solar eclipse.
(the one with the sun and earth)
At which location is the solar eclipse viewed in totality?
1
2
3
4
First answer: waxing crescent.
Second answer: Best answer is 2 for sure
Describe how the largest island of Hawaii has areas that are representative of various biomes.
The largest island of Hawaii has multiple biomes. The reason for this is the topography of the island. In the middle of the island there's an enormous very high volcano. One side of the island manages to get lot of precipitation, the windward side, thus this part of the island is dominated by dense rainforest and animals that are adapted to wet tropical conditions. The other side of the island though receives much less precipitation because the high volcano stops the wet air masses to reach it, so it is mostly dry and warm air masses that reach this part of the island, which is the leeward side. That makes it much drier, semi-arid even, thus it is dominated by grasses and animals adapted to live in that biome. The side parts of the island that are neither on the windward nor on the leeward side receive precipitation, less than the windward side, but more than the leeward side. This makes them be dominated by shrubs, with trees that are more scattered, so the fauna is adapted to this kind of more temperate conditions for living.
Answer:
what he said
Explanation:
Which of the following sensory receptors is correctly paired with its category?
A) hair cell—mechanoreceptor
B) muscle spindle—electromagnetic receptor
C) taste receptor—mechanoreceptor
D) rod—chemoreceptor
E) olfactory receptor—electromagnetic receptor
B is the right answer
radiocarbon dating is used to date
Answer:radiocarbon dating
Explanation:
Radiocarbon dating is a method for determining the age of an object continuing organic materials by using the peppering for Radiocarbon ,a radio active isotope of carbon.
This method was originally done by beta counting device which counted the amount of beta radiation emitted by the C14 of the decaying substance
More recently the method called accelerated mass spectrometery has become the method of choice
Radiocarbon dating is a method used to date organic materials by measuring the amount of carbon-14 left after an organism's death. It requires calibration against other dating methods due to atmospheric variations of carbon-14 over time and can date samples up to about 58,000 to 62,000 years old.
Radiocarbon dating, also known as carbon-14 dating or 14C-dating, is an absolute dating technique that is used to determine the age of organic materials. The method is based on the decay of the radioactive isotope of carbon called carbon-14, which is absorbed by organisms during their lifespan. As living organisms take in carbon, including carbon-14, it becomes part of their tissue. When they die, they stop absorbing carbon, and the carbon-14 present starts to decay at a known rate, with a half-life of approximately 5730 years, meaning the amount of carbon-14 reduces to half its original amount during this period.
To date organic samples, scientists measure the amount of carbon-14 remaining. Because the production and concentration of carbon-14 in the atmosphere have varied over time, calibration against other reliable dating methods is often necessary. Techniques like dendrochronology (tree-ring dating) and analysis of ice cores help ensure the accuracy of radiocarbon dating results for materials up to about 58,000 to 62,000 years old, though some sources suggest it can be used for materials as old as approximately 70,000 years.
Radiocarbon dating is widely used in fields such as archaeology and geology but requires careful calibration and consideration of the sample's age and the historical levels of carbon-14 in the atmosphere.
The use of ladybugs and praying mantises to consume insect pests in gardens is an example of
Answer:
The use of ladybugs and praying mantises to consume insect pests in gardens is an example of biological control of insect pets.
This is the example of Biological control of pest.
In biological control, the use of living organisms to control pests.What are the benefits of using biological control of pest?Biological control is the use of living organisms to suppress pest populations, making them less damaging than they would otherwise be. Natural enemies of insects play an important role in limiting the densities of potential pests. These natural enemies include predators, parasitoids, and pathogens.What is pest?A pest is any organism that spreads disease, causes destruction or is otherwise a nuisance.Some examples of pests are mosquitoes, rodents and weeds. Not all insects are pests
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Blockage of the common hepatic duct would interfere with digestion of
A) proteins.
B) fats.
C) disaccharides.
D) complex carbohydrates.
E) vitamins
Answer:
B) fats
Explanation:
Common hepatic duct is s the part of the biliary tract which means that is involved in the secretion of bile.
Bile salts secreted from the bill have an important role in emulsification of lipids (fats). They have the ability to aggregate around lipids thanks to their amphipatic nature. Amphipatic nature means that they have hydrophobic side which binds directly to lipids and hydrophilic side which are faced outwards. Lipids enveloped with bile salts are called micelles.
Formation of micelles increases the surface area of fat, which is appropriate for the the action of the enzyme pancreatic lipase (perform digestion of triglycerides).
Compare and contrast DNA to RNA
Answer:
DNA has thymine; RNA has uracil
DNA is a double helix; RNA is single stranded
DNA cannot leave the nucleus; RNA can
DNA has deoxyribose; RNA has ribose
That's easy! Each sugar unit in DNA and RNA bind to form one of four nucleotide bases. Both the DNA and the RNA use the bases A,C and GB. While DNA uses T, RNA uses U. The sequence of bases along the strands of DNA and RNA is the genetic code that tells the cell how to make proteins. In DNA, the bases of each strand bind to the bases on the other strand, forming the double-helix structure. In DNA, A’s can only bind to T’s and C’s can only bind to G’s. The structure of a DNA helix is preserved in a protein-RNA cocoon called a chromosome.
How many chromosomes do humans have total in each body cell?
There are 46 chromosomes in each body cell. Human gametes have 23 since they’re haploid cells though
There are 23 chromosomes in each human cell
What are the characteristics of life start each of the sentences below with living things and fill in the blank with the correct term
Answer:
cellular organization, reproduction, metabolism, homeostasis, heredity, response to stimuli, growth and development, and adaptation through evolution
Explanation:
Which type of secretion enters the interstitial fluid and affects neighboring cells in the same tissue?
Paracrine signaling refers to a type of secretion where a chemical, known as a paracrine factor, enters the interstitial fluid and affects neighboring cells within the same tissue.
The type of secretion that enters the interstitial fluid and affects neighboring cells in the same tissue is known as paracrine signaling. Paracrine factors are chemicals that induce responses in cells that are in close proximity. Although they may enter the bloodstream, their primary function is localized affecting cells within the same tissue. Histamine, which is released by immune cells and causes constriction of the bronchial smooth muscles, is an example of a paracrine. Another example includes neurotransmitters within the nervous system that act locally within the synaptic cleft.
Sarah is documenting her sources. Which step of research process is she on? A. Step 5: Cite Your Sources B. Step 4: Organize Your Information C. Step 2: Find and Retrieve Materials D. Step 3: Evaluate Your Sources
Answer:
Either A or B
Explanation:
Answer: A. Step 5: Cite Your Sources
Explanation:
A citation is a documentation and recognition of the research work and references used for the purpose of present research. Apart from research work other original sources such as idea, images and information can be used for the purpose of reference. In the body of a paper,small acknowledgments of the source of information used is required to be mentioned. In the end of the research article or thesis the entire list is framed for the references of the authors or other researchers.
Which of the following would be required in a bacterial expression vector but NOT in a bacterial cloning vector?
A) bacterial origin of replication
B) bacterial selectable marker
C) multi-cloning site
D) bacterial promoter
Answer:
i believe it is A
Explanation:
Why is Catalase important to the body?
Answer:
Catalase behaves as a catalyst for the conversion of hydrogen peroxide into water and oxygen.
Explanation:
Catalase is an antioxidant enzyme that plays a very important role in the protection against oxidative damage by breaking down hydrogen peroxide. It is a very highly conserved enzyme that has been identified from numerous species including bacteria, fungi, plants and animals.
Catalase has one of the highest turnover numbers for all known enzymes (40,000,000 molecules/second). This high rate shows an importance for the enzymes capability for detoxifying hydrogen peroxide and preventing the formation of carbon dioxide bubbles in the blood.
Type the term that means the study and science of disorders and treatment of the eye.
Which of the following statements regarding restriction enzymes is NOT true? See Section 15.1 (Page 554) . Which of the following statements regarding restriction enzymes is NOT true? See Section 15.1 (Page 554) . Most restriction enzymes recognize sequences of 20-25 bp in length. Bacteria can add methyl groups to their DNA to prevent digestion by endogenous restriction enzymes. Most restriction enzymes recognize palindromic sequences in host DNA. Restriction enzymes may produce either sticky or blunt ends when digesting host DNA.
Answer:
Most restriction enzymes recognize sequences of 20-25 bp in length
Explanation:
Sequences of DNA that are recognized by restriction enzymes are called recognition (or restriction) sites are usually are between 4 and 8 bases long. Many of them are palindromic, which means that they are the same when you read it backwards and forwards (mirror-like).
Restriction enzymes are endonucleases, which means they cut phosphodiiester bonds within DNA. These enzymes are from prokaryotic organisms (archea and bacteria) which use them as defending mechanism against viruses. Prokaryotes protect their own DNA via methylation, performed by methyltransferase.
The incorrect statement about restriction enzymes is that most recognize sequences of 20-25 bp in length; they commonly recognize sequences of 4-8 bp.
Explanation:The statement regarding restriction enzymes that is NOT true is "Most restriction enzymes recognize sequences of 20-25 bp in length." In fact, most restriction enzymes recognize and bind to specific palindromic sequences of DNA that are significantly shorter, typically ranging from 4 to 8 base pairs in length. These enzymes can generate either sticky ends or blunt ends when they cut DNA, depending on the specific enzyme and its recognition sequence. Additionally, bacteria can protect their own DNA from these enzymes through the addition of methyl groups to the recognition sequences, a process known as methylation, thus preventing the restriction enzyme from cutting the bacterial DNA.
Although genetically modified crops have been on the scene for many years, there still remains a large gap between the public sector and biotechnology research and development firms. Most recently, the development of golden rice has been stalled. Golden rice has been genetically modified to increase the production of beta carotene. Beta carotene is a dietary essential that is lacking in the diets of people who live in poverty. Found in vitamin A, this deficiency has lead to partial or total blindness in over half a million children world wide. Although medical and social research suggest the need for golden rice, certain beliefs hinder its production and distribution, as well as the continued research and development of genetically modified crops. They include all but A) the unknown impacts on ecosystems B) genetic transfer to unintended crops. C) improvements in both plant and animal food resources. D) genetically modified foods are detrimental human health.
Answer:
improvements in both plant and animal food resources
Explanation:
Genetically modified foods have benefits such as one answer choice listed. GM foods DO foster improvements in both plant and animal food resources. This is a positive rather than a negative.
Answer:
C
Explanation: Is C, because Genetically modified foods have benefits such as one answer choice listed. GM foods DO foster improvements in both plant and animal food resources. This is a positive rather than a negative.
Having difficulty completing daily activities of living due to a chronic condition is known as
Answer:
Could be many things such as Autism, ADHD, Epilepsy, Arthritis, Diabetes etc
Explanation:
The mating of two curly-haired brown guinea pigs results in some offspring with brown curly hair, some with brown straight hair, some with white curly hair, and even some with white straight hair. this mating illustrates which of mendel's laws?
Answer: Law of Independent Assortment
Explanation:
The example only shows that the alleles the offspring received for one gene does not influence the allele for another gene, since the curly/ strait haired gene clearly does not affect the white/ brown hair gene.
The mating of two curly-haired brown guinea pigs resulting in offspring with different variations in hair color and type illustrates Mendel's Law of Independent Assortment.
Explanation:The mating of two curly-haired brown guinea pigs resulting in offspring with different variations in hair color and type illustrates Mendel's Law of Independent Assortment.
This law states that genes do not influence each other with regard to the sorting of alleles into gametes, and every possible combination of alleles for every gene is equally likely to occur.
For example, in the case of the guinea pigs, the gene for hair color and the gene for hair type are inherited independently of each other, resulting in the various combinations of brown and white hair colors and curly and straight hair types in the offspring.