Answer:
Lysosome - Cell organelle filled with enzymes needed to break down specific materials in the cell, like large food particles or old parts of the cell.
Vacuole - Saclike storage structure in the cell. They can also store water, nutrients, and toxic substances.
Mitochondrion - An organelle containing enzymes in charge of producing energy.
Cell membrane - A thin, flexible barrier around a cell and controls what enters and leaves the cell.
Explanation:
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Trout (fish) raised in cold water weigh more than trout raised in warm
wator.
What is the independent variable and the dependent variable
O Water temperature
O Weight of trout
O Amount of food
is an example of the degeneracy of the genetic code.
A.An amino acid has more than one codon.
B.Each codon specifies more than one amino acid
C.The first two bases in the CCA terminus of tRNA specify an amino acid.
D.The genetic code in mRNA is a triplet of bases.
The answer is B :)
What connects the respiratory and circulatory systems? O A. Arteries OB. Alveoli O C. Hormones O D. Aorta
IT'S B!!!
Answer:
OA
Explanation:
oa ia best answer in my opinion
Hi,
What connects the respiratory and circulatory systems?
Answer:
OB. Alveoli
Which would have most likely stopped Mendel from finding a pattern in his
results?
A. If having a wrinkled seed had been a recessive trait
B. If garden peas had used sperm and egg to reproduce
C. Being short is a recessive trait
D. If seed color and shape were located on the same chromosome
Answer:
D. If seed color and shape were located on the same chromosome
Explanation:
If seed color and shape were located on the same chromosome, they would not be inherited independently of one another.
Genes on the same chromosome are more likely to be inherited together. The only way they could be inherited independently is if crossing over occurred between the two genes.
Therefore, this would argue against Mendel's law of independent assortment.
Answer:
Answer:
D. If seed color and shape were located on the same chromosome
Explanation:
AP3X
Dead plant and animal matter is called?
Answer:
Humus is dark, organic material that forms in soil when plant and animal matter decays.
An association where a parasite spends all or most of its life cycle gaining nutrients and support within a host cell is called ______ parasitism.
An association where a parasite spends all or most of its life cycle gaining nutrients within a host cell is called intracellular parasitism.
Intracellular parasitism refers to a type of parasitic relationship where a parasite spends all or a significant portion of its life cycle inside the cells of a host organism. The parasite relies on the host cell for essential nutrients, support, and protection.
During intracellular parasitism, the parasite enters the host cell and establishes a close association with it. Once inside, the parasite may undergo various developmental stages, replicate, and acquire the nutrients it needs for survival and reproduction from the host cell's resources.This type of parasitic relationship is commonly observed in certain microbial infections. For example, intracellular parasites like the bacteria Chlamydia and Rickettsia, as well as certain protozoans and viruses, are known to invade host cells and complete significant portions of their life cycles within these cells.Intracellular parasitism can have significant impacts on the host's health and immune response, as the parasite manipulates the host cell's functions and may cause damage or disease.
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Which of the following structural elements is not involved in water transport within a plant?: *
(A) Trichomes
(B) Tracheids
(C) Sieve tubes
(D) Vessel elements
The structural element that is not involved in water transport within a plant is Trichomes so the correct answer is option (A).
Trichomes are the hair-like structures that grow from the epidermis of leaves, stems, and other plant parts. They play several essential roles in plants, including protection against herbivores and insects, as well as regulating water loss. However, they are not involved in water transport within a plant.The movement of water within a plant is facilitated by specialized structures called xylem. Xylem is made up of tracheids, vessel elements, and fibers.
These structures work together to move water from the roots to the leaves of the plant through a process known as transpiration. Water molecules are pulled up through the xylem by the process of transpiration, which is driven by the evaporation of water from the leaves. As water evaporates from the leaves, it creates a negative pressure that pulls water up through the plant's roots and into the xylem. From there, the water moves upward through the xylem, reaching the leaves where it is used for photosynthesis.
In summary, trichomes are not involved in water transport within a plant; instead, water is moved through the plant by specialized structures called xylem, which are made up of tracheids, vessel elements, and fibers.
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A minute-by-minute change in the atmosphere is the definition of ?
Answer:weather
Explanation:
During a baseball game, a hitter strikes the ball with a bat. When this happens, the ball and the bat exert a
force on each other. Why does the ball accelerate away from the bat more than the bat accelerates away from
the ball?
Answer:
The ball has greater velocity before the collision, so the force affects the ball more than it affects the bat. The ball has less mass, so the equal force on the ball and the bat causes greater acceleration of the ball. The bat exerts more force than the ball because the batter is exerting a force on the bat as it hits the ball
Explanation: can i get branliest???
certain groups of cells move inward from the surface of the blastula in a carefully orchestrated migration called what?
The process you're referring to is called gastrulation. During gastrulation, certain groups of cells move inward from the surface of the blastula, resulting in the formation of three germ layers: ectoderm, mesoderm, and endoderm. This carefully orchestrated migration is crucial for proper embryonic development.
The carefully orchestrated migration of certain groups of cells that move inward from the surface of the blastula is called gastrulation. This process marks the beginning of the formation of the three germ layers - endoderm, mesoderm, and ectoderm - which give rise to all the tissues and organs of the developing embryo.
Gastrulation involves complex cellular movements and signaling events that are tightly regulated and coordinated to ensure proper embryonic development. The process is essential for the formation of the basic body plan and is a critical step in embryogenesis.
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What do you think would happen to reef dwellers (e.g., coral, parrot fish, sea cucumbers) if the algae were not able to photosynthesize?
If the algae were not able to photosynthesize, reef dwellers such as coral, parrot fish, and sea cucumbers would likely experience adverse consequences.
Algae play a crucial role in the health and functioning of reef ecosystems. Through photosynthesis, algae produce oxygen and provide a significant source of energy and nutrients for other reef dwellers. Therefore, if the algae were unable to photosynthesize, it would have a cascading effect on the entire ecosystem.
Coral, for instance, relies on the symbiotic relationship with photosynthetic algae called zooxanthellae. These algae provide coral with essential nutrients and contribute to their vibrant colors. Without the ability of algae to photosynthesize, coral would lose this symbiotic relationship and experience a decline in growth and vitality, making them more susceptible to stressors and diseases.
Parrot fish and sea cucumbers also depend on the availability of algae as a food source. Parrot fish feed on algae and help control their growth, preventing overgrowth that could harm the reef. Sea cucumbers also consume algae, contributing to nutrient cycling and the overall health of the ecosystem. If algae were unable to photosynthesize, the food source for these reef dwellers would diminish, potentially leading to reduced populations and disruption of ecological balances.
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What trophic level(s) do the birds occupy? Choose all that apply.
Answer:
Third Trophic Level
Explanation:
Third Trophic Level
Answer:
my geography teacher told me it was the under canopy, canopy and emergent layer
Explanation:
check all of the possible ways an eukaryotic cell can move using different cytoskeletal filaments.
Eukaryotic cells can move in various ways using different cytoskeletal filaments that are amoeboid movement, using cilia and flagella
The three main cytoskeletal filaments are actin filaments, microtubules, and intermediate filaments. Actin filaments are involved in cell movement through a process known as amoeboid movement. This involves the extension of pseudopodia which are filled with actin filaments that push the cell forward. Microtubules are involved in the formation of cilia and flagella, which are used for locomotion.
The movement of cilia and flagella is achieved by the sliding of microtubules against each other, powered by ATP. Intermediate filaments, on the other hand, provide mechanical stability to the cell and are involved in cell adhesion and migration. They do not directly participate in cell movement, but instead provide a strong framework for the cell to move upon. Therefore, eukaryotic cells can move using different cytoskeletal filaments depending on the type of movement required, with actin filaments and microtubules being the main players in cell locomotion.
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Do you know the size of the cell?
Answer:
At 0.1 to 5.0 μm in diameter, prokaryotic cells are significantly smaller than eukaryotic cells, which have diameters ranging from 10 to 100 μm
Explanation:
Answer:
0.1 to 5.0 μm = prokaryotic cells
10 to 100 μm = eukaryotic cells
Hope this helps! :)
Which two groups were involved in the civil war in Cyprus?
Answer:
it was between Greek Cypriots and Turkish Cypriots
Answer:
I think it would be the Greek Cypriots and Turkish Cypriots
Hope this helps :))
In dogs, the allele for short hair (H) is dominant over the allele for long hair (h). Two short-haired dogs are the parents of a litter of 8 puppies. Six puppies have short hair and two have long hair. What are the genotypes of the parents?
Hope it helps.
If you have any query, feel free to ask.
what do red pandas eat
Red pandas primarily eat leaves and bamboo,
Where are Red Pandas native too?
In countries like China, Nepal, and Bhutan, red pandas can be found in the Eastern Himalayas. They stay in trees the majority of the time. They can readily move from branch to branch thanks to their partially retractable claws.
Hence, red pandas primarily eat leaves and bamboo, although they also occasionally eat fruit, insects, bird eggs, and small lizards.
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Bacteria or fungi ripen the solid portion of curdled milk. lactic acid bacteria ferment skim milk. _____bacteria ferment cream. bacteria ferment low-fat milk. _____microorganisms remove the pulp that covers the cocoa bean. _____bacteria ferment and cure cucumbers in a salt solution. _____bacteria ferment cabbage under anaerobic conditions. _____a fungus ferments a mixture of roasted soybeans and wheat. _____yeasts break down sugar and produce carbon dioxide in dough. _____alcohol in wine is converted to acetic acid by bacteria. _____
The correct answers in the empty blanks would be Lactic acid, Acetobacter, Lactobacillus, Rhizopus, Yeasts, and Alcohol.
Role of bacteria and fungi:
Bacteria and fungi are microorganisms. They come in a wide range of sizes, shapes, and environmental needs. Some bacteria and fungi are good for humans, while others are harmful. Many help decomposes organic matter and recycles nutrients into the ecosystem. Some are pathogenic to humans, and others can cause food spoilage and degradation.
Fermentation process:
The fermentation process involves using bacteria, yeasts, or other microorganisms to break down complex compounds into simpler ones. Fermentation is a process that has been used for centuries to make wine, beer, cheese, yogurt, bread, and other foods. It is a natural process that can be controlled to produce specific results.
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what’s the correct answer
bio
will give brainliest!!
Answer:
The answer is that they contain exogenous or modified DNA.
Explanation:
When you say genetic, you are referring to genes. And as we know, genes are made up of DNA. So if you modify the genes, you are also modifying the DNA of that plant. Also, to make plants more durably, survivability, or better, farmers often add genes to the plants.
Which of the following is NOT one of the three types of neurons?
Group of answer choices
Peripheral
Sensory (or Afferent)
Motor (or Efferent)
Interneurons
Answer:
Sensory (or Afferent)
Explanation:
the answer is Peripheral
Explain the benefits of using swells in agriculture in an environment that is dry like kuwait?
By utilizing swells, farmers in Kuwait can conserve water and reduce the need for costly irrigation methods.
Swells, also known as water harvesting structures, are an effective way to increase agricultural productivity in dry environments like Kuwait. These structures are designed to capture and store rainfall runoff, which can then be used to irrigate crops.
One of the key benefits of using swells is that they are a sustainable solution for water conservation. Unlike traditional irrigation methods, which require large amounts of water to be pumped from underground aquifers, swells rely on natural rainfall and runoff. This means that farmers can reduce their reliance on finite water resources, which are becoming increasingly scarce in Kuwait.
Another benefit of swells is that they help to prevent soil erosion and improve soil quality. When rainfall runoff is captured by swells, it seeps into the soil and helps to replenish groundwater reserves. This, in turn, promotes the growth of healthy crops and prevents soil degradation caused by overuse and erosion.
Overall, the use of swells in agriculture is an effective way to improve productivity in dry environments like Kuwait. By conserving water and improving soil quality, farmers can increase their crop yields and improve their economic stability. Additionally, the use of sustainable water harvesting techniques like swells can help to mitigate the impact of climate change and promote a more resilient agricultural sector.
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DNA ___________ is important because it ensures that when a cell divides, the two resulting cells have the same genetic code. Pleaseee help
Answer: Replication
Explanation: When the cell is preparing to divide it will replicate its DNA so that both of the daughter cells will have a complete set of the DNA. It's like a book of instructions and the cell has to perfectly replicate it so that when it splits into two both of the new cells will have a perfectly made copy of it! Hope this helps :)
SOMEONE PLEASE HELP ME OUT WITH THIS PLEASE HELP ME!!!
Answer:
I think it's C but it could also be D. In my opinion all of them are complex in their own ways.
Explanation:
Which points are coplanar
A,B,C,D and E are the points which are coplanar or lie at the same plane.
What is the difference between coplanar and collinear ? What are coplanar forces?
Collinear points are the points which lie on the same line .Coplanar points are the points which lie on the same plane.
When all forces are acting in the same plane ,they are coplanar whereas when forces act at the same time and at the same point, they are called concurrent forces.
As we can see in the picture all the points are lying on the same plane , so all the points will be coplanar.
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identify the factors that stimulate production of pancreatic juice.
a. Secretin
b. Cholecystokinin
c. Vagus nerve
Secretin, cholecystokinin, and vagus nerve are all stimuli that increase pancreatic juice production.
What kind of pain can pancreatitis cause?Upper abdomen discomfort that ranges in severity and can sometimes radiate to your back pain that either develops gradually over time or unexpectedly. eating makes the pain worse. abdomen is swollen and sore.
Can the pancreas be cured?Pancreatic cancer has a chance of being cured if discovered extremely early, despite the disease's generally bad outlook and the fact that it is typically incurable. Up to 10% of people with an early diagnosis and successful therapy recover from their illness.
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Select the correct answer.
How many particles are in a mole?
I
just need 8 examples of current trends in biodiversity loss with
reference to species and ecosystems.
The eight current trends in biodiversity loss with reference to species and ecosystems are as follows:
1. Deforestation: Due to commercial exploitation, mining, agriculture, and urbanization, the rate of deforestation has increased.
2. Climate Change: The global temperature is increasing at an alarming rate, which impacts the migration patterns, breeding cycles, and ecosystems.
3. Pollution: Air, water, and land pollution are adversely affecting biodiversity. Pollutants cause respiratory diseases, cancer, and other health hazards in animals and humans.
4. Overexploitation: Overfishing, hunting, and trapping of animals for commercial purposes result in the depletion of endangered species and ecosystem degradation.
5. Habitat Fragmentation: Urbanization and transportation development have fragmented ecosystems, which result in the isolation of animals and loss of genetic diversity.
6. Alien Species: Non-native species introduce diseases and prey on native species, leading to extinction.
7. Water Scarcity: Drought and the construction of dams and reservoirs cause water scarcity, which impacts aquatic species and their habitats.
8. Agricultural Practices: Monoculture and intensive farming practices cause soil degradation, water pollution, and species loss.
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What are the main superorders for the class Monocotyledonae? When I searched it said there are 4 and I assume it's just the first two Alismatidae, Arecidae? ( If you answer I'll give brainliest and hearts )
According to Sterm’s Introductory Plant Biology 15th edition, there are four subclasses in the class Monocotyledonae, including Commelinidae, Liliales, Alismatales, and Acorus.
Commelinidae
Why Is the air sea exchange balanced?
which steps of recombination caused that only half of all recombination events generate a recombinant phenotype? group of answer choices strand exchange ligation recognition and alignment resolution band migration flag question: question 5
Only 50% of recombination events result in a recombinant phenotype due to homologous recombination. strand exchange ligation recognition and alignment resolution band migration flag is a collection of possible answers.
Only 50% of all recombination events result in a recombinant phenotype, according to Resolution Ligation Recognition and Alignment Band Migration Strand Exchange. FtsK, which triggers recombination by making XerD catalyze the exchange of the initial pair of strands, is necessary for chromosome dimer resolution. Replicative recombination, which creates a new copy of a DNA segment, is the third type. To create a new copy of the transposable element at a different place, many transposable elements use a replicative recombination mechanism.
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