which urinary structure serves as the transporter for urine toward the bladder?

Answers

Answer 1

The answer is ureter. They concentrate the urea from nephrons and collect in the bladder.  They are larger in diameter (25–30 cm) compared to the proximal and distal tubules, loop of henle and collecting tubules. There is one ureter for each kidney connecting to the bladder. The ureter has smooth muscles that cotract and direct the urine to the bladder


Answer 2
Final answer:

The ureters are the urinary structure that transport urine from the kidneys towards the bladder. They use a process called peristalsis to move the urine in one direction.

Explanation:

The urinary structure that serves as the transporter for urine toward the bladder is known as the ureters. The ureters are a pair of muscular tubes that propel urine from the kidneys to the urinary bladder. The urine is produced in the kidneys, and from there it goes down the ureters into the bladder. The bladder then stores this urine until it is released from the body through another structure called the urethra.

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Related Questions

How is artificial selection similar to natural selection?

Answers

In both artificial and natural selection, only certain individuals in a population produce new individuals. But in natural selection, the environment- not a farmer or animal breeder- influences fitness.

Final answer:

Artificial selection and natural selection both involve the reproduction of individuals with favored traits. In artificial selection, humans actively modify plants and animals by selecting and breeding individuals with desirable traits. In natural selection, individuals are selected naturally based on their traits, which make them more fit for survival and reproduction.

Explanation:

Artificial selection and natural selection both involve the reproduction of individuals with favored traits.

In artificial selection, humans actively modify plants and animals by selecting and breeding individuals with desirable traits.

In natural selection, individuals are selected naturally based on their traits, which make them more fit for survival and reproduction.

genetic recombination definition biology

Answers

Genetic Recombination
                                         "The process in which offspring are produced which are genetically different from their parents is known as genetic recombination"

the process in which offspring are reproduced by combining dna

The tube that connects the oral cavity to the stomach is called the ________

Answers

Answer :
Oesophagus (also known as the food pipe)

Fossils that consist of minerals that have filled in an open mold of an organism are called

Answers

 

Natural casts

Natural casts are fossils that consist of minerals that are filled in an open mold of an organism. This type of casts is made when minerals are deposited in the mold. Casts can also be synthetically produced when the molds are filled with synthetic material such as latex.






The anticodon of a trna is 5'uug. what codon(s) can be theoretically recognized by this trna?

Answers

Final answer:

A tRNA with an anticodon of 5'UUG pairs with the mRNA codon 3'AAC, which codes for the amino acid Asparagine.

Explanation:

The tRNA anticodon 5'UUG is designed to pair with the mRNA codon of the sequence 3'AAC. The genetic code is degenerate, meaning that most amino acids are coded by more than one codon, but in the case of the codon 3'AAC, it specifically codes for the amino acid Asparagine. This is based on the standard genetic code, where the anticodons of tRNA molecules adhere to the codon-anticodon pairing rules with some flexibility allowed by the wobble position, typically at the third base of the codon.

The growth patterns of ivy wisteria and other vines that wrap around objects is an example of

Answers

The growth patterns of ivy wisteria and other vines that wrap around objects is an example of thigmotropism. Thigmotropism is a directional growth movement of a plant as a reaction to touch. Examples of this movement is the coiling of plants around the surface, and the opening or closing of parts of the plant such as the leaves when touched.






Where is most of the atp produced during aerobic cellular respiration?

Answers

The most ATP is produced in the electron transport chain. Glycolysis makes 2 (net) and the krebs cycle only makes two, too.

character displacement ecology

Answers

Character displacement is the phenomenon where differences among similar species whose distributions overlap geographically are accentuated in regions where the species co-occur, but are minimized or lost where the species' distributions do not overlap.

worth 15 points and WILL MARK BRAINLIEST!!!

While exploring the land over a tectonic plate boundary, an explorer discovers a geologic structure with steep cliffs and jagged edges. Which of the following has the explorer most likely discovered?




A fault-block mountain


A folded mountain


A hotspot volcano


A volcanic arc

Answers

It is A. A fault-block mountain

Answer:

A fault-block mountain

Explanation:

Fault Block Mountains are the one that can be formed at either divergent or convergent boundaries of the tectonic plants. These mountains are formed when the pressure makes the crust in the fault zone is elevated upwards. Presence of steep cliffs and jagged edges are the common features of Fault Block Mountains.

What is the source of energy that provides the boost for electrons during photosynthesis? cellular respiration electromagnetism atp light?

Answers

The answer would be: light

The chemical reaction for photosynthesis are:
6CO2 + 6H2O + light energy = C6H12O6 + 6O2
Photosynthesis is an anabolic reaction that creates a bigger molecule. From the equation, it is clear that the light energy used in photosynthesize to create the glucose. Cellular respiration is used to create energy from glucose. Photosynthesis doesn't use ATP or electromagnetism.

The ras protein is active when (a) it has bound camp. (b) it has bound cgmp. (c) it has bound gdp. (d) it has bound gtp. (e) it is released into the cytosol

Answers

dddddddddddddddddddd

Is the most prevalent and most curable type of cancer found in women. uterine cancer lung cancer ovarian cancer skin cancer?

Answers

Lung Cancer is the leading cause of cancer deaths in women, killing more women each year than breast cancer, ovarian cancer, and uterine cancer. Patients diagnosed with early stages of Hodgkin Lymphoma have a 90 - 95 % survival rate. But out of this list, the most curable cancer is Ovarian cancer. Ovarian cancer has an average of fewer than 200,000 cases per year and 7.2 per 100,000 deaths in women per year. 

Answer:

Skin cancer

Explanation:

Skin cancer is the most prevalent and curable cancer in both men and women

Effects of estrogen include ________.
a. growth of the larynx
b. growth of the breasts at puberty
c. deepening of the voice
d. increased oiliness of the skin

Answers

The right option is b. growth of the breasts at puberty

Estrogen is a  sex hormone and it is one of the most important hormones for women, together with progesterone. During puberty, estrogen hormones are released in line with each monthly menstrual cycle by the ovaries and it helps in the development and maintenance of female characteristics in the human body such as breasts, pubic and armpit hair. Estrogen also regulate the menstrual cycle and reproductive system of women.






Final answer:

Estrogen leads to the growth of breasts at puberty along with other female secondary sexual characteristics, including the distribution of body fat and the development of reproductive organs.

Explanation:

Effects of estrogen include growth of the breasts at puberty. This hormone plays a crucial role in the development of female secondary sexual characteristics. During puberty, in addition to breast development, estrogen is responsible for the growth of the uterus and ovaries, initiation of the menstrual cycle, and the deposition of fat in areas like the breasts, hips, and buttocks. It also contributes to the growth of axillary and pubic hair. Estrogen does not cause increased larynx size or a deepening of the voice; those are effects of testosterone in males.

A mature follicle releases an ovum in response to a surge in

Answers

The answers is Lutenizing hormone. The hormone is produced by the pituitary gland. It's is significant for the development of corpeus luteum after the release of the ovum from the graafian follicle. The corpeus luteum is responsible for maintenance of pregnancy in case of conception. LH is preceed FSH hormone that ensures development of a mature ovum in the follicles.

In which layer of a tropical rainforest will you find a sloth?

Answers

Sloths can be found on the canopy layer of a tropical forest along with butterflies and moths. A majority of the time, these slow-moving sloths can be found eating and sleeping. 

Let me know if you need further info. 

                  - Dotz 

Final answer:

The sloth can be found in the canopy layer of the tropical rainforest.

Explanation:

In a tropical rainforest, you will find a sloth in the canopy layer. The canopy layer is the uppermost layer of branches and leaves in the forest. It is where many species of animals, including sloths, live and find food and shelter. Some other trees emerge through this closed upper canopy, providing a diverse and complex habitat for various organisms.

Factors playing a role in fatigue can be classified into two categories. define those two categories and provide an example of each.

Answers

just times it by 2!!!

The unpaired nucleotides produced by the action of restriction enzymes are referred to as _____. the unpaired nucleotides produced by the action of restriction enzymes are referred to as _____. sticky ends base sequences single strands restriction fragments ligases

Answers

Hand. Fmcvnnv
Bbmbmbmbmbmbmb

Soreness in muscles after a heavy workout may be partially due to a buildup of lactic acid during fermentation. this occurs when the mitochondria in muscles run out of _____________.

Answers

The build up of lactic acid in muscles occurs when the mitochondria run out of oxygen.

Final answer:

The buildup of lactic acid during fermentation, facilitated by lactic acid fermentation when mitochondria lack oxygen, causes muscle soreness post-workout. The lactic acid is later transported to the liver, where it is metabolized further.

Explanation:

The soreness in muscles after a heavy workout may be partially due to a buildup of lactic acid during fermentation. This occurs when the mitochondria in muscles run out of oxygen. During an intense workout, if oxygen supply is insufficient for aerobic respiration, muscle cells resort to lactic acid fermentation to provide ATP for energy. The enzyme involved in this reaction is lactate dehydrogenase (LDH). Despite lactic acid being associated with muscle stiffness and fatigue, more recent research suggests that it may not be the sole cause of soreness. It's important to note that the buildup of lactic acid must be removed by the blood circulation and brought to the liver for further metabolism. Once the lactic acid is removed from the muscle, it can be converted back to pyruvic acid and further catabolized for energy.

The absorption of glucose involves _____ across the apical membrane and ____ across the basolateral membrane.

Answers

Secondary active transport: facilitated diffusion.

Why is it necessary to have a constant input of energy into an ecosystem?

Answers

if there was not a constant Input of energy into the ecosystem then nothing would have the power to do anything and nothing would be alive. the energy starts with the sun, then goes to plants, then animals that eat the plants, and then the animals that eat those animals, Ect. if this chain reaction did not happen then the plants wouldn't have to power to go through photosynthesis and then we would get no energy. the amount of energy lessen with every chain that it goes through, this is why we get more energy eating plants and why they are healthier.

Using a microscope, a student observes a small, green organelle in a plant cell. which energy transformation most likely occurs first within the observed organelle?

Answers

Final answer:

The first energy transformation in a plant cell organelle, likely a chloroplast, is the conversion of light energy into chemical energy during photosynthesis. This energy is then used to convert carbon dioxide into carbohydrates, providing oxygen and fuel for life on Earth.

Explanation:

The small, green organelle observed in a plant cell under a microscope is likely a chloroplast, which is involved in the process of photosynthesis. In this process, the energy transformation that occurs first is the conversion of light energy into chemical energy (in the form of ATP and NADPH). This process can be further divided into two stages: light-dependent reactions and light-independent reactions (also known as the Calvin Cycle). During the light-dependent reactions, which occur first, chlorophyll within the chloroplasts absorbs light energy from the sun and converts it into chemical energy.

Photosynthesis is vital for life on Earth as it provides the oxygen in our atmosphere and the chemical energy in the form of carbohydrates, that other organisms use to fuel their life processes. The energy stored in the forms of ATP and NADPH is then used to convert carbon dioxide into carbohydrates (simple sugars) during the Calvin cycle.

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The energy transformation that first occurs within a chloroplast is the conversion of light energy to chemical energy during the light-dependent reactions of photosynthesis, resulting in the production of ATP and NADPH.

When a student observes a small, green organelle in a plant cell through a microscope, it is most likely a chloroplast. The primary energy transformation that first occurs within this organelle is the conversion of light energy to chemical energy. This process is known as photosynthesis.

Chloroplasts capture sunlight and use it to excite electrons in chlorophyll. These excited electrons move through electron transport chains (ETCs), and their energy is used to create ATP and NADPH. The first stage of photosynthesis, known as the light-dependent reactions or simply light reactions, is wherein this conversion of sunlight to chemical energy efficiently takes place, with chloroplasts storing the energy in NADPH and ATP. Subsequently, the stored chemical energy in sugars provides energy for the plants to grow and develop.

Which process is correctly matched with its explanation?

Answers

The correct answer is extinction-adaptive characteristics of a species are not adequate. Extinction is an evolutionary term referring to the termination of a species because they are no longer able to survive under the conditions of their environment. 
Natural selection is wrongly explained here since it is the evolutionary mechanism according to which the fittest organisms survive. 
Gene recombination is also wrongly explained. It is the exchange of genetic material between different chromosomes or different parts of the same chromosome. 
Mutation is also wrongly explained since it is a permanent change in the nucleotide sequence of the genome.

Cellular respiration occurs in: select one:
a. plants only
b. animals, plants, and bacteria.
c. animals only
d. bacteria only
e. animals and bacteria only

Answers

the answer is b it occurs in plant animals and bacteria

Backup of sewage in the prep area or a serious pest infestation are hazards that

Answers

Backup of sewage in the preparation area or a serious pest infestation are hazards or contaminants that are grounds for immediate closure of an operation. A sewer drain backup may be among the most unpleasant experiences one can get as a house owner. 

Final answer:

Backup of sewage or serious pest infestation in a food prep area 2. Are grounds for immediate closure of an operation, not just the implementation of HACCP plans or other measures.

Explanation:

Backup of sewage in the prep area or serious pest infestation are hazards that are grounds for immediate closure of an operation. These critical issues pose significant health risks due to potential contamination and need to be addressed with urgency to ensure public safety and compliance with health regulations. They are not circumstances that allow for a 90-day correction period or situations where the implementation of a Hazard Analysis Critical Control Points (HACCP) plan is sufficient. Issues such as these demand immediate action to rectify and may also necessitate notification to local health authorities.

HACCP is a management system in which food safety is addressed through the analysis and control of biological, chemical, and physical hazards from raw material production, procurement, and handling, to manufacturing, distribution, and consumption of the finished product. However, instances like severe pest infestation or sewage backup require more than HACCP planning; they necessitate immediate intervention and can lead to shutting down the facility until the problems are resolved.

In august 2010, the asian clam was discovered in lake george. it is not native to that area. a single clam can reproduce and release hundreds of offspring in a day. fish and crayfish eat the clams but cannot keep pace with the rate at which the clams reproduce. the introduction of the asian clam into lake george is ______ .

Answers

The introduction of the Asian Clam in Lake George is an example of an Invasive Species.

Asian Clam are small in size, hardly 1.5 inches long. However, they can reproduce very quickly without the need for a partner. A single clam can give birth to hundreds of offspring in a single day without a mate.

Asian Clam is extremely unpleasant for most fresh water bodies since it excretes nutrients such as nitrogen.

This helps in the development of algae and gives off a foul stink.

The introduction of the Asian clam into Lake George is an example of biological pollution.

Biological pollution, also known as biopollution, occurs when a non-native species is introduced into an ecosystem, either intentionally or accidentally. The Asian clam (Corbicula fluminea) is not native to Lake George, and its introduction to the lake is considered an invasive species event. Invasive species can cause ecological damage by outcompeting native species for resources, altering habitat, and disrupting the balance of the ecosystem.

In the case of the Asian clam in Lake George, several factors contribute to its classification as biological pollution:

1. Rapid Reproduction: The Asian clam has a high reproductive rate, with a single clam capable of releasing hundreds of offspring in a day. This rapid reproduction can quickly lead to a large population that the ecosystem may not be able to support or control.

2. Impact on Native Species: The clams can outcompete native species for food and habitat, potentially leading to declines in native populations. This can have a cascading effect throughout the food web, altering species interactions and ecosystem dynamics.

3. Predator Inability to Control Population: While fish and crayfish may feed on the clams, they are unable to consume the clams at a rate that keeps pace with the clams' reproduction. This means that the natural predators in Lake George are not effective at controlling the invasive clam population.

4. Ecosystem Disruption: The presence of the Asian clam can lead to changes in water clarity, nutrient cycling, and benthic communities (organisms living on the bottom of the lake). These changes can have both direct and indirect effects on the lake's ecology.

5. Economic and Recreational Impact: In addition to ecological impacts, invasive species like the Asian clam can affect recreational activities and local economies that depend on the lake's natural state. For example, the clams can clog water intake pipes and foul beaches with their shells.

In summary, the introduction of the Asian clam into Lake George is a clear case of biological pollution due to its non-native status, rapid reproduction, potential to outcompete native species, and the inability of natural predators to control its population, leading to significant ecological impacts.

Which statement best describes energy of an ecosystem?

A.The amount of energy entering an ecosystem from the Sun is equal to the amount lost as heat.

B. The amount of energy entering an ecosystem from the Sun is equal to the amount used by organisms.

C. The amount of energy entering an ecosystem from the Sun is equal to the amount used by organisms plus the amount lost as heat.

D. The amount of energy entering an ecosystem from the sun does not transfer from organism to organism.

Answers

The energy of the ecosystem can be best described as option C. The amount of energy entering an ecosystem from the Sun is equal to the amount used by organisms plus the amount lost as heat.



The correct answer is option C

The only source of energy in an ecosystem is the sun. The green plants make food by the help of photosynthesis. These plants are also eaten by the herbivores and then these herbivores animals are eaten by the carnivores animals present in the ecosystem.

The energy from the sun is transferred to herbivores, then from herbivores to carnivores.

Some amount of energy is also lost during the process of energy transfer.

The energy transferred from one level to another + the energy lost

= energy absorbed from the sun.

Indicate whether the sentence or statement is true or false.   The dependent variable is plotted on the y-axis.  

Answers

It is true because the dependent variable is the one that changes as per the independent variable, which is on the x-axis.
Just like any equation in math, y will always be a function of x

so it is true

List three uses of bacteria in food production and industry.

Answers

1. Bacteria are used in food production such as cheese, butter, bread and wine etc.
2.  Bacteria are used for manufacturing of antibiotic, drugs, vaccines and antibiotics.
3. they are used for production of ethanol, organic acids, enzymes etc.

In translation, mRNA codons are translated into___?

Answers

They are translateed using anticodons and "translated" to amino acids. The word translated may be misleading since the codons do no change, they merly are returned to the body.

In the process of translation, mRNA codons are translated into amino acids to build proteins. This occurs via the genetic code, where each triplet codon corresponds to a specific amino acid. The process involves the coordination of mRNA, ribosomes, tRNA, and a set of 64 codons, including one start and three stop codons.

In translation, mRNA codons are translated into amino acids. Each codon consists of a triplet of nucleotides, which collectively determine a specific amino acid. There are 64 codons in total; one is the start codon (AUG), which also codes for the amino acid methionine and signals the beginning of protein synthesis, and three are stop codons (UAG, UAA, and UGA), which signal the end of protein translation. The genetic code, which establishes the relationship between mRNA codons and their corresponding amino acids, is universal and is interpreted in the same way by almost all organisms.

The actual process of translation involves ribosomes and transfer RNA (tRNA) molecules. A tRNA has an anticodon region that is complementary to the mRNA codon and is charged with an amino acid corresponding to the codon it recognizes. During translation, tRNAs bring their attached amino acids to the ribosome in a sequence dictated by the mRNA codons, thereby synthesizing a polypeptide chain that folds into a functional protein.

If you ate a samples of the different carbohydrates seen here, how would the available energy differ from each source and why?
A) The simple sugars would have less energy than the complex sugars, because the molecules are smaller.
B) The simple sugars would have more available energy, because they are small molecules and are easy to break down.
C) The complex carbohydrates would produce the most energy, because they have a high C:H ration and relatively little oxygen.
D) All of the carbohydrates would produce about the same amount of energy, as they all have a large amount of oxygen atoms.

Answers

The complex carbohydrates would produce the most energy because they have long sugar molecule chains that, once broken down into simpler sugars like glucose, yield more energy for the body to use.

If you ate samples of different carbohydrates, the available energy from each source would vary. The correct statement regarding this is C) The complex carbohydrates would produce the most energy, because they are composed of long chains of sugar molecules. These complex chains, like starch and glycogen, are broken down into simpler sugars, mainly glucose, which is then used by cells to produce ATP, the energy currency of the cell. This process of breaking down complex carbohydrates does require an initial investment of energy, but overall it results in more energy being released, which can then be used by the body. Simple sugars, on the other hand, are already in their simplest form and can be used more readily but do not contain as much total energy because they are single units rather than chains.

It is worth noting that while all carbohydrates provide approximately 4 kcal/g, the structure of the molecule and the type of sugar it contains can affect how quickly and effectively that energy can be accessed. Glucose is the most efficient form for ATP production due to its ready utilization in cellular respiration.

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