. Many cities have “combined” sewers. In good weather, these systems funnel sewage to treatment plants. During rainstorms street runoff is combined with sewage. Combined sewers in cities can be problematic because _____. the sewers cannot handle the volume of waste from street runoff and sewage sewers are often blocked by trash that people have thrown into them street runoff cannot flow into the sewers and be safely taken to treatment plants street runoff often causes the sewers to deteriorate

Answers

Answer 1
A.) The sewers cannot handle the volume of waste from street runoff...
Answer 2

The given blank can be filled with the sewers cannot handle the volume of waste from street runoff and sewage.

The combined sewage system is very popular in many big cities. The sewage system handles all the sewage combining from the houses. During the rainy season, the water flows in the sewer, causing the overflow of the sewers and spread of water in the nearby regions.


Related Questions

The human heart has to pump the average adult's 6.2 l of blood through the body every minute. the heart must do work to overcome frictional forces that resist the blood flow. the average blood pressure is 1.3×104 n/m2 .

Answers

the heart must do work to overcome frictional forces that resist the blood flow. From my calculations, the average blood pressure is 1.3×10^4 n/m2

Why is evolution so central to every aspect of biology g?

Answers

It is used to develop the tree of life and understand relationship between organisms. This study enables scientists comprehend the morphology and behaviour of organism. Its study is also significant in medicine in understanding the evolution of diseases and hence important in drug development.  

Provide an example to illustrate how an adaptation may lead to natural selection. the example should be detailed enough to show that you understand the linkage.

Answers

So basically adaption could lead to natural selection by the enviromental changes. So for example: Fish species that live in dark/cave areas have vestigial, nonfunctioning eyes because when the ancestors ended up in the caves there was no longer any natural selection that mantained the function for the fishs eyes. 

Answer:

I have chosen to use peppered moths and black moths as my example of adaptation.

The species called peppered moths is widespread in Britain and Ireland. This type of moth got its name due to the grey- and black-speckled pattern it has. This structural trait provides the peppered moths with camouflage when resting on tree trunks. A genetic mutation caused some of the moths to have almost black wings. However, moths with this mutation had a smaller population, because these forms were not completely camouflaged when at rest and predators could spot them easily. Thus, the population of the pale peppered moths was higher than that of the black moths.

The nineteenth century brought with it a lot of industrialization. The industrialization created a tremendous amount of soot and air pollution. This led to blackening of urban tree trunks and walls. So, black moths had better camouflage on tree trunks than the peppered moths did. Due to this, there was an increase in the population of black moths, and a decrease in the population of peppered moths as birds more easily preyed upon them because they were easier to see on the dark tree trunks.

Thus, the species of moth that adapted to the changing environmental conditions were survived.

Help i do not understand this plllleeeaaassseee

Answers

those are graphs....

with population and size on Y and X axis respectively
You have to match the boxes to the graphs...I’ll go from top to bottom with the graphs...

Graph 1 is 80% of elephant calves
Graph 2 is beetles grow exponentially
Graph 3 is wolf population shows stability
Graph 4 is clownfish

Hope that helped :)

how does the presence of coal on antarctica indicates of coal on antarctica indicate a climate change

A) the discovery of a new coal deposit means people will be able to use this fossil fuel longer

B)coal deposits can tell scientist with the composition of the atmosphere was in the past

C)coal is burned for a fuel and releases carbon dioxide into the atmosphere

D) coal forms from the remains of plants that lived in tropical swamps millions of years ago

Answers

it's C. my guy hope it helps
The answer would be C!

in which part of the body would melanoma develop?

lungs

skin

lymph nodes

reproductive cells

Answers

is it for edenuity??

Answer:

-Skin.

Explanation:

Melanoma can be defined as a type of skin cancer, which develops in pigment cells or melanocytes.

The main cause for melanoma is exposure to sun that leads to DNA damage and development of cancerous cells. People having more than fifty moles have higher chances of having melanoma as moles can transformed into malignant tumors.

Thus, the correct answer is 'skin.'

He atoms surrounding an edge dislocation experience what kind(s) of strain(s)?

Answers

An edge dislocation of atoms experience tensil, shear and compressive strains. Moreover, tensile strain produce a direct stresses and compressive strain produce in a body when two equal and opposite forces try to compress the body. Meanwhile, shear strain is produce under a shear stress where the body displace transversely from its original position.  

 

 

Final answer:

Atoms surrounding an edge dislocation experience strain due to the extra half-plane's distortion of the crystal lattice. This leads to compression above and tension below the slip plane, contributing to various types of strain and understanding plastic deformation by slip.

Explanation:

The atoms surrounding an edge dislocation experience various forms of strain due to the disruption of the normal lattice structure. For a positive edge dislocation, the presence of the extra half-plane causes atoms above the dislocation to be put in compression, while those below the slip plane are in tension. This condition creates a stress field around the dislocation, where the stress is compressive above the slip plane and tensile below it. The strains experienced include the strain caused by the increase or reduction of bond angles, the strain due to eclipsing bonds on adjacent atoms, and the strain caused by the repulsive interactions among atoms attempting to occupy the same space. This phenomenon is fundamental in understanding the process of plastic deformation by slip, where blocks of crystal slide over each other due to dislocation motion under stress, without requiring the simultaneous breaking and reforming of all bonds along a plane.

During metaphase of meiosis i, homologous chromosomes and the alleles they possess are distributed to different gametes. what is this called?

Answers

During metaphase 1, the spindle fibers attach to the centromeres of each chromosome. Both kinetochores of each sister chromatid pair are turned toward the same pole. And 2 members of each chromosome pair (sister chromatids) are pulled into each new cell during anaphase 1.

I think the answer you want is they are called chromatids.

why are bacteria and archaea placed in seprate kingdoms

Answers

Archaea have more complex RNA polymerases than Bacteria, similar to Eucarya.

What are the functional cells of the humoral immune system that mature into immunoglobulins?

Answers

B cells are the functional cells of the humoral immune system that mature into immunoglobulins. B cells are type of white blood cells and they develop from stem cells in the bone marrow. Many B cells mature into plasma cells that produce immunoglobulins (proteins) needed to fight off infections while other B cells mature into memory B cells.







Describe the differences you see in the three types of muscle tissues hbs

Answers

Skeletal muscle is a muscle tissue used when running a marathon or blinking the eyes and formation of skeletal muscle comes from action and myosin muscle fibers. Smooth muscle are found in the wall of internal organs such as intestine and stomach. Contraction of the smooth muscle enable the organs to performs their function while cardiac muscle is commonly found in the wall of the heart. The contraction of the cardiac muscle enable the heart to beats and pumps blood.

During most of the mesozoic era, earth was ________.
a. about as warm as present
b. cooler than present
c. warmer than present
d. experiencing wild temperature fluctuations

Answers

Mesozoic Era is the second of the Earth's major era geologically of the Phanerozoic time. It means middle life in Greek. The climate during this time was warm and had less difference in the temperature today thus the answer is a. About as warm as present.

Answer:

c. warmer than present

Explanation:

The Mesozoic Era (Meso = Middle and Zoic = Life) is marked by the emergence of dinosaurs and encompasses the period from approximately 250 to 65 million years ago. It is divided into three periods, from oldest to most recent: Triassic, Jurassic and Cretaceous. This era was warmer than the present.

Its onset is marked by a large mass extinction of unknown causes and the formation and fragmentation of Pangeia. The enhancement and extinction of dinosaurs is also a striking fact of this era called the “age of dinosaurs” because that was when they developed most. It is also in this Era that the first flowering plants and the first birds appear.

People of all eras have at one point or another referred to "the good old days." if you could go back in time and live in any era, when and where would it be

Answers

I would go back to the early 2010's because Nintendo ruled and life didn't seem as complicated
Final answer:

The 1950s in America were marked by economic growth and cultural development but also by social inequality and political tension, showcasing the era's complex dual nature of prosperity and challenge.

Explanation:

Many people nostalgically reference "the good old days" when considering past historical eras. The 1950s in America are often remembered as a time of economic prosperity, political stability, and burgeoning cultural movements. However, this decade also presented significant social challenges and inequalities. While the post-World War II period saw significant industrial growth and the emergence of the middle class, there were also profound issues of racial segregation, gender inequality, and civil rights struggles. Tensions were heightened due to the Cold War and the fear of nuclear conflict. Women, minorities, and other marginalized groups faced systemic discrimination and fewer opportunities compared to their white, male counterparts. Therefore, the 1950s could be seen as a period of prosperity for some, but one of challenge and strife for others.

Where does carbon come from in a winogradsky column? 2. why is carbon important? 3. what purpose does calcium sulfate serve in the winogradsky column? 4. why is a hydrogen sulfide gradient generated from bottom to top in a winogradsky column? 5. how is photosynthesis different between cyanobacteria (growing at the top of the column) and green and purple sulfur bacteria (growing near the bottom 1/3 of the column)?

Answers

Carbon comes from blackened marshmallow or egg-shells, newspapers which contain cellulose, and sulphur source, for example, calcium sulphate in winogradsky column.
Carbon is important because it promotes the growth of different microorganisms. For example chlorobium, chromatium, rhodomicrobium, and Beggiatoa. 
Hydrogen sulphide gradient is generated from bottom to the top in a winogradsky column because they dominate the zone with sulphur which reduces bacteria.
Photosynthesis is different between cyanobacteria and green and purple sulphur which is sulphur anaerobic bacteria being the top layer of aerobic bacteria which produces carbon dioxide which feeds back into the column by creating another reaction.

Answer:

1.The Winogradsky section is a straightforward gadget for refined an enormous decent variety of microorganisms.The gadget is a segment of lake mud and water blended in with a carbon source, for example, paper which contains cellulose, darkened marshmallows or egg-shells which contains calcium carbonate.

2. carbon is important for providing cellulose for winogradsky column.

3.calcium sulphate in the form of gypsum or plaster of paris, craft or garden stores is used. green suphur bacterias and purple sulphur bacterias are formed after 2 to 6 weeks.

4.A hydrogen sulfide slope is created from the base to top in a Winogradsky section since sulfur-decreasing microorganisms like Desulfovibrio (microbes that utilizes maturation side-effects like Ethanol and Organic acids from Clostridium as a carbon source by means of anaerobic breath) produce a lot of H2S as a result of anaerobic breath. The H2S gradually diffuses upwards and is utilized by different life forms. The explanation the angle is higher at the base is on the grounds that anaerobic microscopic organisms like  Desulfovibrio can't endure where O2 is available. The further down in a Winogradsky section the more anaerobic the earth. Along these lines, bigger measures of H2S are created at base of segment in light of the fact that there is a higher grouping of anaerobic microorganisms that produce H2S at the base as side-effect of their anaerobic breath process

5.Rather than utilizing water to photosynthesize, similar to plants and cyanobacteria, purple sulfur microscopic organisms use hydrogen sulfide as their decreasing operator, which is the reason they radiate sulfur as opposed to oxygen.

Explanation:

Bird wings and dragonfly wings are both used for flight is it homologous structure or analogous structure

Answers

Answer:

✔ Analogous structure

Bird wings and dragonfly wings are both used for flight.

✔ Homologous structure

Clams and snails both have similar muscle structure even though the muscles do different jobs.

✔ Homologous structure

Human and giraffe necks both have 7 vertebrae because we are related.

✔ Homologous structure

The flaps of a Venus flytrap have a similar makeup to oak leaves.

Analogous structures, unlike homologous structures, originated in response to a similar environmental challenge and are similar in function but not structure. Therefore, Bird wings and dragonfly wings are both analogous.

What are analogous structure?

In contrast to homologous structures, analogous structures are characteristics of different species that have evolved in response to a similar environmental challenge and are similar in function but not necessarily in structure.

Examples of similar structures include the wings of flying creatures like bats, birds, and insects, as well as the fins of fish and penguins. Similar structures can be seen in other animals and plants as well, such as those seen in sweet potatoes and potatoes, both of which serve as food storage.

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While breathing into a plastic bag what happens to the levels of carbon dioxide in your blood?

Answers

When you hold your breath the ongoing accumulation of carbon dioxide in your cells, in your blood and lungs will eventually irritate and trigger impulses from the respiratory center part of your brain. Rising levels of carbon dioxide signal the body to breathe and ensure our unconscious and autonomous respiration.

What happens when you mix vinegar and baking soda?

Answers

When vinegar and baking soda mix hydrogen ions in the vinegar react with the sodium and bicarbonate ions in the baking soda
The first reaction is acid- base reaction. When vinegar and baking soda are first mixed together, hydrogen ions in the vinegar react with the sodium and bicarbonate I is in the baking soda. ... The Carbonic acid formed as a result of the first reaction immediately begins to decompose into water and carbon dioxide gas.

A regulatory system in your body that reinforces a change and drives it to a conclusion is called

Answers

The answer is:  "positive feedback" .
____________________________________________________________

Which of the following Best describes how the cell formed during mitosis compared to the cells formed during meiosis ?

Answers

Mitosis produces two genetically identical cells, while meiosis produces four genetically different cells.

Daughter cells of mitosis are what you call diploid. They are identical to their parent cells. They have the same number of chromosomes as well. Mitosis produces 2 daughter cells.

On the other hand, the daughter cells of meiosis are called haploid. They are genetically distinct. They have half the number of chromosomes as their parent cells. Meiosis produces 4 daughter cells.

What is the total number of chromosomes in the daughter cells after mitosis?

Answers

if you're talking about humans, then 23 

The Golgi apparatus _______ proteins around the cell.

Answers

The Golgi apparatus secretes proteins around the cell.
The Golgi apparatus is part of endomembrane system of the cell with the role in packaging proteins into vesicles and send it to their destination. The Golgi apparatus receives proteins from the rough endoplasmic reticulum, then modifies some of them, sorts, and packs them. There are three possible pathways for the proteins from Golgi apparatus:  
 Lysosomal pathway: Destination of the protein is within the cell, to organelles called lysosomes.
Exocytotic: Destination of the vesicles is the plasma membrane where they fuse and release their contents into the extracellular space (constitutive secretion).
Secretory: Destination for the vesicles with proteins is outside of the cell (extracellular) and they release their contents as a response to a signal (regulated secretion).
Final answer:

The Golgi apparatus is responsible for modifying, packaging, and transporting proteins and lipids within the cell or for secretion outside the cell. It tags proteins with 'shipping addresses' and forms vesicles that carry them to their required destinations, also producing lysosomes for waste digestion.

Explanation:

The Golgi apparatus is an essential organelle found in eukaryotic cells that plays a pivotal role in processing, modifying, and packaging proteins and lipids. It receives proteins from the rough endoplasmic reticulum (ER) and adds 'shipping addresses' or tags to them. The Golgi then encapsulates these proteins into vesicles and dispatches them to their correct destinations within the cell or to the cell membrane for exocytosis. This function of the Golgi apparatus is critical for ensuring that proteins reach their required location to perform their cellular functions. Moreover, the Golgi is involved in the production of lysosomes, which are organelles that contain digestive enzymes to break down waste materials and cellular debris.

Which of the following hormones is responsible for the maturation process in the ovarian follicles and for stimulating the development of corpus luteum in a female

Answers

The correct answer is follicle stimulating hormone (FSH).
Follicle stimulating hormone is the steroid hormone, one of the gonadotrophic hormones released by the pituitary gland into the bloodstream. It is one of the essential hormones for pubertal development and the function of ovaries. In females, this hormone stimulates the growth and maturation of ovarian follicles in the ovary before the ovulation (release of an egg from the follicle). It also increases oestradiol production. 

Question 19 of 20 Discuss the relationship between mitosis and cytokinesis

Answers

Mitosis is the division of the nucleus while cytokinesis is the division of the cytoplasm

8  P O I N T S!
Which of the following is a characteristic of a scientific experiment? Its results always support the hypothesis. It shows cause and effect relationships. It is performed in nature. It can be performed only once.

Answers

B. It shows cause and effect relationships is the answer

Answer:B. It shows cause and effect relationships is the answer

Explanation:

cause i effect your awnser with the awnser!

ATGAAAGCCTATGCACCA What does this sequence provide coding for?

Answers

ATGAAAGCCTATGCACCA  stands for "Proteins"

The lining of the stomach and intestine is protected from strong acid by

Answers

the simple answer is mucous cells. the stomach is lined with gastric mucosa and the intestine is lined with intestinal mucosa.

the preservation technique that attempts to remove moisture is

Answers

The preservation technique that attempts to remove moisture is dehydration or drying of foods. Many types of food such as meat, fish are preserved for an unlimited period by removing the moisture. This way, the growth of microorganisms in the food is hindered. Dehydration is one of the oldest methods of food preservation. Equipment such as cabinet driers and vacuum driers are used in dehydration.

 







Final answer:

Desiccation, or drying, is a preservation technique that attempts to remove moisture. It controls microbial growth and prevents spoilage in foods.

Explanation:

Drying, also known as desiccation or dehydration, is a preservation technique that attempts to remove moisture. It can be achieved through methods such as sun drying, freeze-drying, or the addition of salt or sugar to decrease water activity in foods. Desiccation works by controlling microbial growth and preventing spoilage.

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Vascular plants have two main organ systems. what are they

Answers

they are cell wall and digestem my dawg
Final answer:

Vascular plants have two main organ systems: the shoot system, which includes stems, leaves, flowers, and fruits for photosynthesis and reproduction; and the root system, which provides support and absorbs water and nutrients.

Explanation:

Vascular plants, also known as tracheophytes, consist of two main organ systems: the shoot system and the root system. The shoot system is responsible for aboveground functions and includes vegetative portions like stems and leaves, as well as reproductive parts such as flowers and fruits. This system is crucial for the process of photosynthesis, as it allows the plant to absorb light. The root system, on the other hand, is mostly underground and provides support for the plant while also absorbing water and minerals.

The two types of vascular tissues are central to these systems. Xylem tissue is dedicated to transporting water and minerals throughout the plant, while phloem tissue carries sugars and proteins. These specialized tissues enable vascular plants to grow tall and thrive on land.

Shark pups with the most advantageous traits are more likely to survive and reproduce. For example, pups that can hunt and feed with efficiency directly after being born would have an advantageous trait. What is the best prediction of how this will affect the frequency of advantageous traits in future generations?
A) are sharks in the next generation will have those exact traits
B) as long as conditions favor those traits those traits will become increasingly common in future generations
C) regardless of environmental conditions those traits will decrease in frequency in future populations
D) some of those sharks will reproduce and the more advantageous traits will remain in the population at a constant frequency

Answers

The answer is B. This is called genetic shift. The pups with advantageous traits are able to survive until the age of reproduction hence able to pass their genes to the next generation. Few and fewer pups with disadvantageous traits will get to reproduce hence the allelic frequencies of the shark population will shift in favour of increased hunting efficiency.

Which colors would be most useful for driving photosynthesis and which would be least useful?

Answers

Photosynthesis is a process when plants use light energy to make sugar. The process begins with the absorption of light by pigments. Light is an energy that travelling in waves. In other words, light is an electromagnetic radiation. Electromagnetic radiation together with other types of radiation makes an electromagnetic spectrum. Human eyes cannot see all of the spectra. What can we see is called visible spectrum. Sun lights appear to be white; in reality, it contains multiple colors of light. When white light passes through a prism we can see colors. Indeed, the different wavelengths of light have different dispersions. Red light has the longest wavelength and the least energy, while violet light has the shortest wavelength and the most energy. Those colors are the most effective in the photosynthesis process because of absorption. Green is not absorbed but is reflected and that is the reason that most plants have a green color. Due to this, green is the least effective
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