Which of these statements best describes how Nigeria and South Africa are alike? A. Both countries have a history of apartheid. B. Both countries have an economy based mainly on manufacturing. C. Both countries have an economy based mainly on agriculture. D. Both countries lack equal access to education for all children. Please select the best answer from the choices provided

Answers

Answer 1

Answer:

I think the answer is D

I am really not sure if that is the answer but if it is the answer can you brainlest me please

Answer 2

Answer:

d i got it right on the quiz

Explanation:


Related Questions

which one is the the oldest and youngest?​

Answers

Answer:

The oldest is G

Explanation:

the youngest is B

Oldest is g young is b

PLEASEEEEE HELPppppppp

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Answer:

Q.3

Reactants: C has 1 atom, H has 4 atoms and O has 4

Products: Have the same number of atoms as Reactants

Q4. The equation has an equal amount of atoms on both sides making it a balanced equation

Hope this helps...

SSomebody helppppppppppppppppppppp

Answers

Answer:

I think water does follow the law of conservation because water gets heavy every time like a Hurricane or a Tsumani they're both made out of the water and they do a lot of damage like Hurricane Delta was the record-tying fourth named storm of 2020 to strike Louisiana, as well as the record-breaking tenth named storm to strike the United States in that year. The twenty-sixth tropical cyclone, twenty-fifth named storm, ninth hurricane, and a third major hurricane of the record-breaking 2020 and A tsunami is a series of waves in a water body caused by the displacement of a large volume of water  

Explanation:

How can you account for the great number, size, and complexity of organic compounds?

Answers

Answer:

You can count each and every individual atom in the organic compound.

Explanation:

May I have brainliest please? :)

In order for a cell to remove waste, those materials must pass through which cell structure? A. chromosomes B. mitochondria C. chloroplasts D. cell membrane

Answers

Answer:

d

Explanation:

Where does skin color come from? Include the name of the molecule and the cell that is responsible.

Answers

Their name is derived from two parts: melano-, which means black or darkness, and -cyte, which means cell. Melanocytes are irregularly shaped cells that produce and store a pigment called melanin. The most abundant type of melanin is called eumelanin. This pigment is stored in organelles called melanosomes.
Melano/ melanin the darker your skin the more melanin you have

Need help fast!!!
please!! 20 POINTS

Answers

Look it up online, look up a copy of the Articles of confederation and fill it in! Best I can do for you my friend

Answer:

Ican't see

Explanation:

At the end of which era did the dinosaurs become extinct?
A. Jurassic
B. Mesozoic
C. Paleozoic
D. Cenozoic

Answers

The answer is D. Cenozoic

Please help!!
Need answers fast!!

Answers

Answer: The first two at the top and the bottom one at the left is positive and the rest is negative

Explanation:

How are atoms and molecules related?

Answers

Answer:

Explanation:

Molecule is the general term used to describe any atoms that are connected by chemical bonds. Every combination of atoms is a molecule. A compound is a molecule made of atoms from different elements. All compounds are molecules, but not all molecules are compounds.

Atoms are the building blocks of molecules. A molecule is formed when two or more atoms chemically bond together.

What are they made up of?

Atoms consist of a nucleus containing protons and neutrons, surrounded by electrons in energy levels or orbitals. When atoms combine, they share, donate, or accept electrons to achieve a stable electron configuration, forming chemical bonds.

These bonds can be covalent, where atoms share electrons, or ionic, where electrons are transferred between atoms. The arrangement and types of atoms in a molecule determine its chemical properties and behavior. Thus, molecules are composed of specific combinations of atoms held together by chemical bonds.

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New forms of drug-resistant bacteria can evolve quickly because
A
when a drug kills most of the bacteria, the ones left to breed are those that have a natural resistance to the drug.

B
when scientists genetically engineer bacteria they use natural selection.

C
scientists use extinction to selectively breed bacteria.

D
a drug causes mutations in the bacteria, leaving only mutated bacteria left to breed.

Answers

I would say option A, when a drug kills most of the bacteria the ones left to breed are those that have a natural resistance to the drug.

Misuse, abuse, and inadequate infection control and preventive practices all speed up the development of antibiotic resistance. At all societal levels, actions can be made to lessen the effects and contain the spread of resistance. Thus, option A is correct.

What drug-resistant bacteria can evolve quickly?

The experiment demonstrates how simple and rapid it is for bacteria to develop resistance. Resistance levels rose more than 1000-fold in just 11 days, according to Professor Kishony.

Antibiotic usage is the primary contributor to antibiotic resistance. When people take antibiotics, some bacteria are killed, but resistant germs can survive and even multiply.

The incidence of resistant bacteria rises with antibiotic use. The more frequently we take antibiotics, the more likely bacteria are to evolve resistance to them.

Therefore, Within two to three years, new antimicrobial resistance can spread widely. For bacteria that can be selected as both benign commensals and harmful hospital acquired illnesses, resistance issues are particularly serious.

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PLEASE HELPP!! DUE TODAY! WHO EVER ANSWER THESE QUESTIONS CORRECTLY WILL GET ALL OF MY POINTS! IF YOU WANT THEM ANSWER THESE QUESTIONS CORRECTLYYY! I HAVE 100 POINTS

Answers

2 organs = kidney , pendex
the two organs you can live without are your kidney and your appendix. you have two kidneys incase there is a complication with one of them, you have a “backup.” your system wouldn’t change too much, you’d live a healthy life. you can also live without your appendix. it’s the most useless organ in the human digestive system. plant eaters rely on their appendix to help process plants , but that organ is not part of the human digestive system. again , you wouldn’t notice any major change. if you do remove a kidney however, it’s be best not to overwork it and take proper care of your body by consuming appropriate amounts of fluids. if you lose both kidneys it’s fatal.

Lesson 1:
1. Using the diagram below, explain how the energy is transferred through the GEOSPHERE. Start
your explanation at the core. Make sure your answer includes the following vocabulary words or
phrases. Make sure you highlight them in your paragraph.
gravity, mantle, more dense, less dense, heats up, cools off, rises, falls

Answers

Answer: the core of the earth heats up the more dense part of the mantle making it less dense. When the less dense part of the mantle rises, the more dense part of the mantle falls, and cools off. This motion continues creating convection currents

The answer is help me not me help you 6750

What are the four basic functions that all cells must perform?
please do not look this up i just want the four basics will give brainiest

Answers

Answer:

1) transport process, 2) removing waste, 3) reproduction, 4) produce energy

Transport access, aid in reproduction,
Create metabolic reactions,allow active and passive transport

How often are you in Earth’s shadow?
will give brainliest, please answer soon

Answers

Answer: Earth's shadow extends about 870,000 miles (1.4 million km) into space

Explanation:Like all shadows, the shadow of Earth is always opposite the sun. So you'll want to look eastward after sunset for the shadow (or westward before sunrise). Earth's shadow is the dark blue line above the horizon in this photo by Jörgen Andersson in Sweden. View larger.

Do you think there’s sufficient evidence in the article to conclude that bright red leaves in the fall help protect the trees in the winter? Explain your answer.

Article:
Every autumn, traffic creeps along New England’s roads as visitors look everywhere but at the road. These tourists flock to the region as soon as leaves begin to change color from a summery green to spectacular shades of red, orange, yellow, and purple.

“Being in the Northeast during autumn is just about as good as it gets in this country,” says David Lee. He’s a botanist at Florida International University in Miami.

Lee studies leaf color, so he’s biased. But plenty of other people share his admiration. Areas of the United States with especially colorful fall displays attract thousands of leaf peepers.

Even as they “ooh” and “aah,” few people know what makes many plants blush in the autumn. Research has shown that leaves change color when their food-making processes shut off. The chemical chlorophyll, which gives leaves their green color, breaks down. This allows other leaf pigments—yellow and orange—to become visible

But “there’s still a lot we don’t know about this,” Lee says.

It isn’t clear, for example, why different species of plants turn different colors. Or why some trees become redder than others, even when they’re standing right next to each other. And no one knows exactly how global warming will alter forests and affect leaf-peeping season.

Food factory
In summer, when a plant is green, its leaves contain the pigment chlorophyll, which absorbs all colors of sunlight except green. We see the reflected green light.

The plant uses the energy it absorbs from the sun to turn carbon dioxide and water into sugars (food) and oxygen (waste). The process is called photosynthesis.

As days get shorter and colder in the autumn, chlorophyll molecules break down. Leaves quickly lose their green color. Some leaves begin to look yellow or orange because they still contain pigments called carotenoids. One such pigment, carotene, gives carrots their bright-orange color.

But red is special. This brilliant color appears only because the leaves of some plants, including maples, actually produce new pigments, called anthocyanins.

That’s a strange thing for a plant to do without a reason, says Bill Hoch of the University of Wisconsin in Madison. Why? Because it takes a lot of energy to make anthocyanins.

Why red?
To figure out the purpose of the red pigment, Hoch and his coworkers bred mutant plants that can’t make anthocyanins and compared them with plants that do make anthocyanins. They found that plants that can make red pigments continue to absorb nutrients from their leaves long after the mutant plants have stopped.

This study and others suggest that anthocyanins work like a sunscreen. When chlorophyll breaks down, a plant’s leaves become vulnerable to the sun’s harsh rays. By turning red, plants protect themselves from sun damage. They can continue to take nutrients out of their dying leaves. These reserves help the plants stay healthy through the winter.

The more anthocyanins a plant produces, the redder its leaves become. This explains why colors vary from year to year, and even from tree to tree. Stressful conditions, such as drought and disease, often make a season redder.

Now, Hoch is breeding plants for a new set of experiments. He wants to find out whether turning red helps plants survive cold weather.

“There’s a clear correlation between environments that get colder in the fall and the amount of red produced,” he says. “Red maples turn bright red in Wisconsin. In Florida, they don’t turn nearly as bright.”

More protection
Elsewhere, scientists are looking at anthocyanins in other ways. A recent study in Greece, for instance, found that as leaves grow redder, insects eat them less. On the basis of this observation, some scientists argue that red pigments defend a plant against bugs.

Leaves may turn red in the autumn to protect themselves from the sun’s ultraviolet rays.



J. Miller
Hoch rejects that theory, but Lee thinks that it might make sense. He points out that red leaves contain less nitrogen than green ones do. “It may actually be that insects avoid red leaves because they’re less nutritious,” Lee says.

However, “it’s pretty confusing at this point,” Lee admits. “People debate back and forth.”

To settle the debate, scientists will need to look at more species under more conditions, Lee says. So, he’s now researching leafy plants rather than trees. He’s especially interested in tropical plants, whose leaves turn red when they’re young rather than old.

You can do your own leafy experiments. Observe the trees in your neighborhood and keep track of weather conditions. When autumn begins, write down when the leaves change, which species change first, and how rich the colors are. You can even see anthocyanins under a simple microscope. After several years, you might start to notice some patterns.

Answers

Answer:

where the hell u gut this from

Explanation:

There’s some evidence, but not a definitive conclusion. One study focused on trees that don’t produce anthocyanins. Anthocyanins are pigments that make leaves turn red. The study said that these trees don’t absorb as many nutrients as trees with red leaves.

Another study found that insects are generally not inclined to eat red leaves on trees. There seems to be a trend that suggests that red leaves are important for the trees’ survival in the fall. This trend needs to be validated by conducting more tests.

This is the exact answer so you might wanna put in your own words. good luck! :)

need help fast!!!!
15 points!

Answers

Answer:

the answer is c

Explanation:

a thermometer behaves predictably in the presence of heat

When minerals combine, they form differnt____that make up the Earth's crust.
rocks
glaciers
elements
science

Answers

the answer is rocks i think like 99.999% sure

Answer: C) Elements

Explanation:

What is a product made from nonrenewable resources?

Answers

Answer:

a paintbrush made from horse hair

Explanation:

Answer:

D, a paintbrush made from horse hair

Explanation: I did the test

Choose one region on the world map. How does the climate their differ during El Niño and La Niña?

Answers

Answer:What are El Niño and La Niña?

El Niño and La Niña are opposite phases of a natural climate pattern across the tropical Pacific Ocean that swings back and forth every 3-7 years on average. Together, they are called ENSO (pronounced “en-so”), which is short for El Niño-Southern Oscillation.

The ENSO pattern in the tropical Pacific can be in one of three states: El Niño, Neutral, or La Niña. El Niño (the warm phase) and La Niña (the cool phase) lead to significant differences from the average ocean temperatures, winds, surface pressure, and rainfall across parts of the tropical Pacific. Neutral indicates that conditions are near their long-term average.

Maps of sea surface temperature anomaly in the Pacific Ocean during a strong La Niña (top, December 1988) and El Niño (bottom, December 1997). Maps by NOAA Climate.gov, based on data provided by NOAA View. large versions La Niña | El Niño

What happens during El Niño and La Niña?

During El Niño, the surface winds across the entire tropical Pacific are weaker than usual. Ocean temperatures in the central and eastern tropical Pacific Ocean are warmer than average, and rainfall is below average over Indonesia and above average over the central or eastern Pacific.

Rising air motion (which is linked to storms and rainfall) increases over the central or eastern Pacific, and surface pressure there tends to be lower than average.  Meanwhile, an increase in sinking air motion over Indonesia leads to higher surface pressure and dryness.  

walker circulation, ENSO, El Niño, convection, circulation, walker cell, tropical circulation, Pacific Walker Circulation, Pacific Walker Cell

Generalized Walker Circulation (December-February) anomaly during El Niño events, overlaid on map of average sea surface temperature anomalies. Anomalous ocean warming in the central and eastern Pacific (orange) help to shift a rising branch of the Walker Circulation to east of 180°, while sinking branches shift to over the Maritime continent and northern South America. NOAA Climate.gov drawing by Fiona Martin.

During La Niña, it’s the opposite. The surface winds across the entire tropical Pacific are stronger than usual, and most of the tropical Pacific Ocean is cooler than average. Rainfall increases over Indonesia (where waters remain warm) and decreases over the central tropical Pacific (which is cool). Over Indonesia, there is more rising air motion and lower surface pressure. There is more sinking air motion over the cooler waters of the central and eastern Pacific.

walker circulation, ENSO, La Niña, convection, circulation, walker cell, tropical circulation, Pacific Walker Circulation, Pacific Walker Cell

Generalized Walker Circulation (December-February) anomaly during La Niña events, overlaid on map of average sea surface temperature anomalies. Anomalous ocean cooling (blue-green) in the central and eastern Pacific Ocean and warming over the western Pacific Ocean enhance the rising branch of the Walker circulation over the Maritime Continent and the sinking branch over the eastern Pacific Ocean. Enhanced rising motion is also observed over northern South America, while anomalous sinking motion is found over eastern Africa. NOAA Climate.gov drawing by Fiona Martin.

Between the warm phase (El Niño) and cool phase (La Niña), scientists describe conditions as “ENSO-neutral.” Neutral means that the temperatures, winds, convection (rising air), and rainfall across the tropical Pacific are near their long-term averages.  

Walker Circulation - ENSO Neutral

Explanation:

Mexico was most effected

Why don't we have solar and lunar eclipses every month?

Answers

We don't see solar and lunar eclipses every month because the moons orbit is tilted by 5 degrees.
the person above me is correct lol

What is main organ of
the nervous system?
A. Stomach
B. Heart
C.Brain
D. Muscles
Hurry pls

Answers

The nervous system has two main parts: The central nervous system is made up of the brain and spinal cord.

This question is 15 points. The same amount of heat is needed to make a metamorphic rock as is needed to make an igneous rock. True or False

Answers

Answer:

False

Explanation:

Igneous rocks need more heat than metamorphic rocks.

false.

igneous rock is formed when hot molten crystallizes and solidifies. metamorphic rock is formed when either its past the igneous, sedimentary, or even metamorphic rock goes under extreme heat and pressure.

when a rock turns into a metamorphic rock, more heat is needed than when one turns into an igneous rock.

Which environment will experience the LEAST amount of change over time?

A. an ecosystem with a climax community
B. an ecosystem that is in secondary succession
C. an ecosystem that is in primary succession
D. an ecosystem with only pioneer species

Answers

Answer: D

Explanation: the pioneer species is the first species to live in an environment

An ecosystem with a climax community will experience the least amount of change over time. Therefore, option A is correct.

Why climax community ecosystem experience the least amount of change?

A climax community is a stable community of plants and animals that has reached a state of equilibrium with its environment. In such a community, the number of species and their relative abundance tend to remain relatively constant over time, barring any major disturbances such as fire or human intervention.

In contrast, ecosystems in primary and secondary succession are undergoing significant changes as they transition from bare rock or disturbed land to a stable, self-sustaining community. Ecosystems with only pioneer species may also experience significant changes over time as more complex plant and animal communities develop.

Therefore, option A is correct.

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The geometric shape of a mineral that reflects its internal crystalline arrangement of atoms

luster
mineral crystal
Mohs Hardness Scale
science

Answers

Answer:

"While growing, minerals may develop a distinct crystal form with smooth, flat planes called crystal faces. The geometric pattern of the crystal faces reflects the internal atomic arrangement of the crystal structure. This is one of the most important things about a mineral."

Explanation:

mineral crystal the answer

Which animal is most likely to have an open circulatory system?

A. Crab
B. Bird
C. Dog
D. Lizard

Answers

Answer:

A. Crab

Explanation:

The animals which are most likely to have an open circulatory system belongs to the Arthropoda Phylum of the animal kingdom. Crab belongs to this phylum. Thus, the correct option is A.

What is Arthropoda?

Arthropoda is the phylum of the animal kingdom. It consists of all the invertebrate animals which have an exoskeleton, a segmented body, and paired jointed appendages. It is the largest phylum of the animal kingdom.

The distinguishing characteristics of arthropods are their jointed limbs and cuticle made of chitin, and often mineralized with calcium carbonate.

Arthropods have an open circulatory system, it means the blood does not circulate in closed blood vessels however it is pumped into a cavity called a hemocoel. The blood is also known as hemolymph as it mixes with the other interstitial fluids.

Therefore, the correct option is A.

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can someone help me fill this chart ill give brainliest to the first person who answers correctly

Answers

i am doing something like this is health science, so i think my answers will be correct
circulatory : organ-heart tissue- blood cell- white and red blood cells function- blood vessels transport blood, heart pumps blood through blood vessels
nervous : organ- brain, spinal cord, nerves tissue- neuron cell- glial cell function- fast-acting control system, detects,interprets,coordinates and controls body activities
integumentary : organ- skin, nails, hair tissue- epidermis cell- keratinocytes function- forms external body covering, protects from injury, infection, dehydration, regulates body temperature, synthesizes vitamin D

This question is 15 points. I will give you the brainlest, please help me! Fill out the box.

Answers

I believe it’s 3-sedimentary rock 4- igneous rock and 5-metamorphic rock.

Answer:

give her brainiest

Explanation:

please help!!

How is the Burmese python impacting the Everglades ecosystem?

Answers

Answer: the python eats everything in the everglades including destroying plants and animals.

and the population grows everyday

Explanation:

The python eats everything according to the top comment and I agree as well

Identify three substances that are removed from the air as it is filtered.

Answers

Answer:

Dirt, allergen

Explanation:

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