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Q519058 Inglês

                                      What causes hunger?

      The world produces enough to feed the entire global population of 7 billion people. And yet, one person in eight on the planet goes to bed hungry each night. In some countries, one child in three is underweight. Why does hunger exist? There are many reasons for the presence of hunger in the world and they are often interconnected. Here are six that we think are important.  


      Poverty trap

      People living in poverty cannot afford nutritious food for themselves and their families. This makes them weaker and less able to earn the money that would help them escape poverty and hunger. This is not just a day-to-day problem: when children are chronically malnourished, or ‘stunted’, it can affect their future income, condemning them to a life of poverty and hunger. In developing countries, farmers often cannot afford seeds, so they cannot plant the crops that would provide for their families. They may have to cultivate crops without the tools and fertilizers they need. Others have no land or water or education. In short, the poor are hungry and their hunger traps them in poverty. 


      Lack of investment in agriculture

      Too many developing countries lack key agricultural infrastructure, such as enough roads, warehouses and irrigation. The results are high transport costs, lack of storage facilities and unreliable water supplies. All conspire to limit agricultural yields and access to food. Investments in improving land management, using water more efficiently and making more resistant seed types available can bring big improvements. Research by the UN Food and Agriculture Organization shows that investment in agriculture is five times more effective in reducing poverty and hunger than investment in any other sector. 


      Climate and weather

      Natural disasters such as floods, tropical storms and long periods of drought are on the increase – with calamitous consequences for the hungry poor in developing countries. Drought is one of the most common causes of food shortages in the world. In 2011, recurrent drought caused crop failures and heavy livestock losses in parts of Ethiopia, Somalia and Kenya. In 2012 there was a similar situation in the Sahel region of West Africa. In many countries, climate change is exacerbating  already adverse natural conditions. Increasingly, the world’s fertile farmland is under threat from erosion, salination and desertification. Deforestation by human hands accelerates the erosion of land which could be used for growing food.


      War and displacement

      Across the globe, conflicts consistently disrupt farming and food production. Fighting also forces millions of people to flee their homes, leading to hunger emergencies as the displaced find themselves without the means to feed themselves. The conflict in Syria is a recent example. In war, food sometimes becomes a weapon. Soldiers will starve opponents into submission by seizing or destroying food and livestock and systematically wrecking local markets. Fields are often mined and water wells contaminated, forcing farmers to abandon their land. Ongoing conflict in Somalia and the has contributed significantly to the level of hunger in the two countries. By comparison, hunger is on the retreat in more peaceful parts of Africa such as Ghana and Rwanda.  


      Unstable markets

      In recent years, the price of food products has been very unstable. Roller-coaster food prices make it difficult for the poorest people to access nutritious food consistently. The poor need access to adequate food all year round. Price spikes may temporarily put food out of reach, which can have lasting consequences for small children. When prices rise, consumers often shift to cheaper, less-nutritious foods, heightening the risks of micronutrient deficiencies and other forms of malnutrition.  


      Food wastage

      One third of all food produced (1.3 billion tons) is never consumed. This food wastage represents a missed opportunity to improve global food security in a world where one in 8 is hungry. Producing this food also uses up precious natural resources that we need to feed the planet. Each year, food that is produced but not eaten guzzles up a volume of water equivalent to the annual flow of Russia’s Volga River. Producing this food also adds 3.3 billion tons of greenhouse gases to the atmosphere, with consequences for the climate and, ultimately, for food production. 


According to the text, hunger is caused by things such as
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Q513085 Inglês
                                                                                                                Clues to How an Electric Treatment for Parkinson’s Work

In 1998, Dr. Philip A. Starr started putting electrodes in people’s brains. A neurosurgeon at the University of California, San Francisco, Dr. Starr was treating people with Parkinson’s disease, which slowly destroys essential bits of brain tissue, robbing people of control of their bodies. At first, drugs had given his patients some relief, but now they needed more help. After the surgery, Dr. Starr closed up his patients’ skulls and switched on the electrodes, releasing a steady buzz of electric pulses in their brains. For many patients, the effect was immediate. “We have people who, when they’re not taking their meds, can be frozen,” said Dr. Starr. “When we turn on the stimulator, they start walking.” First developed in the early 1990s, deep brain stimulation, or D.B.S., was approved by the Food and Drug Administration for treating Parkinson’s disease in 2002. Since its invention, about 100,000 people have received implants. While D.B.S. doesn’t halt Parkinson’s, it can turn back the clock a few years for many patients. Yet despite its clear effectiveness, scientists like Dr. Starr have struggled to understand what D.B.S. actually does to the brain. “We do D.B.S. because it works,” said Dr. Starr, “but we don’t really know how.” In a recent experiment, Dr. Starr and his colleagues believe they found a clue. D.B.S. may counter Parkinson’s disease by liberating the brain from a devastating electrical lock-step.
http://www.nytimes.com/2015/04/16/science/ (adapted)

The future form of: “We do D.B.S. because it works, but we don’t really know how.” is:
Alternativas
Q513084 Inglês
                                                                                                                Clues to How an Electric Treatment for Parkinson’s Work

In 1998, Dr. Philip A. Starr started putting electrodes in people’s brains. A neurosurgeon at the University of California, San Francisco, Dr. Starr was treating people with Parkinson’s disease, which slowly destroys essential bits of brain tissue, robbing people of control of their bodies. At first, drugs had given his patients some relief, but now they needed more help. After the surgery, Dr. Starr closed up his patients’ skulls and switched on the electrodes, releasing a steady buzz of electric pulses in their brains. For many patients, the effect was immediate. “We have people who, when they’re not taking their meds, can be frozen,” said Dr. Starr. “When we turn on the stimulator, they start walking.” First developed in the early 1990s, deep brain stimulation, or D.B.S., was approved by the Food and Drug Administration for treating Parkinson’s disease in 2002. Since its invention, about 100,000 people have received implants. While D.B.S. doesn’t halt Parkinson’s, it can turn back the clock a few years for many patients. Yet despite its clear effectiveness, scientists like Dr. Starr have struggled to understand what D.B.S. actually does to the brain. “We do D.B.S. because it works,” said Dr. Starr, “but we don’t really know how.” In a recent experiment, Dr. Starr and his colleagues believe they found a clue. D.B.S. may counter Parkinson’s disease by liberating the brain from a devastating electrical lock-step.
http://www.nytimes.com/2015/04/16/science/ (adapted)

The negative form of: “In a recent experiment, Dr. Starr and his colleagues believe they found a clue.” is:
Alternativas
Q513083 Inglês
                                                                                                                Clues to How an Electric Treatment for Parkinson’s Work

In 1998, Dr. Philip A. Starr started putting electrodes in people’s brains. A neurosurgeon at the University of California, San Francisco, Dr. Starr was treating people with Parkinson’s disease, which slowly destroys essential bits of brain tissue, robbing people of control of their bodies. At first, drugs had given his patients some relief, but now they needed more help. After the surgery, Dr. Starr closed up his patients’ skulls and switched on the electrodes, releasing a steady buzz of electric pulses in their brains. For many patients, the effect was immediate. “We have people who, when they’re not taking their meds, can be frozen,” said Dr. Starr. “When we turn on the stimulator, they start walking.” First developed in the early 1990s, deep brain stimulation, or D.B.S., was approved by the Food and Drug Administration for treating Parkinson’s disease in 2002. Since its invention, about 100,000 people have received implants. While D.B.S. doesn’t halt Parkinson’s, it can turn back the clock a few years for many patients. Yet despite its clear effectiveness, scientists like Dr. Starr have struggled to understand what D.B.S. actually does to the brain. “We do D.B.S. because it works,” said Dr. Starr, “but we don’t really know how.” In a recent experiment, Dr. Starr and his colleagues believe they found a clue. D.B.S. may counter Parkinson’s disease by liberating the brain from a devastating electrical lock-step.
http://www.nytimes.com/2015/04/16/science/ (adapted)

The interrogative form of: “For many patients, the effect was immediate.” is:
Alternativas
Q513082 Inglês
                                                                                                                Clues to How an Electric Treatment for Parkinson’s Work

In 1998, Dr. Philip A. Starr started putting electrodes in people’s brains. A neurosurgeon at the University of California, San Francisco, Dr. Starr was treating people with Parkinson’s disease, which slowly destroys essential bits of brain tissue, robbing people of control of their bodies. At first, drugs had given his patients some relief, but now they needed more help. After the surgery, Dr. Starr closed up his patients’ skulls and switched on the electrodes, releasing a steady buzz of electric pulses in their brains. For many patients, the effect was immediate. “We have people who, when they’re not taking their meds, can be frozen,” said Dr. Starr. “When we turn on the stimulator, they start walking.” First developed in the early 1990s, deep brain stimulation, or D.B.S., was approved by the Food and Drug Administration for treating Parkinson’s disease in 2002. Since its invention, about 100,000 people have received implants. While D.B.S. doesn’t halt Parkinson’s, it can turn back the clock a few years for many patients. Yet despite its clear effectiveness, scientists like Dr. Starr have struggled to understand what D.B.S. actually does to the brain. “We do D.B.S. because it works,” said Dr. Starr, “but we don’t really know how.” In a recent experiment, Dr. Starr and his colleagues believe they found a clue. D.B.S. may counter Parkinson’s disease by liberating the brain from a devastating electrical lock-step.
http://www.nytimes.com/2015/04/16/science/ (adapted)

The simple past tense form of: “When we turn on the stimulator, they start walking.” is:
Alternativas
Q513081 Inglês
                                                                                                                Clues to How an Electric Treatment for Parkinson’s Work

In 1998, Dr. Philip A. Starr started putting electrodes in people’s brains. A neurosurgeon at the University of California, San Francisco, Dr. Starr was treating people with Parkinson’s disease, which slowly destroys essential bits of brain tissue, robbing people of control of their bodies. At first, drugs had given his patients some relief, but now they needed more help. After the surgery, Dr. Starr closed up his patients’ skulls and switched on the electrodes, releasing a steady buzz of electric pulses in their brains. For many patients, the effect was immediate. “We have people who, when they’re not taking their meds, can be frozen,” said Dr. Starr. “When we turn on the stimulator, they start walking.” First developed in the early 1990s, deep brain stimulation, or D.B.S., was approved by the Food and Drug Administration for treating Parkinson’s disease in 2002. Since its invention, about 100,000 people have received implants. While D.B.S. doesn’t halt Parkinson’s, it can turn back the clock a few years for many patients. Yet despite its clear effectiveness, scientists like Dr. Starr have struggled to understand what D.B.S. actually does to the brain. “We do D.B.S. because it works,” said Dr. Starr, “but we don’t really know how.” In a recent experiment, Dr. Starr and his colleagues believe they found a clue. D.B.S. may counter Parkinson’s disease by liberating the brain from a devastating electrical lock-step.
http://www.nytimes.com/2015/04/16/science/ (adapted)

According to the text, choose the correct alternative to answer the following question: “Who is Philip A. Starr?”
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Q503734 Inglês
Learners of English as a foreign language usually have problems in distinguishing between oral and written English. Oral language typically displays an unplanned and fragmented speech, while written language usually presents a more elaborated and planned speech. When correcting written assignments, teachers should pay particular attention to the uses that are typically oral. The alternatives below present examples of oral speech. The only exception is:
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Q503733 Inglês
Consider the following sentence from a student’s essay.

“The theme of this short story make us see the beauty in another vision.” (source: a real student’s essay)

The sentence should be rewritten as the following alternative:
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Q503732 Inglês
Consider the following noun phrase: ‘the only navigable river’. Suppose a student asks you if there is a difference in meaning if ‘navigable’ is placed after ‘river’. The alternative with the correct answer and comment is:
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Q503731 Inglês
Suppose you are correcting some literary essays. In one essay, you find the following extract.

“It begins with the Giant coming back to his garden after a seven-year trip. When arriving they see that children play in his garden." (source: a real student's essay)

The mistake that directly affects the cohesion of the extract is the/a:
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Q503730 Inglês
Suppose a student asks you if 'whose' in the following academic passage is wrong.

“There is a way of proceeding in conceptual matters whose method is to define away any inconvenient difficulty." (Biber et al, 1999, p. 617)

The alternative with the correct answer and comment is:
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Q503729 Inglês
Modal verbs can be classified into two major categories of me- aning: epistemic and deontic. Epistemic modals refer to the logical status of events or states. The following alternatives are examples of epistemic modals. The only exception is:
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Q503728 Inglês
One mechanism of grammatical cohesion is the use of substituting pro-forms. The only example of a pro-form is:
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Q503727 Inglês
According to the Longman Grammar (Biber et al., 1999, p. 988), “collocations are associations between lexical words, so that the words co-occur more frequently than expected by chance”. This text presents several examples of collocations. The only exception is:
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Q503726 Inglês
Adverbs present a range of semantic categories. In this text, we can ?nd some of them: time, manner, degree etc. The only pair that includes adverbs of different semantic categories is:
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Q503725 Inglês
This text shows several examples of multiple parallel clausal structures. One example particularly shows the repetition of subordinate clauses to describe the preceding noun phrase, producing a certain dramatic effect. The example is:
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Q503724 Inglês
According to the Longman Grammar (Biber et al., 1999), it is dificult to identify the intended time reference for the past perfect, because the reference depends on the context. In “All of them were loved, but most had missed many of the experiences we expect children to have in their first five years." (l. 12), the time reference for the past perfect verb phrase is:
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Q503723 Inglês
Lexical choices vary according to the different types of language: written or spoken. An example of a word in the text that is typical of American conversational English is:
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Q503722 Inglês
In the sentence “It would be nice if teachers who work in the most challenging schools could be paid more." (l. 43), the personal pronoun 'it' functions as an:
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Q503721 Inglês
This editorial is a critical response to the article “Poor schools, rookie teachers” (l. 3). The critique is built against the logical relation established between the two noun phrases of this title. This logical relation is one of:
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Respostas
20661: C
20662: A
20663: D
20664: C
20665: B
20666: C
20667: A
20668: C
20669: A
20670: C
20671: D
20672: B
20673: E
20674: D
20675: B
20676: E
20677: C
20678: D
20679: A
20680: D