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Newly discovered primate 'already facing extinction'
(Adaptado de https://www.bbc.com/news/science-environment-54894681)
Newly discovered primate 'already facing extinction'
(Adaptado de https://www.bbc.com/news/science-environment-54894681)
Newly discovered primate 'already facing extinction'
(Adaptado de https://www.bbc.com/news/science-environment-54894681)
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Advérbios e conjunções em inglês para concursos públicos
O estudo de advérbios e conjunções na língua inglesa é fundamental para quem deseja se destacar em provas de concursos públicos. Esses elementos desempenham papéis essenciais na construção de frases, influenciando diretamente o sentido e a coesão textual, habilidades bastante exigidas nas questões de interpretação e compreensão de textos em inglês.
Artigos (Articles) em inglês: uso em concursos públicos
Artigos (Articles) são palavras essenciais na gramática da língua inglesa, usadas para indicar se um substantivo está sendo mencionado de forma específica ou geral. Eles desempenham papel fundamental em provas de concursos, pois ajudam na compreensão e interpretação dos textos, além de serem frequentemente cobrados em questões envolvendo uso correto de estruturas gramaticais.
Newly discovered primate 'already facing extinction'
(Adaptado de https://www.bbc.com/news/science-environment-54894681)

(Avaliable in: https://theplaylist.net/matrix-4-keanu-reeves-script-20200608/ – text adapted specially
for this test).
I. The verb “do” is in the infinitive form. II. The verb “do” is in the gerund form. III. The noun “reason” must be followed by “to”.
Which statements are correct?

(Avaliable in: https://theplaylist.net/matrix-4-keanu-reeves-script-20200608/ – text adapted specially
for this test).

(Avaliable in: https://theplaylist.net/matrix-4-keanu-reeves-script-20200608/ – text adapted specially
for this test).

(Avaliable in: https://theplaylist.net/matrix-4-keanu-reeves-script-20200608/ – text adapted specially
for this test).

(Avaliable in: https://theplaylist.net/matrix-4-keanu-reeves-script-20200608/ – text adapted specially
for this test).
Read the text below to answer the question.
Parker Solar Probe: How Nasa is trying to 'touch' the Sun
Nasa is all set to launch one of the most ambitious missions in its history. It's sending a satellite called the Parker Solar Probe into the Sun's outer atmosphere, or corona. Scheduled for launch on Saturday, the spacecraft promises to crack some longstanding mysteries about our star's behaviour.
(Adapted from: https://www.bbc.com/news/av/science-environment-45113552).
Read the text below to answer the question.
Parker Solar Probe: How Nasa is trying to 'touch' the Sun
Nasa is all set to launch one of the most ambitious missions in its history. It's sending a satellite called the Parker Solar Probe into the Sun's outer atmosphere, or corona. Scheduled for launch on Saturday, the spacecraft promises to crack some longstanding mysteries about our star's behaviour.
(Adapted from: https://www.bbc.com/news/av/science-environment-45113552).
Read the text below to answer the question.
Parker Solar Probe: How Nasa is trying to 'touch' the Sun
Nasa is all set to launch one of the most ambitious missions in its history. It's sending a satellite called the Parker Solar Probe into the Sun's outer atmosphere, or corona. Scheduled for launch on Saturday, the spacecraft promises to crack some longstanding mysteries about our star's behaviour.
(Adapted from: https://www.bbc.com/news/av/science-environment-45113552).
Read the text below to answer the question.
How octopuses ‘taste’ things by touching
Octopus arms have minds of their own. Each of these eight supple yet powerful limbs can explore the seafloor in search of prey, snatching crabs from hiding spots without direction from the octopus’ brain. But how each arm can tell what it’s grasping has remained a mystery.
Now, researchers have identified specialized cells not seen in other animals that allow octopuses to “taste” with their arms. Embedded in the suckers, these cells enable the arms to do double duty of touch and taste by detecting chemicals produced by many aquatic creatures. This may help an arm quickly distinguish food from rocks or poisonous prey, Harvard University molecular biologist Nicholas Bellono and his colleagues report online October 29 in Cell.
The findings provide another clue about the unique evolutionary path octopuses have taken toward intelligence. Instead of being concentrated in the brain, two-thirds of the nerve cells in an octopus are distributed among the arms, allowing the flexible appendages to operate semiindependently.
(Adapted from: https://www.sciencenews.org/article/octopus-taste-touch-arm-suckers).
Read the text below to answer the question.
How octopuses ‘taste’ things by touching
Octopus arms have minds of their own. Each of these eight supple yet powerful limbs can explore the seafloor in search of prey, snatching crabs from hiding spots without direction from the octopus’ brain. But how each arm can tell what it’s grasping has remained a mystery.
Now, researchers have identified specialized cells not seen in other animals that allow octopuses to “taste” with their arms. Embedded in the suckers, these cells enable the arms to do double duty of touch and taste by detecting chemicals produced by many aquatic creatures. This may help an arm quickly distinguish food from rocks or poisonous prey, Harvard University molecular biologist Nicholas Bellono and his colleagues report online October 29 in Cell.
The findings provide another clue about the unique evolutionary path octopuses have taken toward intelligence. Instead of being concentrated in the brain, two-thirds of the nerve cells in an octopus are distributed among the arms, allowing the flexible appendages to operate semiindependently.
(Adapted from: https://www.sciencenews.org/article/octopus-taste-touch-arm-suckers).
Read the text below to answer the question.
How octopuses ‘taste’ things by touching
Octopus arms have minds of their own. Each of these eight supple yet powerful limbs can explore the seafloor in search of prey, snatching crabs from hiding spots without direction from the octopus’ brain. But how each arm can tell what it’s grasping has remained a mystery.
Now, researchers have identified specialized cells not seen in other animals that allow octopuses to “taste” with their arms. Embedded in the suckers, these cells enable the arms to do double duty of touch and taste by detecting chemicals produced by many aquatic creatures. This may help an arm quickly distinguish food from rocks or poisonous prey, Harvard University molecular biologist Nicholas Bellono and his colleagues report online October 29 in Cell.
The findings provide another clue about the unique evolutionary path octopuses have taken toward intelligence. Instead of being concentrated in the brain, two-thirds of the nerve cells in an octopus are distributed among the arms, allowing the flexible appendages to operate semiindependently.
(Adapted from: https://www.sciencenews.org/article/octopus-taste-touch-arm-suckers).
Read the text below to answer the question.
How octopuses ‘taste’ things by touching
Octopus arms have minds of their own. Each of these eight supple yet powerful limbs can explore the seafloor in search of prey, snatching crabs from hiding spots without direction from the octopus’ brain. But how each arm can tell what it’s grasping has remained a mystery.
Now, researchers have identified specialized cells not seen in other animals that allow octopuses to “taste” with their arms. Embedded in the suckers, these cells enable the arms to do double duty of touch and taste by detecting chemicals produced by many aquatic creatures. This may help an arm quickly distinguish food from rocks or poisonous prey, Harvard University molecular biologist Nicholas Bellono and his colleagues report online October 29 in Cell.
The findings provide another clue about the unique evolutionary path octopuses have taken toward intelligence. Instead of being concentrated in the brain, two-thirds of the nerve cells in an octopus are distributed among the arms, allowing the flexible appendages to operate semiindependently.
(Adapted from: https://www.sciencenews.org/article/octopus-taste-touch-arm-suckers).
Read the text below to answer the question.
How octopuses ‘taste’ things by touching
Octopus arms have minds of their own. Each of these eight supple yet powerful limbs can explore the seafloor in search of prey, snatching crabs from hiding spots without direction from the octopus’ brain. But how each arm can tell what it’s grasping has remained a mystery.
Now, researchers have identified specialized cells not seen in other animals that allow octopuses to “taste” with their arms. Embedded in the suckers, these cells enable the arms to do double duty of touch and taste by detecting chemicals produced by many aquatic creatures. This may help an arm quickly distinguish food from rocks or poisonous prey, Harvard University molecular biologist Nicholas Bellono and his colleagues report online October 29 in Cell.
The findings provide another clue about the unique evolutionary path octopuses have taken toward intelligence. Instead of being concentrated in the brain, two-thirds of the nerve cells in an octopus are distributed among the arms, allowing the flexible appendages to operate semiindependently.
(Adapted from: https://www.sciencenews.org/article/octopus-taste-touch-arm-suckers).
Alguns recursos que podem ser utilizados como apoio nas aulas de produção escrita em Língua Inglesa são:
I. Dicionário, mono ou bilíngue.
II. Glossário construído em sala de aula.
III. Guias de apoio, que contenham conjugações, elementos gramaticais e características dos tipos de textos em estudo.
Está correto o que se afirma em: