Questões de Concurso Público Prefeitura de Congonhinhas - PR 2026 para Professor de Inglês

Foram encontradas 11 questões

Q4254765 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
According to the text, how did most computers connect to the internet at the beginning of the 21st century? 
Alternativas
Q4254766 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
In the sentence “innovations... are emerging at an incredible rate,” which word could replace “incredible” without changing the meaning? 
Alternativas
Q4254767 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
Consider the sentence: “The last 25 years has seen some mind-bending technological changes.” Which verb tense is being used? 
Alternativas
Q4254768 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
The word “nanotechnology” refers to engineering at a specific scale. According to the text, what is this scale?
Alternativas
Q4254769 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
If the prediction “we could see nanotechnology implants by then” were changed to a negative form, it would be:
Alternativas
Q4254770 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
What is the purpose of “digital twins” according to Professor Roger Highfield? 
Alternativas
Q4254771 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
According to futurist Tracey Follows, how will “AI teachers” function in the year 2050?
Alternativas
Q4254772 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
In the sentence “In 1998 he became the first human to have a microchip implanted into his nervous system,” identify the classification of the verbs “became” and “implanted.”
Alternativas
Q4254773 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
The text mentions that “lines between machines, electronics and biology” will be “significantly blurred.” In this context, what does the word “blurred” imply regarding the relationship between these fields?
Alternativas
Q4254774 Inglês
AI teachers and cybernetics - what could the world look like in 2050?

Laura Cress - Technology reporter


   The last 25 years has seen some mind-bending technological changes. At the start of the century, most computers connected to the internet with noisy dial-up connections, Netflix was an online DVD rental company, and the vast majority of people hadn't even heard of a smartphone. Fast forward two and a half decades, and innovations in AI, robotics and much else besides are emerging at an incredible rate. So we decided to ask experts what the next 25 years could bring. Here are their predictions for the technology we'll be using by 2050 - and how it could reshape our lives.

    Merging humans and machines

    Science fiction set in the 2050s is full of examples of humans using technological enhancements to feel fitter, happier and more productive. In the 2000 hit game Deus Ex - set in 2052 - the player can inject themselves with tiny robots called “nanites”. These microscopic robots manipulate matter on atomic levels, giving superhuman abilities such as enhanced speed and the ability to see in the dark. It sounds like something from the distant future, but nanotechnology - engineering at a scale of millionths of a millimetre - is already used in lots of everyday real-life tech. In fact, it is powering the way you are reading these very words right now - every smartphone or computer is run by a central chip made up of billions of tiny transistors - electrical components built on a nanoscale to speed up data processing. Professor Steven Bramwell at the London Centre for Nanotechnology told the BBC by 2050 we should expect the lines between machines, electronics and biology to be “significantly blurred”. That means we could see nanotechnology implants by then - but more to “monitor your health or aid communication” rather than to appear invisible, as in Deus Ex. Medicine could also make common use of machines at a nanometre scale to “deliver drugs to exactly where they need to go”, said Professor Bramwell. Cybernetics professor Kevin Warwick is equally interested in studying augmentations, going one step further than most. In 1998 he became the first human to have a microchip implanted into his nervous system, earning him the title “Captain Cyborg”. Professor Warwick believes by 2050, advancements in cybernetics - the science studying the links between natural and mechanical systems - could lead to trailblazing treatments for diseases. He predicts the use of “deep brain electronic stimulation” as a partial treatment for some conditions such as schizophrenia, rather than medicine. He adds it is likely we'll see more cybernetic enhancements of the kind he has already trialled himself, so that “your brain and body can be in different places”. And what if we wanted to test out how the latest enhancement, or even new diet worked on our bodies, without any risks of experiencing the side effects? Professor Roger Highfield, Science Director of the Science Museum, believes “digital twins” - virtual versions of a physical object, updated using real time data - could become a regular feature in our lives. He imagines a world where each of us could have “thousands of simplified twins”, using them to explore how “different medications or lifestyle changes affect your unique biology”. In other words, we could preview our futures before we live them.

     The next generation of AI  

    Many technology firms, including Google and IBM, are currently locked in a multi-billion dollar race to revolutionise how we push fields like AI even further - in the form of quantum computing. Quantum computers are machines which can do very complex calculations at incredibly fast speeds - for example, simulating molecular interactions to design new drugs faster. In January 2025, Jensen Huang - boss of the leading chip firm Nvidia - said he believed “very useful” quantum computing would come in 20 years. AI itself will undoubtedly continue to loom large in our society as we journey towards the half century mark. Futurist and author Tracey Follows, who helped write a White Paper on UK education in 2050, believes learning will take place across “virtual and physical realities” using AI teachers which “adjust in real time”. Rather than textbooks, she predicts children will use “immersive simulations”. Meanwhile, education will be less standardised, with each child's individual DNA or biometric data studied to understand how they learn best.

Available on https://www.bbc.com/news/articles/c865n800d5jo
Based on the “quadro organizador” concepts of contemporary English teaching, how does the text suggest the future of education will change regarding student data?
Alternativas
Q4254787 Inglês
Por que o ensino de língua estrangeira no Brasil, tanto no Ensino Médio quanto nas séries finais do Fundamental, é muitas vezes criticado como “monótono e repetitivo”?
Alternativas
Respostas
1: B
2: C
3: C
4: A
5: C
6: D
7: B
8: C
9: A
10: C
11: B