Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Where in paragraph 1 does the following sentence best fit?
It takes years of playing several hours every day to master the game.
[II]
[I]
[IV]
[III]
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
The word evaluating in paragraph 1 mostly means ______.
neglecting
overlooking
ignoring
analyzing
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
The word them in paragraph 2 refers to ______.
scientists
tools
neural networks
mistakes
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following is NOT mentioned as a characteristic of AlphaGo?
It learned by playing against itself.
It understands complex logic.
It was programmed with specific rules.
It can accomplish tasks faster than humans.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
According to paragraph 2, why is AlphaGo’s achievement considered extremely exciting?
Because the necessary tools for this breakthrough had existed for years but were applied differently.
Because human guidance was essential in helping AlphaGo achieve this milestone.
Because the necessary tools were only recently developed and applied for AI progress.
Because scientists created entirely new systems that made this breakthrough possible.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following is TRUE according to the passage?
AlphaGo is just like previous AI systems used in games.
AlphaGo could only improve after studying a database of human games.
The potential of AI is limited to gaming applications.
Neural networks were not new when AlphaGo used them successfully.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following best paraphrases the underlined sentence in paragraph 3?
AlphaGo was programmed with complete knowledge of the game before it started learning.
AlphaGo learned an extremely complex logic game based on intuition and creativity without relying solely on pre-set data or search methods.
AlphaGo mastered the most complex logic game using only a fixed database and search algorithms.
AlphaGo depended entirely on stored information to understand the world’s most difficult game.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following best summarises paragraph 4?
AlphaGo shows that board games are the best testing ground for future AI development.
AlphaGo’s main purpose is to improve calculation speed in traditional computer systems.
AlphaGo is simply a better version of previous game-playing programs designed only for entertainment.
AlphaGo marks the rise of a new generation of self-learning AI with broader real-world applications beyond games.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following can be inferred from the passage?
The complexity of Go makes it unsuitable for AI learning.
Future AI will not focus on games but on real-world applications.
AI will soon surpass human intelligence in all areas.
AlphaGo represents a significant breakthrough in self-learning technology.
Read the passage and mark the letter A, B, C or D on your answer sheet to indicate the best answer to each of the following questions from 1 to 10.
[I] Go is a game that has been around for 3000 years. It is widely accepted as the most challenging strategy game that exists. [II] In other words, even though it has simple rules, it is not a simple game to excel at. Surprise! DeepMind managed to create a machine that could master the game, without being programmed with explicit rules and without being taught by a professional Go player. [III] AlphaGo mainly played against itself and learned from this self-play. At its core, it learned like a human learns, by looking at the board, evaluating the options, making moves, and learning from mistakes – it just did it a lot faster than any human can. [IV]
This is extremely exciting because, at its core, what it means is that computer scientists have had all the tools they needed to do this for years. Neural networks have been known about and discussed since the middle of the last century. All it really took was simply applying them in new ways. AlphaGo beating the world’s best Go player proves that AI has the potential to do anything. It can learn and understand anything, and from that learning and understanding, it can accomplish what humans can accomplish in a much shorter period of time.
So, what does this mean for the future? It suggests we are closer than ever to advanced AI systems that can learn and evolve in ways similar to humans. AlphaGo can learn the most complex, intuition and creativity-based logic game known to man and it didn’t do so through a finite database or search trees alone. It learned by practicing and developing new strategies. This ability hints at a new form of digital creativity – machines capable of discovering solutions beyond traditional programming.
Unlike earlier game-playing systems, AlphaGo represents a shift toward intelligent, intuitive machines that can be applied beyond board games. From practical real-world uses to more personal applications, it marks the beginning of a new generation of self-learning AI. These systems go beyond the limited calculating abilities of earlier technologies, signaling that the long-feared “AI winter” may finally be over.
Which of the following best summarises the passage?
AI technology remains stagnant due to its inability to surpass human capabilities.
The success of AlphaGo shows that AI can only excel in games and has little relevance to other fields.
The development of AlphaGo highlights the importance of human instruction in AI learning processes.
AlphaGo’s mastery of Go illustrates the potential of AI to learn and innovate, marking a new era for intelligent machines beyond traditional limitations.
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