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2D861273-A6 How a young student’s innovative idea hopes to boost response times for EMTsBy Woody Brown on June 1, 2015Drones have been at the forefront of the national conversation for years now. As the components needed to create them grow smaller and more affordable, many companies and organizations have started exploring the potential that drones could have to improve our daily lives. Whether by delivering a product with unprecedented speed or taking photographs and video from new heights, drones have many capabilities, most of which we have yet to discover. One young man, however, has envisioned a new way to use drones that could save thousands of lives.One of the greatest obstacles facing first responders and emergency medical technicians [EMTs] when it comes to the difficult business of saving lives is time. Think of your daily commute: people in the United States spend an average of 25.5 minutes traveling one-way to work every day. In bumperto-bumper traffic, blaring sirens and flashing lights are often not enough to clear a fast path for an ambulance to reach someone in need. During cardiac arrest, there are, at most, a few minutes to save a person’s life. After that, the mortality rate rises steeply. With stakes this high, every second counts.
Alec Momont, a graduate student in engineering at Delft University of Technology in the Netherlands, recognized this problem and saw a way to significantly reduce deaths that result from delayed emergency care. What if ambulances could fly? Or rather, what if we could make a drone that functioned like a stripped-down, lightweight automatic external defibrillator [AED]? AEDs, which can be found in schools, sports arenas and many government buildings, are significantly more effective than cardiopulmonary resuscitation [CPR] at preventing fatalities resulting from cardiac arrest. CPR can be helpful, but an AED is better, and very few people have AEDs in their cars or homes.
As his master’s degree project, Momont built a prototype of this lifesaving drone. It contained an AED, a microphone and speakers. The average travel time, according to him, could be cut by 90 percent. Here’s how it works: In the event of cardiac arrest, a paramedic would respond to a call by flying the drone at a speed of 60 mph to the scene of the emergency. The paramedic would then give instructions to someone near the victim, who would position the AED. Once in place, the AED would operate automatically. The paramedic would be able to see through the camera whether or not the pads on the AED have been correctly positioned, and how the victim responds.
A dramatized video released by Momont’s university demonstrates all of this functionality. In it, a young woman calls emergency services in a panic because her father has had a heart attack. A calm-voiced EMT answers and guides her through the surprisingly simple process of finding and using the drone. Fewer than two minutes after she makes the call, her father sits up and hugs her.The ambulance drone can increase the chances of surviving cardiac arrest from eight percent to 80 percent, Momont says in the video. The drone’s ability to travel as the crow flies frees it from infrastructural limitations that currently impede road-bound ambulances. “Using advanced production techniques such as 3D printed microstructures and carbon fiber frame construction, we were able to achieve a very lightweight design,” Momont says. “The result is an integrated solution that is clear in its orientation and friendly in appearance.”Momont’s aim is to rapidly expand the existing framework of emergency services by constructing many of these drones over the next five years. Expenses are low: each drone is relatively cheap to make, about $18,600. By comparison, a typical ambulance costs more than $100,000, and a ride in one usually costs more than $1,000.The ambulance drones can even fly autonomously (though legislation in many countries does not permit this yet). Several emergency service providers have already expressed interest. If the technology continues to receive financial support from other parties in the healthcare industry, Momont’s dream could very easily become a reality.We live in a world where drones have, so far, been used mostly in armed conflict. Momont, however, has a different vision. In the near future that he describes, tens of thousands of needless deaths will be prevented with his ingenious invention. That is certainly welcome news, especially in the United States, which deals with skyrocketing numbers of heart-related ailments and disabilities. “Let’s use drones for a good purpose,” Momont says. “Let us use drones to save lives.”Adapted from: <http://www.verizonwireless.com/news/article/2015/05/ambulance-dronescould-save-thousands-of-lives.html>. Access on: 03 Oct. 2016.The following statements are based on the information presented in the text:I- Life-saving drones are more economically viable than ordinary ambulances.II- As ambulance drones are lightweight, they can fly autonomously.III- Drones reach an average speed of 60mph, because their frame is made of carbon fiber.IV- Once drones are able to travel as the crow flies, they can escape from the traffic jams and arrive fast at the emergency scene.The correct statements are2D826008-A6 Inglês
Interpretação de texto | Reading comprehensionUEMG · 2016MédioEntre para guardar nos favoritosHow a young student’s innovative idea hopes to boost response times for EMTsBy Woody Brown on June 1, 2015Drones have been at the forefront of the national conversation for years now. As the components needed to create them grow smaller and more affordable, many companies and organizations have started exploring the potential that drones could have to improve our daily lives. Whether by delivering a product with unprecedented speed or taking photographs and video from new heights, drones have many capabilities, most of which we have yet to discover. One young man, however, has envisioned a new way to use drones that could save thousands of lives.One of the greatest obstacles facing first responders and emergency medical technicians [EMTs] when it comes to the difficult business of saving lives is time. Think of your daily commute: people in the United States spend an average of 25.5 minutes traveling one-way to work every day. In bumperto-bumper traffic, blaring sirens and flashing lights are often not enough to clear a fast path for an ambulance to reach someone in need. During cardiac arrest, there are, at most, a few minutes to save a person’s life. After that, the mortality rate rises steeply. With stakes this high, every second counts.
Alec Momont, a graduate student in engineering at Delft University of Technology in the Netherlands, recognized this problem and saw a way to significantly reduce deaths that result from delayed emergency care. What if ambulances could fly? Or rather, what if we could make a drone that functioned like a stripped-down, lightweight automatic external defibrillator [AED]? AEDs, which can be found in schools, sports arenas and many government buildings, are significantly more effective than cardiopulmonary resuscitation [CPR] at preventing fatalities resulting from cardiac arrest. CPR can be helpful, but an AED is better, and very few people have AEDs in their cars or homes.
As his master’s degree project, Momont built a prototype of this lifesaving drone. It contained an AED, a microphone and speakers. The average travel time, according to him, could be cut by 90 percent. Here’s how it works: In the event of cardiac arrest, a paramedic would respond to a call by flying the drone at a speed of 60 mph to the scene of the emergency. The paramedic would then give instructions to someone near the victim, who would position the AED. Once in place, the AED would operate automatically. The paramedic would be able to see through the camera whether or not the pads on the AED have been correctly positioned, and how the victim responds.
A dramatized video released by Momont’s university demonstrates all of this functionality. In it, a young woman calls emergency services in a panic because her father has had a heart attack. A calm-voiced EMT answers and guides her through the surprisingly simple process of finding and using the drone. Fewer than two minutes after she makes the call, her father sits up and hugs her.The ambulance drone can increase the chances of surviving cardiac arrest from eight percent to 80 percent, Momont says in the video. The drone’s ability to travel as the crow flies frees it from infrastructural limitations that currently impede road-bound ambulances. “Using advanced production techniques such as 3D printed microstructures and carbon fiber frame construction, we were able to achieve a very lightweight design,” Momont says. “The result is an integrated solution that is clear in its orientation and friendly in appearance.”Momont’s aim is to rapidly expand the existing framework of emergency services by constructing many of these drones over the next five years. Expenses are low: each drone is relatively cheap to make, about $18,600. By comparison, a typical ambulance costs more than $100,000, and a ride in one usually costs more than $1,000.The ambulance drones can even fly autonomously (though legislation in many countries does not permit this yet). Several emergency service providers have already expressed interest. If the technology continues to receive financial support from other parties in the healthcare industry, Momont’s dream could very easily become a reality.We live in a world where drones have, so far, been used mostly in armed conflict. Momont, however, has a different vision. In the near future that he describes, tens of thousands of needless deaths will be prevented with his ingenious invention. That is certainly welcome news, especially in the United States, which deals with skyrocketing numbers of heart-related ailments and disabilities. “Let’s use drones for a good purpose,” Momont says. “Let us use drones to save lives.”Adapted from: <http://www.verizonwireless.com/news/article/2015/05/ambulance-dronescould-save-thousands-of-lives.html>. Access on: 03 Oct. 2016.The main purpose of this text is to2D7E9320-A6 Inglês
Interpretação de texto | Reading comprehensionUEMG · 2016MédioEntre para guardar nos favoritosHow a young student’s innovative idea hopes to boost response times for EMTsBy Woody Brown on June 1, 2015Drones have been at the forefront of the national conversation for years now. As the components needed to create them grow smaller and more affordable, many companies and organizations have started exploring the potential that drones could have to improve our daily lives. Whether by delivering a product with unprecedented speed or taking photographs and video from new heights, drones have many capabilities, most of which we have yet to discover. One young man, however, has envisioned a new way to use drones that could save thousands of lives.One of the greatest obstacles facing first responders and emergency medical technicians [EMTs] when it comes to the difficult business of saving lives is time. Think of your daily commute: people in the United States spend an average of 25.5 minutes traveling one-way to work every day. In bumperto-bumper traffic, blaring sirens and flashing lights are often not enough to clear a fast path for an ambulance to reach someone in need. During cardiac arrest, there are, at most, a few minutes to save a person’s life. After that, the mortality rate rises steeply. With stakes this high, every second counts.
Alec Momont, a graduate student in engineering at Delft University of Technology in the Netherlands, recognized this problem and saw a way to significantly reduce deaths that result from delayed emergency care. What if ambulances could fly? Or rather, what if we could make a drone that functioned like a stripped-down, lightweight automatic external defibrillator [AED]? AEDs, which can be found in schools, sports arenas and many government buildings, are significantly more effective than cardiopulmonary resuscitation [CPR] at preventing fatalities resulting from cardiac arrest. CPR can be helpful, but an AED is better, and very few people have AEDs in their cars or homes.
As his master’s degree project, Momont built a prototype of this lifesaving drone. It contained an AED, a microphone and speakers. The average travel time, according to him, could be cut by 90 percent. Here’s how it works: In the event of cardiac arrest, a paramedic would respond to a call by flying the drone at a speed of 60 mph to the scene of the emergency. The paramedic would then give instructions to someone near the victim, who would position the AED. Once in place, the AED would operate automatically. The paramedic would be able to see through the camera whether or not the pads on the AED have been correctly positioned, and how the victim responds.
A dramatized video released by Momont’s university demonstrates all of this functionality. In it, a young woman calls emergency services in a panic because her father has had a heart attack. A calm-voiced EMT answers and guides her through the surprisingly simple process of finding and using the drone. Fewer than two minutes after she makes the call, her father sits up and hugs her.The ambulance drone can increase the chances of surviving cardiac arrest from eight percent to 80 percent, Momont says in the video. The drone’s ability to travel as the crow flies frees it from infrastructural limitations that currently impede road-bound ambulances. “Using advanced production techniques such as 3D printed microstructures and carbon fiber frame construction, we were able to achieve a very lightweight design,” Momont says. “The result is an integrated solution that is clear in its orientation and friendly in appearance.”Momont’s aim is to rapidly expand the existing framework of emergency services by constructing many of these drones over the next five years. Expenses are low: each drone is relatively cheap to make, about $18,600. By comparison, a typical ambulance costs more than $100,000, and a ride in one usually costs more than $1,000.The ambulance drones can even fly autonomously (though legislation in many countries does not permit this yet). Several emergency service providers have already expressed interest. If the technology continues to receive financial support from other parties in the healthcare industry, Momont’s dream could very easily become a reality.We live in a world where drones have, so far, been used mostly in armed conflict. Momont, however, has a different vision. In the near future that he describes, tens of thousands of needless deaths will be prevented with his ingenious invention. That is certainly welcome news, especially in the United States, which deals with skyrocketing numbers of heart-related ailments and disabilities. “Let’s use drones for a good purpose,” Momont says. “Let us use drones to save lives.”Adapted from: <http://www.verizonwireless.com/news/article/2015/05/ambulance-dronescould-save-thousands-of-lives.html>. Access on: 03 Oct. 2016.The use of CAN in paragraphs 3 and 6 reveals the idea o2D742048-A6 Inglês
Interpretação de texto | Reading comprehensionUEMG · 2016DifícilEntre para guardar nos favoritosHow a young student’s innovative idea hopes to boost response times for EMTsBy Woody Brown on June 1, 2015Drones have been at the forefront of the national conversation for years now. As the components needed to create them grow smaller and more affordable, many companies and organizations have started exploring the potential that drones could have to improve our daily lives. Whether by delivering a product with unprecedented speed or taking photographs and video from new heights, drones have many capabilities, most of which we have yet to discover. One young man, however, has envisioned a new way to use drones that could save thousands of lives.One of the greatest obstacles facing first responders and emergency medical technicians [EMTs] when it comes to the difficult business of saving lives is time. Think of your daily commute: people in the United States spend an average of 25.5 minutes traveling one-way to work every day. In bumperto-bumper traffic, blaring sirens and flashing lights are often not enough to clear a fast path for an ambulance to reach someone in need. During cardiac arrest, there are, at most, a few minutes to save a person’s life. After that, the mortality rate rises steeply. With stakes this high, every second counts.
Alec Momont, a graduate student in engineering at Delft University of Technology in the Netherlands, recognized this problem and saw a way to significantly reduce deaths that result from delayed emergency care. What if ambulances could fly? Or rather, what if we could make a drone that functioned like a stripped-down, lightweight automatic external defibrillator [AED]? AEDs, which can be found in schools, sports arenas and many government buildings, are significantly more effective than cardiopulmonary resuscitation [CPR] at preventing fatalities resulting from cardiac arrest. CPR can be helpful, but an AED is better, and very few people have AEDs in their cars or homes.
As his master’s degree project, Momont built a prototype of this lifesaving drone. It contained an AED, a microphone and speakers. The average travel time, according to him, could be cut by 90 percent. Here’s how it works: In the event of cardiac arrest, a paramedic would respond to a call by flying the drone at a speed of 60 mph to the scene of the emergency. The paramedic would then give instructions to someone near the victim, who would position the AED. Once in place, the AED would operate automatically. The paramedic would be able to see through the camera whether or not the pads on the AED have been correctly positioned, and how the victim responds.
A dramatized video released by Momont’s university demonstrates all of this functionality. In it, a young woman calls emergency services in a panic because her father has had a heart attack. A calm-voiced EMT answers and guides her through the surprisingly simple process of finding and using the drone. Fewer than two minutes after she makes the call, her father sits up and hugs her.The ambulance drone can increase the chances of surviving cardiac arrest from eight percent to 80 percent, Momont says in the video. The drone’s ability to travel as the crow flies frees it from infrastructural limitations that currently impede road-bound ambulances. “Using advanced production techniques such as 3D printed microstructures and carbon fiber frame construction, we were able to achieve a very lightweight design,” Momont says. “The result is an integrated solution that is clear in its orientation and friendly in appearance.”Momont’s aim is to rapidly expand the existing framework of emergency services by constructing many of these drones over the next five years. Expenses are low: each drone is relatively cheap to make, about $18,600. By comparison, a typical ambulance costs more than $100,000, and a ride in one usually costs more than $1,000.The ambulance drones can even fly autonomously (though legislation in many countries does not permit this yet). Several emergency service providers have already expressed interest. If the technology continues to receive financial support from other parties in the healthcare industry, Momont’s dream could very easily become a reality.We live in a world where drones have, so far, been used mostly in armed conflict. Momont, however, has a different vision. In the near future that he describes, tens of thousands of needless deaths will be prevented with his ingenious invention. That is certainly welcome news, especially in the United States, which deals with skyrocketing numbers of heart-related ailments and disabilities. “Let’s use drones for a good purpose,” Momont says. “Let us use drones to save lives.”Adapted from: <http://www.verizonwireless.com/news/article/2015/05/ambulance-dronescould-save-thousands-of-lives.html>. Access on: 03 Oct. 2016.The word which is used as a modifier in the correspondent paragraphs is
962AB7FF-31 Inglês
Interpretação de texto | Reading comprehensionENEM · 2016MédioEntre para guardar nos favoritosHunger Games Review: Family Film Guide
Parent Concerns: There is definitely violence in this film. The central Hunger Games may not be as bloody and brutal as author Suzanne Collins describes in the novel, but there’s a visceral reaction to seeing the kid-on-kid violence ratherthanconjuring it inyourown imagination. The tributes kill each other in a host of ways, from spear, knife and arrow wounds to hand-to-hand battles that leave teens with their heads smashed in or necks snapped. The editing is quick and the shots never linger on anything overly graphic, but there is blood and twenty-two adolescents, aged 12-18, die in the annual blood sport pageant. Immature teens, even if they’ve read the books, may not be ready to handle to the film just yet. A good rule of thumb: if they’re not old enough to be reaped into the Hunger Games, theyYe probably not mature enough to see it.
ANGULO-CHEN, S. Disponível em: http://news.moviefone.com. Acesso em: 28jun. 2012.
Produções literárias e cinematográficas estão, muitas vezes, articuladas. No caso do filme Hunger Games, a autora da resenha chama a atenção para a questão da violência, que é mais
9626DEBB-31 Inglês
Interpretação de texto | Reading comprehensionENEM · 2016MédioEntre para guardar nos favoritosOn the Meaning of Being Chinese
Ethnically speaking, I feel I am complicated to classify, but who isn’t, right? To me, being Chinese-Brazilian in America means a history of living in three opposite cultures, and sometimes feeling that I did not belong in neither, a constant struggle that immigrants, and national citizens, face when their appearance is foreign to natives in the country. Jokingly, I say that I am Asian in America, Brazilian in China, and a “gringa” in Brazil. Nevertheless, 1 believe that dealing with these hard to reconcile extremes have somehow helped me to become more comfortable with my identity.
BELEZA LI. Disponível em: www.aiisf.org. Acesso em: 28 mar. 2014.
Nesse fragmento, Beleza Li resume sua experiência de vida ao descrever a complexidade em
9623D3D3-31 Inglês
Interpretação de texto | Reading comprehensionENEM · 2016FácilEntre para guardar nos favoritosGetting Every Child to School
Right now 67 million children are missing out on their right to an education. They can’t go to school because they have to work to survive, because they are girls or even because there are no schools where they live.
Where will these children be when they grow up without the chance to learn?
We’re working to make sure every child goes to school. We’re helping build schools, train teachers, advocating girl’s education and reaching children who have to work or are caught up in emergencies with learning.
You can help uphold every child’s right to an education. Make a donation today to not only give children the chance to go to school, but also save their lives and protect their childhoods.
Disponível em: www.supportunicef.org. Acesso em: 20 maio 2013 (adaptado).
Essa campanha pretende contribuir para diminuir a desigualdade social, uma vez que
96206406-31 Inglês
Interpretação de texto | Reading comprehensionENEM · 2016FácilEntre para guardar nos favoritosAre Twitter and Facebook Affecting How We Think?
Is constant use of electronic gadgets reshaping our
brains and making our thinking shallower?
By Neil Tweedie
How many times do you click on your email icon in a day? Or look at Facebook, or Twitter? And how many times when reading on the internet do you click on a link navigating away from the text that was the original object of your enquiry? The web, it seems, is like an electronic sweet shop, forever tempting us in different directions. But does this mental promiscuity, this tendency to flit around online, make us, well, thicker?
Nicholas Carr, the American Science writer, has mined this theme for his new book, “The Shallows”, in which he argues that new media are not just changing our habits but our brains. It turns out that the mature human brain is not an immutable seat of personality and intellect but a changeable thing, subject to “neuroplasticity”. When our activities alter, so does the architecture of our brain. Tm not thinking the way I used to think,” writes Carr. “I feel it most stronglywhen l’m reading.”
Disponível em: www.telegraph.co.uk. Acesso em: 27 fev. 2012.
Neil Tweedie levanta vários questionamentos sobre a utilização de diferentes recursos tecnológicos disponíveis hoje em dia. A partir desses questionamentos e dos argumentos do escritor norte-americano Nicholas Carr, o texto sugere que
36BB4B97-42 Inglês
Interpretação de texto | Reading comprehensionFGV · 2016DifícilEntre para guardar nos favoritos
According to the information in the article, Kartik Sunagar and Yehu Moran36B8CC64-42 Inglês
Interpretação de texto | Reading comprehensionFGV · 2016MédioEntre para guardar nos favoritos
According to the information in the article, which of the following is most likely to happen when a venomous animal group enters a new habitat?36B5F65F-42 Inglês
Interpretação de texto | Reading comprehensionFGV · 2016DifícilEntre para guardar nos favoritos
With respect to evolutionary pressure, which of the following is most supported by the information in the article?36A65454-42 Inglês
Interpretação de texto | Reading comprehensionFGV · 2016Muito difícilEntre para guardar nos favoritos
With respect to Henriette Reker, which of the following is most supported by the information in the article?369E0B59-42 Inglês
Interpretação de texto | Reading comprehensionFGV · 2016MédioEntre para guardar nos favoritos
According to the information in the article, which of the following is a strange aspect of what happened in Cologne on New Year’s Eve?61277225-30 Inglês
Interpretação de texto | Reading comprehensionPUC - RS · 2016DifícilEntre para guardar nos favoritos
De acordo com os quadrinhos 5, 6 e 8, Mafalda demonstra estar, respectivamente,612088C4-30 Inglês
Interpretação de texto | Reading comprehensionPUC - RS · 2016DifícilEntre para guardar nos favoritos
After reading the text, one can conclude that Shakespeare’s works became evident due to his
611DA204-30 Inglês
Aspectos linguísticos | Linguistic aspectsPUC - RS · 2016DifícilEntre para guardar nos favoritos
The pairs of phrases below belong to the same semantic field, EXCEPT for
6114A20C-30 Inglês
Interpretação de texto | Reading comprehensionPUC - RS · 2016DifícilEntre para guardar nos favoritos
The word “except” (line 23) could be replaced, without a change in its meaning, by6111DBE1-30 Inglês
Interpretação de texto | Reading comprehensionPUC - RS · 2016DifícilEntre para guardar nos favoritos
INSTRUCTION: Read text 1 and the statements about it to solve question .
I. Shakespeare died in his early 50s.
II. Stratford is one of the places where Shakespeare dwelled in.
III. People from Stratford believe Shakespeare to have been loyal to the city.
IV. Every theater around Great Britain will be praising Shakespeare throughout 2016.
22B46392-30 Inglês
Interpretação de texto | Reading comprehensionPUC - Campinas · 2016DifícilEntre para guardar nos favoritosBorn on April 15, 1452, in Vinci, Italy, Leonardo da Vinci was the son of a prominent attorney notary and a young peasant girl. Born out of wedlock, he was raised by his father, Ser Piero, and several stepmothers.
His early years were spent living on his father’s family estate in Vinci. Beyond basic reading, writing and mathematical skills, da Vinci did not receive much of a formal education. Recognizing his potential as an artist, his father sent him at the age of 14 or 15 to apprentice with sculptor and painter Andrea del Verrocchio of Florence.
He spent six years honing his technical skills, including metalworking, leather arts, carpentry, drawing and sculpting, and became a member of the Guild of Saint Luke by the age of 20. He remained with Verrocchio until he became an independent master in 1478. Around that time, he took on his first commissioned work, The Adoration of the Magi, for Florence’s San Donato, a Scopeto monastery, but departed for Milan the following year, leaving the painting unfinished. It has been in the Uffizi Gallery in Florence since 1670.
Leonardo was, and is, renowned primarily as a painter. Among his works, the Mona Lisa is the most famous and most parodied portrait and The Last Supper the most reproduced religious painting of all time, with their fame approached only by Michelangelo's The Creation of Adam. Leonardo's drawing of The Vitruvian Man, based on the correlations of ideal human proportions with geometry described by the ancient Roman architect Vitruvius, is also regarded as a cultural icon, being reproduced on items as varied as the euro coin, textbooks, and T-shirts.
Leonardo is also revered for his technological ingenuity. In the early 1490s, he began chronicling his thoughts about painting, architecture, mechanics and human anatomy. These notebooks contained wide-ranging ideas, including plans for a “flying machine,” bicycle and drawings of a fetus in the womb and the human skeleton.
His interests and intellect traversed so many disciplines that he symbolized the term “Renaissance Man”. Unfortunately, these notebooks were not published and his ideas did not advance scientific understanding in the Renaissance period.
Today, Leonardo is widely recognized as one of the most diversely talented individuals ever to have lived.
(Adapted form: http://www.livescience.com/39355-leonardo-da-vinci.html)
According to the text,22B1911E-30 Inglês
Interpretação de texto | Reading comprehensionPUC - Campinas · 2016DifícilEntre para guardar nos favoritosBorn on April 15, 1452, in Vinci, Italy, Leonardo da Vinci was the son of a prominent attorney notary and a young peasant girl. Born out of wedlock, he was raised by his father, Ser Piero, and several stepmothers.
His early years were spent living on his father’s family estate in Vinci. Beyond basic reading, writing and mathematical skills, da Vinci did not receive much of a formal education. Recognizing his potential as an artist, his father sent him at the age of 14 or 15 to apprentice with sculptor and painter Andrea del Verrocchio of Florence.
He spent six years honing his technical skills, including metalworking, leather arts, carpentry, drawing and sculpting, and became a member of the Guild of Saint Luke by the age of 20. He remained with Verrocchio until he became an independent master in 1478. Around that time, he took on his first commissioned work, The Adoration of the Magi, for Florence’s San Donato, a Scopeto monastery, but departed for Milan the following year, leaving the painting unfinished. It has been in the Uffizi Gallery in Florence since 1670.
Leonardo was, and is, renowned primarily as a painter. Among his works, the Mona Lisa is the most famous and most parodied portrait and The Last Supper the most reproduced religious painting of all time, with their fame approached only by Michelangelo's The Creation of Adam. Leonardo's drawing of The Vitruvian Man, based on the correlations of ideal human proportions with geometry described by the ancient Roman architect Vitruvius, is also regarded as a cultural icon, being reproduced on items as varied as the euro coin, textbooks, and T-shirts.
Leonardo is also revered for his technological ingenuity. In the early 1490s, he began chronicling his thoughts about painting, architecture, mechanics and human anatomy. These notebooks contained wide-ranging ideas, including plans for a “flying machine,” bicycle and drawings of a fetus in the womb and the human skeleton.
His interests and intellect traversed so many disciplines that he symbolized the term “Renaissance Man”. Unfortunately, these notebooks were not published and his ideas did not advance scientific understanding in the Renaissance period.
Today, Leonardo is widely recognized as one of the most diversely talented individuals ever to have lived.
(Adapted form: http://www.livescience.com/39355-leonardo-da-vinci.html)
Which of the paintings below was NOT authored by Leonardo da Vinci?