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Хотелось бы вам владеть ресурсом для изучения английского языка, который обновляется каждый день? Если да (а мы уверены, что – да), тогда учите английский при помощи новостей!

Breaking news (последние новости), новые и оригинальные истории привлекают внимание и одновременно улучшают ваши знания английского. Они познакомят вас с важной повседневной лексикой и помогут лучше освоить структуру английского предложения. Кроме того, изучение новостей на английском может помочь в общении с носителями языка. Когда вы будете знать, что происходит в мире, в котором они живут, сможете лучше говорить на их языке. А еще всегда будет о чем поговорить!

Вам точно понравится удобство изучения английского с помощью новостей, чтения статей в интернете, прослушивания новостных подкастов или просмотра роликов в приложении в любое удобное время и в любом месте. И мы не будем ограничиваться только роликами с субтитрами на ютубе.

Предлагаем список ресурсов для просмотра и чтения новостей на английском языке. Некоторые из них созданы специально для изучающих язык, другие – аутентичные медиа, давно полюбившиеся носителям языка.

E-news
E-news

Один из новых ресурсов, созданный специально для тех, кто изучает английский. Подойдет как для уровня Elementary, так и для Advanced. Здесь вы можете читать новости о политике, науке, технологиях, спорте, путешествиях и пр. Кроме того, можете быстро найти интересующую тему, используя теги.

Сайт еженедельно освещает множество событий. Например, читайте релиз о «Фантастических тварях, и где они обитают» в 3-х разных вариантах, соответствующих каждому уровню изучения языка.

В каждой статье выделены основные слова с переводом на русский. Наведите на них курсором и увидите его в контексте. Еще одна крутая фишка – аудиосопровождение, которое вы выбираете в зависимости от уровня вашего английского.
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В целом, сайт очень круто оформлен и удобен для пользователя.

The Times in Plain English

Как сказано на главной странице – The Times in Plain English («The Times на понятном/простом английском) это «четкое написание» для «глобального прочтения». Сервис помогает понимать читателям по всему миру подлинные английские новостные статьи. Это означает, что новички могут получать свою дозу свежих новостей без необходимости обращаться за каждым вторым словом к словарю.
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Сайт берет статьи из различных публикаций, в том числе и The New York Times, и переписывает их, используя простые слова и короткие предложения. Здесь освещаются темы здоровья, образования, законов, иммиграции, денег и работы. Также вы найдете ссылку на оригинальную статью, если захотите усложнить себе задачу.

К сожалению, сейчас в сети очень много посредственного контента. А когда вы не носитель языка, вам такой контент не нужен. Нужен – качественный.
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Что делать? Читайте аутентичные (подлинные) новостные статьи с четким и ясным языком, написанные людьми разных культур.

USA Today
USA Today может многое предложить не носителям языка. Статьи написаны в лаконичном и прямом стиле. Здесь вы найдете актуальные новости США, множество тем о науке и технике, спорте и путешествиях, колонки различных авторов.

The Guardian Newspapers
The Guardian Newspapers

The Guardian – еще один отличный online источник различных английских новостных историй. Кроме того, он предлагает несколько вариантов: The Guardian – для американцев, The Guardian – для англичан. Выбирайте, какой английский вам больше по душе, и читайте.

Сервисы располагают огромной коллекцией новостных статей, посвященных политическому миру, бизнесу, образу жизни и пр.

В The Guardian`s Long Read вы найдете поистине крутой материал для улучшения навыков чтения и аудирования.

The New York Times` Times Minute
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Water and life
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Lightning is a dramatic display of electrical power, but it is also sporadic and unpredictable. Even on a volatile Earth billions of years ago, lightning may have been too infrequent to produce amino acids in quantities sufficient for life — a fact that has cast doubt on such theories in the past, Zare said.

Water spray, however, would have been more common than lightning. A more likely scenario is that mist-generated microlightning constantly zapped amino acids into existence from pools and puddles, where the molecules could accumulate and form more complex molecules, eventually leading to the evolution of life.

“Microdischarges between obviously charged water microdroplets make all the organic molecules observed previously in the Miller-Urey experiment,” Zare said. “We propose that this is a new mechanism for the prebiotic synthesis of molecules that constitute the building blocks of life.”

However, even with the new findings about microlightning, questions remain about life’s origins, he added. While some scientists support the notion of electrically charged beginnings for life’s earliest building blocks, an alternative abiogenesis hypothesis proposes that Earth’s first amino acids were cooked up around hydrothermal vents on the seafloor, produced by a combination of seawater, hydrogen-rich fluids and extreme pressure.
Yet another hypothesis suggests that organic molecules didn’t originate on Earth at all. Rather, they formed in space and were carried here by comets or fragments of asteroids, a process known as panspermia.

“We still don’t know the answer to this question,” Zare said. “But I think we’re closer to understanding something more about what could have happened.”

Though the details of life’s origins on Earth may never be fully explained, “this study provides another avenue for the formation of molecules crucial to the origin of life,” Williams said. “Water is a ubiquitous aspect of our world, giving rise to the moniker ‘Blue Marble’ to describe the Earth from space. Perhaps the falling of water, the most crucial element that sustains us, also played a greater role in the origin of life on Earth than we previously recognized.”

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Water and life
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Lightning is a dramatic display of electrical power, but it is also sporadic and unpredictable. Even on a volatile Earth billions of years ago, lightning may have been too infrequent to produce amino acids in quantities sufficient for life — a fact that has cast doubt on such theories in the past, Zare said.

Water spray, however, would have been more common than lightning. A more likely scenario is that mist-generated microlightning constantly zapped amino acids into existence from pools and puddles, where the molecules could accumulate and form more complex molecules, eventually leading to the evolution of life.

“Microdischarges between obviously charged water microdroplets make all the organic molecules observed previously in the Miller-Urey experiment,” Zare said. “We propose that this is a new mechanism for the prebiotic synthesis of molecules that constitute the building blocks of life.”

However, even with the new findings about microlightning, questions remain about life’s origins, he added. While some scientists support the notion of electrically charged beginnings for life’s earliest building blocks, an alternative abiogenesis hypothesis proposes that Earth’s first amino acids were cooked up around hydrothermal vents on the seafloor, produced by a combination of seawater, hydrogen-rich fluids and extreme pressure.
Yet another hypothesis suggests that organic molecules didn’t originate on Earth at all. Rather, they formed in space and were carried here by comets or fragments of asteroids, a process known as panspermia.

“We still don’t know the answer to this question,” Zare said. “But I think we’re closer to understanding something more about what could have happened.”

Though the details of life’s origins on Earth may never be fully explained, “this study provides another avenue for the formation of molecules crucial to the origin of life,” Williams said. “Water is a ubiquitous aspect of our world, giving rise to the moniker ‘Blue Marble’ to describe the Earth from space. Perhaps the falling of water, the most crucial element that sustains us, also played a greater role in the origin of life on Earth than we previously recognized.”

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Water and life
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Lightning is a dramatic display of electrical power, but it is also sporadic and unpredictable. Even on a volatile Earth billions of years ago, lightning may have been too infrequent to produce amino acids in quantities sufficient for life — a fact that has cast doubt on such theories in the past, Zare said.

Water spray, however, would have been more common than lightning. A more likely scenario is that mist-generated microlightning constantly zapped amino acids into existence from pools and puddles, where the molecules could accumulate and form more complex molecules, eventually leading to the evolution of life.

“Microdischarges between obviously charged water microdroplets make all the organic molecules observed previously in the Miller-Urey experiment,” Zare said. “We propose that this is a new mechanism for the prebiotic synthesis of molecules that constitute the building blocks of life.”

However, even with the new findings about microlightning, questions remain about life’s origins, he added. While some scientists support the notion of electrically charged beginnings for life’s earliest building blocks, an alternative abiogenesis hypothesis proposes that Earth’s first amino acids were cooked up around hydrothermal vents on the seafloor, produced by a combination of seawater, hydrogen-rich fluids and extreme pressure.
Yet another hypothesis suggests that organic molecules didn’t originate on Earth at all. Rather, they formed in space and were carried here by comets or fragments of asteroids, a process known as panspermia.

“We still don’t know the answer to this question,” Zare said. “But I think we’re closer to understanding something more about what could have happened.”

Though the details of life’s origins on Earth may never be fully explained, “this study provides another avenue for the formation of molecules crucial to the origin of life,” Williams said. “Water is a ubiquitous aspect of our world, giving rise to the moniker ‘Blue Marble’ to describe the Earth from space. Perhaps the falling of water, the most crucial element that sustains us, also played a greater role in the origin of life on Earth than we previously recognized.”

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Water and life
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Lightning is a dramatic display of electrical power, but it is also sporadic and unpredictable. Even on a volatile Earth billions of years ago, lightning may have been too infrequent to produce amino acids in quantities sufficient for life — a fact that has cast doubt on such theories in the past, Zare said.

Water spray, however, would have been more common than lightning. A more likely scenario is that mist-generated microlightning constantly zapped amino acids into existence from pools and puddles, where the molecules could accumulate and form more complex molecules, eventually leading to the evolution of life.

“Microdischarges between obviously charged water microdroplets make all the organic molecules observed previously in the Miller-Urey experiment,” Zare said. “We propose that this is a new mechanism for the prebiotic synthesis of molecules that constitute the building blocks of life.”

However, even with the new findings about microlightning, questions remain about life’s origins, he added. While some scientists support the notion of electrically charged beginnings for life’s earliest building blocks, an alternative abiogenesis hypothesis proposes that Earth’s first amino acids were cooked up around hydrothermal vents on the seafloor, produced by a combination of seawater, hydrogen-rich fluids and extreme pressure.
Yet another hypothesis suggests that organic molecules didn’t originate on Earth at all. Rather, they formed in space and were carried here by comets or fragments of asteroids, a process known as panspermia.

“We still don’t know the answer to this question,” Zare said. “But I think we’re closer to understanding something more about what could have happened.”

Though the details of life’s origins on Earth may never be fully explained, “this study provides another avenue for the formation of molecules crucial to the origin of life,” Williams said. “Water is a ubiquitous aspect of our world, giving rise to the moniker ‘Blue Marble’ to describe the Earth from space. Perhaps the falling of water, the most crucial element that sustains us, also played a greater role in the origin of life on Earth than we previously recognized.”

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