쉐도잉 연습: The Death Of Bees Explained – Parasites, Poison and Humans - 영상으로 영어 말하기 배우기

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Human society is extremely complex and fragile, built upon various pillars.
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One of them is the honey bee.
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One out of three meals eaten by humans is made possible by honey bees.
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They are so important that if all the honey bees were to die out, thousands of plants would follow, which could lead to millions of people starving in the following years.
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On top of that, honey bees have a huge economic impact.
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The dollar value of plants pollinated by them each year is around $265 billion.
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Food we take for granted would just stop existing without them, or there would be a massive decrease in productivity.
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Food including apples, onions, pumpkins, and also plants used for feeding livestock and thus extremely important for our milk and meat.
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Einstein is often quoted as having said, “If honey bees die out, humans will follow a few years later.” Actually, he probably didn’t say that, but there might be some truth in the statement.
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It’s unsettling, but honey bees have started to disappear.
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Millions of hives have died in the last few years.
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Beekeepers all over the world have seen an annual loss of 30–90% of their colonies.
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In the US alone, bees are steadily declining.
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>From 5 million hives in 1988 to 2.5 million today.
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Since 2006, a phenomenon called “colony collapse disorder” has affected honey bees in many countries.
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And we’re not entirely sure what’s causing it.
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All we know is that it’s pretty serious.
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Over the last few decades bees have seen an invasion of very dangerous foes.
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Parasites straight out of a horror movie, like Acarapis woodi, microscopic mites that infect the tracheae (that’s the breathing tubes) of bees.
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Here, they lay their eggs and feed from the fluids of their victims, weakening them considerably and spending their whole life inside the bees.
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Or Varroa destructor, a fitting name because they can only reproduce in honey bee hives and are one of the bees’ greatest enemies.
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The female mite enters a honey bee brood cell and lays eggs on the bee larva before it’s about to pupate and before the hive bees cover the cell with a wax capping.
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The eggs hatch and the young mites and their mother feed on the developing bee in the safety of the capped cell.
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The bee is not normally killed at this stage, just weakened, so it still has enough strength to chew its way through the wax capping and release itself from the cell.
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As it does, it releases the mother mite and her new offspring from the cell, and these are free to spread across the hive, starting the process over again in a cycle of about 10 days.
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Their numbers grow exponentially, and after a few months, this can lead to the collapse of the entire bee hive.
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Once outside of the cell, adult mites also suck the bodily fludis of bees and weaken them considerably.
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To make things worse, they also transmit viruses that harm the bees even more and can lead to birth defects like useless wings.
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But there are other threats too, such as viruses and fungi.
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Under normal circumstances, these phenomena should be manageable and are not enough to explain the horrendous amount of dying going on in bees.
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Over recent years new insecticides have been introduced that are deadly to bees.
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Neonicotinoids, a chemical family similar to nicotine, was approved in the early 1990s as an alternative to chemicals like DDT.
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They attack insects by harming their nervous systems.
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Today, they are the most widely used insecticides in the world.
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Globally, they saw sales of €1.5 billion in 2008, representing 24% of the global market for insecticides.
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In 2013, neonicotinoids were used in the US on about 95% of corn and canola crops, and also on the vast majority of fruit and vegetables, like apples, cherries, peaches, oranges, berries, leafy greens, tomatoes, potatoes, cereal grains, rice, nuts, grapes, and many more.
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Bees come into contact with the toxin while collecting pollen or via contaminated water, often bringing material into the hive, where it can accumulate and slowly kill the whole colony.
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The toxins harm bees in a variety of horrible ways.
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In high enough doses, it quickly leads to convulsions, paralysis, and death.
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But even in small doses, it can be fatal.
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It may lead to bees forgetting how to navigate the world, so bees fly into the wild, get lost, and die alone, separated from their hives.
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If this happens often enough, a hive can lose its ability to sustain itself.
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We know that neonicotinoids are harmful to bees and that we urgently need an alternative to it, but there are billions of dollars to be made in delaying this.
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Studies sponsored by the chemical industry magically appear to prove a much lower toxicity to bees, compared to those produced by independent scientists.
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There are even more factors contributing to the demise of bees, like too much genetic uniformity, crop monocultures, poor nutrition due to overcrowding, stress because of human activities, and other pesticides.
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Each of those factors on its own is a major problem for bees, but together, they probably account for colony collapse disorder.
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With parasites upping their game in recent decades, the honey bees are now fighting for survival.
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It would be a catastrophe if they lost this fight.
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This is a conundrum we have to solve if we want to continue living with a relative abundance and diversity of food.
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Humanity is deeply interconnected with Earth and the other lifeforms on it, even if we pretend that we’re not.
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We have to take better care of our surroundings, if not to preserve the beauty of nature, then at least to ensure our own survival.
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This video is supported by the Australian Academy of Science, which promotes and supports excellence in science.
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See more at .
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It was a blast to work with them, so go check out their site.
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Our videos are also made possible by your support on .
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Recently, we passed an important milestone, which is why there will be an additional video in July.
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이 수업에 대하여

이번 레슨에서는 "벌의 멸종"이라는 주제를 통해 인간이 벌에 의존하는 방식과 벌들의 복잡한 생태계를 이해할 것입니다. 이 영상을 다루면서, 벌이 생태계에서 얼마나 중요한 역할을 하는지, 그리고 벌들이 직면하고 있는 다양한 위협들에 대해 학습할 것입니다. 수업의 마지막에는 효과적인 영어 회화 연습을 위한 유용한 팁과 자주 사용하는 어휘를 배워, 언어 능력을 향상시킬 수 있는 기회를 제공하겠습니다.

주요 어휘 및 구문

  • Parasites (기생충)
  • Colony collapse disorder (군체 붕괴 장애)
  • Pollination (수분)
  • Neonicotinoids (네오니코티노이드)
  • Economic impact (경제적 영향)
  • Genetic uniformity (유전자 균일성)
  • Crop monocultures (농작물 단일 경작)
  • Food diversity (식품 다양성)

연습 팁

이번 영상의 내용은 복잡하고 정보가 풍부하므로, shadowspeak를 통한 연습이 매우 유용합니다. 매끄러운 발음을 익히기 위해 다음과 같은 방법을 활용해 보세요:

  • 속도 조절: 영상을 처음부터 끝까지 시청한 후, 원하는 속도로 반복해서 듣고 따라 해보세요. 처음에는 천천히 말하는 부분부터 시작하고 점차 속도를 높여 보세요.
  • 감정 표현: 발음 뿐만 아니라 감정도 담아 이야기해 보세요. 벌의 멸종이라는 주제는 심각하므로, 감정이 담긴 어조로 말하는 연습을 해보는 것이 좋습니다.
  • 메모하기: 중요한 어휘나 구문은 따로 메모하여, 직접 사용해 보세요. 영어 발음 교정을 위해서 발음을 반복하는 것이 도움이 됩니다.
  • 이해하기: 각 구문이 의미하는 바를 고민해 보세요. 해당 내용이 어떤 맥락에서 사용될 수 있는지 생각하면서 연습하면 더욱 효과적입니다.

이렇듯 shadow speak 기법을 통해, 영어 회화 실력을 한층 더 발전시켜 보세요. 다양한 주제와 어휘를 통해 자연스럽게 영어 능력을 향상시키는 것이 목표입니다.

쉐도잉이란? 영어 실력을 빠르게 키우는 과학적 방법

쉐도잉(Shadowing)은 원래 전문 통역사 훈련을 위해 개발된 언어 학습 기법으로, 다언어 학자인 Dr. Alexander Arguelles에 의해 대중화된 방법입니다. 핵심 원리는 간단하지만 매우 강력합니다: 원어민의 영어를 들으면서 1~2초의 짧은 지연으로 즉시 소리 내어 따라 말하는 것——마치 '그림자(shadow)'처럼 화자를 따라가는 것입니다. 문법 공부나 수동적인 청취와 달리, 쉐도잉은 뇌와 입 근육이 동시에 실시간으로 영어를 처리하고 재현하도록 훈련합니다. 연구에 따르면 이 방법은 발음 정확도, 억양, 리듬, 연음, 청취력, 말하기 유창성을 크게 향상시킵니다. IELTS 스피킹 준비와 자연스러운 영어 소통을 원하는 분들에게 특히 효과적입니다.