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[文化博览] 【整理】2012-05-16 阿尔伯特·爱因斯坦 Einstein—27

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[文化博览] 【整理】2012-05-16 阿尔伯特·爱因斯坦 Einstein—27

 

 

 

阿尔伯特·爱因斯坦  |  Albert Einstein



    阿尔伯特·爱因斯坦美籍德国犹太裔,理论物理学家,世界十大杰出物理学家之一,现代物理学的开创者、集大成者和奠基人,相对论的创立者,同时也是一位著名的思想家和哲学家。爱因斯坦1900年毕业于苏黎世联邦理工学院,入瑞士国籍。1905年获苏黎世大学哲学博士学位。曾在伯尔尼专利局任职,在苏黎世工业大学、布拉格德意志担任大学教授。1913年返德国,任柏林威廉皇帝物理研究所所长和柏林洪堡大学教授,并当选为普鲁士科学院院士,1921年获诺贝尔物理学奖,1933年因受纳粹政权迫害,迁居美国,任普林斯顿高级研究所教授,从事理论物理研究,1940年入美国国籍。1999年被美国《时代周刊》评选为“世纪伟人”。

     In 1914, a team of American and German scientists set up camp on the shores of Russia's Black Sea. Their goal: to conduct an experiment involving one of nature's most spectacular phenomena -- a total eclipse of the sun. The results had the potential to explode 200 years of scientific conjecture, change forever the way scientists view the universe and launch the career of the most brilliant star in the scientific firmament -- Albert Einstein.

  Albert Einstein`s revolutionary theory that turned the world upside down might have been dismissed but for a math mistake, a cloudy sky, and the start of World War I. This fascinating two-hour special tells the story of Einstein`s little-known, 15-year struggle to prove one of his most radical theories   a theory that upended Newton and three centuries of scientific thought and called into question the definitions of space and light and gravity  the game-changing concept known as the Theory of General Relativity. Today, more than a century since the  Miracle Year in which he published many of his breakthrough papers, Einstein`s ideas remain a living, vibrant influence.

 

 

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shihongmei2828在 整理的参考文本:
Looking in, a star would have been visible. One of the stars that was to be measured. That star would have been very carefully centered on crosshair in the eyepiece. Once that was done, the scales could be read in the X and Y directions and a very precise position could be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position.

Einstein has predicted that the warped space around the sun will create an optical illusion, making the stars appear to move outward ever so slightly.

Einstein predicted much less than a millimeter. This is not an easy measurement to make.

Unlike most theories that people put forth, Einstein's General Relativity makes very specific prediction, very tight, very...It's got to be this and if it's not that, the entire foundation of the idea has got to be discarded.

Extremely precise, painstaking measurements.

There was no wiggle room in Einstein's Relativity because the idea, the idea that gravity is the manifestation of the painstaking of curvature of space and time. If you say how much it curves? And what happens to matter or light in the presence of that curvature? Calculate it, make the prediction. If the prediction doesn't come true you don't go and say "okay, let me see if I can tweak the theory." Not in this case.

You can see on his pages the kind of labor that Curtis had to endure in order to make these measurements. It's page after page after page of this. Some pages crossed out.

All you needed was one experiment to show that any aspect of relativity would fail and he would have to go back to the drawing board completely.

Curtis looks at the stars and sees nothing unusual. They all appear in their normal places which can only mean one thing: Einstein is wrong. But Campbell is unwilling to risk his reputation on improvised equipment.

Nobody wants to reveal an answer until everything has been double checked.

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HW
Looking in, a star would have been visible. One of the stars that was to be measured. That star would have been very carefully centered on crosshair in the eyepiece. Once that was done, the scales could be read in the X and Y directions and a very precise position could be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position.

Einstein has predicted that the warped space around the sun will create an optical illusion, making the stars appear to move outward ever so slightly.

Einstein predicted much less than a millimeter. This is not an easy measurement to make.

Unlike most theories that people put forth, Einstein's General Relativity makes very specific prediction, very tight, very...It's got to be this and if it's not that, the entire foundation of the idea has got to be discarded.

Extremely precise, painstaking measurements.

There was no wiggle room in Einstein's Relativity because the idea, the idea that gravity is the manifestation of the curvature of space and time. If you say how much it curves? And what happens to matter or light in the presence of that curvature? Calculate it, make the prediction. If the prediction doesn't come true you don't go and say "okay, let me see if I can tweak the theory." Not in this case.

You can see on his pages the kind of labor that Curtis had to endure in order to make these measurements. It's page after page after page of this. Some page is crossed out.

All you need is one experiment to show that any aspect the relativity would fail and he would have to go back to the drawing board completely.

Curtis looks at the stars and sees nothing unusual. They all appear in their normal places which can only mean one thing: Einstein is wrong. But Campbell is unwilling to risk his reputation on improvised equipment.

Nobody wants to reveal an answer until everything has been double checked.
1

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Homework:

Looking in, a star would have been visible, one of the stars that must to be measured. That star would have been very carefully centered on crosshairs in the IPs, once that was done, the scales could be read in the X and Y directions, and a very precise position could be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position.

Einstein has predicted that the warp space around the sun will create an optical illusion making the stars appear to move outward ever so slightly. Einstein predicted much less than a millimeter and this is not an easy measurement to make, unlike most theories that people put forth, Einstein’s general relativity makes very specific predictions, very tight, very, it’s gotta be this and it’s not that, the entire foundation of the ideas gotta be discarded, extremely precise, painstaking measurements. There was no wiggle room in Einstein’s relativity, because the idea, the idea of gravity is the manifestation of the curvature of space and time. You’re gonna say how much it curves, and what happens to matter or light in the presence of that curvature, calculate it, make the prediction, if the prediction doesn’t come true, you don’t go and say, ok, let me see if I can tweak the theory, not in this case.

You can see in his pages the kind of labor that Curtis had to endure in order to make these measurements as page after page after page, some page is crossed out. All you need was one experiment to show that any aspect of relativity would fail, and he had to go back to the drawing board, completely. Curtis looks at the stars, and sees nothing unusual. They all appear in their normal places which can only mean one thing, Einstein is wrong. But Campbell is unwilling to risk his reputation on improvised equipment. Nobody wants to reveal an answer until everything has been double checked.
1

评分次数

实现无障碍英语沟通
HW
Looking in, a star would have been visible. One of the stars that was to be measured. That star would have been very carefully centered on crosshair in the eyepiece. Once that was done, the scales could be read in the X and Y directions and a very precise position could be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position.
Einstein has predicted that the warped space around the sun will create an optical illusion, making the stars appear to move outward ever so slightly.
Einstein predicted much less than a millimeter. This is not an easy measurement to make.
Unlike most theories that people put forth, Einstein's General Relativity makes very specific prediction, very tight, very...It's got to be this and if it's not that, the entire foundation of the idea has got to be discarded.
Extremely precise, painstaking measurements.
There was no wiggle room in Einstein's Relativity because the idea, the idea that gravity is the manifestation of the curvature of space and time. If you say how much it curves? And what happens to matter or light in the presence of that curvature? Calculate it, make the prediction. If the prediction doesn't come true you don't go and say "okay, let me see if I can tweak the theory." Not in this case.
You can see on his pages a kind of labor that Curtis had to endure in order to make these measurements. It's page after page after page of this. Some page is crossed out.
All you need is one experiment to show that any aspect the relativity would fail and he needed have to go back to the drawing board completely.
Curtis looks at the stars and sees nothing unusual. They all appear in their normal places which can only mean one thing: Einstein is wrong. But Campbell is unwilling to risk his reputation on his improvised equipment.
Nobody wants to reveal an answer until everything has been double checked.
1

评分次数

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[Homework]2012-05-16 阿尔伯特·爱因斯坦 Einstein—27

Looking in, a star would have been visible, one of the stars that must to be measured. That star would have been very carefully centered on crosshairs in the eyepiece. Once that was done, scales could read in the X and Y directions and a very precise position can be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position. Einstein has predicted that the warped space surrounded the sun will create an optical illusion, making the stars appear outward ever so slightly. Einstein predicted much less than a millimeter. It's not an easy measurement to make. Unlike most theories that people put forward, Einstein's general relativity makes very specific prediction, very tight, very... It's going to be this, and if it's not that, the entire foundation of the idea is going to be discarded.
Extremely precise, painstaking measurements.
There was no wiggle room in Einstein's relativity because the idea, the idea the gravity is the manifestation of the curvature of space and time. They say how much it curves, and what happens to matter or light in the presence of that curvature.
Calculate it, make the prediction? If the prediction doesn't come true, you know, go and say, OK, let's me see if tweak the theory. Not in this case.
You can see on these pages the kind of labour that Curtis had to endure in order to make this measurement. It's page after page after page. Some pages are crossed out.
All you need was one experiment to show that any aspect of relativity would fail. And he would have to go to the drawing room completely.
Curtis looks at the stars and sees nothing unusual. They all appear in their normal places, which can only mean one thing, Einstein is wrong. But Campbell is unwilling to risk his reputation on improvised the equipment.
Nobody wants to reveal an answer until everything has been double checked.


This post was generated by put listening repetition system,  Check the original dictation thread!
1

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[Homework]2012-05-16 阿尔伯特·爱因斯坦 Einstein—27

Looking in,the stars was invisible and the stars would be measured.That star would be very carefully  centered on across the air space. One stead was the skill could be right here actions at every practice. position would be a santific star.From those numbers, it could be determined whether the star had a period to change position.Einstein had predicted that the world space around the sun would create up to a conclusion making the star appeared move out world.Every is so slightly.Einstein predicted much less than the minimum, it is not easy measure to make.Unlike most the area's people preform,Einstein's general relativity. Make very sphorcific prediction ,very tight,very…… it got be this, and it is not that.The new target foundation of idea gonna be discussed. Extremely, poor science, pains-taking measurement.There was no waken room in Einstein's   activities.  Because the idea,the idea,gravity is the manner facation of the courage time. To see how much turns,and what happens, to matter or wight, the present that creature, calculate make a prediction.If the prediction goes come true, you don't go to say i can tuc the theory. None this takes.You can see,the pages, a kind of lib, that accoura has to in order to  the manager  measurement. After pages ,pages, some pages acrossed out.All you need was wanted experiments to show that any aspects relativity is fail and you need to go back to the join room completely. Kertis looks at these stars and sees nothing than usual.They all appear in normal places, which only means one thing-Einstein is wrong. But cabin is unwilling to risky its reputation on in provide . Nobody want to preview verna until everything is double check.恩,好多不会的,听着熟就是写不下来,以后要多练习。

This post was generated by put listening repetition system,  Check the original dictation thread!
1

评分次数

HW
Looking in, a star wouldn't be visible and the star must be measured. That Star would have been very carefully centered on crosshatch eyepiece. Once that was done, the scales could be read in the X and Y direction and a very precise position could be a scientific star. From those numbers, it could be determined weather the star had appear to change position.
Einstein has predicted that the workspace surround the sun would create an optical allusion making the stars appear to move outward ever so slightly.
Einstein predicted much less than a millimeter. It is not an easy measurement to make.
Unlike most theories that people put forth, Einstein's general relativity makes very specific prediction, very tight, very, it's gonna be this and it was not that. They need tough foundation. The idea is gonna be disgusted.
Extremely precise, pain-taking measurements.
There was no wiggle room than Einstein's relativity, because the idea, the ides, the gravity is the manifestation of the curvatures based on time. It you see, how much is curved and what happens, to matter or light in the presence of the curvature? Calculate makes the prediction. If the prediction gonna come true. You don't go to say, ok, let me see if i can twist the theory. Not in this case.
You can see, the pages, the kind of labour that // had to endure makes the measurement after page after pages after pages, something page is cross out.
All you need is one experiment to show any aspect that relativity would fail.
I need have to go back to the drawing room completely.
Cutis looks at the stars and sees nothing unusual. They all appear in the normal spaces whcih can only mean one thing, Einstein is wrong. But Camble is unwilling to risk his reputation on his provide equipment.
Nobody wants to reveal an answer to everything has been double check.
1

评分次数

实现无障碍英语沟通
HW:
Looking in, a star would have been visible, one of the stars that was to be measured. That star would have been very carefully centered on crosshair in an eyepiece.
Once that was done, the scales could be read in X and Y directions and a very precise position could be assigned to the star.  From those numbers, it could be determined whether a star had a period to change position. Einstein has predicted that warped space around the sun will create an optical illusion, making the stars appear to move outward ever so slightly.
Einstein predicted much less than the millimeter, it’s not an easy measurement to make.
Unlike most theories that people put forth, Einstein’s general relativity makes very specific prediction, very tiny, very, it’s got to be this and if it’s not that. The entire foundation of this idea has been discarded.
Extremely precise painstaking measurements.
There is no wiggle room in Einstein’s relativity because the idea, the idea that gravity is manifestation of the curvature space and time. If you say how much it curves?  And what happens to matter or light in the presence of that curvature? Calculate it, make the prediction. If prediction doesn’t come true, you don’t go and say: “ok, let me see if I can tweak the theory.” Not in this case.
You can see on his pages a kind of labor that Curtis had to endure in order to make these measurements. It’s page after page after page of this. Some pages crossed out.
All you need is one experiment to show that any aspect of relativity would fail and you have to go back to the drawing board completely.
Curtis looks at the stars and sees nothing unusual. They all appear in normal places, which can only mean one thing: Einstein is wrong.
But Campbell is unwilling to risk his reputation on improvised equipment. Nobody wants to reveal an answer until everything has been double checked.
普特听力大课堂
HM
Looking in, a star would have been visible, one of the stars must be measured, that star would been very carefully centered on crosshair in the eyepieces. Once that was done, the scales could be read in the X and Y direction, and a very precise position could be assigned to the star. From those numbers, it could be determined whether the star had appeared to change position.
Einstein had predicted that the warped space around the sun will create an optical allusion making the stars appeared to move outward ever so slightly.
Einstein predicted much less than a millimeter, it’s not an easy measurement to make.
Unlike most theories that people put forth, Einstein’s General relativity makes very specific prediction, very tight, very…, it’s got to be this and if it’s not that, the entire foundation of the idea has got to be discarded.  
Extremely precise, painstaking measurements
There is no wiggle room in Einstein’s relativity because the idea, the gravity is manifestation of the curvature of space and time. If you say how much it curves and what happens? To matter or light in the presence of that curvature, calculate it, make the prediction, if prediction doesn’t come true, you don’t go and say: OK, let me see if I can tweak the theory, not in this case.
You can see on these pages, a kind of labor that G had to endure in order to make this measurement, it’s page after pager after page, some pages cross out.
All you need was one experiment to show that any aspect of relativity would fail and you have to go back to the drawing board completely.
C looks the stars and sees nothing unusual, they all appear in a normal place which can only mean one thing- Einstein is wrong, but C is unwilling to risk his reputation on improvised equipment.
Nobody wants to reveal an answer until everything is being double checked.
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