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Monday, 11 July 2022 10:31

行在主路上 楊景釗弟兄感恩見証分享(二)

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「我們一生的年日是七十歲,若是強壯可到八十,但其中所矜誇的,不過是勞苦愁煩,轉眼成空,我們便如飛而去。」(詩篇九十:十)	
	有了創造主,關於人生的問題不再向『人』尋問,而是改向『上帝』!首先,人在上帝眼中處於什麼位置呢?根據《聖經—創世記》,上帝用了五天時間以言語創造了萬物,包括一切的活物。然後,上帝用了一天,按祂自己的形象,以地上的泥土用祂的手,造了人的模式,並在他的鼻孔吹入一口氣,有靈的活人便是如此造出來。這個人具備了上帝賜與的智慧與能力,所以人能管理整個世界。
	世界樣龐大,自然需要大量不同的人,才能完成整個管理工作。事實上,所有人都是平等。
	那麼人為什麼活著呢?可以分為兩大類理由:	
	●人當盡人在世上的責任,每一個人生存在世上一定負有不同的工作;此外,在人生的歷程中亦不斷承擔不同的身份。 	
	● 作為神的兒女,在神的國度裡亦當盡人子的責任。那麼人如何方能達到上帝的要求呢?每一個人的能力與意願上帝都好清楚,所以祂的要求很簡單:就是敬畏神,謹守祂的誡命,這是人所當盡的本分。


盡本分 	
	「生老病死」是人的必然,無可逃避。研究『死』的人不少,追尋死後何處去的人更多。雖然我曾經看過這一類專書,或者他們的見解太深奧,超越了我有限的思維。
	上文曾提到我有閱讀有關人體結構的參考書,記得其中有一篇是談到血液裡的血小板,我節錄了一些資料:當一個人受傷開始流血時,血小板會聚集起來「塞住」破洞,然後「自體瓦解」釋出化學物質啟動凝血作用。很明顯血小板一定有個訊息接收器,所以當人體某地方破損時,而人體總中樞發出指令之後,血小板便去「塞住」那破洞。與此同時又會釋出化學物質去凝固血液,所以血不會不停地再流。另一問題,就是血小板的壽命平均是五至十一天,隨時由骨髓補充。
	當日,看完了該書《人,美妙的傑作》關於血小板的介紹,我不得不停下來想一個問題:「當我受傷時,我有向血小板下達任何指令嗎?」當然很清楚我沒有這樣做,因為還只是那一刻我才認識血小板多一點點而已。	
魂 	
	究竟除了我之外,誰下指令呢?而我更加相信我那異常複雜的身體,可能每天都有些變化,而管控血小板那個總中樞,一定同樣地肩負著發出指令的任務,讓身體作出正常運作。我發現了原來除我以外,還有另外一個我,而這個『另外的一個我』比諸『我』更加瞭解『我』。 	
	在神學書裡面,神學家指人是有「靈魂」的,其中「靈」是與造物主連系,而「魂」是管控人體的運作。靈魂之說,我自認識血小板之後便深信不移。原來,人的肉體必然會毀滅,但靈魂不屬肉體,所以依然存在。 	
天國居所 	
	人死後何去呢?耶穌在經上說:「在我父的家裡,有許多住處。若是沒有,我就早已告訴你們了。我去原是為你們預備地方去。」(約翰福音十四:二)	
有歷練人生的人,相信對下列描繪會有強烈感受:	
	●人生有如白駒過隙,轉迅即逝。 	
	● 經上說:「我們一生的年日是七十歲,若是強壯可到八十,但其中所矜誇的,不過是勞苦愁煩,轉眼成空,我們便如飛而去。」(詩篇九十:十)環顧世界各地,不是戰爭,便是隨時一觸即發的戰爭,又或是政治的鬥爭,凡此種種,用『勞苦愁煩』來形容,可謂非常貼切,而人的生命轉瞬即逝,亦確實如此!如此日子確是帶來異常灰暗的人生。
	不過,相信你曾經到過各地旅遊,無論你所去何處,住什麼酒店,你祗是一個旅居他地的旅客,最後還是要回到你的老家。原來,我們今天所在的世界,只是旅居之地。聖經常常提醒我們,我們不過是一個『過客』。你的老家就是上文耶穌為你預備的地方。
	『信』,是人渴望擁有,但不容易得到的東西,聖經對『信』是這樣說:信就是「對所盼望的事的把握,是還沒有看見的事的明證。」(希伯來書十一:一)	
 	朋友:當你相信上帝是創造人和萬物的創造主時,那麼你便應相信上帝所給予我們的一切。 	(全文完)
神與我同在	
     陳翠華姊妹感恩見証分享	
你要以你的訓言引導我,以後必接我到榮耀裡。除你以外,在天上我有誰呢?除你以外,在地上我也沒有所愛慕的。我的肉體和我的心腸衰殘,但神是我心裡的力量,又是我的福分,直到永遠。(詩篇七十三:二十四至二十六)	
	
	二○二○年十月十八日星期日,吃過午飯後,我的先生如常一樣出去散步,然後午睡,起床後吃了酸牛奶,一切很正常。下午三點半左右,先生突然覺得有點冷,於是就穿上毛衣,但還是覺得很冷,就再穿上一件薄羽絨服。	
	過了一會兒,他開始全身發抖。我深知大事不妙,一定是發高熱了。果然一探熱是華氏三十七度六,於是馬上吃「TYLENOL」退燒藥,並上床休息。但蓋了被子還一直發抖。到了晚上七點多,再探熱是華氏三十八度六,怎麼辦好呢?星期天家庭醫生不開診,去醫院覺得不安全(因為前段時間公寓裡有老人去醫院後,反而感染了新冠病毒而去世)。怎麼辦呢?	
	記起聖經中上帝的話語:「你不要害怕,因為我與你同在;不要驚惶,因為我是你的上帝。我必堅固你,我必幫助你;我必用我公義的右手扶持你。」(以賽亞書四十一:十)神的話給了我力量,改變了我過去對疫病害怕、惶恐的心理,就馬上打電話通知孫女,她和男朋友立刻去藥房買了一種效力較強些的退燒藥送來。先生吃了一次強力退燒藥後,在午夜時,高熱開始退了一些,再吃了一次「TYLENOL」退燒藥後,天亮時就退熱了。	
	第二天起床後,發現先生的尿液顏色很深而量又少,我猜想可能是他的泌尿系統有問題。早上九點後,便打電話到家庭醫生診所,醫生聽到先生發過高熱,不論退熱已否,一定要去做病毒檢測。
	於是女兒和孫女很快就找到了一個檢測點,我們便飛車前去。來到檢測點,只見到工作人員,沒有見到一個要檢測的人,我們覺得很安全,害怕感染到病毒的恐懼,頓時消失了,很快就做完了檢測。回到家後,我便立刻聯繫了先生的泌尿科醫生,並約好了星期二上午九點見醫生,一切都很順利。	
	在星期一那一天,雖然沒有見到醫生,由於大量喝水,尿液增多了,顏色也淡了很多。星期二早上,得知病毒檢測的結果是陰性。見過泌尿科醫生,吃了消炎藥,情況好了很多。
	我很高興在這裡分享,因為我真是感受到神的恩典!先生從發高熱到退熱,尿液從少到增多,從尿液從濁到清,檢測到診病,一切都很順利。這就是神的恩賜!一切榮耀歸於神!

	        二○二二年七月九日	
	
	

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  • Comment Link Alonzokip Tuesday, 08 April 2025 19:40 posted by Alonzokip

    Space, time: The continual question
    If time moves differently on the peaks of mountains than the shores of the ocean, you can imagine that things get even more bizarre the farther away from Earth you travel.
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    To add more complication: Time also passes slower the faster a person or spacecraft is moving, according to Einstein’s theory of special relativity.

    Astronauts on the International Space Station, for example, are lucky, said Dr. Bijunath Patla, a theoretical physicist with the US National Institute of Standards and Technology, in a phone interview. Though the space station orbits about 200 miles (322 kilometers) above Earth’s surface, it also travels at high speeds — looping the planet 16 times per day — so the effects of relativity somewhat cancel each other out, Patla said. For that reason, astronauts on the orbiting laboratory can easily use Earth time to stay on schedule.
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    For other missions — it’s not so simple.

    Fortunately, scientists already have decades of experience contending with the complexities.

    Spacecraft, for example, are equipped with their own clocks called oscillators, Gramling said.

    “They maintain their own time,” Gramling said. “And most of our operations for spacecraft — even spacecraft that are all the way out at Pluto, or the Kuiper Belt, like New Horizons — (rely on) ground stations that are back on Earth. So everything they’re doing has to correlate with UTC.”
    But those spacecraft also rely on their own kept time, Gramling said. Vehicles exploring deep into the solar system, for example, have to know — based on their own time scale — when they are approaching a planet in case the spacecraft needs to use that planetary body for navigational purposes, she added.

    For 50 years, scientists have also been able to observe atomic clocks that are tucked aboard GPS satellites, which orbit Earth about 12,550 miles (20,200 kilometers) away — or about one-nineteenth the distance between our planet and the moon.

    Studying those clocks has given scientists a great starting point to begin extrapolating further as they set out to establish a new time scale for the moon, Patla said.

    “We can easily compare (GPS) clocks to clocks on the ground,” Patla said, adding that scientists have found a way to gently slow GPS clocks down, making them tick more in-line with Earth-bound clocks. “Obviously, it’s not as easy as it sounds, but it’s easier than making a mess.”

  • Comment Link AndreGax Tuesday, 08 April 2025 19:40 posted by AndreGax

    Lunar clockwork
    What scientists know for certain is that they need to get precision timekeeping instruments to the moon.
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    Exactly who pays for lunar clocks, which type of clocks will go, and where they’ll be positioned are all questions that remain up in the air, Gramling said.

    “We have to work all of this out,” she said. “I don’t think we know yet. I think it will be an amalgamation of several different things.”
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    Atomic clocks, Gramling noted, are great for long-term stability, and crystal oscillators have an advantage for short-term stability.
    “You never trust one clock,” Gramling added. “And you never trust two clocks.”

    Clocks of various types could be placed inside satellites that orbit the moon or perhaps at the precise locations on the lunar surface that astronauts will one day visit.

    As for price, an atomic clock worthy of space travel could cost around a few million dollars, according Gramling, with crystal oscillators coming in substantially cheaper.

    But, Patla said, you get what you pay for.

    “The very cheap oscillators may be off by milliseconds or even 10s of milliseconds,” he added. “And that is important because for navigation purposes — we need to have the clocks synchronized to 10s of nanoseconds.”

    A network of clocks on the moon could work in concert to inform the new lunar time scale, just as atomic clocks do for UTC on Earth.

    (There will not, Gramling added, be different time zones on the moon. “There have been conversations about creating different zones, with the answer: ‘No,’” she said. “But that could change in the future.”)

  • Comment Link RobertPaubs Tuesday, 08 April 2025 19:40 posted by RobertPaubs

    ‘A whole different mindset’
    Accurate clockwork is one matter. But how future astronauts living and working on the lunar surface will experience time is a different question entirely.
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    On Earth, our sense of one day is governed by the fact that the planet completes one rotation every 24 hours, giving most locations a consistent cycle of daylight and darkened nights. On the moon, however, the equator receives roughly 14 days of sunlight followed by 14 days of darkness.

    “It’s just a very, very different concept” on the moon, Betts said. “And (NASA is) talking about landing astronauts in the very interesting south polar region (of the moon), where you have permanently lit and permanently shadowed areas. So, that’s a whole other set of confusion.”
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    “It’ll be challenging” for those astronauts, Betts added. “It’s so different than Earth, and it’s just a whole different mindset.”

    That will be true no matter what time is displayed on the astronauts’ watches.

    Still, precision timekeeping matters — not just for the sake of scientifically understanding the passage of time on the moon but also for setting up all the infrastructure necessary to carry out missions.

    The beauty of creating a time scale from scratch, Gramling said, is that scientists can take everything they have learned about timekeeping on Earth and apply it to a new system on the moon.

    And if scientists can get it right on the moon, she added, they can get it right later down the road if NASA fulfills its goal of sending astronauts deeper into the solar system.

    “We are very much looking at executing this on the moon, learning what we can learn,” Gramling said, “so that we are prepared to do the same thing on Mars or other future bodies.”

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