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iphone 13 با ظرفیت 128 گیگابایت با گارانتی شرکتی ( CH/A) (NOT ACTIVE)

(دیدگاه کاربر 16236)

قیمت اصلی: 59,000,000 تومان بود.قیمت فعلی: 58,500,000 تومان.

ویژگی ها

  • حافظه داخلی :
    128 گیگابایت
  • مقدار رم :
    4 گیگابایت
  • رزولوشن عکس :
    12 مگاپیکسل
  • دوربین سلفی :
    12 مگاپیکسل
  • دوسیم سیمکارت
  • همراه با قاب و گلس رایگان
شناسه محصول: نامعلوم دسته: ,

توضیحات

عرضه

معرفی 2021، سپتامبر 14
وضعیت موجود، عرضه شده در 24 سپتامبر 2021
مدل‌ها – A2633 (نسخه جهانی)
– A2482 (نسخه آمریکا)
– A2631 (نسخه کانادا و ژاپن)
– A2634 (نسخه چین و هنگ کنگ)
– A2635 (نسخه روسیه)

نمایشگر

نوع Super Retina XDR OLED
ابعاد 6.1 اینچ (~87.1% نسبت نمایشگر به بدنه)
رزولوشن 1170 در 2532 پیکسل، 19.5:9 (~457 پیکسل در اینچ تراکم پیکسلی)
محافظ پوشش سرامیک گلس مقاوم در برابر خش، پوشش اولفوبیک برای کاهش بازتاب نور و لکه دست
– پشتیبانی از Dolby Vision
– پشتیبانی از HDR10
– نرخ نوسازی تصویر 60 هرتز
– روشنایی متوسط 800 نیت و حداکثر 1200 نیت
– پشتیبانی از فضای رنگی گسترده
– قابلیت True-tone

متفرقه

رنگ‌ها سفید، مشکی، آبی، صورتی، قرمز

بدنه

ابعاد 146.7 در 71.5 در 7.7 میلی‌متر
وزن 174 گرم
ساخت پشت شیشه‌ای (گوریلا گلس)، جلو شیشه‌ای (گوریلا گلس)، فریم آلومینیومی
گواهی IP68 برای مقاوت در برابر نفوذ آب و گرد و غبار (تا 6 متر برای 30 دقیقه)
سیم‌کارت – تک سیم‌کارته (نانو-سیم and/or eSIM) – نسخه جهانی
– دوسیم (همزمان یکی فعال (dual standby)) – نسخه چین

پلتفرم

سیستم‌عامل در زمان عرضه iOS 15
تراشه Apple A15 Bionic (5 نانومتر)
پردازنده مرکزی 6 هسته‌ای (دو هسته‌ی 3.22 گیگاهرتز Avalanche و چهار هسته‌ی Blizzard)
پردازنده گرافیکی اپل GPU (چهار هسته‌ای)

حافظه

درگاه حافظه خیر
حافظه داخلی 128 گیگابایت با 4 گیگابایت رم، 256 گیگابایت با 4 گیگابایت رم، 512 گیگابایت با 4 گیگابایت رم
نوع حافظه NVMe

دوربین

اصلی 12 مگاپیکسل (لنز واید 26 میلی‌متری، فوکوس خودکار دوال پیکسل با تشخیص فاز، 1.7 میکرومتر سایز پیکسل، لرزش‌گیر اپتیکال سنسورشیفت، f/1.6)
12 مگاپیکسل (لنز 13 میلی‌متری اولتراواید با پوشش 120 درجه، f/2.4)
قابلیت‌ها فلاش دوگانه‌ی (LED (dual-tone، HDR (photo/panorama)
فیلم‌برداری 4K@24/30/60fps، 1080p@30/60/120/240fps، HDR، Dolby Vision HDR، ضبط صدای استریو
سلفی 12 مگاپیکسل (لنز 23 میلی‌متری واید، f/2.2)
SL 3D (حسگر بیومتریک تشخیص عمق)
فیلم‌برداری سلفی 4K@24/25/30/60fps، 1080p@30/60/120fps، لرزشگیر الکترونیکی تصویر-ژیروسکوپی

صدا

اسپیکر بله، اسپیکر استریو
جک ۳.۵ میلی‌متری خیر

باتری

باتری باتری غیرقابل تعویض لیتیوم یونی با ظرفیت 3240 میلی آمپر ساعت (12.41 وات ساعت)
سرعت شارژ – شارژ سریع 20 وات (فاقد شارژر درون جعبه)
– USB Power Delivery 2.0
– شارژ سریع بی سیم 7.5 وات Qi و 15 وات در صورت استفاده از MagSafe

قابلیت‌ها

حسگرها Face ID، شتاب‌سنج، ژیروسکوپ، سنسور مجاورت، قطب‌نما، فشارسنج
– پشتیبانی از دستیار هوشمند سیری با پشتیبانی از زبان محاوره
– پشتیبانی از پهنای باند فوق‌عریض (UWB)
– اپل Pay (Visa، مسترکارت، AMEX گواهی)

شبکه

فناوری GSM / CDMA / HSPA / EVDO / LTE / 5G

اتصالات

شبکه بی‌سیم Wi-Fi 802.11 a/b/g/n/ac/6e، دو بانده، هات‌اسپات
بلوتوث 5.0، A2DP، LE
GPS بله، با A-GPS، GLONASS، GALILEO، BDS، QZSS
NFC بله
رادیو خیر
USB – لایتنینگ
– USB 2.0

توضیحات تکمیلی

وضعیت محصول

اکتیو شده

گارانتی

رجیستر شده|گارانتی : 30 روز مهلت تست تعویض + 12 ماه خدمات پس از فروش مجموعه دیاموند

رنگ

(PRODUCT)RED, blue, Midnight, silver

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    Still, coming from a thinker who some in the scientific community say might have been worthy of a Nobel Prize early in his career, the concept took hold and the hypothetical megastructures became known as Dyson spheres, even though the physicist later clarified that they would actually consist of “a loose collection or swarm of objects traveling on independent orbits around the star.”

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    In his paper, Dyson also noted that Dyson spheres would give off waste heat detectable as infrared radiation, and suggested that looking for that byproduct would be a viable method for searching for extraterrestrial life. However, he added that infrared radiation by itself would not necessarily mean extraterrestrial intelligence, and that one of the strongest reasons for searching for such sources was that new types of natural astronomical objects might be discovered.

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    Still, coming from a thinker who some in the scientific community say might have been worthy of a Nobel Prize early in his career, the concept took hold and the hypothetical megastructures became known as Dyson spheres, even though the physicist later clarified that they would actually consist of “a loose collection or swarm of objects traveling on independent orbits around the star.”

    In his paper, Dyson also noted that Dyson spheres would give off waste heat detectable as infrared radiation, and suggested that looking for that byproduct would be a viable method for searching for extraterrestrial life. However, he added that infrared radiation by itself would not necessarily mean extraterrestrial intelligence, and that one of the strongest reasons for searching for such sources was that new types of natural astronomical objects might be discovered.

    “Scientists (at the time) were largely receptive, not to the likelihood that alien civilisations would be found to exist, but that a search for waste heat would be a good place to look,” said George Dyson, a technology writer and author and the second of Dyson’s six children, via email. “Science fiction, from ‘Footfall’ to ‘Star Trek,’ took the idea and ran with it, while social critics adopted the Dyson sphere as a vehicle for questioning the wisdom of unlimited technological growth.”

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    “As a young scientist, Dyson showed that three competing quantum theories were actually the same theory — he summarily ended the competition,” said William Press, the Leslie Surginer Professor of Computer Science and Integrative Biology at the University of Texas at Austin. He was not involved in the study. “Later, he applied his genius to areas of astronomy, cosmology, the extraterrestrial realm, and also the very real problem of nuclear proliferation here on planet Earth. At the time of his death, he was recognized as a provocative and creative thinker.”

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    The approach of the researchers behind the new study could offer a more fruitful path in the search for extraterrestrial intelligence, said Tomotsugu Goto, an associate professor of astronomy at the National Tsing Hua University in Taiwan. He also was not involved with the study.

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    Still, coming from a thinker who some in the scientific community say might have been worthy of a Nobel Prize early in his career, the concept took hold and the hypothetical megastructures became known as Dyson spheres, even though the physicist later clarified that they would actually consist of “a loose collection or swarm of objects traveling on independent orbits around the star.”

    In his paper, Dyson also noted that Dyson spheres would give off waste heat detectable as infrared radiation, and suggested that looking for that byproduct would be a viable method for searching for extraterrestrial life. However, he added that infrared radiation by itself would not necessarily mean extraterrestrial intelligence, and that one of the strongest reasons for searching for such sources was that new types of natural astronomical objects might be discovered.

    “Scientists (at the time) were largely receptive, not to the likelihood that alien civilisations would be found to exist, but that a search for waste heat would be a good place to look,” said George Dyson, a technology writer and author and the second of Dyson’s six children, via email. “Science fiction, from ‘Footfall’ to ‘Star Trek,’ took the idea and ran with it, while social critics adopted the Dyson sphere as a vehicle for questioning the wisdom of unlimited technological growth.”

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    “One should expect that, within a few thousand years of its entering the stage of industrial development, any intelligent species should be found occupying an artificial biosphere which completely surrounds its parent star,” wrote Dyson in a 1960 paper in which he first explained the concept
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    If it sounds like science fiction, that’s because it is: Dyson took the idea from Olaf Stapledon’s 1937 novel “Star Maker,” and he was always open about that. The late scientist was a professor emeritus at the Institute of Advanced Study in Princeton, New Jersey.
    Still, coming from a thinker who some in the scientific community say might have been worthy of a Nobel Prize early in his career, the concept took hold and the hypothetical megastructures became known as Dyson spheres, even though the physicist later clarified that they would actually consist of “a loose collection or swarm of objects traveling on independent orbits around the star.”

    In his paper, Dyson also noted that Dyson spheres would give off waste heat detectable as infrared radiation, and suggested that looking for that byproduct would be a viable method for searching for extraterrestrial life. However, he added that infrared radiation by itself would not necessarily mean extraterrestrial intelligence, and that one of the strongest reasons for searching for such sources was that new types of natural astronomical objects might be discovered.

    “Scientists (at the time) were largely receptive, not to the likelihood that alien civilisations would be found to exist, but that a search for waste heat would be a good place to look,” said George Dyson, a technology writer and author and the second of Dyson’s six children, via email. “Science fiction, from ‘Footfall’ to ‘Star Trek,’ took the idea and ran with it, while social critics adopted the Dyson sphere as a vehicle for questioning the wisdom of unlimited technological growth.”

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    “We got 53 candidates for anomalies that cannot be well explained, but can’t say that all of them are Dyson sphere candidates, because that’s not what we are specifically looking for,” said Gabriella Contardo, a postdoctoral research fellow at the International School for Advanced Studies in Trieste, Italy, who led the earlier study. She added that she plans to check the candidates against Suazo’s model to see how many tie into it.
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    “You need to eliminate all other hypotheses and explanations before saying that they could be a Dyson sphere,” she added. “To do so you need to also rule out that it’s not some kind of debris disk, or some kind of planetary collision, and that also pushes the science forward in other fields of astronomy — so it’s a win-win.”

    Both Contardo and Suazo agree that more research is needed on the data, and that ultimately they could turn to NASA’s James Webb Space Telescope for more information, as it is powerful enough to observe the candidate stars directly. However, because of the lengthy, competitive procedures that regulate use of the telescope, securing access might take some time.
    If Dyson spheres really exist, what could they be used for? “If you picture ourselves having as much energy as the sun is providing every second, we could do unheard of things,” Suazo said. “We could do interstellar travel, maybe we could even move the entire solar system to our preferred location, if we wanted.”

    But don’t hold your breath, because the technology and the raw materials required to build the hypothetical structures are far beyond humanity’s grasp.

    “They are so big that everything we have on Earth would not be enough to build them,” Suazo added. “Freeman Dyson said that we should dismantle Jupiter — the whole planet (for the raw materials).”

    That supercolossal scale probably means that Dyson spheres, if they exist at all, are very rare.

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    “As a young scientist, Dyson showed that three competing quantum theories were actually the same theory — he summarily ended the competition,” said William Press, the Leslie Surginer Professor of Computer Science and Integrative Biology at the University of Texas at Austin. He was not involved in the study. “Later, he applied his genius to areas of astronomy, cosmology, the extraterrestrial realm, and also the very real problem of nuclear proliferation here on planet Earth. At the time of his death, he was recognized as a provocative and creative thinker.”

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    “Taking advantage of a short attention span and an aversion to bureaucracy, he contributed to five fields of mathematics and eleven fields of physics, as well as to theoretical biology, engineering, operations research, literature, and public affairs,” the younger Dyson said. “Many of his ideas were controversial, with one of his guiding principles being that ‘It is better to be wrong than to be vague.’”

    The approach of the researchers behind the new study could offer a more fruitful path in the search for extraterrestrial intelligence, said Tomotsugu Goto, an associate professor of astronomy at the National Tsing Hua University in Taiwan. He also was not involved with the study.

    “However, contamination by circumstellar debris disks, which mimic Dyson Sphere infrared signatures, remains a concern,” he added in an email. “Authors argue that the debris disks around (dwarf stars) are rare, but the 7 candidate authors selected out of 5 million sources are also rare. Despite this, the seven candidates warrant further investigation with powerful telescopes for a more definitive evaluation.”

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    “We got 53 candidates for anomalies that cannot be well explained, but can’t say that all of them are Dyson sphere candidates, because that’s not what we are specifically looking for,” said Gabriella Contardo, a postdoctoral research fellow at the International School for Advanced Studies in Trieste, Italy, who led the earlier study. She added that she plans to check the candidates against Suazo’s model to see how many tie into it.
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    “You need to eliminate all other hypotheses and explanations before saying that they could be a Dyson sphere,” she added. “To do so you need to also rule out that it’s not some kind of debris disk, or some kind of planetary collision, and that also pushes the science forward in other fields of astronomy — so it’s a win-win.”

    Both Contardo and Suazo agree that more research is needed on the data, and that ultimately they could turn to NASA’s James Webb Space Telescope for more information, as it is powerful enough to observe the candidate stars directly. However, because of the lengthy, competitive procedures that regulate use of the telescope, securing access might take some time.
    If Dyson spheres really exist, what could they be used for? “If you picture ourselves having as much energy as the sun is providing every second, we could do unheard of things,” Suazo said. “We could do interstellar travel, maybe we could even move the entire solar system to our preferred location, if we wanted.”

    But don’t hold your breath, because the technology and the raw materials required to build the hypothetical structures are far beyond humanity’s grasp.

    “They are so big that everything we have on Earth would not be enough to build them,” Suazo added. “Freeman Dyson said that we should dismantle Jupiter — the whole planet (for the raw materials).”

    That supercolossal scale probably means that Dyson spheres, if they exist at all, are very rare.

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    “We got 53 candidates for anomalies that cannot be well explained, but can’t say that all of them are Dyson sphere candidates, because that’s not what we are specifically looking for,” said Gabriella Contardo, a postdoctoral research fellow at the International School for Advanced Studies in Trieste, Italy, who led the earlier study. She added that she plans to check the candidates against Suazo’s model to see how many tie into it.
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    “You need to eliminate all other hypotheses and explanations before saying that they could be a Dyson sphere,” she added. “To do so you need to also rule out that it’s not some kind of debris disk, or some kind of planetary collision, and that also pushes the science forward in other fields of astronomy — so it’s a win-win.”

    Both Contardo and Suazo agree that more research is needed on the data, and that ultimately they could turn to NASA’s James Webb Space Telescope for more information, as it is powerful enough to observe the candidate stars directly. However, because of the lengthy, competitive procedures that regulate use of the telescope, securing access might take some time.
    If Dyson spheres really exist, what could they be used for? “If you picture ourselves having as much energy as the sun is providing every second, we could do unheard of things,” Suazo said. “We could do interstellar travel, maybe we could even move the entire solar system to our preferred location, if we wanted.”

    But don’t hold your breath, because the technology and the raw materials required to build the hypothetical structures are far beyond humanity’s grasp.

    “They are so big that everything we have on Earth would not be enough to build them,” Suazo added. “Freeman Dyson said that we should dismantle Jupiter — the whole planet (for the raw materials).”

    That supercolossal scale probably means that Dyson spheres, if they exist at all, are very rare.

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