日本亚马逊官网是哪个?

日本亚马逊官网地址:www.amazon.co.jp(在中国境内可能无法访问,需要借助一定的技术工具)

或者访问亚马逊国际站 https://www.amazon.com/  ,在logo右侧,选择配送至日本

亚马逊日本站概览:

1、海量顾客

高消费能力的亚马逊Prime顾客群体达数百万

2、优势站点

亚马逊在日本电商网站中的浏览量和销售量均为首位1

3、地理优势

使用亚马逊物流FBA的订单均可实现当日/次日送达

4、活动丰富

日本特有的文化节日众多,带来更多的站内促销机会

日本亚马逊热卖品类:

日本消费者热衷在网上购买服装杂货、消费电子、厨房家电、家居家装,中国卖家可以优先从这些品类入手。

日本亚马逊可销售品类:

Eligible-Categories-JP-20200710.pdf

上表提供了亚马逊商品分类的概览。对于需要批准的分类,请阅读要求页面并填写申请表。专业卖家在发布某些商品分类的商品之前必须获得亚马逊的批准。了解有关需要批准的分类和商品的更多信息。您可以指定给定商品的状况,不同分类可用的状况不同。 有关如何评估商品状况的更多详情,请参阅状况指南。一些商品系列需要亚马逊的事先批准才能发布。有关更多详情,请参阅 [email protected] 发布规则。

日本亚马逊卖家分享:

在2015年下半年入驻亚马逊日本站,成为了最早一批上线日本站的卖家之一。第二年,他们直接达成了100万美金销售额,且在2019年黑五期间实现了销量比平时翻3倍,年末销售额更是突破了500万美金!

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日本三年五年多次往返签证如何申请?

不绕弯子,说重点。

一、五年多次往返旅游签证所需文件: 

1、签证申请表(详见附件) 

2、照片 2 张 宽 3.5cm×高 4.5cm、彩色白底 

3、护照原件(有效期 6 个月以上),若旧护照上有上一次日本出入境记录,需同时提供 

4、全家户口本复印件 

5、本人身份证正反面复印件 

6、个人信息处理同意书 

7、工作单位出具的加盖公司公章的中文在职证明原件(详见附件) 

8、过去一年度的工资卡明细单(加盖银行公章) 

9、过去一年度的纳税证明原件(需达到年纳税 8 万元以上) 

10、若家属申请,除提供 1-6 项外,还需提供 

①家属与主申请人(具备申请 5 年签证的人)的关系证明 

②家属的职务证明(学生提供在学证明、在职者提供在职证明、退休人员提供退休证复印件) 

③若家属与主申请人分开申请时,提供主申请人有效 5 年签证的护照原件 

11、非所在领区户口的申请人,需提交所在领区居住证原件/北京领区电子居住证确认单原件

二、这不是我们的主营业务,但可以代办。如需帮助,请联系客服。

如需以下材料清单,也可以联系我们。

——————————————————————————————

相信很多小伙伴都听说过日本的三年往返签证和五年往返签证,这两种签证对外国人短期入境日本真的是太方便了。

拥有了这两种签证不论来日本是探亲访友,还是观光游玩都可以买张机票说走就走,不用再被一次又一次繁琐的签证手续所牵绊。

今天就给大家具体讲解一下三年和五年多次往返签证的办理方法以及注意事项。

三年多次往返签证

对于三年多次往返签证日本法务省称其为“十分な経済力を有する者向け数次ビザ”

具体解释如下↓

1. 签证特点:

(1) 签证有效期:三年

(2)每次可以在日停留时间:30天

(3)签证时间内往返次数:不限

2. 签证办理条件:

(以下两点符合一点即可)

(1)之前的三年内去过2次日本

(必须出入境都有盖章)

(2)年收入20万以上

(只认可工资流水或者是纳税记录,纳税需要连续三年每个月至少达到2667元)

3. 办理材料:

(1)护照原件

(2)户口本复印件(彩印)

(3)身份证彩印件(彩印)

(4)在职证明

(5)白底证件照两张(45mm*45mm)

(6)银行流水/社保记录/完税证明等(代办签证的旅行社会根据个人条件不同来适当地要求本人提供)

五年多次往返签证

对于五年多次往返签证日本法务省称其为“相当な高所得者向け数次ビザ”

具体解释如下↓

1. 签证特点:

(1) 签证有效期:五年

(2)每次可以在日停留时间:90天

(3)签证时间内往返次数:不限

2. 签证办理条件:

(以下两点符合一点即可)

(1)年收入在50万RMB以上

(只认可工资流水或纳税记录,纳税需要连续三年每个月达到6500元以上)

(2)有市值200万RMB以上无抵押房产

(商用自助均可)

3. 办理材料:

(1)护照原件

(2)户口本复印件(彩印)

(3)身份证彩印件(彩印)

(4)在职证明

(5)白底证件照两张(45mm*45mm)

(6)银行流水/房产证/营业执照/社保记录/完税证明等(代办签证的旅行社会根据个人条件不同来适当地要求本人提供)


以上便是三年往返和五年往返签证的办理事项了,但是其中要注意到的细节还有很多。在此,也给大家整理了一下。


注意事项:

1. 为了减少不必要的麻烦,以上两种签证最好都要委托旅行社代为办理为好,需要具体提供什么证明,旅行社会直接向本人索要。

2. 对于三年往返签证,日本法务省要求获签以后三个月内必须至少来日本一次。所以建议小伙伴如果办三年往返签证的话,最好计划好行程后临出发前一个月办理最为稳妥。五年往返签证则没有此限制。

3. 办理三年往返签证条件之一是之前的三年内去过2次日本,所以小伙伴在护照上一定要有出入境记录印章。虽然现在很多地方都是自助通道没有章,但是出境的时候一定要告诉海关工作人员,他们会给你盖章的。

4. 一般地区办理三年往返签证2周左右即可下签;五年签证的办理时间会稍长一些。(疫情期间除外)

5. 五年往返签证的办理条件之一“市值200万RMB以上房产”一定是无抵押,没有贷款的房产。

6. 不用非得一套房产市值200RMB,多处房产叠加也可以。

7. 用三年多次往返签证去日本,第一次回国后要提供行程的相关信息来作为归国记录,并且交回旅行社。

8. 以上两种签证只限个人签,团签不可以。

9.  获得签证后,如果期间护照到期更新后,签证依然有效,只是一定要新旧两本护照一起带着。

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日本paypal使用广泛嘛

Click:buttermilk pancake recipe

PayPal在日本也是一种非常流行的支付方式。日本的电子商务市场越来越发达,越来越多的商家开始使用PayPal作为交易方式之一,这也使得PayPal在日本得到了广泛应用。

但PayPal在日本服务的用户很多是在向日本国外的电商平台进行跨境支付。在日本竞争激烈的国内支付市场,PayPal的规模并不大。

目前,PayPal在日本已经支持了多个货币,包括日元、美元、欧元等等。不仅如此,PayPal还致力于增强其在日本市场的地位,通过开展各种促销活动和合作伙伴项目来吸引更多的用户和商家。

此外,随着日本境内和境外的跨境电商不断增加,PayPal在日本的使用也更加广泛。越来越多的日本消费者和商家已经意识到PayPal所提供的优点,例如支付安全、支付快捷方便以及支付手续费较低等等。

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DOE Confirms Fusion Energy Milestone at California Lab

#Industry News

DOE Confirms Fusion Energy Milestone at California Lab

The first nuclear fusion reaction to result in a net energy gain has been successfully completed by scientists at a laboratory in California, a milestone in the decades-long pursuit of a way to produce unlimited energy with no carbon emissions or nuclear waste.

U.S. Energy Secretary Jennifer Granholm made the official announcement Dec. 13 during a news conference at the Dept. of Energy (DOE) in Washington, D.C. Granholm confirmed the news that was first reported Sunday, when news outlets including POWER cited sources that said researchers at the National Ignition Facility (NIF) at the Lawrence Livermore National Laboratory on Dec. 5 had produced a fusion reaction that created more energy than it consumed.

Granholm on Tuesday said the fusion experiment at the NIF replicated “certain conditions that are only found in the stars and sun.” Officials said the results of the Dec. 5 reaction needed to be analyzed and peer reviewed before an official announcement of the breakthrough, which is why it was not immediately publicized.

Said Granholm: “Ignition allows us to replicate for the first time certain conditions that are only found in the stars and sun. This milestone moves us one significant step closer to the possibility of zero carbon abundant fusion energy powering our society. This is what it looks like for America to lead, and we’re just getting started. If we can advance fusion energy, we could use it to produce clean electricity, transportation fuels, power, heavy industry and so much more.”

Nuclear power experts applauded Tuesday’s announcement, while acknowledging that progress in showing conceptual viability for fusion is just another stop on what most if not all think is a long scientific, technical, and financial road to commercializing this long-elusive technology.

“Today’s announcement from U.S. Department of Energy Secretary Jennifer Granholm marks a new milestone, decades in the making, in the tradition of American-led energy innovations,” said Josh Freed, senior vice president for the Climate and Energy Program. “The fusion breakthrough shows the vitality and dynamism in the U.S. clean energy ecosystem. Policymakers should lean into investments in innovation to supercharge technological breakthroughs across a suite of technologies that will be critical to reaching net zero. Each advance that we make in these areas of research creates strategic benefits that will boost U.S. competitiveness globally and spur economic growth domestically.

Freed continued: “American national laboratories have always reached for the stars, and today’s announcement exemplifies that is not just theoretical, but achievable. That’s worth celebrating.”

Engineering Marvel

“This is very important because from an energy perspective, it can’t be an energy source if you’re not getting out more energy than you’re putting in,” Julio Friedmann, chief scientist at Carbon Direct and a former chief energy technologist at Lawrence Livermore, told CNN. “Prior breakthroughs have been important but it’s not the same thing as generating energy that could one day be used on a larger scale.”

White House Office of Science and Technology Director Dr. Arati Prabhakar said during Tuesday’s news conference: “This is an amazing example of America’s enterprise … I want to congratulate the entire Dept. of Energy under Secretary Granholm’s leadership.” Prabhakar called the fusion net energy reaction “an engineering marvel.”

Said Prabhakar: “It’s a century since we figured out it was fusion that was going on in our sun and all the other stars. And in that century, it took so many different kinds of advances that ultimately came together to the point that we could replicate that fusion activity in a laboratory.”

Jill Hruby, under secretary for Nuclear Security for the DOE, and National Nuclear Security Administration administrator, said that “going forward,” the work on fusion will have further “breakthroughs” and “setbacks.” Hruby said her agency’s work is focused on “promoting national security” while “pushing towards … a clean energy future.” She called Tuesday’s announcement “unprecedented” for the scientific community.

The Process of Fusion

The process of fusion works when nuclei of two atoms are subjected to extreme heat of more than 100 million degrees Celsius—that’s 180 million degrees Fahrenheit. This causes the atoms to fuse into a new larger atom, which gives off massive amounts of energy. It’s the same process that powers the sun and the stars.

The process, though, also consumes enormous amounts of energy. A goal of fusion scientists has been to make the process self-sustaining, and most importantly to get more energy out of the process than it uses—hence, to produce net energy. It’s also a goal for the process to work continuously, instead of just for brief moments.

Reaching those goals could lead to commercialization of fusion, which industry experts have said could happen within the next decade, though they acknowledge it could take longer. What has many researchers excited is the potential to create essentially an unlimited supply of carbon-free energy, which could help fight climate change—and do it without the nuclear waste produced by today’s fission reactors.

“The fact that we were able to get more energy out than we put in provides an existence proof that this is possible,” said Mark Herrmann, program director for weapons physics and design at the Livermore lab. “It can be built on and improved upon and made better and could potentially be a source of energy in the future.”

Many Steps Needed

Successfully producing net energy, though, is just one of many steps needed to deliver the promise of fusion. The energy produced by fusion would need to be harvested, and then transferred to the power grid as electricity. Many scientists, even after Tuesday’s announcement, still say it will take years (some say decades) before fusion would be able to produce unlimited amounts of clean energy.

Tony Roulstone, a nuclear engineer at Cambridge University in the UK, told NPR (National Public Radio) that unless more significant progress is made, fusion would be unlikely to have a major role in power generation for another 40 to 50 years.

“I think the science is great,” said Roulstone, who has done an economic analysis of fusion power. “We don’t really know what the power plant would look like.”

Irina Tsukerman, a geopolitical analyst and president of Scarab Rising, a New York-based advisory company, told POWER that “fusion research needs better PR [public relations]. It is extremely underrated. So far, most of the energy-related focus has been on climate-related applications, such as carbon emission reduction. There is not a wide commercial awareness of potential fusion applications … so there is no significant private sector incentive to devote resources to that type of research, when the overall social push lies with other types of energy.”

Tsukerman said “stereotypes related to nuclear energy research in general” also have been a limiting factor for investment in fusion research. “If fusion is seen as ‘sexy’, safe, and spreading, it will take off just as anything that is seen as trendy and exciting has done up until now.” She continued: “There is also a great need for non-government actors to fund this space and to diversify the research in general.”

Global Research

There are several fusion projects ongoing in the U.S., as well as the UK and Europe. France is home to the International Thermonuclear Experimental Reactor, or ITER, a program in which 35 countries are collaborating. Those countries include the U.S., China, the European Union, Russia, South Korea, Japan, and India.

Much of the work in the U.S. is happening at the NIF at Lawrence Livermore, in a massive, 10-story-tall building the size of three U.S. football fields. The NIF opened in 2009, but many officials questioned the billions of dollars being poured into the project, which is researching what’s called “thermonuclear inertial fusion.” Scientists fire pellets containing hydrogen fuel (with two isotopes of hydrogen) into an array of 192 lasers, which essentially creates a series of very fast, repeated explosions at a rate of 50 times per second. The energy collected from the resulting neutrons and alpha particles is extracted as heat, as the isotopes of hydrogen fuse together and release massive amounts of energy.

“Unlike coal, you only need a small amount of hydrogen, and it is the most abundant thing found in the universe,” said Friedmann in his comments to CNN. “Hydrogen is found in water so the stuff that generates this energy is wildly unlimited and it is clean.”

In August 2021, physicists at Lawrence Livermore were able to “ignite” the hydrogen inside the capsule, which created a self-sustaining burn. Riccardo Betti, the chief scientist of the laboratory for laser energetics at the University of Rochester in New York, told NPR that the process is analogous to lighting gasoline. “You start with a little spark, and then the spark gets bigger and bigger and bigger, and then the burn propagates through.”

Researchers with the ITER project, and scientists in the UK, are working with tokamaks, large circular machines outfitted with giant magnets, to produce the same result as their U.S. counterparts. The tokamak confines plasma using magnetic fields in a donut shape that scientists call a torus. After fuel is put into a tokamak, its magnets are turned on. The temperatures inside are raised exponentially to create plasma. The plasma must reach at least 150 million degrees Celsius, which is 10 times hotter than the core of the sun. The neutrons then escape the plasma, hitting a so-called “blanket” lining the walls of the tokamak, and transferring their kinetic energy as heat.

 

Disinfecting lamp

#Product Trends

Disinfecting lamp

Uvio is a UVC germicidal disinfecting lamp that mounts to the top of any computer monitor.

The light shines onto the desktop for two hours every night to disinfect the keyboard, mouse and primary work area so they’re sanitized and virus-free for the next day’s use. Uvio is activated through a centrally controlled, programmable encrypted WiFi app, which users set up one time to actuate all Uvio lights in the organization.

UVIO

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New York Bridal Fashion Week 2023

New York Bridal Fashion Week: the trade show

The Knot COUTURE lets me really interact with the gowns and the
designers. I get to touch and feel the fabric and really see the
gorgeous details up close. And my favorite part is talking to the
designers and hearing their inspiration behind the collection.

Event profile New York Bridal Fashion Week

  • Industries: Brides, Wedding dresses, Fashion catwalks, Fashion
  • Frequency: anual
  • Scope: Nacional

Next edition New York Bridal Fashion Week

  • From Tuesday 11 to Thursday 13 April 2023
  • Venue:
    2684-2690 Gold Coast Hwy
  • City: New York
  • Country: United States
  • More info.: fashionweekonline.com

New York Bridal Fashion Week editions

New York Bridal Fashion Week 2023 From 11 to 13 April 2023
New York Bridal Fashion Week 2020 From 18 to 20 April 2020
New York Bridal Fashion Week 2019 From 6 to 8 October 2019
New York Bridal Fashion Week 2018 From 7 to 9 October 2018

Keyword: hype culture

Mitteldeutsche Mode Messe February 2024

Mitteldeutsche Mode Messe: the trade show

The Central German Fashion Fair in combination with the MMC Kids Collections under the umbrella of MMC Mitteldeutsches Modecenter brand.

Event profile Mitteldeutsche Mode Messe

  • Industries: Clothing, Fashion
  • Frequency: semestral
  • Scope: Nacional

Next edition Mitteldeutsche Mode Messe

  • From Saturday 10 to Sunday 18 February 2024
  • Venue:
    Globana Trade Center Leipzig/Halle
  • City: Schkeuditz
  • Country: Germany

Mitteldeutsche Mode Messe editions

Mitteldeutsche Mode Messe February 2024 From 10 to 18 February 2024 Globana Trade Center Leipzig/Halle
Mitteldeutsche Mode Messe August 2023 6 August 2023 Globana Trade Center Leipzig/Halle
Mitteldeutsche Mode Messe February 2022 From 5 to 7 February 2022 MMC Mitteldeutsches Mode Center
Mitteldeutsche Mode Messe November 2021 5 November 2021 MMC Mitteldeutsches Mode Center