diff --git a/packages/readabilityjs/Readability.js b/packages/readabilityjs/Readability.js index e71da9804..6a3f64ea6 100644 --- a/packages/readabilityjs/Readability.js +++ b/packages/readabilityjs/Readability.js @@ -171,7 +171,7 @@ Readability.prototype = { // Readability-readerable.js. Please keep both copies in sync. articleNegativeLookBehindCandidates: /breadcrumbs|breadcrumb|utils|trilist/i, articleNegativeLookAheadCandidates: /outstream(.?)_|sub(.?)_|m_|omeda-promo-|in-article-advert|block-ad-.*/i, - unlikelyCandidates: /-ad-|ai2html|banner|breadcrumbs|breadcrumb|combx|comment|community|cover-wrap|disqus|extra|footer|gdpr|header|legends|menu|related|remark|replies|rss|shoutbox|sidebar|skyscraper|social|sponsor|supplemental|ad-break|agegate|pagination|pager(?!ow)|popup|yom-remote|copyright|keywords|outline|infinite-list|beta|recirculation|site-index|hide-for-print|post-end-share-cta|post-end-cta-full|post-footer|main-navigation|programtic-ads|outstream_article|hfeed|comment-holder|back-to-top|show-up-next|onward-journey|topic-tracker|list-nav|block-ad-entity|adSpecs/i, + unlikelyCandidates: /\bad\b|ai2html|banner|breadcrumbs|breadcrumb|combx|comment|community|cover-wrap|disqus|extra|footer|gdpr|header|legends|menu|related|remark|replies|rss|shoutbox|sidebar|skyscraper|social|sponsor|supplemental|ad-break|agegate|pagination|pager(?!ow)|popup|yom-remote|copyright|keywords|outline|infinite-list|beta|recirculation|site-index|hide-for-print|post-end-share-cta|post-end-cta-full|post-footer|main-navigation|programtic-ads|outstream_article|hfeed|comment-holder|back-to-top|show-up-next|onward-journey|topic-tracker|list-nav|block-ad-entity|adSpecs/i, // okMaybeItsACandidate: /and|article(?!-breadcrumb)|body|column|content|main|shadow|post-header/i, get okMaybeItsACandidate() { return new RegExp(`and|(? -
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Seoul-headquartered PV solar-cell manufacturing giant Q Cells today announced that it’s opening a new solar panel manufacturing facility in Dalton, Georgia.

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Georgia solar panel manufacturing grows again

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It’s a $171 million expansion of Q Cells’ existing solar module manufacturing plant in Dalton, and that will create 470 additional jobs. Total local Q Cells employees will exceed 1,000 when the expansion is complete.

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Groundbreaking is planned for fall 2022 and operation is expected to commence within the first half of 2023.

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This latest domestic solar manufacturing expansion will boost production of advanced photovoltaic (PV) modules, and that will help the US work move toward its goal of decarbonizing the electric grid.

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The new facility will produce 1.4 gigawatts (GW) of solar modules per year made with Q Cells’ next-gen PV cells, a high-efficiency tunnel oxide passivated contact technology better known as TOPCon.

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Combined with the existing 1.7-GW factory, the expansion will bring Q Cells’ total capacity in the US to 3.1 GW; that’s equivalent to one-third of the country’s solar module manufacturing capacity.

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Qcells CEO Justin Lee said:

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Georgia has become the clean energy manufacturing heart of America, and we are proud to contribute to the state’s advanced manufacturing economy.

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Q Cells has the largest market share in the US commercial and residential markets and also supplies the utility-scale solar sector.

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Senator Jon Ossoff (D-GA) met with Q Cells’ parent company Hanwha in Seoul last year and has been actively pitching and securing additional clean energy investment in Georgia.

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Georgia solar manufacturing -

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Seoul-headquartered PV solar-cell manufacturing giant Q Cells today announced that it’s opening a new solar panel manufacturing facility in Dalton, Georgia.

-

Georgia solar panel manufacturing grows again

-

It’s a $171 million expansion of Q Cells’ existing solar module manufacturing plant in Dalton, and that will create 470 additional jobs. Total local Q Cells employees will exceed 1,000 when the expansion is complete.

-

Groundbreaking is planned for fall 2022 and operation is expected to commence within the first half of 2023.

-

This latest domestic solar manufacturing expansion will boost production of advanced photovoltaic (PV) modules, and that will help the US work move toward its goal of decarbonizing the electric grid.

-

The new facility will produce 1.4 gigawatts (GW) of solar modules per year made with Q Cells’ next-gen PV cells, a high-efficiency tunnel oxide passivated contact technology better known as TOPCon.

-

Combined with the existing 1.7-GW factory, the expansion will bring Q Cells’ total capacity in the US to 3.1 GW; that’s equivalent to one-third of the country’s solar module manufacturing capacity.

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Qcells CEO Justin Lee said:

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Georgia has become the clean energy manufacturing heart of America, and we are proud to contribute to the state’s advanced manufacturing economy.

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Q Cells has the largest market share in the US commercial and residential markets and also supplies the utility-scale solar sector.

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Senator Jon Ossoff (D-GA) met with Q Cells’ parent company Hanwha in Seoul last year and has been actively pitching and securing additional clean energy investment in Georgia.

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Ossoff also recently helped secure Hyundai’s investment in electric vehicles that will create over 8,000 jobs in Bryan County.

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Washington, Georgia, embraces solar

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Also in Georgia, WeSolar CSP, a minority-owned renewable energy tech and design company headquartered in Princeton, New Jersey, will design a solar farm along with a microgrid that will supply the City of Washington, Georgia, that will replace natural gas use. Washington is 90 miles east of Atlanta and has a population of around 4,000.

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The project will comprise both solar panels and a concentrating solar-thermal power (CSP) technology.

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WeSolar CSP’s CEO, Steve Anglin, said:

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The citizens of the City of Washington will benefit by having a cleaner environment and experiencing price certainty in the face of the ever-increasing energy costs of fossil fuels.

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- Read more: - Here are 3 vital insights installers shared about the state of solar in 2021 -

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Photo: Hanwha Q Cells

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- UnderstandSolar is a free service that links you to top-rated solar installers in your region for personalized solar estimates. Tesla now offers price matching, so it’s important to shop for the best quotes. Click here to learn more and get your quotes. — *ad. -

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- FTC: We use income earning auto affiliate links. - More. -

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- Subscribe to Electrek on YouTube for exclusive videos and subscribe to the podcast. - -

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About the Author

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- - Michelle Lewis - -

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- @michelle0728 -

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Michelle Lewis is a writer and editor on Electrek and an editor on DroneDJ, 9to5Mac, and 9to5Google. She lives in White River Junction, Vermont. She has previously worked for Fast Company, the Guardian, News Deeply, Time, and others. Message Michelle on Twitter or at michelle@9to5mac.com. Check out her personal blog.

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Michelle Lewis's favorite gear

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Ossoff also recently helped secure Hyundai’s investment in electric vehicles that will create over 8,000 jobs in Bryan County.

+

Washington, Georgia, embraces solar

+

Also in Georgia, WeSolar CSP, a minority-owned renewable energy tech and design company headquartered in Princeton, New Jersey, will design a solar farm along with a microgrid that will supply the City of Washington, Georgia, that will replace natural gas use. Washington is 90 miles east of Atlanta and has a population of around 4,000.

+

The project will comprise both solar panels and a concentrating solar-thermal power (CSP) technology.

+

WeSolar CSP’s CEO, Steve Anglin, said:

+
+

The citizens of the City of Washington will benefit by having a cleaner environment and experiencing price certainty in the face of the ever-increasing energy costs of fossil fuels.

+
+

+ Read more: + Here are 3 vital insights installers shared about the state of solar in 2021 +

+

Photo: Hanwha Q Cells

+
+

+ UnderstandSolar is a free service that links you to top-rated solar installers in your region for personalized solar estimates. Tesla now offers price matching, so it’s important to shop for the best quotes. Click here to learn more and get your quotes. — *ad. +

+
+

+ Subscribe to Electrek on YouTube for exclusive videos and subscribe to the podcast. + +

+

+ +

\ No newline at end of file diff --git a/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected-metadata.json b/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected-metadata.json index 558326a85..5fbd4060d 100644 --- a/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected-metadata.json +++ b/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected-metadata.json @@ -4,7 +4,9 @@ "dir": null, "excerpt": "With industry in massive period of flux, some think Canada has an opportunity to build on its innovation legacy and stake a claim in the global tech shakeout", "siteName": "Financial Post", + "siteIcon": "https://dcs-static.prod.postmedia.digital/6.3.3/websites/images/fp/favicon-fp.ico", "previewImage": "https://smartcdn.prod.postmedia.digital/financialpost/wp-content/uploads/2021/04/vw0429semiconductor.jpg", - "publishedDate": "2021-04-29T18:30:00.000Z", + "publishedDate": "2021-04-29T16:00:00.000Z", + "language": "English", "readerable": true } diff --git a/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected.html b/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected.html index 37971e076..74f531fe1 100644 --- a/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected.html +++ b/packages/readabilityjs/test/test-pages/financialpost-fishing-for-chips/expected.html @@ -1,5 +1,5 @@ -
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With industry in massive period of flux, some think Canada has an opportunity to build on its innovation legacy and stake a claim in the global tech shakeout

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- - - - - A microchip manufactured by NXP Semiconductors NV, on a printed circuit board (PCB) at CSI Electronic Manufacturing Services Ltd. in Witham, U.K. + + + + + A microchip manufactured by NXP Semiconductors NV, on a printed circuit board (PCB) at CSI Electronic Manufacturing Services Ltd. in Witham, U.K.
A microchip manufactured by NXP Semiconductors NV, on a printed circuit board (PCB) at CSI Electronic Manufacturing Services Ltd. in Witham, U.K. Photo by Chris Ratcliffe/Bloomberg @@ -27,21 +27,15 @@

“We started work on development of a new technology, a new detector, that can in real time detect the presence of bacteria and viruses in the air,” she said. “We are building a new optical system and we are miniaturizing what is available into a much smaller form … or the size of the device.”

She holds up a small box, not much bigger than a flash drive, which houses the semiconductor she and her team designed. It may be small, but if Canada hopes to carve out a spot in the upheaval roiling the competitive global semiconductor market dominated by the United States and Asia, its best hope may lie with people such as 34-year-old Mykhaylova.

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Natalia Mykhaylova, founder of Toronto-based WeavAir, couldn’t find a semiconductor that would do what customers were asking for. So she and her team built it. Photo by WeavAir @@ -51,12 +45,6 @@

Demand for consumer electronics and the semiconductors that power them has skyrocketed during the pandemic, further pressuring supplies needed for computers and sensors in the automobile industry, causing massive disruptions. As a result, losses could end up in the billions of dollars and manufacturers in Canada have not been immune. In February, a General Motors Co. plant in Ingersoll, Ont., was idled by the chip shortage, with more than 1,000 workers eligible to collect layoff benefits.

Given the impact across North America, the U.S. has pledged to reclaim ground lost to semiconductor technology and manufacturing powerhouses in Asia, and there is a growing cadre of of professionals in the sector who believe Canada, too, has an opportunity to stake a claim in the global tech shakeout — building on a legacy of innovation dating back to the heyday of Nortel Networks Corp. in the 1990s.

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The Ottawa-based company was once a semiconductor manufacturer, but those operations were sold to Geneva-based STMicroelectronics International N.V. for about $100 million in 2000. Other Canadian high-flyers in the sector before the dot-com bust that year were Mitel Networks Corp. and JDS Uniphase Corp.

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Ng was on hand in March when the government announced nearly $5 million in funding for Markham, Ont.-based ventureLAB’s Hardware Catalyst Initiative, Canada’s first silicon incubator. She said the decision to invest was easy, given the plan to accelerate the commercialization of homegrown companies that can compete globally in sectors including health care, consumer electronics, telecommunications, smart energy and transportation.

VentureLAB has received $13 million in combined government and corporate funding, and Ng noted there is built-in Canada-U.S. cooperation through a partnership with Silicon Catalyst, the world’s largest incubator for semiconductor startups, which is based in Silicon Valley.

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“The development of these startups and these scale-ups presents an opportunity,” she said, adding that the government is committed to “ensuring that growth is anchored in Canada as they scale and pursue opportunities in the international marketplace.”

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Melissa Chee, VentureLab’s chief executive, said she believes Canada can develop a hardware industry by scaling up startups and tapping the talent in world-recognized science, math, and technology programs at Canadian universities.

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Melissa Chee, VentureLab’s chief executive. Photo by VentureLab @@ -95,12 +77,6 @@

Investing now could, in turn, also make Canada a more appealing place for international chip companies to do business, Chee said. The efforts have already attracted Nuvia Inc., a Santa Clara, Calif.-based silicon design company founded by some of the brains behind the chips that power Apple devices, which, on the heels of raising US$240 million, opened its first international office last year in the Greater Toronto Area.

Chee is fond of quoting a figure from the California-based Semiconductor Industry Association that states each semiconductor job creates almost five indirect jobs in a global industry that generates US$7 trillion in economic activity.

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“That’s a very high multiplier. These are highly technical and advanced manufacturing skill sets, so very important for Canada,” she said, adding that these jobs are integral to expanding the green economy including electric cars.  “I think it really underpins the key sectors we care about … that’s all based on electronics and semiconductors.”

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Canada’s revenue from semiconductor and other electronic component manufacturing is projected to grow to US$3.8 billion dollars by 2024, according to Statistica.com. By comparison, Taiwan Semiconductor Manufacturing Co., the world’s biggest chipmaker, raked in revenue of US$47.78 billion in 2020.

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The logo of Taiwan Semiconductor Manufacturing Co (TSMC) is pictured at its headquarters, in Hsinchu, Taiwan. Photo by Ann Wang/Reuters files @@ -121,12 +97,6 @@

Despite the small size of Canada’s manufacturing base, Chee thinks Canada could eventually grow a large enough industry presence to attract a foundry expansion from Asia, with others suggesting this would provide proximity to the North American market without having to locate in the U.S., where contentious issues including national security have made commercial and trade relations tense in recent years.

But Gordon Harling, a longtime industry player who worked as an engineer at Novatel Communications Ltd. and in research and development at the semiconductor division of Mitel Networks, said Canada gave up the opportunity to stake a claim in large-scale semiconductor and hardware manufacturing more than two decades ago.

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That’s when he sold Goal Semiconductor Inc., a Montreal-based company he founded, to Taiwanese company Mosel Vitelic Inc., which planned — along with Quebec’s Société générale de financement — to build a multi-billion-dollar microchip wafer manufacturing plant in the province. However, the project failed to secure funding from Ottawa and Quebec, and Harling said the cost of such an undertaking has only skyrocketed since then. What’s more, he said, chips are constantly getting smaller, making the expensive manufacturing facilities obsolete in about 10 years.

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But instead of trying to compete in what Harling called “commodity” semiconductors, Canada should focus on building niche specialty products, said the chief executive of CMC Microsystems, a not-for-profit that creates and then shares platforms to reduce costs and speed up technology development and adoption.

For example, photonics, which use light to do functions usually carried out by electronics, as well as mechanical sensors (MEMS) and quantum devices.

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This isn’t the kind of chip technology that drives the main computer in a car, Harling said, but it has specialty applications including optical data communication, lighting and displays, which can be used in sectors including manufacturing, telecommunications and health sciences.

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Specialized sensors are integral to the automotive industry for the operation of in-car displays, air bags, radar, tire pressure gauges and the like. Silicon photonics can also be used to carry video signals to seat backs in commercial aircraft and eliminates electromagnetic interference with flight systems.

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Semiconductors power robotics and other functions at Urban Stalk, a Hamilton, Ont.-based start-up moving agriculture from fields to city centres. Photo by Courtesy Urban Stalk @@ -162,12 +126,6 @@

Harling said the tech’s versatility makes an ideal investment beachhead for Canada to stake a claim in the ongoing chip sector shake-up.

To that end, CMC is getting ready to pitch a five-year, $140-million plan to federal and provincial governments that, if funded, would focus on photonics, mechanical sensors and quantum devices, from research and development through to the building of manufacturing capacity and a supply chain to commercialize made-in-Canada components and systems.

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“All of these technologies are (used) to create advanced components and all are necessary in multiple applications,” Harling said, adding that they require many of the same highly qualified personnel skills, the same “clean room” facilities and similar equipment and processes.

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Trending

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This Week in Flyers

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\ No newline at end of file + + \ No newline at end of file diff --git a/packages/readabilityjs/test/test-pages/ottawacitizen.com/expected.html b/packages/readabilityjs/test/test-pages/ottawacitizen.com/expected.html index c112afa29..4d2096291 100644 --- a/packages/readabilityjs/test/test-pages/ottawacitizen.com/expected.html +++ b/packages/readabilityjs/test/test-pages/ottawacitizen.com/expected.html @@ -18,18 +18,12 @@

Canadian special forces are in Ukraine as part of a NATO network to provide weapons, training and gather intelligence about the Russians, the New York Times is reporting.

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Neither the Department of National Defence nor the office of Defence Minister Anita Anand would comment on the report published Saturday that noted a few dozen commandos from NATO countries, including Britain, France, Canada and Lithuania, had been working inside Ukraine. The United States withdrew its own 150 military instructors before the war began in February.

But the New York Times, citing three U.S. officials, reported that special forces from the NATO countries either remained or had gone in and out of Ukraine since then, training and advising Ukrainian troops and providing an on-the-ground conduit for weapons and other aid.

U.S. special forces have also established a coalition planning cell in Germany to co-ordinate military assistance to Ukrainian commandos and other Ukrainian troops, the New York Times reported. The cell, which has grown to 20 nations, is modelled after a similar structure the U.S. and its NATO allies used in Afghanistan.

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U.S. Army Secretary Christine E. Wormuth has confirmed the cell provides intelligence and co-ordination for the flow of NATO weapons into Ukraine, allowing such convoys to avoid Russian attacks.

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The Liberal government is strongly supportive of Ukraine. It is still in discussions with South Korea to purchase 100,000 artillery shells for Ukraine in a deal that could cost Canadian taxpayers several hundred million dollars.

The Liberal government already spent $98 million to buy 20,000 similar artillery rounds from the U.S. for Ukraine. In addition, it has provided Ukraine with Canadian Forces M777 artillery guns that can use the 155-millimetre ammunition.

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Besides artillery, Canada has shipped Carl Gustaf anti-tank systems, grenades and drone cameras to Ukraine. In February, it also sent a shipment that included .50-calibre sniper rifles equipped with silencers, 60-millimetre mortars, grenade launchers, pistols, ammunition, thermal-imaging binoculars, cameras, scopes and medical supplies. The equipment was enough to equip a force of between 500 and 600 personnel. The shipment also included C6 and C9 machine guns, which are used by the Canadian Forces.

NATO nations have been sending large amounts of weapons to Ukraine since the Feb. 24 invasion of that country by Russia. Some NATO officials view the war as an opportunity to either force regime change in Russia or to seriously weaken that country militarily.

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On May 9, Lithuanian Foreign Minister Gabrielius Landsbergis told the Associated Press that removing Russian President Vladimir Putin from power was the only way to protect the West and its allies from future threats. Landsbergis noted that not only Putin must be removed, but also all members of his inner circle.