乾電池電極(DBE)技術-世界市場シェア・ランキング、全体売上・需要予測 2024-2030Dry Battery Electrode (DBE) Technology- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030 乾電池電極(DBE)技術の世界市場規模は、2023年に2270万米ドルと推定され、予測期間2024-2030年のCAGRは135.75%で、2030年には74億1332万米ドルに再調整されると予測されている。 乾電池電極(DBE)技術の北米... もっと見る
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サマリー乾電池電極(DBE)技術の世界市場規模は、2023年に2270万米ドルと推定され、予測期間2024-2030年のCAGRは135.75%で、2030年には74億1332万米ドルに再調整されると予測されている。乾電池電極(DBE)技術の北米市場は、2023年に1,752万ドルと評価され、2024年から2030年の予測期間中に128.61%のCAGRで、2030年までに49億2,561万ドルに達すると予測される。 乾電池電極(DBE)技術のアジア太平洋市場は、2023年に252万ドルと評価され、2024年から2030年の予測期間中に174.43%のCAGRで、2030年までに18億5808万ドルに達するだろう。 乾電池電極(DBE)技術の欧州市場は、2023年に266万ドルと評価され、2024年から2030年の予測期間中に125.23%のCAGRで、2030年までに5億6,393万ドルに達するだろう。 乾電池電極(DBE)技術の世界の主要企業は、テスラ、LiCAP Technologies、LG、Sakuu、LG、AM Batteriesなどである。2023年には、世界の大手5社が売上高で約94.80%のシェアを占めている。 本レポートでは、乾式電池電極(DBE)技術の世界市場について、地域別・国別、タイプ別、用途別の分析とともに、総売上高、主要企業の市場シェア、ランキングを中心に包括的に紹介することを目的としています。 乾電池電極(DBE)技術の市場規模、推計、予測は、2023年を基準年とし、2019年から2030年までの期間の履歴データと予測データを売上高(百万ドル)で提供しています。定量分析および定性分析により、読者がビジネス/成長戦略を策定し、市場競争状況を評価し、現在の市場における自社のポジションを分析し、乾電池電極(DBE)技術に関する十分な情報に基づいたビジネス上の意思決定を行えるよう支援します。 市場区分 企業別 テスラ リキャップ・テクノロジーズ サクー LG AMバッテリー ツィンヤン・エレクトロニック パナソニック パワーコ タイプ別セグメント 粘着フィブリル化法 スプレー方式 用途別セグメント パワーバッテリー エネルギー貯蔵システム(ESS) その他 地域別 北米 米国 カナダ メキシコ アジア太平洋 中国 日本 韓国 東南アジア インド その他のアジア太平洋地域 欧州 ドイツ フランス 英国 イタリア ロシア その他のヨーロッパ 南米 ブラジル その他の南米諸国 中東・アフリカ 中東 目次1 Market Overview 11.1 Dry Battery Electrode (DBE) Technology Product Introduction 1 1.2 Global Dry Battery Electrode (DBE) Technology Market Size Forecast (2019-2030) 1 1.3 Dry Battery Electrode (DBE) Technology Market Trends & Drivers 3 1.3.1 Dry Battery Electrode (DBE) Technology Industry Trends 3 1.3.2 Dry Battery Electrode (DBE) Technology Market Drivers & Opportunity 4 1.3.3 Dry Battery Electrode (DBE) Technology Market Challenges 5 1.3.4 Dry Battery Electrode (DBE) Technology Market Restraints 5 1.4 Assumptions and Limitations 5 1.5 Study Objectives 6 1.6 Years Considered 7 2 Competitive Analysis by Company 8 2.1 Global Dry Battery Electrode (DBE) Technology Players Revenue Ranking (2023) 8 2.2 Global Dry Battery Electrode (DBE) Technology Revenue by Company (2019-2024) 9 2.3 Key Companies Dry Battery Electrode (DBE) Technology Manufacturing Base Distribution and Headquarters 10 2.4 Key Companies of Dry Battery Electrode (DBE) Technology, Establish Date 10 2.5 Dry Battery Electrode (DBE) Technology Market Competitive Analysis 11 2.5.1 Dry Battery Electrode (DBE) Technology Market Concentration Rate (2019-2024) 11 2.5.2 Global 3 and 5 Largest Companies by Dry Battery Electrode (DBE) Technology Revenue in 2023 12 2.6 Mergers & Acquisitions, Expansion 13 3 Segmentation by Type 15 3.1 Introduction by Type 15 3.1.1 Adhesive Fibrillation Method 15 3.1.2 Spraying Method 15 3.2 Global Dry Battery Electrode (DBE) Technology Revenue by Type 16 3.2.1 Global Dry Battery Electrode (DBE) Technology Revenue by Type (2019 VS 2023 VS 2030) 17 3.2.2 Global Dry Battery Electrode (DBE) Technology Revenue, by Type (2019-2030) 19 3.2.3 Global Dry Battery Electrode (DBE) Technology Revenue, by Type (%) (2019-2030) 19 4 Segmentation by Application 21 4.1 Introduction by Application 21 4.1.1 Power Battery 21 4.1.2 Energy Storage Systems (ESS) 21 4.1.3 Other 22 4.2 Global Dry Battery Electrode (DBE) Technology Revenue by Application 22 4.2.1 Global Dry Battery Electrode (DBE) Technology Revenue by Application (2019 VS 2023 VS 2030) 23 4.2.2 Global Dry Battery Electrode (DBE) Technology Revenue, by Application (2019-2030) 25 4.2.3 Global Dry Battery Electrode (DBE) Technology Revenue, by Application (%) (2019-2030) 25 5 Segmentation by Region 27 5.1 Global Dry Battery Electrode (DBE) Technology Revenue by Region 27 5.1.1 Global Dry Battery Electrode (DBE) Technology Revenue by Region: 2019 VS 2023 VS 2030 27 5.1.2 Global Dry Battery Electrode (DBE) Technology Revenue by Region (2019-2024) 28 5.1.3 Global Dry Battery Electrode (DBE) Technology Revenue by Region (2025-2030) 28 5.1.4 Global Dry Battery Electrode (DBE) Technology Revenue by Region (%), (2019-2030) 29 5.2 North America 30 5.2.1 North America Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 30 5.2.2 North America Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2023 VS 2030 31 5.3 Europe 32 5.3.1 Europe Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 32 5.3.2 Europe Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2023 VS 2030 33 5.4 Asia Pacific 34 5.4.1 Asia Pacific Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 34 5.4.2 Asia Pacific Dry Battery Electrode (DBE) Technology Revenue by Region (%), 2023 VS 2030 35 5.5 South America 36 5.5.1 South America Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 36 5.5.2 South America Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2030 37 5.6 Middle East & Africa 38 5.6.1 Middle East & Africa Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 38 5.6.2 Middle East & Africa Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2030 39 6 Segmentation by Key Countries/Regions 40 6.1 Key Countries/Regions Dry Battery Electrode (DBE) Technology Revenue Growth Trends, 2019 VS 2023 VS 2030 40 6.2 Key Countries/Regions Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 41 6.3 United States 44 6.3.1 United States Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 44 6.3.2 United States Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 45 6.3.3 United States Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 46 6.4 Europe 47 6.4.1 Europe Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 47 6.4.2 Europe Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 48 6.4.3 Europe Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 49 6.5 China 50 6.5.1 China Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 50 6.5.2 China Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 51 6.5.3 China Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 52 6.6 Japan 53 6.6.1 Japan Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 53 6.6.2 Japan Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 54 6.6.3 Japan Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 55 6.7 South Korea 56 6.7.1 South Korea Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 56 6.7.2 South Korea Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 57 6.7.3 South Korea Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 58 6.8 Southeast Asia 59 6.8.1 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 59 6.8.2 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2030 60 6.8.3 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue by Application, 2030 61 6.9 India 62 6.9.1 India Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 62 6.9.2 India Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2030 63 6.9.3 India Dry Battery Electrode (DBE) Technology Revenue by Application, 2030 64 7 Company Profiles 65 7.1 Tesla 65 7.1.1 Tesla Profile 65 7.1.2 Tesla Main Business 66 7.1.3 Tesla Dry Battery Electrode (DBE) Technology Products, Services and Solutions 66 7.1.4 Tesla Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 67 7.1.5 Tesla Recent Developments 68 7.2 LiCAP Technologies 69 7.2.1 LiCAP Technologies Profile 69 7.2.2 LiCAP Technologies Main Business 70 7.2.3 LiCAP Technologies Dry Battery Electrode (DBE) Technology Products, Services and Solutions 70 7.2.4 LiCAP Technologies Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 72 7.2.5 LiCAP Technologies Recent Developments 72 7.3 Sakuu 73 7.3.1 Sakuu Profile 74 7.3.2 Sakuu Main Business 74 7.3.3 Sakuu Dry Battery Electrode (DBE) Technology Products, Services and Solutions 75 7.3.4 Sakuu Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 77 7.3.5 Sakuu Recent Developments 77 7.4 LG 77 7.4.1 LG Profile 78 7.4.2 LG Main Business 78 7.4.3 LG Dry Battery Electrode (DBE) Technology Products, Services and Solutions 79 7.4.4 LG Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 80 7.4.5 LG Recent Developments 80 7.5 AM Batteries 81 7.5.1 AM Batteries Profile 81 7.5.2 AM Batteries Main Business 82 7.5.3 AM Batteries Dry Battery Electrode (DBE) Technology Products, Services and Solutions 82 7.5.4 AM Batteries Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 84 7.5.5 AM Batteries Recent Developments 84 7.6 Tsingyan Electronic 85 7.6.1 Tsingyan Electronic Profile 85 7.6.2 Tsingyan Electronic Main Business 86 7.6.3 Tsingyan Electronic Dry Battery Electrode (DBE) Technology Products, Services and Solutions 86 7.6.4 Tsingyan Electronic Recent Developments 87 7.7 Panasonic 88 7.7.1 Panasonic Profile 88 7.7.2 Panasonic Main Business 89 7.7.3 Panasonic Dry Battery Electrode (DBE) Technology Products, Services and Solutions 89 7.7.4 Panasonic Recent Developments 90 7.8 PowerCO 91 7.8.1 PowerCO Profile 91 7.8.2 PowerCO Main Business 91 7.8.3 PowerCO Dry Battery Electrode (DBE) Technology Products, Services and Solutions 92 7.8.4 PowerCO Recent Developments 93 8 Industry Chain and Technology Analysis 94 8.1 Dry Battery Electrode (DBE) Technology Industrial Chain 94 8.2 Dry Battery Electrode (DBE) Technology Upstream Analysis 95 8.2.1 Key Raw Materials 95 8.2.2 Raw Materials Key Suppliers 95 8.3 Dry Method Binders and Their Properties Analysis 96 8.4 DBE Procedures Analysis 97 8.5 Dry Coating Procedure Analysis 97 8.6 Advantages of Dry Battery Electrode (DBE) Technology Analysis 99 9 Research Findings and Conclusion 100 10 Appendix 102 10.1 Research Methodology 102 10.1.1 Methodology/Research Approach 102 10.1.2 Data Source 105 10.2 Author Details 108 10.3 Disclaimer 109
SummaryThe global market for Dry Battery Electrode (DBE) Technology was estimated to be worth US$ 22.70 million in 2023 and is forecast to a readjusted size of US$ 7,413.32 million by 2030 with a CAGR of 135.75% during the forecast period 2024-2030. Table of Contents1 Market Overview 11.1 Dry Battery Electrode (DBE) Technology Product Introduction 1 1.2 Global Dry Battery Electrode (DBE) Technology Market Size Forecast (2019-2030) 1 1.3 Dry Battery Electrode (DBE) Technology Market Trends & Drivers 3 1.3.1 Dry Battery Electrode (DBE) Technology Industry Trends 3 1.3.2 Dry Battery Electrode (DBE) Technology Market Drivers & Opportunity 4 1.3.3 Dry Battery Electrode (DBE) Technology Market Challenges 5 1.3.4 Dry Battery Electrode (DBE) Technology Market Restraints 5 1.4 Assumptions and Limitations 5 1.5 Study Objectives 6 1.6 Years Considered 7 2 Competitive Analysis by Company 8 2.1 Global Dry Battery Electrode (DBE) Technology Players Revenue Ranking (2023) 8 2.2 Global Dry Battery Electrode (DBE) Technology Revenue by Company (2019-2024) 9 2.3 Key Companies Dry Battery Electrode (DBE) Technology Manufacturing Base Distribution and Headquarters 10 2.4 Key Companies of Dry Battery Electrode (DBE) Technology, Establish Date 10 2.5 Dry Battery Electrode (DBE) Technology Market Competitive Analysis 11 2.5.1 Dry Battery Electrode (DBE) Technology Market Concentration Rate (2019-2024) 11 2.5.2 Global 3 and 5 Largest Companies by Dry Battery Electrode (DBE) Technology Revenue in 2023 12 2.6 Mergers & Acquisitions, Expansion 13 3 Segmentation by Type 15 3.1 Introduction by Type 15 3.1.1 Adhesive Fibrillation Method 15 3.1.2 Spraying Method 15 3.2 Global Dry Battery Electrode (DBE) Technology Revenue by Type 16 3.2.1 Global Dry Battery Electrode (DBE) Technology Revenue by Type (2019 VS 2023 VS 2030) 17 3.2.2 Global Dry Battery Electrode (DBE) Technology Revenue, by Type (2019-2030) 19 3.2.3 Global Dry Battery Electrode (DBE) Technology Revenue, by Type (%) (2019-2030) 19 4 Segmentation by Application 21 4.1 Introduction by Application 21 4.1.1 Power Battery 21 4.1.2 Energy Storage Systems (ESS) 21 4.1.3 Other 22 4.2 Global Dry Battery Electrode (DBE) Technology Revenue by Application 22 4.2.1 Global Dry Battery Electrode (DBE) Technology Revenue by Application (2019 VS 2023 VS 2030) 23 4.2.2 Global Dry Battery Electrode (DBE) Technology Revenue, by Application (2019-2030) 25 4.2.3 Global Dry Battery Electrode (DBE) Technology Revenue, by Application (%) (2019-2030) 25 5 Segmentation by Region 27 5.1 Global Dry Battery Electrode (DBE) Technology Revenue by Region 27 5.1.1 Global Dry Battery Electrode (DBE) Technology Revenue by Region: 2019 VS 2023 VS 2030 27 5.1.2 Global Dry Battery Electrode (DBE) Technology Revenue by Region (2019-2024) 28 5.1.3 Global Dry Battery Electrode (DBE) Technology Revenue by Region (2025-2030) 28 5.1.4 Global Dry Battery Electrode (DBE) Technology Revenue by Region (%), (2019-2030) 29 5.2 North America 30 5.2.1 North America Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 30 5.2.2 North America Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2023 VS 2030 31 5.3 Europe 32 5.3.1 Europe Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 32 5.3.2 Europe Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2023 VS 2030 33 5.4 Asia Pacific 34 5.4.1 Asia Pacific Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 34 5.4.2 Asia Pacific Dry Battery Electrode (DBE) Technology Revenue by Region (%), 2023 VS 2030 35 5.5 South America 36 5.5.1 South America Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 36 5.5.2 South America Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2030 37 5.6 Middle East & Africa 38 5.6.1 Middle East & Africa Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 38 5.6.2 Middle East & Africa Dry Battery Electrode (DBE) Technology Revenue by Country (%), 2030 39 6 Segmentation by Key Countries/Regions 40 6.1 Key Countries/Regions Dry Battery Electrode (DBE) Technology Revenue Growth Trends, 2019 VS 2023 VS 2030 40 6.2 Key Countries/Regions Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 41 6.3 United States 44 6.3.1 United States Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 44 6.3.2 United States Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 45 6.3.3 United States Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 46 6.4 Europe 47 6.4.1 Europe Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 47 6.4.2 Europe Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 48 6.4.3 Europe Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 49 6.5 China 50 6.5.1 China Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 50 6.5.2 China Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 51 6.5.3 China Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 52 6.6 Japan 53 6.6.1 Japan Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 53 6.6.2 Japan Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 54 6.6.3 Japan Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 55 6.7 South Korea 56 6.7.1 South Korea Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 56 6.7.2 South Korea Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2023 VS 2030 57 6.7.3 South Korea Dry Battery Electrode (DBE) Technology Revenue by Application, 2023 VS 2030 58 6.8 Southeast Asia 59 6.8.1 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 59 6.8.2 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2030 60 6.8.3 Southeast Asia Dry Battery Electrode (DBE) Technology Revenue by Application, 2030 61 6.9 India 62 6.9.1 India Dry Battery Electrode (DBE) Technology Revenue, 2019-2030 62 6.9.2 India Dry Battery Electrode (DBE) Technology Revenue by Type (%), 2030 63 6.9.3 India Dry Battery Electrode (DBE) Technology Revenue by Application, 2030 64 7 Company Profiles 65 7.1 Tesla 65 7.1.1 Tesla Profile 65 7.1.2 Tesla Main Business 66 7.1.3 Tesla Dry Battery Electrode (DBE) Technology Products, Services and Solutions 66 7.1.4 Tesla Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 67 7.1.5 Tesla Recent Developments 68 7.2 LiCAP Technologies 69 7.2.1 LiCAP Technologies Profile 69 7.2.2 LiCAP Technologies Main Business 70 7.2.3 LiCAP Technologies Dry Battery Electrode (DBE) Technology Products, Services and Solutions 70 7.2.4 LiCAP Technologies Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 72 7.2.5 LiCAP Technologies Recent Developments 72 7.3 Sakuu 73 7.3.1 Sakuu Profile 74 7.3.2 Sakuu Main Business 74 7.3.3 Sakuu Dry Battery Electrode (DBE) Technology Products, Services and Solutions 75 7.3.4 Sakuu Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 77 7.3.5 Sakuu Recent Developments 77 7.4 LG 77 7.4.1 LG Profile 78 7.4.2 LG Main Business 78 7.4.3 LG Dry Battery Electrode (DBE) Technology Products, Services and Solutions 79 7.4.4 LG Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 80 7.4.5 LG Recent Developments 80 7.5 AM Batteries 81 7.5.1 AM Batteries Profile 81 7.5.2 AM Batteries Main Business 82 7.5.3 AM Batteries Dry Battery Electrode (DBE) Technology Products, Services and Solutions 82 7.5.4 AM Batteries Dry Battery Electrode (DBE) Technology Revenue (US$ Million) & (2019-2024) 84 7.5.5 AM Batteries Recent Developments 84 7.6 Tsingyan Electronic 85 7.6.1 Tsingyan Electronic Profile 85 7.6.2 Tsingyan Electronic Main Business 86 7.6.3 Tsingyan Electronic Dry Battery Electrode (DBE) Technology Products, Services and Solutions 86 7.6.4 Tsingyan Electronic Recent Developments 87 7.7 Panasonic 88 7.7.1 Panasonic Profile 88 7.7.2 Panasonic Main Business 89 7.7.3 Panasonic Dry Battery Electrode (DBE) Technology Products, Services and Solutions 89 7.7.4 Panasonic Recent Developments 90 7.8 PowerCO 91 7.8.1 PowerCO Profile 91 7.8.2 PowerCO Main Business 91 7.8.3 PowerCO Dry Battery Electrode (DBE) Technology Products, Services and Solutions 92 7.8.4 PowerCO Recent Developments 93 8 Industry Chain and Technology Analysis 94 8.1 Dry Battery Electrode (DBE) Technology Industrial Chain 94 8.2 Dry Battery Electrode (DBE) Technology Upstream Analysis 95 8.2.1 Key Raw Materials 95 8.2.2 Raw Materials Key Suppliers 95 8.3 Dry Method Binders and Their Properties Analysis 96 8.4 DBE Procedures Analysis 97 8.5 Dry Coating Procedure Analysis 97 8.6 Advantages of Dry Battery Electrode (DBE) Technology Analysis 99 9 Research Findings and Conclusion 100 10 Appendix 102 10.1 Research Methodology 102 10.1.1 Methodology/Research Approach 102 10.1.2 Data Source 105 10.2 Author Details 108 10.3 Disclaimer 109
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