This statistic shows the share of economic sectors in the global gross domestic product (GDP) from 2014 to 2024. In 2024, agriculture contributed 4.02 percent, industry contributed approximately 25.97 percent and services contributed about 66.24 percent to the global gross domestic product. See global GDP for comparison.
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Armstrong World Industries - Nilai saat ini, data historis, perkiraan, statistik, grafik dan kalender ekonomi - Jul 2025.Data for Armstrong World Industries including historical, tables and charts were last updated by Trading Economics this last July in 2025.
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Sections distribution - Industries in the world news
The Indian IT industry made up to around **** percent of the total global IT spend in fiscal year 2021. There was a constant increase in this value since fiscal year 2001. Furthermore, there was an increased effort from the Indian IT industries to create localization in foreign countries, especially in the United States.
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Korea GDP: Growth: Gross Value Added: Industry: Manufacturing data was reported at 4.351 % in 2017. This records an increase from the previous number of 2.357 % for 2016. Korea GDP: Growth: Gross Value Added: Industry: Manufacturing data is updated yearly, averaging 10.219 % from Dec 1961 (Median) to 2017, with 57 observations. The data reached an all-time high of 30.212 % in 1973 and a record low of -7.490 % in 1998. Korea GDP: Growth: Gross Value Added: Industry: Manufacturing data remains active status in CEIC and is reported by World Bank. The data is categorized under Global Database’s Korea – Table KR.World Bank: Gross Domestic Product: Annual Growth Rate. Annual growth rate for manufacturing value added based on constant local currency. Aggregates are based on constant 2010 U.S. dollars. Manufacturing refers to industries belonging to ISIC divisions 15-37. Value added is the net output of a sector after adding up all outputs and subtracting intermediate inputs. It is calculated without making deductions for depreciation of fabricated assets or depletion and degradation of natural resources. The origin of value added is determined by the International Standard Industrial Classification (ISIC), revision 3.; ; World Bank national accounts data, and OECD National Accounts data files.; Weighted Average; Note: Data for OECD countries are based on ISIC, revision 4.
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According to Cognitive Market Research, the global industrial software market size will be USD 22624.8 million in 2025. It will expand at a compound annual growth rate (CAGR) of 17.50% from 2025 to 2033.
North America held the major market share for more than 37% of the global revenue with a market size of USD 8371.18 million in 2025 and will grow at a compound annual growth rate (CAGR) of 15.3% from 2025 to 2033.
Europe accounted for a market share of over 29% of the global revenue with a market size of USD 6561.19 million.
APAC held a market share of around 24% of the global revenue with a market size of USD 5429.95 million in 2025 and will grow at a compound annual growth rate (CAGR) of 19.5% from 2025 to 2033.
South America has a market share of more than 3.8% of the global revenue with a market size of USD 859.74 million in 2025 and will grow at a compound annual growth rate (CAGR) of 16.5% from 2025 to 2033.
Middle East had a market share of around 4.00% of the global revenue and was estimated at a market size of USD 904.99 million in 2025 and will grow at a compound annual growth rate (CAGR) of 16.8% from 2025 to 2033.
Africa had a market share of around 2.20% of the global revenue and was estimated at a market size of USD 497.75 million in 2025 It will grow at a compound annual growth rate (CAGR) of 17.2% from 2025 to 2033.
Al in manufacturing is the fastest growing segment of the industrial software market industry
Market Dynamics of Industrial Software Market
Key Drivers for Industrial Software Market
Rise of Industry 4.0 and Smart Manufacturing To Boost Market Growth
The advent of Industry 4.0 is revolutionizing how industries operate by integrating advanced technologies such as IoT, AI, machine learning, robotics, and cloud computing. As manufacturers increasingly digitize their operations, the demand for industrial software—such as Manufacturing Execution Systems (MES), SCADA, and Product Lifecycle Management (PLM)—is accelerating. These solutions enable real-time monitoring, predictive maintenance, and automated decision-making, which significantly enhance productivity and reduce downtime. Industrial software also supports integration across the value chain, from design and engineering to production and supply chain management. Governments and private players alike are investing heavily in smart factory initiatives, further boosting software adoption. Additionally, software-based automation helps address labour shortages and skill gaps by reducing reliance on manual processes. The push for operational agility, product customization, and cost efficiency continues to drive the shift toward intelligent software systems across all sectors. In November 2024, China surpassed Germany in industrial robot usage, now ranking third globally with 470 robots per 10,000 workers, reflecting its significant investment in automation to enhance manufacturing capabilities.
Growing Demand for Predictive Maintenance and Real-Time Monitoring To Boost Market Growth
Industrial operations are increasingly turning to predictive maintenance and real-time asset monitoring to maximize uptime and reduce maintenance costs. Traditional reactive or time-based maintenance approaches often lead to unplanned downtimes and increased operational risks. In contrast, industrial software integrated with IoT sensors and analytics platforms enables early detection of anomalies in equipment performance. This allows operators to schedule maintenance only when necessary, extending asset life and avoiding costly disruptions. Real-time dashboards, alert systems, and AI-powered insights provide a holistic view of plant performance, facilitating data-driven decision-making. Industries such as oil & gas, manufacturing, power generation, and logistics are among the top adopters of such technologies. The economic benefit of avoiding system failures—combined with better regulatory compliance and safety assurance—is making predictive software tools a critical component in modern industrial strategy. As a result, companies are investing in platforms that offer condition monitoring, digital twins, and remote diagnostics.
Restraint Factor for the Industrial Software Market
High Implementation and Integration Costs, Will Limit Market Growth
One of the primary restr...
Most of the world's unicorns as of March 2024 were active in the ******** industry. Over *** privately owned startups with a valuation of over one billion U.S. dollars were active in this sector. In comparison, there were *** unicorns operating in the ****************** sector, the industry with the sector-largest volume of unicorns.
In 2022, the highest share of research and development spending (R&D) was made within the hardware technology producing industry, accounting for a total of nearly ** percent of the global R&D spending. The health sector and software producers followed in second at nearly ** percent each. In total, global R&D spending reached *** trillion U.S. dollars in 2022. Health industry and COVID-19 The high share spent by the health industry must be seen in relation with the COVID-19 pandemic that started spreading in late 2019 and caused deaths, lockdowns, and restrictions throughout 2020 and onwards. As governments and pharmaceutical companies sought to find an efficient vaccine against the virus, investment in research continued to increase. However, regardless of the pandemic, R&D spending within health care is essential in order to combat a variety of diseases, from small pox via malaria to cancer. Information and communication technology As people around the world become more and more dependent on information and communication technology, research spending by companies producing hardware and software continues to increase as these seek to further develop. For instance, all the seven companies with the highest R&D spending in 2022 were either software or hardware producing companies. The largest single investor was the software giant ******.
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United States US: Aerospace Industry: Trade Balance data was reported at 48.890 USD bn in 2021. This records an increase from the previous number of 37.029 USD bn for 2020. United States US: Aerospace Industry: Trade Balance data is updated yearly, averaging 39.437 USD bn from Dec 1990 (Median) to 2021, with 32 observations. The data reached an all-time high of 86.993 USD bn in 2016 and a record low of 20.681 USD bn in 1995. United States US: Aerospace Industry: Trade Balance data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s United States – Table US.OECD.MSTI: Trade Statistics: OECD Member: Annual.
For the United States, from 2021 onwards, changes to the US BERD survey questionnaire allowed for more exhaustive identification of acquisition costs for ‘identifiable intangible assets’ used for R&D. This has resulted in a substantial increase in reported R&D capital expenditure within BERD. In the business sector, the funds from the rest of the world previously included in the business-financed BERD, are available separately from 2008. From 2006 onwards, GOVERD includes state government intramural performance (most of which being financed by the federal government and state government own funds). From 2016 onwards, PNPERD data are based on a new R&D performer survey. In the higher education sector all fields of SSH are included from 2003 onwards.
Following a survey of federally-funded research and development centers (FFRDCs) in 2005, it was concluded that FFRDC R&D belongs in the government sector - rather than the sector of the FFRDC administrator, as had been reported in the past. R&D expenditures by FFRDCs were reclassified from the other three R&D performing sectors to the Government sector; previously published data were revised accordingly. Between 2003 and 2004, the method used to classify data by industry has been revised. This particularly affects the ISIC category “wholesale trade” and consequently the BERD for total services.
U.S. R&D data are generally comparable, but there are some areas of underestimation:
Breakdown by type of R&D (basic research, applied research, etc.) was also revised back to 1998 in the business enterprise and higher education sectors due to improved estimation procedures.
The methodology for estimating researchers was changed as of 1985. In the Government, Higher Education and PNP sectors the data since then refer to employed doctoral scientists and engineers who report their primary work activity as research, development or the management of R&D, plus, for the Higher Education sector, the number of full-time equivalent graduate students with research assistantships averaging an estimated 50 % of their time engaged in R&D activities. As of 1985 researchers in the Government sector exclude military personnel. As of 1987, Higher education R&D personnel also include those who report their primary work activity as design.
Due to lack of official data for the different employment sectors, the total researchers figure is an OECD estimate up to 2019. Comprehensive reporting of R&D personnel statistics by the United States has resumed with records available since 2020, reflecting the addition of official figures for the number of researchers and total R&D personnel for the higher education sector and the Private non-profit sector; as well as the number of researchers for the government sector. The new data revise downwards previous OECD estimates as the OECD extrapolation methods drawing on historical US data, required to produce a consistent OECD aggregate, appear to have previously overestimated the growth in the number of researchers in the higher education sector.
Pre-production development is excluded from Defence GBARD (in accordance with the Frascati Manual) as of 2000. 2009 GBARD data also includes the one time incremental R&D funding legislated in the American Recovery and Reinvestment Act of 2009. Beginning with the 2000 GBARD data, budgets for capital expenditure – “R&D plant” in national terminology - are included. GBARD data for earlier years relate to budgets for current costs only.
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Armstrong World Industries دارایی های جاری - ارزش های فعلی، داده های تاریخی، پیش بینی، آمار، نمودار و تقویم اقتصادی - Jul 2025.Data for Armstrong World Industries | دارایی های جاری including historical, tables and charts were last updated by Trading Economics this last July in 2025.
Subscribers can find out export and import data of 23 countries by HS code or product’s name. This demo is helpful for market analysis.
Asia continues to dominate the global chemical industry, holding a **** percent market share in 2023. This represents a significant increase from ** percent in 2010, highlighting the region's growing influence in the sector. Meanwhile, North America's share has declined from **** percent to **** percent over the same period, reflecting a shift in the industry's center of gravity. Global industry growth and revenue The global revenue of the chemical industry has experienced significant growth in recent years. In 2023, the chemical-pharmaceutical sector generated approximately *** trillion euros in global revenue. This aligns with reports showing that the total worldwide revenue of the chemical industry, excluding pharmaceuticals, reached **** trillion U.S. dollars in 2022, the highest value in 15 years. Factors contributing to this growth include increasing demand for healthcare products, technological advancements, and expanding markets worldwide. Regional performance and market leaders While Asia dominates the global market, other regions also contribute significantly to the industry's revenue. In 2023, Latin America's chemical industry generated approximately ****** billion euros, with Brazil accounting for over one-third of the regional market. In Europe, Germany led the chemical industry with a revenue of ***** billion euros, followed by France at ***** billion euros. Nevertheless, China remains the largest single-country market, generating nearly *** trillion euros in 2022, which represented about ** percent of the global revenue.
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United States Mfg Ind: New Orders: Nondurable Goods Industries data was reported at 260.429 USD bn in May 2018. This records an increase from the previous number of 245.684 USD bn for Apr 2018. United States Mfg Ind: New Orders: Nondurable Goods Industries data is updated monthly, averaging 179.402 USD bn from Jan 1992 (Median) to May 2018, with 317 observations. The data reached an all-time high of 271.440 USD bn in May 2014 and a record low of 102.545 USD bn in Jan 1992. United States Mfg Ind: New Orders: Nondurable Goods Industries data remains active status in CEIC and is reported by US Census Bureau. The data is categorized under Global Database’s USA – Table US.C005: Manufacturing Industries: By NAIC System: New Orders.
As of February 2024, four percent of organizations worldwide were at a mature level of cybersecurity readiness across industries. These were the organizations in the travel and business services and manufacturing industries.
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Industrial Real Estate Market size was valued at USD 11.5 Billion in 2023 and is estimated to reach USD 21.2 Billion by 2031, growing at a CAGR of 4.3% from 2024 to 2031.
Global Industrial Real Estate Market Drivers
The market drivers for the Industrial Real Estate Market can be influenced by various factors. These may include:
Growth of E-commerce: To handle inventory and enable prompt delivery, there is an increasing need for fulfillment centers, warehouses, and distribution centers as e-commerce and online retailing grow. Growing Manufacturing Activity: As the manufacturing sector expands, there is an increasing demand for industrial facilities for storage, assembly, and production. Supply Chain Optimization: By situating warehouses closer to important markets, businesses are investing in industrial real estate to streamline their supply chains, enhance logistics, and save transportation expenses. Technological Developments: The design and specifications of industrial facilities are influenced by technological developments, such as automation and robotics, which raises the cost of contemporary industrial spaces. Urbanization and Population Growth: As cities become more populated, there is an increasing need for industrial facilities to support the construction of new infrastructure, the distribution of goods in stores, and other services. Rising Demand for Cold Storage: The growing demand for perishable goods and temperature-sensitive products boosts the need for cold storage facilities. Government Infrastructure Investments: The expansion of the industrial real estate sector is facilitated by government investments in infrastructure, which include logistics centers and transportation networks. Foreign Direct Investment (FDI): As businesses establish production and distribution facilities in new areas, FDI inflows into a variety of industries may increase demand for industrial real estate. Reshoring and Nearshoring: Companies bringing manufacturing closer to home (reshoring) or to neighboring countries (nearshoring) seek industrial properties to establish or expand their production and distribution facilities. Sustainability Trends: Increasing focus on sustainability and green building practices encourages the development and renovation of industrial properties with energy-efficient and eco-friendly features. Urban Logistics and Last-Mile Delivery: The necessity for well-located industrial facilities within urban areas is driven by the growing demand for effective last-mile delivery services. Economic Growth and Industrial Expansion: As firms grow, there is a greater need for industrial real estate due to the general economic growth and industrial expansion.
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Industrial Thermostatic Control Valves Market Size And Forecast
Industrial Thermostatic Control Valves Market size was valued at USD 1.09 Billion in 2024 and is projected to reach USD 1.89 Billion by 2031, growing at a CAGR of 7.12% during the forecast period 2024-2031.
Global Industrial Thermostatic Control Valves Market Drivers
The market drivers for the Industrial Thermostatic Control Valves Market can be influenced by various factors. These may include:
Energy Efficiency Regulations: The need for thermostatic control valves is fueled by the growing body of laws and standards that support energy efficiency in industrial processes. By preserving accurate temperature control and hence minimising energy waste, these valves aid in the optimisation of energy use.
Growing Industrial Automation: The need for thermostatic control valves is mostly driven by the trend towards industrial automation in a number of industries, including manufacturing, chemicals, oil and gas, and HVAC (heating, ventilation, and air conditioning). Because these valves precisely control temperature, they are essential to automated systems.
Emphasis On Process Optimisation: In an effort to boost output and cut expenses, industries are placing a greater emphasis on process optimisation. Precise temperature control is made possible by thermostatic control valves, and this is crucial for optimising a number of industrial processes, including heating, mixing, and chilling.
Growing HVAC System Adoption: The need for thermostatic control valves is fueled by the expanding use of heating, ventilation, and air conditioning (HVAC) systems in industrial, commercial, and residential buildings. These valves, which guarantee accurate temperature control and energy efficiency, are essential parts of HVAC systems.
Growth Of End-Use Sectors: The need for thermostatic control valves is fueled by the rise of sectors like oil and gas, chemical processing, pharmaceuticals, food and beverage, and power generation. These industries employ these valves for a variety of purposes, such as temperature control in reactors, distillation columns, and heat exchangers.
Technological Developments: The market is growing due to continuous improvements in valve technology, such as the creation of smart valves with Internet of Things (IoT) capabilities and better materials for increased durability and performance. Industry demand for increased dependability, efficiency, and remote monitoring capabilities has led to these improvements.
Emphasis On Sustainable Solutions: Across all industries, there is an increasing emphasis on green technologies and sustainable solutions. By cutting down on energy use and greenhouse gas emissions, thermostatic control valves support environmental initiatives and help companies meet their sustainability targets as well as legal requirements.
Emerging Markets: New prospects for market expansion are created by the fast industrialization and urbanisation of emerging economies, especially those in Asia-Pacific and Latin America. The need for thermostatic control valves in these areas is fueled by developments in infrastructure and the growing adoption of innovative manufacturing technologies.
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Armstrong World Industries PE ratio as of June 27, 2025 is 21.24. Current and historical p/e ratio for Armstrong World Industries (AWI) from 2010 to 2025. The price to earnings ratio is calculated by taking the latest closing price and dividing it by the most recent earnings per share (EPS) number. The PE ratio is a simple way to assess whether a stock is over or under valued and is the most widely used valuation measure. Please refer to the Stock Price Adjustment Guide for more information on our historical prices.
The industrial gas industry provides various gases for different applications. In 2022, the industry was worth ***** billion U.S. dollars, and it was expected to grow substantially in the next decade. The largest contributing application of industrial gas in 2022 was metallurgy and glass, which accounted for ***** billion U.S. dollars. This application involved the use of industrial gas for processes such as metal smelting, welding, cutting, and glass manufacturing.
Additional information on the global industrial gas market can be found here.
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Web design service companies have experienced significant growth over the past few years, driven by the expanding use of the Internet. As online operations have become more widespread, businesses and consumers have increasingly recognized the importance of maintaining an online presence, leading to robust demand for web design services and boosting the industry’s profit. The rise in broadband connections and online business activities further spotlight this trend, making web design a vital component of modern commerce and communication. This solid foundation suggests the industry has been thriving despite facing some economic turbulence related to global events and shifting financial climates. Over the past few years, web design companies have navigated a dynamic landscape marked by both opportunities and challenges. Strong economic conditions have typically favored the industry, with rising disposable incomes and low unemployment rates encouraging both consumers and businesses to invest in professional web design. Despite this, the sector also faced hurdles such as high inflation, which made cost increases necessary and pushed some customers towards cheaper substitutes such as website templates and in-house production, causing a slump in revenue in 2022. Despite these obstacles, the industry has demonstrated resilience against rising interest rates and economic uncertainties by focusing on enhancing user experience and accessibility. Overall, revenue for web design service companies is anticipated to rise at a CAGR of 2.2% during the current period, reaching $43.5 billion in 2024. This includes a 2.2% jump in revenue in that year. Looking ahead, web design companies will continue to do well, as the strong performance of the US economy will likely support ongoing demand for web design services, bolstered by higher consumer spending and increased corporate profit. On top of this, government investment, especially at the state and local levels, will provide further revenue streams as public agencies seek to upgrade their web presence. Innovation remains key, with a particular emphasis on designing for mobile devices as more activities shift to on-the-go platforms. Companies that can effectively adapt to these trends and invest in new technologies will likely capture a significant market share, fostering an environment where entry remains feasible yet competitive. Overall, revenue for web design service providers is forecast to swell at a CAGR of 1.9% during the outlook period, reaching $47.7 billion in 2029.
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The global salt industry is a multibillion-dollar industry that is indispensable to various industries and households worldwide. Learn about the top salt producers, product types, end-users, growth drivers, challenges, and competition in this article.
This statistic shows the share of economic sectors in the global gross domestic product (GDP) from 2014 to 2024. In 2024, agriculture contributed 4.02 percent, industry contributed approximately 25.97 percent and services contributed about 66.24 percent to the global gross domestic product. See global GDP for comparison.