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All (7)

All (7) ((7 results))

  • Articles and reports: 36-28-0001202100200003
    Description:

    Over the past two decades, Canadians have embraced digital technologies at an unprecedented pace and breadth. The objective of this study is to develop statistical indexes to measure the intensity of digitalization in Canadian industries. Because of the ubiquitous presence of digitalization and businesses’ and individuals’ increasing reliance on digital products and services, it is essential to measure the digitalization in the Canadian economy to better understand its impact so that governments, businesses and other stakeholders can make informed decisions.

    Release date: 2021-02-24

  • Articles and reports: 11F0019M2020015
    Description:

    Recent advances in artificial intelligence and machine-learning technologies have fuelled fears of potential job losses among some workers. While the net impact of new technology on total jobs can be negative, positive or neutral, some workers may be more affected than others depending on how easily robots and algorithms can replace them, or how easily their skills complement the new technology. In the case of women and men, it is not clear who is likely to be most affected. This study estimates the risk of job transformation as a result of automation technology faced by women and men.

    Release date: 2020-09-24

  • Articles and reports: 11F0019M2020011
    Description:

    The recent development of several artificial intelligence applications—such as driverless vehicles, robo-writers and computer-aided medical diagnostics—has led to concerns about the role of human workers in the future workforce. The COVID-19 pandemic has added to these concerns, as businesses may turn to new artificial intelligence technologies to perform work activities not traditionally regarded as automatable, such as social tasks. While previous studies have estimated the share of Canadian workers at high risk of automation-related job transformation, this study is the first to examine in great detail the automation risks faced by different groups of workers.

    Release date: 2020-06-29

  • Articles and reports: 11F0019M2020002
    Description:

    Labour productivity growth in the business sector in Canada started to decline in 2000, from 2.3% per year in the period from 1991 to 2000 to 1.0% per year in the period from 2000 to 2015. This paper examines how innovation, innovation diffusion across firms, and business dynamism affected the productivity slowdown.

    Release date: 2020-01-17

  • Articles and reports: 88-003-X200800110596
    Geography: Canada
    Description:

    In the fall of 2007, Statistics Canada designed a survey to gather information on how successfully businesses commercialize innovative products. What strategies must businesses use to achieve their ends? How can they attain their business goals? How is commercial success or failure measured? These are some of the challenges that drove the development of a new survey on commercializing innovation.

    Release date: 2008-05-22

  • Articles and reports: 88F0006X2002017
    Description:

    This paper is an exploratory study to help us identify and characterize innovation practices in Canada's dynamic service industries. It uses logistical estimates to demonstrate that innovation in the services sector is not homogeneous. For each type of innovation 'product, process or both. there is a different business strategy. Small firms do more product innovation, and clients, along with fairs and exhibitions, appear to be the primary sources of information.

    Product innovation is generally done by technical services industries. Process innovation does not seem to favour any particular sector but, understandably, the factors that have the most impact on this type of innovation are company flexibility and information from patent literature, consulting firms and internal management. The most complex strategy-for both product and process innovation-is associated with large firms in the communications and finance sub-sectors. This type of innovation has a larger number of significant factors than the other two types. Finally, this paper shows that there are differences among the forms of innovation and that these differences apply within individual sub-sectors.

    Release date: 2003-01-15

  • Articles and reports: 88F0006X1999005
    Description:

    The study of the adoption and dissemination of technologies is one of the key components of innovation and technological development. Indeed, it is through the adoption of newer, more advanced, technologies that industries can increase their production capabilities, improve their productivity, and expand their lines of new products and services. Surveys on the adoption of new technologies complement other information collected about R&D and innovation, allow the measurement of and how quickly and in what way industries adapt to technological change.

    This is the fifth Survey of Advanced Technology in the Canadian Manufacturing Sector. Three surveys of advanced manufacturing technologies were conducted in 1987, 1989 and 1993 (which was part of the Survey of Advanced Technology in Canadian Manufacturing), followed by a survey of the use of biotechnology by Canadian industries, conducted in 1997.

    Increasingly, manufacturing industries rely on information technology and telecommunications, computerizing and linking all functions of their production process. This survey puts the emphasis on issues such as the use of communication networks, whether internal (e. g. Local Area Networks) or external (e.g. the Internet).

    Release date: 1999-08-23
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Analysis (7)

Analysis (7) ((7 results))

  • Articles and reports: 36-28-0001202100200003
    Description:

    Over the past two decades, Canadians have embraced digital technologies at an unprecedented pace and breadth. The objective of this study is to develop statistical indexes to measure the intensity of digitalization in Canadian industries. Because of the ubiquitous presence of digitalization and businesses’ and individuals’ increasing reliance on digital products and services, it is essential to measure the digitalization in the Canadian economy to better understand its impact so that governments, businesses and other stakeholders can make informed decisions.

    Release date: 2021-02-24

  • Articles and reports: 11F0019M2020015
    Description:

    Recent advances in artificial intelligence and machine-learning technologies have fuelled fears of potential job losses among some workers. While the net impact of new technology on total jobs can be negative, positive or neutral, some workers may be more affected than others depending on how easily robots and algorithms can replace them, or how easily their skills complement the new technology. In the case of women and men, it is not clear who is likely to be most affected. This study estimates the risk of job transformation as a result of automation technology faced by women and men.

    Release date: 2020-09-24

  • Articles and reports: 11F0019M2020011
    Description:

    The recent development of several artificial intelligence applications—such as driverless vehicles, robo-writers and computer-aided medical diagnostics—has led to concerns about the role of human workers in the future workforce. The COVID-19 pandemic has added to these concerns, as businesses may turn to new artificial intelligence technologies to perform work activities not traditionally regarded as automatable, such as social tasks. While previous studies have estimated the share of Canadian workers at high risk of automation-related job transformation, this study is the first to examine in great detail the automation risks faced by different groups of workers.

    Release date: 2020-06-29

  • Articles and reports: 11F0019M2020002
    Description:

    Labour productivity growth in the business sector in Canada started to decline in 2000, from 2.3% per year in the period from 1991 to 2000 to 1.0% per year in the period from 2000 to 2015. This paper examines how innovation, innovation diffusion across firms, and business dynamism affected the productivity slowdown.

    Release date: 2020-01-17

  • Articles and reports: 88-003-X200800110596
    Geography: Canada
    Description:

    In the fall of 2007, Statistics Canada designed a survey to gather information on how successfully businesses commercialize innovative products. What strategies must businesses use to achieve their ends? How can they attain their business goals? How is commercial success or failure measured? These are some of the challenges that drove the development of a new survey on commercializing innovation.

    Release date: 2008-05-22

  • Articles and reports: 88F0006X2002017
    Description:

    This paper is an exploratory study to help us identify and characterize innovation practices in Canada's dynamic service industries. It uses logistical estimates to demonstrate that innovation in the services sector is not homogeneous. For each type of innovation 'product, process or both. there is a different business strategy. Small firms do more product innovation, and clients, along with fairs and exhibitions, appear to be the primary sources of information.

    Product innovation is generally done by technical services industries. Process innovation does not seem to favour any particular sector but, understandably, the factors that have the most impact on this type of innovation are company flexibility and information from patent literature, consulting firms and internal management. The most complex strategy-for both product and process innovation-is associated with large firms in the communications and finance sub-sectors. This type of innovation has a larger number of significant factors than the other two types. Finally, this paper shows that there are differences among the forms of innovation and that these differences apply within individual sub-sectors.

    Release date: 2003-01-15

  • Articles and reports: 88F0006X1999005
    Description:

    The study of the adoption and dissemination of technologies is one of the key components of innovation and technological development. Indeed, it is through the adoption of newer, more advanced, technologies that industries can increase their production capabilities, improve their productivity, and expand their lines of new products and services. Surveys on the adoption of new technologies complement other information collected about R&D and innovation, allow the measurement of and how quickly and in what way industries adapt to technological change.

    This is the fifth Survey of Advanced Technology in the Canadian Manufacturing Sector. Three surveys of advanced manufacturing technologies were conducted in 1987, 1989 and 1993 (which was part of the Survey of Advanced Technology in Canadian Manufacturing), followed by a survey of the use of biotechnology by Canadian industries, conducted in 1997.

    Increasingly, manufacturing industries rely on information technology and telecommunications, computerizing and linking all functions of their production process. This survey puts the emphasis on issues such as the use of communication networks, whether internal (e. g. Local Area Networks) or external (e.g. the Internet).

    Release date: 1999-08-23
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