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Prices of high-tech products, mismeasurement, and the pace of innovation

Author

Listed:
  • David Byrne

    (Federal Reserve Board)

  • Stephen D. Oliner

    (American Enterprise Institute)

  • Daniel E. Sichel

    (Wellesley College)

Abstract

Introduction Two recent papers have made compelling cases that mismeasurement of prices of high-tech products cannot explain the slow pace of labor productivity growth that has prevailed since the mid-2000s. Does that result indicate that mismeasurement of high-tech products has limited implications for patterns of economic growth? The answer in this paper is “no.”. Results We demonstrate that the understatement of price declines for high-tech products in official measures has a dramatic effect on the pattern of multifactor productivity (MFP) growth across sectors. In particular, we show that correcting this mismeasurement implies faster MFP growth in high-tech sectors and slower MFP advance outside the high-tech sector. If MFP growth is taken as a rough proxy for the pace of innovation, our results suggest that innovation in the tech sector has been more rapid than the rate that would be inferred from official statistics (and less rapid outside high-tech). Conclusion These results deepen the productivity puzzle. If the pace of innovation in high-tech sectors has been more rapid than indicated by official statistics, then it is perhaps even more puzzling that overall labor productivity growth has been so sluggish in recent years.

Suggested Citation

  • David Byrne & Stephen D. Oliner & Daniel E. Sichel, 2017. "Prices of high-tech products, mismeasurement, and the pace of innovation," Business Economics, Palgrave Macmillan;National Association for Business Economics, vol. 52(2), pages 103-113, April.
  • Handle: RePEc:pal:buseco:v:52:y:2017:i:2:d:10.1057_s11369-017-0034-4
    DOI: 10.1057/s11369-017-0034-4
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    References listed on IDEAS

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    Cited by:

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    2. Stanley Fischer, 2017. "Government Policy and Labor Productivity : a speech at the \"Washington Transformation? Politics, Policies, Prospects,\" a forum sponsored by the Summer Institute of Martha’s Vineyard Hebrew," Speech 962, Board of Governors of the Federal Reserve System (U.S.).
    3. Jan Eeckhout & Christoph Hedtrich & Roberto Pinheiro, 2019. "Automation, Spatial Sorting, and Job Polarization," 2019 Meeting Papers 581, Society for Economic Dynamics.
    4. John Fernald, 2018. "Is Slow Productivity and Output Growth in Advanced Economies the New Normal?," International Productivity Monitor, Centre for the Study of Living Standards, vol. 35, pages 138-148, Fall.
    5. Jaana Remes, Jan Mischke and Mekala Krishnan, 2018. "Solving the Productivity Puzzle: The Role of Demand and the Promise of Digitization," International Productivity Monitor, Centre for the Study of Living Standards, vol. 34, pages 28-51, Fall.
    6. Ana Aizcorbe & David M. Byrne & Daniel E. Sichel, 2019. "Getting Smart About Phones: New Price Indexes and the Allocation of Spending Between Devices and Services Plans in Personal Consumption Expenditures," NBER Working Papers 25645, National Bureau of Economic Research, Inc.
    7. David Bruce Audretsch & Martina Aronica & Maksim Belitski & Davide Piacentino, 2024. "Natural selection or strategic adaptation? Entrepreneurial digital technologies and survival of the species," The Journal of Technology Transfer, Springer, vol. 49(5), pages 1631-1659, October.
    8. Rebecca Riley & Ana Rincon-Aznar & Lea Samek, 2018. "Below the Aggregate: A Sectoral Account of the UK Productivity Puzzle," Economic Statistics Centre of Excellence (ESCoE) Discussion Papers ESCoE DP-2018-06, Economic Statistics Centre of Excellence (ESCoE).
    9. Biolsi, Christopher, 2021. "Labor productivity forecasts based on a Beveridge–Nelson filter: Is there statistical evidence for a slowdown?," Journal of Macroeconomics, Elsevier, vol. 69(C).
    10. Muhammad Nouman & Mohammad Sohail Yunis & Muhammad Atiq & Owais Mufti & Abdul Qadus, 2022. "‘The Forgotten Sector’: An Integrative Framework for Future Research on Low- and Medium-Technology Innovation," Sustainability, MDPI, vol. 14(6), pages 1-19, March.
    11. Wim Naudé & Paula Nagler, 2018. "Technological Innovation, Entrepreneurship and Productivity in Germany, 1871-2015," SPRU Working Paper Series 2018-02, SPRU - Science Policy Research Unit, University of Sussex Business School.
    12. Uwe Cantner & Holger Graf & Ekaterina Prytkova & Simone Vannuccini, 2018. "The Compositional Nature of Productivity and Innovation Slowdown," Jena Economics Research Papers 2018-006, Friedrich-Schiller-University Jena.
    13. Richard Schmalensee, 2018. "Puzzles and Surprises in Employment and Productivity in U.S. Manufacturing After the Great Recession," International Productivity Monitor, Centre for the Study of Living Standards, vol. 35, pages 5-27, Fall.
    14. Falck, Elisabeth & Röhe, Oke & Strobel, Johannes, 2024. "Digital transformation and its impact on labour productivity: A multi-sector perspective," Discussion Papers 28/2024, Deutsche Bundesbank.

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    More about this item

    Keywords

    Productivity; Multifactor productivity; Measurement; Productivity slowdown; High-tech sector; Digital economy;
    All these keywords.

    JEL classification:

    • E01 - Macroeconomics and Monetary Economics - - General - - - Measurement and Data on National Income and Product Accounts and Wealth; Environmental Accounts
    • E22 - Macroeconomics and Monetary Economics - - Consumption, Saving, Production, Employment, and Investment - - - Investment; Capital; Intangible Capital; Capacity
    • E24 - Macroeconomics and Monetary Economics - - Consumption, Saving, Production, Employment, and Investment - - - Employment; Unemployment; Wages; Intergenerational Income Distribution; Aggregate Human Capital; Aggregate Labor Productivity
    • L63 - Industrial Organization - - Industry Studies: Manufacturing - - - Microelectronics; Computers; Communications Equipment
    • L86 - Industrial Organization - - Industry Studies: Services - - - Information and Internet Services; Computer Software
    • O3 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights
    • O33 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights - - - Technological Change: Choices and Consequences; Diffusion Processes
    • O4 - Economic Development, Innovation, Technological Change, and Growth - - Economic Growth and Aggregate Productivity
    • O41 - Economic Development, Innovation, Technological Change, and Growth - - Economic Growth and Aggregate Productivity - - - One, Two, and Multisector Growth Models

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