Technological
in sentence
2092 examples of Technological in a sentence
To that end, the government has already introduced industrial strategies – “Made in China 2025” and “Internet Plus” – to support
technological
development, adoption, and innovation.
The US and China are set to become immersed in a long-term competition for
technological
and strategic supremacy.
These include
technological
innovation that addresses social problems and promotes inclusive growth; further market opening; tough measures against rent-seeking speculators and interest groups; and tax reforms to improve income and wealth distribution.
They must unite societies divided by powerful global forces, such as globalization and rapid
technological
innovation.
Likewise, the Enlightenment’s scientific and
technological
legacy has not been wholly positive.
Similarly,
technological
progress has left critical national infrastructure potentially vulnerable to cyberattacks.
Just as
technological
advances got us into this predicament, so might they rescue us from it.
After all,
technological
innovation, along with an international effort to adopt the 1987 Montreal Protocol, is how the world put a stop to the erosion of the ozone layer.
Most importantly, such an approach would bring about the transformational
technological
breakthroughs that are required to make green energy sources cheap and effective enough to fuel a carbon-free future.
The biggest challenge for all of us, young and old, next year and for the indefinite future, will result from a different sort of change that is unlikely to respond simply to
technological
determinism.
That historical anecdote might elicit a sardonic chuckle from those who remember their high-school mathematics, but around the world non-experts are increasingly being called upon to formulate public policy that requires an understanding of subtle and complex scientific and
technological
phenomena.
Moreover, many
technological
innovations have not translated into higher productivity growth, the pace of structural reforms remains slow, and protracted cyclical stagnation has eroded the skills base and that of physical capital.
The United Nations Sustainable Development Goal to eliminate extreme poverty worldwide by 2030 is entirely dependent on continued economic growth through trade,
technological
innovation, and international cooperation.
Carbon pricing, it is said, avoids the dangers of picking winners, unleashes a market-driven search for the best
technological
answer, and ensures least-cost emissions reduction.
In the real world, direct regulation can drive
technological
investment and cost reduction better than price can.
Carbon prices are also essential because the same
technological
progress that is driving rapid reduction in the cost of renewables is also enabling dramatic declines in fossil-fuel production costs, particularly in the shale industry.
Indeed, the US retains an edge, owing to its capacity for innovation, its
technological
advances, its entrepreneurial spirit, and its indefatigable optimism.
Back to Disease-Fighting BasicsLONDON – Combating antimicrobial resistance will require groundbreaking
technological
solutions.
By ignoring potentially helpful contributions from an increasingly knowledgeable public, closed-door
technological
development has precluded balanced assessments and created acrimony – a dangerously irresponsible and wasteful outcome for both science and society.
The bottom line is that existing models for
technological
development are inadequate for technologies with broadly shared effects.
These new entrants want to apply more advanced
technological
solutions and insights from behavioral science to an industry that is profitable but has tended to under-serve its clients.
Amid shifting global power dynamics, diminished political legitimacy, and disruptive
technological
change, it is more difficult than ever to devise promising solutions.
After all, economists have recognized for decades that the most important determinant of growth – and thus of gains in human development and welfare – is
technological
change and the knowledge it embodies.
There is considerable slack in labor markets as well: Too many unemployed workers are chasing too few available jobs, while trade and globalization, together with labor-saving
technological
innovations, are increasingly squeezing workers’ jobs and incomes, placing a further drag on demand.
Most, he points out, “rely on some form of large quarterly movements in the
technological
frontier.
Other models have large quarterly shocks to the depreciation rate in the capital stock (in order to generate high asset price volatilities)...”That is, downturns are either the result of a great forgetting of
technological
and organizational knowledge, a great vacation as workers suddenly develop a taste for extra leisure, or a great rusting as the speed at which oxygen corrodes accelerates, reducing the value of large things made out of metal.
Ed Prescott of Arizona State University really does believe that large-scale recessions are caused by economy-wide episodes of forgetting the
technological
and organizational knowledge that underpin total factor productivity.
“Big Data,” as it is known, will undoubtedly deliver important scientific, technological, and medical advances.
Had the US been a normal post-war industrial powerhouse like Germany or Japan,
technological
innovation would have brought that share down from 30% to around 12%.
The
technological
revolution now underway is generating a different sort of replacement.
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