Technological
in sentence
2092 examples of Technological in a sentence
No one has yet reliably quantified the boost to wellbeing that such
technological
advances produce.
Yet, given the enormous global pressures that we face, including vastly unequal incomes and massive environmental damage, we must find new
technological
solutions to our problems.
This raises another challenge of
technological
innovation: we will need to support the transfer of proven technologies to poorer countries.
Thus,
technological
developments should involve a collaborative international effort from the start.
Successful
technological
breakthroughs can provide stunning benefits for humanity.
Where adaptation to ruthless international competition and rapid
technological
change calls for flexibility and individual responsibility, the dominant culture in France continues to be one of assistance and entitlement.
Finally, it requires a
technological
and politico-economic breakthrough in favor of renewable energy, rather than a return to nuclear power or coal.
Imagine our world, 20 years from now, if we could educate a new generation of young people so that they have the skills and creativity to take on the great economic and
technological
challenges of the day.
Why?Rich countries are indeed near their potential and grow only because of
technological
or other advances.
As Foshan has proved, cities have a unique capacity to support growth – including by fostering competition, advancing innovation, and phasing out obsolete industries – while addressing social challenges, tackling pollution, and creating a labor force that can cope with
technological
disruption.
It will have a higher GDP, larger population, higher military spending, and more
technological
investment.
Such global economic and
technological
forces are widely viewed as beyond the control of countries’ governance structures, raising doubts about the efficacy of policy responses.
Since then, astounding
technological
developments have contributed to revolutionary progress in physics, astronomy, cosmology, and the life sciences.
And now, with the
technological
armory and plethora of data currently available, science can go far beyond any previous expectation and extrapolation.
For decades,
technological
advances have been essentially incremental, and the industry remains largely based on long-haul transport aircraft, with an emerging small jet component and a legacy of general aviation markets and products.
But the free market also has a crucial role to play, with longer-term, incentive-based policies catalyzing scientific and
technological
advancement – and thus boosting economies’ growth potential.
With the public sector unlikely to be able to absorb these new workers, there is an urgent need to create a dynamic private sector that not only adopts, but also generates
technological
innovations that empower workers and deliver durable and inclusive growth.
Achieving the SDGs – which range from eliminating hunger and poverty to protecting the environment – will require the involvement of dynamic private sectors that are capable of producing
technological
solutions and willing to provide critical financing.
But that reflects science-based research and old-fashioned
technological
ingenuity on the part of farmers, plant breeders, and agribusiness companies, not irrational opposition to modern insecticides, herbicides, genetic engineering, and “industrial agriculture.”
In recent years, however, patent law widened enormously with the acceptance, in the United States, Australia, Japan, and Korea, of business-method patents --that is, patents not on a
technological
process but on a way of doing business.
While the global economy continues its broad-based expansion, disruptive economic, geostrategic, and
technological
forces may threaten ASEAN’s gains of recent years.
Would the US not be better off by using its capacity to tax natural gas to stimulate the development of the contemporary
technological
equivalent of the revolutionary engine?
These countries are able to choose a different
technological
path to growth, one based on low-carbon strategies and green principles.
A
technological
leap that raises the wages of the skilled and educated will induce others to become skilled and educated, restoring balance so that inequality does not grow too much.
Yet three centuries ago there was also
technological
progress, from the mechanical clock and the watermill to the cannon and the caravel, and on to strains of rice that can be cropped three times a year in Guangzhou and the breeding of merino sheep that can flourish in the hills of Spain.
The real sources of growth are not to be found in supplies and demands and the allocation of scarce resources to alternative uses, but in
technological
and organizational change – about which economists have too little to say.
In the years preceding the financial crisis, increasing globalization and
technological
advances made it much easier for central banks to deliver both solid growth and low inflation.
At the same time, the new model that emerges will still have to account for major forces that sustained the old model, especially the forces of globalization and
technological
innovation that voter resistance will not stop.
Savvy investors will look for companies that can withstand the current populist revolt against globalization and take advantage of incipient economic and
technological
trends.
For China, the situation is complicated further by US President Donald Trump’s evident view of the country as a strategic competitor, rather than a strategic partner, not to mention massive domestic social change and rapid
technological
disruption.
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