A Quote by Nick Lampson

We must always emphasize research and development of science and mathematics, and I can think of no better way to achieve this than through our future in space. — © Nick Lampson
We must always emphasize research and development of science and mathematics, and I can think of no better way to achieve this than through our future in space.
I think that it's good for us to be able to travel in space and do research in space, and I emphasize the research, because space travel to me is far more than just seeing how far we can go.
Mathematics has two faces: it is the rigorous science of Euclid, but it is also something else. Mathematics presented in the Euclidean way appears as a systematic, deductive science; but mathematics in the making appears as an experimental, inductive science. Both aspects are as old as the science of mathematics itself.
The subject for which I am asking your attention deals with the foundations of mathematics. To understand the development of the opposing theories existing in this field one must first gain a clear understnding of the concept "science"; for it is as a part of science that mathematics originally took its place in human thought.
To be a science fiction writer you must be interested in the future and you must feel that the future will be different and hopefully better than the present. Although I know that most - that many science fiction writings have been anti-utopias. And the reason for that is that it's much easier and more exciting to write about a really nasty future than a - placid, peaceful one.
Mathematics is often defined as the science of space and number . . . it was not until the recent resonance of computers and mathematics that a more apt definition became fully evident: mathematics is the science of patterns.
In a world in which we are exposed to more information, more options, more philosophies, more perspectives than ever before, in which we must choose the values by which we will live (rather than unquestioningly follow some tradition for no better reason than that our own parents did), we need to be willing to stand on our own judgment and trust our own intelligence-to look at the world through our own eyes-to chart our course and think through how to achieve the future we want, to commit ourselves to continuous questioning and learning-to be, in a word, self-responsible.
Science is better paid than at any time in the past. The results of this pay have been to attract into science many of those for whom the pay is the first consideration, and who scorn to sacrifice immediate profit for the freedom of development of their own concept. Moreover, this inner development, important and indispensable as it may be to the world of science in the future, generally does not have the tendency to put a single cent into the pockets of their employers.
This example illustrates the differences in the effects which may be produced by research in pure or applied science. A research on the lines of applied science would doubtless have led to improvement and development of the older methods - the research in pure science has given us an entirely new and much more powerful method. In fact, research in applied science leads to reforms, research in pure science leads to revolutions, and revolutions, whether political or industrial, are exceedingly profitable things if you are on the winning side.
The first and foremost duty of the high school in teaching mathematics is to emphasize methodical work in problem solving...The teacher who wishes to serve equally all his students, future users and nonusers of mathematics, should teach problem solving so that it is about one-third mathematics and two-thirds common sense.
Some people think that mathematics is a serious business that must always be cold and dry; but we think mathematics is fun, and we aren't ashamed to admit the fact. Why should a strict boundary line be drawn between work and play? Concrete mathematics is full of appealing patterns; the manipulations are not always easy, but the answers can be astonishingly attractive.
Seeing the space future through science fiction can be difficult. Much science fiction of the early era, the 1950s through the '70s, took an expansionist view.
Bohr’s standpoint, that a space-time description is impossible, I reject a limine. Physics does not consist only of atomic research, science does not consist only of physics, and life does not consist only of science. The aim of atomic research is to fit our empirical knowledge concerning it into our other thinking. All of this other thinking, so far as it concerns the outer world, is active in space and time. If it cannot be fitted into space and time, then it fails in its whole aim and one does not know what purpose it really serves.
That the way to achieve higher standards of living for all is through science and technology, taking advantage of better tools, methods and organization.
I remain as committed as ever to working across party lines with anyone who believes we must invest in the future of our economy by revitalizing our transportation infrastructure, ensuring every child is getting a world class education, and spurring research and development of new technologies.
Therefore, I think that in the celebration of the 50 years of the present reign, there must be research on the changes that the country has undergone, and in the future, it could be used as a lesson for our future actions.
It's such a long mission and we get to spend so much time in space... we're doing such exciting research. And I don't want to overemphasize the life science research, but as a physician the life science research that we're doing is extremely exciting.
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