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"James Citty," like all other settlements in all ages, had to have places for disposal of refuse. That much refuse was disposed of by casting it in the James River is unlikely, since before the dawn of history it has been a trait of man to live on top of his own refuse rather than litter a shore with it. While it may be that no pits were dug purposely for refuse disposal, pits opened for brick or ceramic clay (or dug for ice houses, wells, or other purposes and later abandoned) were used for dumping trash. In 1955 a refuse pit almost 40 feet square was discovered in the "industrial area" near the workshop, ironworking pit, and pottery kilns. Filled with trash from the first half of the 17th century, this pit contained such artifacts as a swepthilt rapier (made about 1600), a cutlass, the breastplate and backpiece of a light suit of armor, a number of utensils of metal, ceramics, and glass, to add to the collection of early 17th-century arts and crafts. Several smaller refuse pits were noted, and it is worth commenting that many ditches finally became trash accumulation areas.

Our system, in fact, is shaped something like a lens, and our sun is situated near the centre of this lens. In the remoter part of this lens, near its edge, or possibly outside it altogether, lies the great series of star clouds which make up the Milky Way. All the stars are in motion within this system, but the very remarkable discovery has been made that these motions are not entirely random. The great majority of the stars whose motions can be measured fall into two groups drifting past one another in opposite directions. The velocity of one stream relative to the other is about twenty-five miles per second. The stars forming these two groups are thoroughly well mixed; it is not a case of an inner stream going one way and an outer stream the other. But there are not quite as many stars going one way as the other. For every two stars in one stream there are three in the other. Now, as we have said, some eminent astronomers hold that the spiral nebulae are universes like our own, and if we look at the two photographs (Figs. 25 and 26) we see that these spirals present features which, in the light of what we have just said about our system, are very remarkable. The nebula in Coma Berenices is a spiral edge-on to us, and we see that it has precisely the lens-shaped middle and the general flattened shape that we have found in our own system. The nebula in Canes Venatici is a spiral facing towards us, and its shape irresistibly suggests motions along the spiral arms.

Spiders, which do not undergo such changes as do most of the common, six-footed insects, winter either as eggs or in the mature form. The members of the "sedentary" or web-spinning group, as a rule, form nests in late autumn, in each of which are deposited from fifty to eighty eggs, which survive the winter and hatch in the spring, as soon as the food supply of gnats, flies, and mosquitoes appear. The different forms of spiders' nests are very interesting objects of study. Some are those close-spun, flat, button-shaped objects, about half an inch in diameter, which are so common in winter on the under side of bark, chunks and flat rocks. Others are balloon-shaped and attached to weeds. Within the latter the young spiders often hatch in early winter, make their first meal off their empty egg cases, and then begin a struggle for existence, the stronger preying upon the weaker until the south winds blow again, when they emerge and scatter far and wide in search of more nutritious sustenance.


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