Evolution (Biology); Glacial epoch; Human beings -- Origin; Human evolution
I will now explain to what extent I agree with, and on what points I
feel compelled to differ from the two distinguished geologists above
cited. First. It is no doubt true, as Professor Ramsay remarks, that
heavy masses of ice, creeping for ages over a surface of dry land
(whether this comprise hills, plateaus, and valleys, as in the case
of Greenland, before described, or be confined to the bottoms of great
valleys, as now in the higher Alps), must often by their grinding
action produce depressions, in consequence of the different degrees
of resistance offered by rocks of unequal hardness. Thus, for example,
where quartzose beds of mica-schist alternate with clay-slate, or where
trap-dykes, often causing waterfalls in the courses of torrents,
cut through sandstone or slate--these and innumerable other common
associations of dissimilar stony compounds must give rise to a very
unequal amount of erosion and consequently to lake-basins on a small
scale. But the larger the size of any lake, the more certain it will be
to contain within it rocks of every degree of hardness, toughness, and
softness; and if we find a gradual deepening from the head towards the
central parts and a shallowing again from the middle to the lower end,
as in several of the great Swiss and Italian lakes, which are 30 or
40 miles in length, we require a power capable of acting with a
considerable degree of uniformity on these masses of varying powers of
resistance.
Secondly. Several of the great lakes are by no means in the line of
direction which they ought to have taken had they been scooped out by
the pressure and onward movement of the extinct glaciers. The Lake
of Geneva, for instance, had it been the work of ice, would have been
prolonged from the termination of the upper valley of the Rhone towards
the Jura, in the direction from F to G of the map, Figure 42, instead of
running from F to I.
Thirdly. It has been ascertained experimentally, that in a glacier, as
in a river, the rate of motion is accelerated or lessened, according to
the greater or less slope of the ground; also, that the lower strata of
ice, like those of water, move more slowly than those above them. In the
Lago Maggiore, which is more than 2600 feet deep (797 metres), the ice,
says Professor Ramsay, had to descend a slope of about 3 degrees for
the first 25 miles, and then to ASCEND for the last 12 miles (from the
deepest part towards the outlet) at an angle of 5 degrees. It is for
those who are conversant with the dynamics of glacier motion to divine
whether in such a case the discharge of ice would not be entirely
effected by the superior and faster moving strata, and whether the
lowest would not be motionless or nearly so, and would therefore exert
very little, if any, friction on the bottom.
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