Saturday, October 13, 2012

Red-shouldered Hawk

Red-shouldered Hawk circling above DeGrasse on October 21, 2006 (note the wing tips pushed slightly forward, a typical soaring aspect for this species) - © Dave Spier

Red-shouldered Hawks (Buteo lineatus) can be expected anytime from mid-March through early November in the Adirondacks, based on the combined eBird bar chart for four northern New York counties. More of the reports come from St. Lawrence and Franklin, with few from Hamilton and a moderate number from Essex. The red-shoulder is considered a woodland species associated with mature deciduous and mixed deciduous-coniferous forests and likely to be found near rivers, streams, ponds and swamps. It typically avoids pure-conifer stands and it may hold to this pattern during migration.

Their primary diet is rodents followed by frogs and snakes. (A Michigan study placed small birds a close second behind mice.) It was getting late in the season for reptiles and amphibians when I found a red-shoulder soaring near DeGrasse in St. Lawrence County one October 21st.

Red-shouldered Hawks breed across the entire state of New York, with heavier nesting concentrations in southwestern NY, the Tug Hill Plateau and the Catskill Mountains. Slightly lower densities occur across south-central NY and the Taconics. There is a scattering of possible, probable and confirmed nest records across the Adirondacks with Essex County having the highest number of confirmed blocks at six. (Each Breeding Bird Atlas block is 5 x 5 km or roughly nine square miles.) Overall, nesting activity has increased statewide since the initial 1980-85 Atlas, although it may have declined slightly in the Adirondacks.

Rather than re-invent the wheel, so to speak, you can learn more about Red-shouldered Hawks at the All About Birds website along with a variety of photos. If you have The Sibley Guide to Birds, the species is illustrated on page 117. (There's a smaller Eastern version of Sibley's which I don't own.)

For a list of birds in St. Lawrence County and their seasonal abundance, I've linked to that eBird bar chart too.
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Corrections, comments and questions are always welcome at northeastnaturalist@yahoo.com or connect through my Facebook page and photo page. There is a separate Fb page for The Northeast Naturalist. Other nature topics can be found on the parallel blog Northeast Naturalist. 

Monday, September 17, 2012

Austin Falls


Austin Falls is on the Sacandaga River between Speculator and Wells in Hamilton County. Use Old State Rt. 8/30, which has vehicle access only at it's north end. The old bridge at the south end has been closed for a long time.



Directions from the north: (distances may vary due to differences in odometer calibration) From the Speculator Community Park (and River Walk Trail) next to the Sacandaga River outlet from Lake Pleasant (south of Speculator's four-corners), drive south on Rts. 8/30. To give you an idea of my odometer calibration, at 1.35 miles, pass the south end of Downey Ave. At 2.8 miles, look for the "Town of Wells" sign and turn left onto Old State Rt. 8/30 and within 1/10th mile, cross a one-lane bridge over the Sacandaga River. Reset your trip odometer to 0. (Portions of Old Rt. 8/30 are rough and bumpy, especially where the old pavement has buckled.) At 1.1 mile from the bridge, pass by Fly Creek Rd. (dirt) which goes left. At 1.9 miles, pass Robbs Creek. At 2.1 miles, cross a narrow, one-lane bridge over a tributary stream. Again, reset to 0.0 and at 0.4 mile beyond this second bridge, watch for a flat-water stretch of the Sacandaga on your right (west); this is just above the Austin Falls narrows. At 0.7 mile beyond the 2nd bridge, look for an inconspicuous pull-off on the right. If you get out of your vehicle, you should be looking down a short hill to the river at the base of the falls, which is actually more of a long sluice or channel with a short drop at the end. Total driving distance from NY 8/30 was 2.8 miles on my truck's odometer, but the ADK Guide to Adirondack Trails 3 lists it as 2.6 miles. The Adirondack Waterfall Guide says 2.7 miles. Take your pick.

blocks of granite gneiss created by sets of parallel joints (vertical cracks)
Directions from the south: according to the ADK Guide to Adirondack Trails 3, it is 6.5 miles from the junction of Rts. 8 and 30 (north of Wells) to Old Rt. 8/30, which is a right turn from the south. Proceed as above.



After parking, a short walk downhill leads to the river and lower falls where layers of (what is likely) granite gneiss are broken into blocks by intersecting joints (vertical cracks). From the base of the falls, look upstream (northward) and it's obvious the metamorphic rock layers dip to the west. Climb around these on the right and walk on the sloping rock surface to head upstream on the right side of the rushing river channel which is working its way down a resistant layer and cutting into overlying strata. Interesting geological features include potholes "drilled" into the gneiss, glacial striations (according to one guidebook), and further upstream, a very rippled rock surface (which is what I suspect the book referred to as "ocean-bottom evidence"), although I suspect the river could be entirely responsible (see the last photo).

Donna's photos taken 8/25/12; this image at 1:45 pm (when the river channel was in deep shade)

Photography notes: On sunny days, there is a narrow window of opportunity in the middle of the day when the sunlight reaches the water. By early afternoon, the water is in deep shade while the sun still hits the sloping rock shelf and trees on the east side. This makes the lighting very harsh and nearly impossible to balance without special software. Later in the afternoon, the entire scene is back in shade and light is more balanced for landscapes. Clouds also will even the light. If you shoot RAW, it's easier to adjust the white balance or use the white-point tool on whitewater (although I prefer to push the balance toward the warmer tones). If you have High Dynamic Range (HDR) software, you can shoot several different exposures and combine them, or create several pseudo-exposures from one RAW capture.

17mm wideangle on full-frame body, exp. 0.7" at f/22, ISO 100, shade white balance; most photos from 9/22/07

My basic landscape camera is a full-frame digital body with a 17-40mm zoom, all mounted on a tripod. This permits high depth of field (small aperature) which necessitates slower shutter speeds to compensate. If you don't have a remote-release cable or trigger, you can use the self-timer.

Even though the white balance was set to shade, I further reduced the blue cast on the rocks using the RGB adjustment. (This image was shot 9/10/05 before RAW became my default format.) Exposure was 1 sec. at f/16.
References
Adirondack Waterfall Guide, by Russell Dunn (© 2004), published by Black Dome Press
Guide to Adirondack Trails: 3 - Central Region, by Bruce Wadsworth (© 1994, reprinted with revisions 2000), published by the Adirondack Mountain Club
New York State Atlas & Gazetteer, published by DeLorme Mapping Co.
Roadside Geology of New York, by Bradford VanDiver, PhD (© 1985/reprinted 2003), published by Mountain Press


Corrections, comments and questions are always welcome at northeastnaturalist@yahoo.com or connect through my Facebook page and photo page. There is a separate Fb page for The Northeast Naturalist. Other nature and geology topics can be found on the parallel blogs Northeast Naturalist and Heading Out

Saturday, September 1, 2012

Milky Way


Milky Way -- © Dave Spier

Okay, something a little different, something out of this world.  It's the Milky Way, our home galaxy, from Nick's Lake campground on September 20, 2009. This part of the Milky Way is in the "summer triangle," formed by the three brightest (alpha) stars in the constellations Cygnus (the swan), Lyra (the lyre, or small harp) and Aquila (the eagle).  I've marked them on the photo, which is repeated below. Deneb is the tail star in Cygnus, a.k.a. the northern cross, which flies down the Milky Way.  Vega is a very bright star located in Lyra, and Altair is the eye of the eagle flying up the Milky Way. You can download a free star chart for September (or any month) at skymaps.com to help you locate constellations and stars in the night sky. The dark, irregular band through the middle of the Milky Way is an absorption nebula, a cloud of interstellar gas and dust between us and the concentration of stars beyond as we look edge-wise across the galactic plane. The center of our galaxy in the constellation Sagittarius, visible during the summer, is now below the horizon.

A love of stars goes back to my days as an amateur astronomer.  At the time I could have lived in the Adirondacks for no other reason than the dark skies, but no memory tops an October(?) camping trip to Meacham Lake.  On a dry, moonless night, we could see every star visible to the human eye, right down to the southern horizon, but what made it special was the perfect reflection of every star on an unusually dead-calm water surface.  We had walked to the edge of the lake from our campsite in the woods, but alas, had taken no camera (and therefore no tripod either).  It would have been interesting to shoot star trails with their perfect reflections, so there's a suggestion if you ever encounter that situation..


Photo notes: The four-minute (240 second) exposure started at 8:36 pm.  I was using a 17-40mm L zoom lens wide-open at f/4 on a full-frame body.  For landscape photography, I need depth of field and small f-stops, so I no longer own a fast wideangle lens, but it leaves me at a disadvantage on these rare occasions.  To compensate, I shot at ISO 800 with long-exposure noise reduction and then further processed the image using Levels.  The camera was strapped to a small refractor used as a guide scope on an equatorial mount aligned to the North Star. The blur on the trees at bottom results from tracking the stars as the Earth rotates, rather than using a fixed-mount tripod.

Corrections, comments and questions are always welcome at northeastnaturalist@yahoo.com or connect through my Facebook page or photo page. Other nature and geology topics can be found on the parallel blogs Northeast Naturalist and Heading Out.

Thursday, August 16, 2012

Poke-O-Moonshine



Drive north on I-87 from Albany toward Canada and you pass through a long stretch of the eastern Adirondacks.  Toward the north end of the park, between exits 32 and 33 (south of Keeseville), watch for the long, glacially-polished cliff of Poke-O-Moonshine Mountain on the left (west) side.  It's nearly a thousand feet high and a favorite of rock climbers.  You can get closer views by taking exit 33 and driving south on Route 9.  The mountain's name is derived from the Algonquin words for broken and smooth.

The north-south cliff is an up-thrown block of granitic gneiss along a fault line [a huge crack where there is enough pressure to shift the rocks out of alignment], while Route 9 traverses a down-dropped block of gneiss interfingered with anorthosite (very similar to Moon rocks) east of the cliff.  The term "block" may be misleading as these are large-scale structures with horizontal dimensions measured in miles. North-northeast of the mountain and continuing over halfway to Keeseville, Route 9 crosses the west edge of anorthosite mixed with metasedimentary rock (the green area on the geology map).

From the Geologic Map of New York - Adirondack Sheet
yellow is an extension of the Marcy massif, lavendar-pink is gneiss,
and green is a hybrid anorthosite mixed with metasedimentaries

Weathering of the cliff [a fault scarp, or escarpment] has obscured thick bands of darker rock, loosely classified as "metagabbro" (without knowing its original nature, either gabbro or basalt/diabase).  Although somewhat horizontal, the major rock layers have a gradual rise to the north (right).  In several locations, the bands are offset by vertical faults.  Also difficult to discern are thinner bands of dark diabase or basalt that intruded as molten sills between the bedded layers.




Like the core of the Adirondacks (actually a southeastward extension of the ancient Canadian Shield), the original sedimentary rocks of Poke-O-Moonshine were metamorphosed [transformed by intense heat and pressure just short of complete melting] during the Precambrian Grenville collision of pre-North America and pre-Europe/Africa around 1.1 billion years ago.  The name is taken from Grenville, Quebec.  The scarp's granitic gneiss is a strongly-banded and coarse-grained rock similar in composition to granite with feldspar, quartz and the dark minerals pyroxene, hornblende and biotite mica. The darker bands of "metagabbro" [a.k.a. amphibolite, a dark rock composed of hornblende and plagioclase with smaller amounts of biotite mica and/or dark-green pyroxene] were also metmorphosed by the end of the Grenville Orogeny [mountain-building episode] that completed the assembly of the supercontinent Rodinia at that time.  The thinner diabase sills were injected as hot, molten magma at a later date, likely after one of at least four collisions of North America and Europe when the continents were again separating and stretching the tectonic plates (which causes vertical cracks that allow magma to rise and then spread horizontally between bedded rock layers). Just south of the Adirondacks, in the Mohawk Valley, the diabase dikes [that cross-cut the older Precambrian rock layers] and the sills [that flowed between the layers] are also found in Cambrian and Ordivician rocks, but not the younger Devonian or Silurian deposits, so it's implied that they rose after the Taconic Orogeny when the continents began separating at the end of the Ordovician Period.

The anorthosite is related to the Marcy massif, a huge pool of crystalline rock under the High Peaks that entered (intruded) the surrounding Grenville rocks as a molten plume through cracks, spread laterally and then slowly cooled.  It can be likened to a geological breast implant.  Uplift and erosion has stripped more-recent rocks off the dome to expose the anorthosite.  A deeper hot spot is theorized to be fueling the continued rise in the Adirondack dome at the rate of three millimeters per year.  You may have heard the expression "new mountains from old rock."

The mineral composition of anorthosite rock is 90% plagioclase feldspar which forms under extreme heat and pressure at great depth (likely 15 miles, give or take a few) and can be termed Plutonic rock.  Plagioclase is a group of silicate minerals built around one silicon atom bonded with four oxygen atoms or three silicons plus eight oxygens.  These molecules combine with various amounts of sodium and/or calcium or potassium plus aluminum to form one of the minerals in the feldspar series.

Glacially-polished cliff face catches the morning sun, August 10, 2007.

The Grenville Province is a long band of rock stretching from the southern Appalachians north-northeastward through southern Ontario Province to the Laurentian Highlands of Quebec.  It's now moslty basement rock with narrow exposures in places like the Blue Ridge (NC/VA), South Mtn. (PA), the Hudson Highlands (NY), the Berkshires (MA), and the Green Mtns. (VT).  Also exposed are the Adirondack dome and the Frontenac Arc (across the Thousand Islands in the upper St. Lawrence River) which connects the Adirondacks to Ontario. The Grenville rocks were originally sediments, volcanics and plutonic (deep) intrusions that were metamorphosed (i.e., transformed or recycled by heat and pressure at great depth) during the Grenville Orogeny between 1.2 and 1.0 billion years ago in a process that resets the rock's "geological clock."  The Grenville collision completed the assembly of the Rodinia supercontinent.


Corrections, comments and questions are always welcome at northeastnaturalist@yahoo.com or connect through my Facebook page or my photo page.  Other outdoor topics can be found on the parallel blog http://northeastnaturalist.blogspot.com

References

2 books by Bradford VanDiver, PhD: Rocks and Routes of the North Country (1976) and Roadside Geology of New York (1985/2003)

Geology of New York, NYS Museum (1966/1976)

Geology of the Adirondack High Peaks Region, Howard & Elizabeth Jaffe, 1986, is not directly relevant to Poke-O-Moonshine, but has a good overview with diagrams in the "Introduction and Geologic History."  Their dates for Grenville events are slightly older.

[also several general rock and mineral guides]

Saturday, August 11, 2012

Narrowleaf? Gentian

Narrow-leaved Gentian on Whiteface - © Dave Spier
Gentian on Whiteface -- © Dave Spier

For some reason, gentians have always fascinated me.  Maybe it's because I usually come across one of the closed or bottle-type gentians and wonder how it gets pollinated.  Such is the case with a tentatively-identified Narrow-leaved Gentian (Gentiana linearis), a.k.a. Narrowleaf Gentian, beside the Memorial Highway on Whiteface (Mountain) above Wilmington.  It has showy violet-blue flowers, but the tips of the five lobes ("petals") bend in at the top and meet. [ I found one source claiming it has four petals, but it's my personal policy to not disturb native wild flowers and I didn't think to count the lobes at the time. Fringed gentians have four obvious petals, so that's likely where the confusion lies.] Soapwort Gentian (Gentiana saponaria), generally a more southerly species,* is another possible ID, but its flowers tend to be slightly open at the top and fringed between the lobes.
  
I imagine insects force their way in to reach the gentian's nectary glands. Apparently this perennial is of special benefit to bumble bees, and I assume they're the ones strong enough to part the tips.  Sorry, I didn't stay around long enough to find out.

On G. linearis, the lance-shaped leaves are opposite on a single stalk, and the sepals (modified leaves) at the base of the flowers are a similar shape. By comparison, the leaves of Soapwort Gentian are slightly wider with a broader point at the tip.

Narrow-leaved Gentian is found from Manitoba to Maine and south in the mountains to Tennessee. The USDA Plants Database map for New York shows its range spread around the Adirondacks plus one county in the Catskills, indicating it's a higher-elevation species. *Several similar species of the blue closed/bottle gentians have more southerly ranges. Red species of gentians are dominant in the Andes where they are more dependent on pollination by birds.

Corrections, comments and questions are always welcome at northeastnaturalist@yahoo.com or connect through my Facebook page or my photo page.  Other nature topics can be found on the parallel blog http://northeastnaturalist.blogspot.com

References
Newcomb's Wildflower Guide, by Lawrence Newcomb and Gordon Morrison (© 1977), published by Little, Brown & Co. -- see page 252
USDA Plants Database at http://plants.usda.gov/core/profile?symbol=GELI3
Ladybird Johnson Wildflower Center at http://www.wildflower.org/plants/result.php?id_plant=GELI3

Friday, August 10, 2012

Jewelweeds



First off, they're not weeds.  They're attractive native wildflowers.  Second, and this is unfortunate, they are not jewels.  The name comes from water's inability to wet the leaves, so after a rain or morning dew, beads of water rest on the surface and scatter light like diamonds.  The plant's alternate name, touch-me-not, refers to the small seed pods that spring open and eject its seeds if you touch them when plump and ripe.

There are two species based on color. The orange species, a.k.a. Spotted Touch-me-not (Impatiens capensis) is speckled with reddish-brown and its long tail spur curls underneath the back end of the irregular blossom. It prefers wet ground and I've found it in places like the soggy edges of Middle Pond near Saranac Inn.  Ruby-throated Hummingbirds love this plant.




The dangling, one-inch flowers [roughly the length and width] of the yellow version, also called Pale Touch-me-not (Impatiens pallida) have a tail-spur that points down.  It's mostly found in limestone regions with alkaline soils and prefers damp locations like wooded flood plains and shady ravines with a steady supply of moisture.  I'd look for it in the marble (metamorphosed limestone) belts of St. Lawrence County and the limestone bands on the edge of the Adirondacks.



Impatiens are succulents with translucent green stems.  The crushed leaves and stem juice (particularly from the Orange Jewelweed) are folk remedies for poison ivy rash, insect bites, nettles, minor burns and cuts.

Young shoots in spring and the stems and leaves in summer can be eaten as cooked greens.  Boil in two changes of water and discard the water.



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Friday, August 3, 2012

Cardinal-flower

Cardinal-flower beside the Moose River in the Nelson Lake vicinity, August, 2010
Cardinal-flower -- © Dave Spier

This native perennial grows wild along streambanks and in swamps and other wet places up and down the eastern half of the U.S., northeast into Canada and south to Columbia. I've found it in places like Copper Rock Falls on the Grass River (St. Lawrence County) and beside the Moose River (Herkimer County). The plant can reach two or three feet in height, making it a nice addition to any garden if you want it closer to home.

The Cardinal-flower (Lobelia cardinalis) gets its name from the bright-red blossoms hugging the upper stem. (Although sometimes called a spike, it is technically a raceme because of short flower stalks called pedicels.) Look closely at an individual corolla [flower] and you’ll notice three wide lobes forming a lower lip while two narrow lobes extend to the sides like arms. The male and female parts, also scarlet colored, form a narrow projection emerging like a crane above the petals. The base of the flower is a tube that seems perfectly made for hummingbird beaks.

Leaves are lance-shaped, long-pointed and serrated or toothed on the edges and they alternate on a single, main stalk.

Cardinal-flower contains alkaloids and should be considered toxic, as are other members of the genus Lobelia. In spite of this, Native Americans used root and leaf teas for various ailments.

Cardinal-flower and its relative, the blue-violet Great Lobelia (another moist-ground species) belong to the Lobelia subfamily of the Bluebell family.

Corrections, comments and questions are always welcome at
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