The night before last I worked very late and fell asleep, which has been the norm lately. When I finally got up to go to bed, I checked for northern lights. I used to do this every night, but we have seen the aurora so seldom these past few years that I have gotten out of the habit. But low and behold -- there they were! Not only were the northern lights out, but they were dancing all over the sky. I have seen the northern lights many, many times before -- but only a few times before have I seen them dance like they did the other night. You could really tell that the solar radiation was skimming across the upper atmosphere at an incredible rate of speed. I tried to get a picture, but I must admit I have not mastered this task with my present camera. However, here are a few links to Shawn Malone from Marquette. She is an expert at taking photographs and video of the northern lights. Her main web page is: http://lakesuperiorphoto.com. From this web page you can see incredible photographs of northern lights. A couple of links to videos she made of the northern lights from the other night are: http://vimeo.com/40899634 and http://vimeo.com/40959521. Here are a few of Shawn's photos that are available for sale from her web page.
Last night was a beautiful evening, so I headed into the dunes for some exercise. On the walk into the dunes, I noticed that the spring vegetation is really popping up, including more and more spring wild flowers.
Another thing I noticed is that shelf fungi are having a field day with all the dead and dying beach trees. This is a disease that causes mortality and defects in beach trees in the eastern United States and Europe. The disease results when the beech scale insect attacks the bark, creating a wound. Later, two different fungi invade the tree through the wound, causing a canker to form. In subsequent years, new cankers will continue to form, ultimately leading to the death of the tree. The spread of this disease over the last four or five years has been rapid.
The dunes.....
For inspiration and comfort, I decided to hike over to "sacred mountain."
Wednesday, April 25, 2012
Tuesday, April 24, 2012
Lake Superior Sunset
It was a beautiful evening last night, so I decided to head down to the "Big Lake" beach, as we locals call it. I arrived just in time to watch the last ten minutes of the sunset.
I liked the glow of the sunset through and off the waves.
Going down, down, down....
Extreme close up....
A freighter was straight north of Grand Marais heading toward the setting sun. You can see how rough the lake was last night.
The last segment of light....
A close up of the last segment....
Beach art located just to the east of the boardwalk.
The channel lighthouse....
I liked the glow of the sunset through and off the waves.
Going down, down, down....
Extreme close up....
A freighter was straight north of Grand Marais heading toward the setting sun. You can see how rough the lake was last night.
The last segment of light....
A close up of the last segment....
Beach art located just to the east of the boardwalk.
The channel lighthouse....
Monday, April 23, 2012
Photos of Thin Mineral Sections
While conducting research for the online rockhounding adventures, I came across a web page published by the New York State Museum. As they explain on their web page at http://www.nysm.nysed.gov/virtual/collections/splendor_in_stone/splendortour.html
The images in the tour are pictures of thin slices of rocks viewed through a polarizing microscope. The images beg the question: -What on Earth is that?- Is this where Science Intersects Art? At the same time they illustrate geologic processes strategically captured inside a wide range of rock types.
The main image comes first, then the black and white line drawing explaining some of the main features of the thin section, and then a short paragraph.
PHENGITE
Whiteschist
Dora Maira Massif, Italian Alps
Colorful laths of phengite, a type of mica, sweep across this image. The speckled, almost iridescent, nature of the color -- known as bird's eye extinction -- is an identifying characteristic of all members of the mica family. Bird's eye extinction is an artifact caused by grinding the rock slice to make the thin section. The parallel lines within the crystals are traces of a nearly perfect single cleavage that is typical of micas. The cleavage planes are prominent here because you see the edges of the phengite plates, much as if you were looking end-on at the pages of a book.
CRENULATIONS
Mount Abraham Mica-Schist
Addison County, Vermont
The ridges and valleys running from the upper right to the lower left of this photograph are little wrinkles called crenulations. These small folds of the planar fabric look like corrugated cardboard. The early fabric here is made up of plates of mica (muscovite and paragonite) and long, opaque ilmenite crystals. Find an ilmenite crystal that is bent around a crenulation. Straighten it out in your imagination and estimate how much this rock was shortened folding.
Cordierite and Quartz
Pegmatite in Manhattan Schist
Fairfield County, Connecticut
Cordierite and quartz are the two most abundant minerals in this rock. They grew together under high temperature and pressure that existed in the deep roots of the Appalachian mountains during the early stages of their formation. The orange giraffe is a cordierite crystal that is speckled with sillimanite needles and dark, grungy patches of sericite plus iron-oxide. The oxides, sericite, and sillimanite formed when the temperature dropped as the overlying high mountains were eroded away.
REACTION CORONA
Olivine metagabbro
Essex County, New York
The original igneous rock, a gabbro, contained only olivine and feldspar. As pressure and temperature changed during metamorphism, the olivine and feldspar reacted to form layers of pyroxene and garnet. The pyroxene and garnet surround the olivine grains with coronas or halos of concentric rings. Here you see only part of a corona because of the high magnification. The feldspar at the bottom appears dark because it contains millions of tiny grains of spinel that replaced part of the feldspar as the corona formed. Reactions like this one occur very slowly. This corona was preserved when the rock became too cool for the reaction to continue.
VOLCANIC GLASS
Holyoke Basalt
Hampshire County, Massachusetts
As this basalt from an ancient lava flow cooled and crystallized, it formed a mass of interlocking grains of gray feldspar, yellow and white pyroxene and black iron oxides. The gold and black shape is a pocket of volcanic glass, made from liquid left over after the feldspar and pyroxene crystals formed. Glass (even ordinary window glass) is actually a supercooled liquid, congealed but not yet crystalline. A bright fringe of radiating crystals too small to identify has begun to form around the edges of this glass.
DIOPSIDE IN CALCITE
Marble
Essex County, New York
The rounded crystals are diopside, a member of the pyroxene family. They are surrounded by calcite. Notice the grid of lines in the upper crystal. These are the traces of cleavage planes viewed end-on; the nearly rectangular pattern they form is typical of pyroxenes and helps to identify them. You are looking at this crystal parallel to both cleavage planes; the same pattern does not appear in the two other diopside grains because they are oriented differently in the thin section. The different colors of the three diopside grains is also due to their difference in orientation.
STAUROLITE
Goldenville Formation
Guysborough County, Nova Scotia
The large wedge-shaped crystal is staurolite. The surrounding rock is a mixture of fine-grained quartz and mica. You can see that the mica and quartz grains line up in parallel planes. This alignment, called foliation, formed in response to deformation of the rock. Inclusions of quartz and mica grains in the big staurolite crystal retain this foliation, showing that the staurolite grew after the rock was deformed.
SPIRAL INCLUSION TRAIL
Pelitic Schist
Santa Fe County, New Mexico
The large purple blob is garnet, a mineral common in metamorphosed shaly rocks known as pelitic schists. As garnets nucleate and grow, they can trap nearby grains. These inclusions commonly result in quite striking patterns. This particular garnet trapped a number of quartz crystals in smoothly curving spiral trails. The spiral configuration suggests that the garnet may have rotated as it grew.
TWO FOLIATIONS
Quartz-mica schist
Tauern Window, Austrian Alps
Micas, like the colorful muscovite in this photo, grow as flat plates. The mica plates tend to align themselves parallel to the direction of flow in a deforming rock, partly because they grow as the rock deforms. The planar fabric created by the parallel mica plates is called foliation or schistosity. Here you see the edges of the mica plates. Notice that there are two distinct foliations, almost at right angles to each other. This rock evidently had a life that involved at least two deformations.
GLAUCOPHANE
Blueschist
Siphnos, Greece
Blue is the natural color of glaucophane in plane-polarized light. You can see that individual crystals vary from blue to lavender to colorless depending on their orientation. The crystals have a zillion orientations in the three-dimensional world of the rock, but keep in mind that the thin section is only a two-dimensional slice. Plane polarized light interacts in specific ways with grains that are positioned differently to the light path. The slight color variations that result serve to identify glaucophane because only two other very rare minerals show comparable color. Rocks that contain abundant glaucophane are called blueschists.
The images in the tour are pictures of thin slices of rocks viewed through a polarizing microscope. The images beg the question: -What on Earth is that?- Is this where Science Intersects Art? At the same time they illustrate geologic processes strategically captured inside a wide range of rock types.
The main image comes first, then the black and white line drawing explaining some of the main features of the thin section, and then a short paragraph.
PHENGITE
Whiteschist
Dora Maira Massif, Italian Alps
Colorful laths of phengite, a type of mica, sweep across this image. The speckled, almost iridescent, nature of the color -- known as bird's eye extinction -- is an identifying characteristic of all members of the mica family. Bird's eye extinction is an artifact caused by grinding the rock slice to make the thin section. The parallel lines within the crystals are traces of a nearly perfect single cleavage that is typical of micas. The cleavage planes are prominent here because you see the edges of the phengite plates, much as if you were looking end-on at the pages of a book.
CRENULATIONS
Mount Abraham Mica-Schist
Addison County, Vermont
The ridges and valleys running from the upper right to the lower left of this photograph are little wrinkles called crenulations. These small folds of the planar fabric look like corrugated cardboard. The early fabric here is made up of plates of mica (muscovite and paragonite) and long, opaque ilmenite crystals. Find an ilmenite crystal that is bent around a crenulation. Straighten it out in your imagination and estimate how much this rock was shortened folding.
Cordierite and Quartz
Pegmatite in Manhattan Schist
Fairfield County, Connecticut
Cordierite and quartz are the two most abundant minerals in this rock. They grew together under high temperature and pressure that existed in the deep roots of the Appalachian mountains during the early stages of their formation. The orange giraffe is a cordierite crystal that is speckled with sillimanite needles and dark, grungy patches of sericite plus iron-oxide. The oxides, sericite, and sillimanite formed when the temperature dropped as the overlying high mountains were eroded away.
REACTION CORONA
Olivine metagabbro
Essex County, New York
The original igneous rock, a gabbro, contained only olivine and feldspar. As pressure and temperature changed during metamorphism, the olivine and feldspar reacted to form layers of pyroxene and garnet. The pyroxene and garnet surround the olivine grains with coronas or halos of concentric rings. Here you see only part of a corona because of the high magnification. The feldspar at the bottom appears dark because it contains millions of tiny grains of spinel that replaced part of the feldspar as the corona formed. Reactions like this one occur very slowly. This corona was preserved when the rock became too cool for the reaction to continue.
VOLCANIC GLASS
Holyoke Basalt
Hampshire County, Massachusetts
As this basalt from an ancient lava flow cooled and crystallized, it formed a mass of interlocking grains of gray feldspar, yellow and white pyroxene and black iron oxides. The gold and black shape is a pocket of volcanic glass, made from liquid left over after the feldspar and pyroxene crystals formed. Glass (even ordinary window glass) is actually a supercooled liquid, congealed but not yet crystalline. A bright fringe of radiating crystals too small to identify has begun to form around the edges of this glass.
DIOPSIDE IN CALCITE
Marble
Essex County, New York
The rounded crystals are diopside, a member of the pyroxene family. They are surrounded by calcite. Notice the grid of lines in the upper crystal. These are the traces of cleavage planes viewed end-on; the nearly rectangular pattern they form is typical of pyroxenes and helps to identify them. You are looking at this crystal parallel to both cleavage planes; the same pattern does not appear in the two other diopside grains because they are oriented differently in the thin section. The different colors of the three diopside grains is also due to their difference in orientation.
STAUROLITE
Goldenville Formation
Guysborough County, Nova Scotia
The large wedge-shaped crystal is staurolite. The surrounding rock is a mixture of fine-grained quartz and mica. You can see that the mica and quartz grains line up in parallel planes. This alignment, called foliation, formed in response to deformation of the rock. Inclusions of quartz and mica grains in the big staurolite crystal retain this foliation, showing that the staurolite grew after the rock was deformed.
SPIRAL INCLUSION TRAIL
Pelitic Schist
Santa Fe County, New Mexico
The large purple blob is garnet, a mineral common in metamorphosed shaly rocks known as pelitic schists. As garnets nucleate and grow, they can trap nearby grains. These inclusions commonly result in quite striking patterns. This particular garnet trapped a number of quartz crystals in smoothly curving spiral trails. The spiral configuration suggests that the garnet may have rotated as it grew.
TWO FOLIATIONS
Quartz-mica schist
Tauern Window, Austrian Alps
Micas, like the colorful muscovite in this photo, grow as flat plates. The mica plates tend to align themselves parallel to the direction of flow in a deforming rock, partly because they grow as the rock deforms. The planar fabric created by the parallel mica plates is called foliation or schistosity. Here you see the edges of the mica plates. Notice that there are two distinct foliations, almost at right angles to each other. This rock evidently had a life that involved at least two deformations.
GLAUCOPHANE
Blueschist
Siphnos, Greece
Blue is the natural color of glaucophane in plane-polarized light. You can see that individual crystals vary from blue to lavender to colorless depending on their orientation. The crystals have a zillion orientations in the three-dimensional world of the rock, but keep in mind that the thin section is only a two-dimensional slice. Plane polarized light interacts in specific ways with grains that are positioned differently to the light path. The slight color variations that result serve to identify glaucophane because only two other very rare minerals show comparable color. Rocks that contain abundant glaucophane are called blueschists.
Sunday, April 22, 2012
Au Sable Point
It was a bit chilly the other night but I decided to hike out Au Sable Point. I stopped at the foot bridge and went down to what I call Jacobsville Sandstone beach. When I was there a couple of weeks ago, the water level was down so low that I was able to explore the whole area like never before. I was also able to walk on the rocks and beach back east almost all the way to the log slide. Well on this past evening the wind was coming from the north, causing the high water line to move way up onto the rocks.
One of the planets was out and looked huge.
One of the planets was out and looked huge.
Saturday, April 21, 2012
More Log Slide Area Photos
Today I will post the second half of the photos I took the other night during my evening hike in the Log Slide area of the Pictured Rocks National Lakeshore.
When I headed away from the Lake Superior shoreline to the south side of the Grand Sable Dunes, I spotted this 100 year old telegraph pole. It is still vertical, but is mostly buried. Only the top 3 or 4 feet of the pole is showing.
A bizarre burl.....
I headed down the dune, into the woods, and headed south to find the Masse Homestead trail. When I looked off to my left, I spotted this huge downed tree. In the photo below you can see my hiking poles propped on the left side. At its base, this tree was around five feet in diameter.
These are photos of the "communities" growing on the downed grandfather tree.
Then I continued hiking to the Log Slide. As I approached the viewing platform, I spotted this huge eagle in a tree just to the left of the platform. By the time I turned my camera on, he was already flying away.
Views from the platform...
The eagle came back around....
Here is a photo of the sunset from my front porch.
When I headed away from the Lake Superior shoreline to the south side of the Grand Sable Dunes, I spotted this 100 year old telegraph pole. It is still vertical, but is mostly buried. Only the top 3 or 4 feet of the pole is showing.
A bizarre burl.....
I headed down the dune, into the woods, and headed south to find the Masse Homestead trail. When I looked off to my left, I spotted this huge downed tree. In the photo below you can see my hiking poles propped on the left side. At its base, this tree was around five feet in diameter.
These are photos of the "communities" growing on the downed grandfather tree.
Then I continued hiking to the Log Slide. As I approached the viewing platform, I spotted this huge eagle in a tree just to the left of the platform. By the time I turned my camera on, he was already flying away.
Views from the platform...
The eagle came back around....
Here is a photo of the sunset from my front porch.
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