Showing posts with label 265. Show all posts
Showing posts with label 265. Show all posts

Tuesday, December 13, 2016

Twelve Months of LFD (2016)

I'm doing the year-end meme wherein I compile the first sentence of the first post of every month. Meme rules are as follows, as per DrugMonkey:
Post the link and first sentence from the first blog entry for each month of the past year.
I also add the first photo from the same first post. Previous takes on this Twelve Month meme at LFD were posted for 2008, 2009, 20102012, 2014, and 2015.

Aaand...here's the year 2016 for LFD:

January:
I've gathered up a collection of rocks to see which ones will float and which ones will sink.

February:

After checking out the southern route to Mineral Ridge while on my 1976 thesis quest, I headed north out of Silver Peak on then Highway 47 (now S.R. 265), carefully measuring the miles to the left-hand turnoff.

March:
With Mineral Ridge in my rear-view mirror, I stopped briefly at the basalt cinder cone, The Crater, which is located right on the side of the road just a few miles north of Silver Peak.

April:
From the vantage point of the end of the last post, a little southwest of Luning, Nevada, I turned around and pointed my camera northeast across Soda Spring Valley ... and paused to think back to the late 1980s, when we in the Western District of Former Mining Company had finally taken over exploration of the Walker Lane, which until then had been a mostly unexplored part of the Nevada District.

May:
I'm not sure how I got started on checking different words and concepts on Google Books Ngram Viewer yesterday, although my "History" tab suggests to me that it might have been related to some reading I was doing on science fiction.


June:
I collected this hand sample from the Original Bullfrog mine, Nye County, Nevada, sometime back in the mid to late 1980s when doing recon in the area, then cut and polished it—probably with a company saw and grinding wheel.

July:
We're now about two thirds of the way up the hill toward Red Pass on the Titus Canyon road, a one-way road that runs approximately east to west from Nevada into California, starting not far south of the ghost town of Rhyolite.

August:
There I was, preparing a few photos for posting in the ongoing Death Valley Trip – Titus Canyon series, doing my usual thing of marking up photos in MS Paint (I'm too cheap to buy any real photo programs), when I figured that I must have something around the house that might work better than either dragging the cursor across the screen with my trackpad or dragging my finger across the computer's touch screen.

September:
Now we'll leave the parking area near the Leadfield sign and, as I promised last time, we’ll walk out to what I’ve been referring to as the “far west cabin," although maybe that should really be "far northwest cabin."

October:
At the end of our last post—the one about the non-fold—we came into Titus Canyon proper and were looking at this view, down the canyon and to the west

November:
Just a bit of stibnite for your #MineralMonday.

December:
When I drove to the area on the south side of the Whipple Mountains where I ended up camping amidst downpours and nearby lightning, I thought I'd grab a few photos of the Colorado River Aqueduct, which passes through just north of CA Highway 62 on its way to the greater L.A. area, but an RVer was camped just beyond the aqueduct overpass, so I blew it off until I left.

Tuesday, March 1, 2016

Finding a Thesis: Arriving at Blind Spring Hill

With Mineral Ridge in my rear-view mirror, I stopped briefly at the basalt cinder cone, The Crater, which is located right on the side of the road just a few miles north of Silver Peak. From The Crater, I set my sights on Blind Spring Hill, which was last on my list of thesis possibilities. Blind Spring Hill is a ridge-like hill or small mountain that extends southward from the road between Benton and Benton Hot Springs, CA, and which hosts a small silver mining district, Blind Spring Hill mining district. Blind Spring Hill is about 30 miles north of Bishop, CA, and not far southwest of the California-Nevada state line.It was supposed to be my last stop.

I drove north on old 47 (now S.R. 265) to Blair Junction.
Blair Junction is the intersection between S.R. 265 (old 47) and Route 6 (cosigned with U.S. 95).
I turned left...and said goodbye to Mineral Ridge.
Mineral Ridge, looking south from near Blair Junction.
The domal shape of the Mineral Ridge core complex is easily seen looking south from U.S. 95–U.S. 6 if you're driving east or west along the south end of the Monte Cristo Range between Lone Mountain and Coaldale; in fact, the best angle to see the shape of the core complex really is from right about at Blair Junction, as in the above photo, which I took in 2010 when coming back from a trip to Fish Lake Valley. The pyramidal peak at the top of the dome is upper plate sitting atop of the Mineral Ridge detachment fault, which follows along and just above or just below the overall outline of Mineral Ridge. The fainter mountains seen through a low spot at the right end of Mineral Ridge is part of the Silver Peak Range south of Red Mountain, which is hidden from view at this angle. Rhyolite Ridge, also part of the Silver Peak Range, sits at the farthest right. The low, black hill on the horizon and left of center, almost hidden in the saltbush and shadscale is not The Crater. Rather, it's hill 4833, a low hill located along a paleo-beach in the south part of Big Smoky Valley (USGS TNM location). I've never stopped to check it out., but it might be made of tufa-cemented gravel related to a Pleistocene shoreline, or it could be something within the Tertiary Esmeralda Formation, which is broadly composed of shale, siltstone, and sandstone, with some interbeds of conglomerate, tuff, and tufa.

From Blair Junction, it's a little more than 6 miles to Coaldale Junction, where Highway 95 splits off from this section of conjoined Highway 6 to head north, and Highway 6 continues west toward California.
These old buildings are part of the site of Coaldale, which was active in its day.
Colorful, volcanic hills in the north part of the Silver Peak Range overlook the highway a little west of Coaldale and Coaldale Junction. I've driven by these hills many times but have never stopped. Uranium and coal occur in the area (Albers and Stewart, 1972).
Volcanic rocks south of Highway 6 near Coaldale Junction.
At Coaldale Junction, I turned off the Highway 95-6 combo, to continue west on Highway 6. From there, it's about 19 miles to the California border.

From the NV-CA state line, just north of the north end of the White Mountains, it's 7 miles to Benton and 8.5 miles to the north terminus of Blind Spring Hill.
Here's a good view of the White Mountains, looking south from close to the state line (Google Street View).

Boundary Peak, Nevada's highest mountain at 13,140 feet (4005 m), is the snow-covered peak above treeline on the left; Montgomery Peak, at 13,441 feet (4097 m), is California's higher peak just to its right. Boundary Peak is often considered a subsidiary peak to Montgomery Peak. Without Boundary Peak, Wheeler Peak, in eastern Nevada would be Nevada's highest mountain at 13,063 feet (3982 m). As for the White Mountains, Boundary Peak is practically a low hill: farther to the south, the Whites reach the even higher height of 14,246 feet (4342 m) at White Mountain Peak.

From U.S. 6 at Benton, I took California S.R. 120 toward Mono Lake and Lee Vining. Highway 120 is the road that ultimately goes over Tioga Pass to join Highway 49 on the other side of the Sierra Nevada near Moccasin Reservoir, about 30 miles northwest of the western entrance to Yosemite National Park. If you have never taken 120 over the Sierra, you should. If you’ve taken that route, I recommend driving 120 between Benton and Lee Vining, in either direction (I most commonly drive it from east to west). The route is typically closed in winter, so you might have to wait a couple months.
The section of Highway 120 route I'm recommending (Google Maps).

This rather obscure, back-country paved road will place the White Mountains either in front of you or in your rearview mirror, depending your direction of travel. You will either begin or end on Highway 395 at the south end of Mono Lake near Lee Vining, where you'll be at the north end of the flow-dome complexes of Mono-Inyo Craters and just south of Panum Crater. No matter which direction you end up traveling, you will be in for some great views, and you will be driving through some incomparable volcanic geology.

After getting on Route 120 at Benton, on my first journey ever through the area in 1976, I drove west toward the small outpost of Benton Hot Springs, which didn't look at all inviting to me. I didn't stop. At the time, besides being focused on completing my journey, I was plagued by my usual reservations about being observed by people while in the field, and I felt out-of-place and conspicuous. Despite these feelings, I probably did enjoy a lunch or two in Benton during my intermittent stay in the area (or was that later, when doing field work and reconnaissance for Former Mining Company?).

Because of my qualms or suspicions around people, rather than turning south at Benton Hot Springs, I almost certainly drove a couple miles farther to turn onto dirt. Without a doubt that turn is the way to go into the area if coming from the west, which I did at least once, maybe twice or three times.
This is the turnoff into the area, as seen from the west (Google Street View). The prominent mountains are the White Mountains. Blind Spring Hill is the low, inconspicuous range in front of the Whites.

My campsite, 14.5 miles from the state line on the dirt road I took and about 215 miles from home, was centrally located at about the middle of the hill’s western range front. I had a smallish tent, one large enough to sit or kneel in, but not tall enough in which to stand up. I had a sleeping bag, a cook stove, a small table, and  afolding chair.

Beyond camp, the dirt road steepened, zigged or zagged a little, and began its ascent of Blind Spring Hill’s western face to the numerous old workings. My 1976, light blue Opel sedan had easily traversed the dirt road from pavement to camp, but I could see I’d better walk up the road before committing the Opel to it. It’s a good thing I did, too. A 4WD would have been able to drive partway up the road, sliding around the gullies and dodging the gigantic boulders, but the road was completely washed out right at the top of the hill, so I would have had a long way to back down, something I wan't that proficient at in those early days of field work.

I walked up and took a look around.
The spliced Benton, Casa Diablo Mountain, Glass Mountain, and White Mountain Peak 15' quads, courtesy USGS.
The main part of the area, where all those prospects are, is bifurcated by two topo quads, and less than three miles from the corner of four quads. The area is right next to two paved roads and is 35 miles from a bar. This latter means that it doesn't quite make the criteria for being a good place to "find a mine" (and maybe that's why no one has, recently), although it is less than 30 airline miles from bars at Mammoth Lakes, so maybe...just maybe. (It's also less than 25 airline miles to The Boonies bar and cafe in Nevada's Fish Lake Valley—in case you were thinking of flying over the White Mountains!)
A strangely distorted view of a bar in Dyer, NV.
Blind Spring Hill, the last area on my list, was the most intriguing of all the places I’d visited. The mines were in granitic rock, which hopefully could be mapped into distinct plutons. I could learn some of the differences between weathering effects and the alteration effects that often accompany the fluids that shoot through and infuse the rocks during a mineralizing event. I stopped and looked at a few prospects on the way up the road, I looked around a few workings on the top of the hill, and I saw some promise. I had collected a good many rocks before I made it back to my camp at the base of the hill.

Note: I would now choose Mineral Ridge and the Mary Mine hands down over all the other areas I examined, perhaps barring the Betty O’Neal mine up near Battle Mountain. I’ve always had a lingering fondness for the Betty O’Neal, but would still choose Mineral Ridge. For one thing, it’s not located near Battle Mountain!!!

Selected Reference:
Albers, J.P., and Stewart, J.H, 1972, Geology and mineral deposits of Esmeralda County, Nevada [available for sale only]: NBMG Bulletin 78, 80 p

Related Posts:
Thesis: Finding an Area
Finding a Thesis: Battle Mountain to Austin to Gabbs
Finding a Thesis: Pole Line Road
Finding a Thesis: Pole Line to Belmont
Finding a Thesis: Klondyke District
Finding a Thesis: A Joshua Tree Aside
Finding a Thesis: Into the Palmetto Mountains
Finding a Thesis: Farther into the Palmetto Mountains
Finding a Thesis: A Bit O' Geology in the Palmetto Mountains
Future Stories from the Palmetto Mountains
Lida Summit Roadcut
Finding a Thesis: Next Stop, Silver Peak!
Finding a Thesis: Coming into Clayton Valley
Finding a Thesis: On the Southern Route to Mineral Ridge
Finding a Thesis: The Northern Route onto Mineral Ridge and a Little Geology
Finding a Thesis: Up to the Millsite and Back
Finding a Thesis: Views and Geography and ... Oh, What's That?
Finding a Thesis: A Cinder Cone Aside

Tuesday, February 23, 2016

Finding a Thesis: A Cinder Cone Aside

Just north of Silver Peak on S.R. 265 and just downhill from Mineral Ridge, one of Nevada's most accessible basaltic cinder cones rises out of the low alluvial slopes. The photo, taken from the northeast side of Mineral Ridge, where we made our last stop, shows the basalt cinder cone known as "The Crater" sitting in front of a southern bit of the Weepah Hills, the more distant and linear Paymaster Ridge, and the Clayton Valley playa, with its pale turquoise lithium brine fields.
A Google Earth view of The Crater and associated basalt flow rock. 
The cinder cone is assymetrical, as are many, with a breached east-facing side, where basalt lava flows erupted and spread downslope toward the Clayton Valley playa.
The cone is right beside S.R. 265, just north of Milepost 4, between Silver Peak and Blair Junction (see the map below).
Access to the cone includes a two-track dirt road on the south side and a pullout on the northwest side.
Click to enlarge this location map, the spliced and labeled Tonopah and Silver Peak 30x60 sheets, courtesy USGS. 
I pulled into a flat area on the northwest side of the cinder cone and walked around a little bit, stopping briefly while on my way to elsewhere: In 2010, I was on a loop from Tonopah to the Klondyke mining district to Silver Peak and Mineral Ridge and then back to Tonopah; in 1976, I was leaving Mineral Ridge to go to my next stop in California. Both trips took me past the cinder cone; both trips resulted in my next immediate destination being Blair Junction.
The Crater, looking southeast from its northwestern flank.
The cinder cone—at least the small chunk I saw—is composed dominantly of basalt blocks and bombs and smaller, lapilli-sized fragments.
A basic grain-size classification scheme for tephra, pyroclastic fragments that were thrown out of volcanoes, courtesy USGS.
Almost all the info on the web about this extinct volcano is contained in this one article by the Nevada Bureau of Mines and Geology (NBMG). The most detailed geologic map of the cone and area is here, in Figure 3B, along with a good description of the cone on page 9. This latter citation (Hulen, 2008) has the best reference to the only age date I could find:
“...the basalt has been K/Ar-dated at ~400,000 years (J. Witter, pers. comm., 2008), but this age is at odds with the cone’s barely-disturbed morphology. Accordingly, Witter has submitted a sample of basalt flow rock, clearly sourced from the cinder-cone vent (Figure 3B) for more reliable 40Ar/39Ar age-dating.”
All the other references I found state that the cone is about 390,000 years old without providing credit to an original source.

After parking and getting out of the truck, I walked around for a little while, trying to find some good examples of volcanic bombs. Rather than collecting any hand samples, I took a few photos.
Vesicular basalt.
This hand specimen from The Crater doesn’t show any indications that it was molten or semi-molten when it was thrown out of the vent or when it landed on the cone’s slopes—it is therefore considered a block and not a bomb—but it does show the average character of the basalt: dark-colored and with lots of small to medium-sized vesicles. The basalt is reported to contain phenocrysts of feldspar, hornblende, pyroxene, olivine, and magnetite (Price and Price, no date). I readily identified the small, light greenish olivine crystals in the basalt, though I didn’t get any pictures of the phenocrysts.
Volcanic bomb with a ropy or fluted texture.
The bomb is elongate in shape, and one end is wider than the other. Possibly the narrow end was upward when the bomb fell, still viscous, through the sky.
This could be a bit of flow or cooling texture in a basalt lapilli, but I'm not sure.
A large block of basalt with ropy and vesicular texture.
Am I seeing some aerodynamic shaping in this block, and perhaps some slight breadcrusting? Is this a bomb?
And here's a closer shot.
Here's a bomb with fluted texture, approaching spindly.
I probably should have looked harder for better examples of bombs, and maybe next time I visit, I’ll get around to the far side of the cone—or even up to the top!
A spiny bush and a prickly pear cactus growing on a desert pavement of basalt lapilli, small blocks, and bombs.
The bush looks like some kind of Atriplex or generic "saltbush," but I'm not sure which kind. Any ideas?
We can see the Weepah Hills and bluish Lone Mountain off to the northeast, beyond the dark, lower slopes of The Crater.
Next in this series, we'll head over to California.

Selected References:
Albers, J.P., and Stewart, J.H, 1972, Geology and mineral deposits of Esmeralda County, Nevada [available for sale only]: NBMG Bulletin 78, 80 p.

Hulen, J.B., 2008, Geology and Conceptual Modeling of theSilver Peak Geothermal Prospect,Esmeralda County, Nevada: unpublished report for Sierra Geothermal Power Corporation, 23p.

Price, J.G., and Price, E.M., no date, Cinder cone in Clayton Valley, Esmeralda County, Nevada: NBMG, Nevada EarthCaches webpage (with .kmz downloads available), accessed 18Feb2016.

Spurr, J.E., 1906, Ore Deposits of the Silver Peak Quadrangle, Nevada: U.S. Geological Survey Professional Paper 55, 174 p.

Related Posts:
Thesis: Finding an Area
Finding a Thesis: Battle Mountain to Austin to Gabbs
Finding a Thesis: Pole Line Road
Finding a Thesis: Pole Line to Belmont
Finding a Thesis: Klondyke District
Finding a Thesis: A Joshua Tree Aside
Finding a Thesis: Into the Palmetto Mountains
Finding a Thesis: Farther into the Palmetto Mountains
Finding a Thesis: A Bit O' Geology in the Palmetto Mountains
Finding a Thesis: Future Stories from the Palmetto Mountains
Lida Summit Roadcut
Finding a Thesis: Next Stop, Silver Peak!
Finding a Thesis: Coming into Clayton Valley
Finding a Thesis: On the Southern Route to Mineral Ridge
Finding a Thesis: The Northern Route onto Mineral Ridge and a Little Geology
Finding a Thesis: Up to the Millsite and Back
Finding a Thesis: Views and Geography and ... Oh, What's That?

Tuesday, February 16, 2016

Finding a Thesis: Views and Geography and ... Oh, What's That?

And so, we'll leave the millsite and locked gate on the northeast side of Mineral Ridge to get on with thesis hunting outside Nevada, for a change, and ... what's that up ahead? As we round the bend, The Crater, a basalt cinder cone comes fully into view.
The Crater, beyond the metal posts of the old gate.
In the photo above, the low range of hills beyond the Clayton Valley playa on the right is Paymaster Ridge, which we first saw quite a while ago on our way into Clayton Valley from the east. The rest of that hilly, mountainous mess, I mean mass—from directly behind The Crater and northward, to the left—is the Weepah Hills.  The high point in the photo, part of the Weepah Hills, reaches 7753 feet (2362 m).

The Weepah Hills is a more-or-less circular batch of disorganized lowlands, hills, and mountains, with the apparently chaotic to jumbled geologic formations of the area having been horizontally sliced by low-angle faults of probable detachment origin. Tertiary Esmeralda Formation sediments and Quaternary older alluvium cover much of the western part of the hills; a granitic body, the Weepah pluton, probably the same age as the 70 Ma Lone Mountain pluton to the northeast, crops out in a broad area in the northern hills; and a couple small patches of Precambrian Wyman Formation and Reed Dolomite poke through near the central part of the area. The rest of the area is mostly underlain by Cambrian to Ordovician sedimentary formations. Sunshine Mining Company took out a bit of gold at Weepah in the mid 80s; a few other companies have taken a look since then, but so far no additional mining has resulted.

These topo maps show the topography and main features of the area.
The spliced Goldfield and Tonopah 30 x 60 maps (courtesy USGS).
The same map with a few labels.
The whole area shown on these maps is detached.
Here, I've thrown on a few lineaments, including one going up Paymaster Canyon, which gives the eastern side of the Weepah Hills a linear look.
I probably drove straight on down to the cinder cone on my 1976 journey through the area, but on my more recent 2010 photo-taking expedition, I stopped near the old gate to look around at some of the old junk, and to take in the views.
I'm not sure what this old sign said, but it's totally bitten the dust. And it looks like it got run over by a tracked vehicle of some sort.
An old, though not very old, blasting sign.
Beyond the blasting sign, we can see a topographic formation known as The Monocline (this use of a capitalized "The" seems to be quite popular for geographic names in this very local region of Esmeralda County). The Weepah Hills form the broad expanse of hilly country beyond The Monocline, with rugged Lone Mountain forming the bluish mountain beyond that. (Please note that there are several Lone Mountains in Nevada; in fact, I found ten on Trails.com.)

At The Monocline, a thin, dark basalt layer caps soft, white sedimentary rocks, which, according to the Esmeralda County report, are part of the Tertiary Esmeralda Formation. These units have been tilted, maybe as much as 10 degrees.
A closer view of The Monocline and its closer, sister hill, from Google Earth.
Strangely enough, I've never stopped at The Monocline, although it looks like there is a perfectly good dirt road to it!
The Monocline, part of a mine dump, The Crater, and Clayton Valley playa.
The Crater.
A closer look at The Crater is next ... as fast as we can get down the alluvial fan!

Selected References:
List of minerals at Weepah: Mindat.
Weepah Mine: Western Mining History (info last updated in the 80s or 90s).
Weepah Deep: unpub 1989 info from Sunshine Mining Co and FMC Gold.

Weepah Mine in the County of Esmeralda Nevada: unpub 2008 report—much of this info is good, but ignore the Regional and Local Geology sections.

Weepah Reconnaissance/Submittal Summary: unpub 2014 recon report.

Maldonado, Florian, 1984, Bedrock geologic map of the Lone Mountain pluton area, Esmeralda County, Nevada: U.S. Geological Survey Miscellaneous Investigations Series Map I-1533.

Related Posts:
Thesis: Finding an Area
Finding a Thesis: Battle Mountain to Austin to Gabbs
Finding a Thesis: Pole Line Road
Finding a Thesis: Pole Line to Belmont
Finding a Thesis: Klondyke District
Finding a Thesis: A Joshua Tree Aside
Finding a Thesis: Into the Palmetto Mountains
Finding a Thesis: Farther into the Palmetto Mountains
Finding a Thesis: A Bit O' Geology in the Palmetto Mountains
Finding a Thesis: Future Stories from the Palmetto Mountains
Lida Summit Roadcut
Finding a Thesis: Next Stop, Silver Peak!
Finding a Thesis: Coming into Clayton Valley
Finding a Thesis: On the Southern Route to Mineral Ridge
Finding a Thesis: The Northern Route onto Mineral Ridge and a Little Geology
Finding a Thesis: Up to the Millsite and Back

Tuesday, February 2, 2016

Finding a Thesis: The Northern Route onto Mineral Ridge and a Little Geology

Heading north out of Silver Peak, with The Crater in view.
After checking out the southern route to Mineral Ridge while on my 1976 thesis quest, I headed north out of Silver Peak on then Highway 47 (now S.R. 265), carefully measuring the miles to the left-hand turnoff. This time, the road was exactly where the map said it would be, and it was a fairly good, bladed dirt road. And, if you remember from my last post in this series, I was on my way to the Mary Mine. Today, the Mary and nearby Drinkwater Mines are often combined together as one agglomeration known as the Mary-Drinkwater Mine or complex, and both are part of Scorpio Gold Corp's Mineral Ridge project, which has been in production since 2011.
Mineral Ridge on a portion of the Silver Peak 15' quad, courtesy USGS.
The road I took is the double-dashed track going west from old Highway 47 about a quarter mile south of The Crater. As can possibly be gleaned through past explorations of double-dashed roads in my ’72 Opel back in ’76, on older maps, especially ones dating significantly before the time of the exploration, these roads might have been anything from great, graded gravel roads to terrible two-track roads that were barely visible through overgrown sagebrush. I was fortunate this time, or so I thought as I turned west.



And now, I'll go into the geology of Mineral Ridge just a little, as per my memory from work done there in the mid-late 1980s and published work available online or in journals I have on hand.
We are at the road junction, looking to the southwest.
We can see quite a bit from this viewpoint, notably the Mineral Ridge detachment fault and the Mary-Drinkwater Mine, labeled M-D Mine.
The Mineral Ridge detachment fault, in bright red above, places mostly Cambrian sedimentary rocks of the upper plate over the Precambrian to Cambrian Reed Dolomite, the Precambrian Wyman Formation, and early Tertiary-aged alaskite and granite of the lower plate (Noland et al., 2015). The details may be somewhat complex.

Two notes worth mentioning: 1) I've labeled the seds of the upper plate as "ЄpЄ" because although the upper plate rocks are dominantly Cambrian, there may be some late Precambrian rocks in one area, and 2) The Reed Dolomite is often shown as straddling the Precambrian-Cambrian boundary, but it is sometimes assigned exclusively to either the Precambrian or Cambrian. I'm treating it here as ЄpЄ.

The low-angle fault shown in dark-red above—it’s somewhat left of center—places tilted dark rocks, presumably of the upper plate, over seemingly less tilted or nearly flat-lying, orangey Reed Dolomite. The Reed is usually placed in the lower plate of the detachment (as it is here), but rarely, as in this article, it is placed in the upper plate. I place it in the lower plate or treat it as its own structural plate, as in this abstract, which unfortunately cannot be read online without some rigamarole (or maybe can't be read at all).

The Reed Dolomite is very thin on Mineral Ridge, it’s possibly attenuated, and it often looks microbrecciated. Although not obviously ductiley deformed, carbonates such as the Reed can be ductiley deformed and not show it: they can heal and recrystallize as fast deformation can occur, making ductile fabrics—if any formed—difficult to identify.

I’ve marked this probable detachment surface—in the labeled photos above and below—in dark red, to contrast with the bright red of what I know to be the Mineral Ridge detachment fault.
Here's a closer view of that low-angle surface. It's probably a continuation of the Mineral Ridge detachment fault, only lower in elevation and closer to us.
I've labeled the known upper plate (UP) and lower plate (LP) rocks. The ?? in bright red is probably upper plate.
I'm only saying that the dark-colored rocks of these photos are "probably" upper plate because I haven't personally walked this ground, unlike many other sections of ground on Mineral Ridge. They are shown as shown as Cambrian limestone and dolomite undivided here, with the fault being the Mineral Ridge detachment fault.

Because from a distance the tilted dark-colored rocks look to me like Tertiary volcanic rocks, I'll add another side note: A small hill of Tv occurs south of the Oromonte and Wedge Mines (south to SSW of the Mary-Drinkwater complex). When I mapped in the area, I wondered if the reddish volcanic unit exposed on that small hill was tilted as part of the upper plate, or untilted as part of a younger unit erupted after detachment faulting ceased. I don’t really remember my conclusion. On this map (Diamond and Ingersoll, 2003, p. 464), the Tv is post-detachment and lying on top of Te (Tertiary Esmeralda Formation), which I recall as being tilted (the Te is in the upper plate of the detachment fault, whereas the Tv overlaps the detachment fault and therefore post-dates it).

Aaaand, back to 1976:



Onward I drive: up the coalesced alluvial fans emanating from New York, Echo, and Eagle Canyons, Custer and Great Gulches, and other lesser gulches and canyons. I was finally on the northern approach to the Mary Mine and the top of Mineral Ridge.
The road in 2010. It's unlikely that power lines paralleled the road in 1976.
Woh! Suddenly the road ends in a huge washout.
But in 2010, the accessible part of the road ended like this.
Locked gates are the way of the mining world.
I have some things to say about locked gates, but I’ll save them for another post.

Still in the Opel, I carefully meander up the sandy dry wash until I come right up against a 50-foot-high wall of dirt and rock: Instead of a road, I’m looking at a filled-in canyon between two cliffy ledges. I know the road continues on, somewhere beyond this pile of debris, but I can't get to it! I walk around, searching unsuccessfully for a go-around or bladed connection between the washed-out road and the rest of the road.

Resigned to hiking, I park in the sand wash, carefully pointing the car downhill for a quick getaway; I get my field gear and maps out of my car and start walking up the hill toward the Mary and Drinkwater Mines.

To be continued...

Selected References:
Albers, J.P., and Stewart, J.H, 1972, Geology and mineral deposits of Esmeralda County, Nevada [available for sale only]: NBMG Bulletin 78, 80 p.

Diamond, D.S., and Ingersoll, R.V., 2002, Structural and sedimentologic evolution of a Miocene supradetachment basin, Silver Peak Range and adjacent areas, west-central Nevada, in The George A. Thompson Volume: The Lithosphere of Western North America and Its Geophysical Characterization: International Geology Review, p. 588-623.

Hulen, J.B., 2008, Geology and Conceptual Modeling of theSilver Peak Geothermal Prospect,Esmeralda County, Nevada: unpublished report for Sierra Geothermal Power Corporation, 23p.

Noland, P.D., Briscoe, Scott, and Hawley, P.J., 2015, Genesis and Timing of Gold Mineralization at Mineral Ridge, Esmeralda County, Nevada, and Implications for Future Exploration and Discovery [entire article], in New Concepts and Discoveries, GSN 2015 Symposium Proceedings: Geological Society of Nevada, p. 153-168.

Powers, S.L., 1988, Two lineation directions in the Mineral Ridge core complex, Esmeralda County, Nevada [abs, not available]: Geological Society of America, Abstracts with Programs, v. 22, no. 3, p. 222.

Spurr, J.E., 1906, Ore Deposits of the Silver Peak Quadrangle, Nevada: U.S. Geological Survey Professional Paper 55, 174 p.

Wesnousky, S.G., 1994, Evaluation of the geologic relations and seismotectonic stability of the Yucca Mountain area, Nevada Nuclear Waste Site Investigation (NNWSI), Progress Report 30 September 1994: UNR, Mackay School of Mines, Center for Neotectonic Studies. Accessed via NRC website.

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