Riglos en Capsulas II


Vale, ya tenemos todas las piedra juntas y ¿ahora que? Pues ahora, el momento clave es la desconexión del mediterráneo de la depresión del Ebro, por la que empieza a circular el río Ebro, además se genera una nueva red fluvial que lava los finos y los evacua de la zona de conglomerados, hasta el Ebro y este finalmente al mar con la generación de las playas…pero esa es otra historia…


Bien, pues ahora se tienen que alinear los astros para que se generen los mallos, y de los 11 abanicos que se forman a los pies del Piri, solo se alinean los astros para Agüero, Riglos, Roldan y Badiello.
¿Que es eso de que se alineen los astros? Pues se han de cumplir ciertas condiciones en los materiales; buen espesor, que estén bien cementados, que abunden las fracturas y que el material sea lo mas isótropo posible, es decir que las líneas de estratificación, aunque presentes apenas estén marcadas así la erosión no “se ceba” en ellas.

Acababamos el post anterior hablando de fracturas o fisuras, mas o menos verticales, pues bien esas son el punto de inicio de individualización de un mallo, que de desarrolla debido a la acción de varios agentes, aunque podríamos hablar fundamentalmente del agua, hay otros (líquenes, animales…) La densidad de estas fracturas en un factor decisivo, así muchas en poco espacio hace que la erosión progrese rápidamente, que no se formen agujas y que el retroceso del escarpe sea rápido. Sin embargo una densidad demasiado baja tampoco es útil puesto que no se formarían mallos, ni agujas ni ná, solo plataformas. Así que, como todo en la vida, las fracturas en su justa medida. Mañana mas y a ver si mejor….

La imagen es la secuencia de formacion de los Mallos. En ella se aprecia la importanco de las fracturas. Se ve...no?

Descripciones


1. Describe ambas fotografías, di todo lo que sepas acerca de ellas y analiza que tienen en común. ¿Cómo pueden servir de criterio de datacion relativo?

2. Mándame los resultados por mail antes del fin de semana.

3. La realización del ejercicio es obligatoria.








Continental Drifts

1. Lee el siguiente texto y contesta a las preguntas que salen al final del texto (puedes contestar en castellano).

2. Mandame las respuesta al mail

3. Este ejercicio es obligatorio

Continental drift, in the context of the modern theory of plate tectonics, is explained by the movement of lithospheric plates over the asthenosphere (the molten, ductile, upper portion of the earth's mantle). Precisely used, the term continental drift is actually rooted in antiquated concepts regarding the structure of the earth. Modern geophyicists and geologists explain the movement or drift of the continents within the context of plate tectonic theory. The visible continents, a part of the lithospheric plates upon which they ride, shift slowly over time as a result of the forces driving plate tectonics. Moreover, plate tectonic theory is so robust in its ability to explain and predict geological processes that it is equivalent in many regards to the fundamental and unifying principles of evolution in biology, and nucleosynthesis in physics and chemistry.

The original theory of continental drift made the improbable assertion that the continents moved through and across an underlying oceanic crust much as ice floats and drifts through water. Eventually multiple lines of evidence allowed modern tectonic theory to replace continental drift theory.

Based upon centuries of cartographic depictions that allowed a good fit between the Western coast of Africa and the Eastern coast of South America—in 1858, French geographer Antonio Snider-Pellegrini, published a work asserting that the two continents had once been part of larger single continent ruptured by the creation and intervention of the Atlantic Ocean.

In the 1920s, German geophysicist Alfred Wegener's writings advanced the hypothesis of continental drift depicting the movement of continents through an underlying oceanic crust.

Wegener's hypothesis met with wide skepticism but found support and development in the work and writings of South African geologist Alexander Du Toit who discovered a similarity in the fossils found on the coasts of Africa and South America that were seemingly derived from a common source. Other scientists also attempted to explain orogeny (mountain building) as resulting from Wegener's continental drift.

Wegener's initial continental drift assertions were based upon the geometric fit of the displaced continents and the similarity of rock ages and Paleozoic fossils in corresponding bands or zones in adjacent or corresponding geographic areas. Wegener also argued that the evidence of Paleozoic glaciation in South Africa, South America, India and Australia—sites far removed from estimates of the geographical extent of glaciation—argued strongly for continental drift

The technological advances necessitated by the Second World War made possible the accumulation of significant evidence regarding Wegener's hypothesis, eventually refining and supplanting Wegener's theory of continental drift with modern plate tectonic theory. Although Wegener's theory accounted for much of the then existing geological evidence, Wegener's hypothesis was specifically unable to provide a verifiable or satisfying mechanism by which continents—with all of their bulk and drag—could move over an underlying mantle that was solid enough in composition to be able to reflect seismic S-waves.

In his 1960 publication, History of Ocean Basins, geologist and U.S. Navy Admiral Harry Hess (1906–1969) asserted that thermal convection currents in the athenosphere provided the driving force behind plate tectonics. The degree with which the earlier geological community resisted acceptance of Wegener's theory of continental drift is clearly demonstrated by the fact that Hess's assertion of thermal currents was drawn from work done by Author Holmes in the 1930s.


Cuestiones


1. What characteristics do you think enable a plant or animal to survive the breakup of a continent? Try to think of at least two characteristics.
2. Scientists have foundMesosaurusfossils on the east coast of the southern tip of South America and the west coast of South Africa. Even though we know this animal could swim, does the presence ofMesosaurusfossil remains in two places support Wegener and Du Toit’s theory? Give evidence to support your ideas.
3. Do you think that the breakup of Pangaea into Gondwanaland and Laurasia affected organisms originally living on Pangaea? Do you think that the breakup of Gondwanaland into the southern continents affected the organisms living in Gondwanaland? Give evidence to support your ideas.
4. Do you think the breakup of Pangaea during the Jurassic period led to the extinction of some dinosaurs and the evolution of other dinosaurs?
5. Scientists have evidence thatGlossopteriswas found in what is now India, Antarctica, Australia, and Madagascar. What does this tell you aboutGlossopteris? What does it tell you about the climate and environment of Gondwanaland?
6. Based on the geologic past, we can assume that Earth is always changing. What modern-day evidence supports this idea? Hint: Think about natural disasters. Where do they often occur?

Geocaching en la Ruta del Serrablo


La próxima semana hacemos una salida al Serrablo. La excursion tendra como linea conductora las iglesias del Serrablo y le añadiremos la explicacion geológica y la biodiversidad de la zona de la Guarguera. Además intentaremos buscar un tesoro con ayuda de un mapa, las nociones de geografía fisica que sabeis y el GPS.

Os dejo algo de material para que vayáis preparados a la excursión.

El Geocaching consiste en buscar 'tesoros' que otros se han encargado de esconder. Las coordenadas exactas que permiten localizarlos se publican en páginas web especializadas en esta actividad. Basta con que uno descargue dichas coordenadas en su aparato de GPS y lanzarse a buscar. El Pirineo está llena de 'caches' (así se llaman los tesoros) y nosotros vamos buscar uno de ellos.


Ruta del serrablo:

Geología y biología que nos vamos a encontrar:
Prepararemos esta información en clase.