Tuesday, November 8, 2016

LANDFORMS CREATED BY SEA WAVES


SOURCE : NIOS & NCERT

• The work of sea waves as an agent of gradation includes erosion, transportation and deposition.

EROSION BY SEA WAVES:

Abrasion:

• When the sea water loaded with rock fragments and sand attack the coastal rocks it is called abrasion.

Attrition:

• The rock particles present in the water hit against each other and break into progressively smaller particles. This process is called attrition.


hydraulic action:

• The broadening of cracks and crevices in the cliffs along the coast due to the attack of the sea waves is called the hydraulic action.
• The rocks made up of limestone are subjected to solution action by the sea waves.
• All these processes help in formation of new features on the coastal margins.

Landforms Produced by sea Wave Erosion:

• Waves, like streams erode the coastal rocks with the help of rock fragments present in the water.

Important features made through sea wave erosion are mentioned here:

Sea Cliff:

• The maximum impact of the sea waves is observed on the lower part of the coastal rocks and consequently the lower part of the rocks is eroded more rapidly than the upper part.
• This results in the formation of a hollow under the rock and with the passage of time this excavation in the lower part of the rock keeps on becoming larger.
• The upper part of the rock is thus left projecting out towards the sea.
• After sometime, this projecting part fall into the sea under its own weight. As a result a vertical wall is left. This vertical wall is called a cliff.
• In India a number of sea cliffs are found along the Konkan Coast of India.

Sea Caves :

• When the upper part of the coastal rock is hard and the lower part is soft, the erosion is not uniform.
• The lower part of the rock in such circumstances is eroded much faster than the upper part.
• Due to differential erosion a hollow is created in the lower part of the rock.
• When the waves pound against this hollow, air present in the hollow gets compressed.
• When the wave comes out of the hollow, the pressure on air is also released and it expands.
• Due to continuous compression of the air in the hollow, the rocks are subjected to a great pressure and they break.
• In this process, the hollows in the lower part of the rock keep on enlarging.
• With passage of time they attain the form of caves and are known as sea caves.

Sea arches or natural bridges:

• When a part of coast extends to some distance into the sea, sea waves working from opposite directions cut a passage through the soft rocks.
• In the initial stages, this passage is a narrow hole but it enlarges into a broad arch.
• These broad door like features are called sea arches or natural bridges.

Sea Stacks:

• When the roof of an arch is broken by erosion or under its own weight or due to any other reason a part of the original rock remains standing as a solitary mass.
• It may be the rock forming the side of the arch. This type of a feature is called a sea stack.
• Sometimes they take the shape of islands but such islands are not permanent.

Stumps:

• Small underwater stacks are known as stumps.

Transportation by Sea Waves:

• Sea waves, currents and tides are the main agents of transportation of eroded material in the coastal regions.
• The material deposited on the coasts by the rivers and glaciers etc. is removed and transported by the waves.

Transportation by sea waves is carried out in two ways:

• Removal and transportation, towards the sea, of the material deposited by river etc. on the coast.
• Carrying of material found in the sea to the coastal areas.
• During this process, the oceanic materials like pearls, conches and other shells are brought to the coast.

Deposition by Sea Waves:

• Sea waves are helpful in the deposition of the material eroded from the coastal areas.
• Oceanic current are also helpful in deposition of the transported material.
• Deposition of the material along the coast is selective.
• The larger particles are deposited first therefore they are found near the coast.
• On the other hand, the finest particles are deposited last and they are deposited generally away from the coast.
• This selective deposition is sometimes altered or affected by a change in the intensity or force of the waves.
• Thus it is sometimes possible to find very fine particles deposited near the coast where generally larger particles are deposited.
• A number of topographical features are formed due to deposition by waves and currents.


Some of these topographical features are discussed here:

Beach :

• Most of the material eroded and picked up by the waves is deposited near the coast.
• Due to this deposition, the sea becomes shallow and a part of the coastal area is raised above the water level.
• This raised portion is almost like a flat plain of a platform formed of gravel and sand.
• This type of depositional features along the coast is called a beach.
• Marina Beach of Chennai and Kovalam Beach of Thiruvananthapuram are the famous beaches of India.

Sand Bar :

• Sometimes the deposits of sand and gravel laid down by waves and currents form embankment, separating shoreline from the sea.
• They thus form barriers between the sea and the mainland.
• Such deposits are called sand bars.
• They sometime pose difficulties in navigating.


Spit Earth :

• When one end of a bar is attached to the coast and other extends into the sea, it is called a spit.
• These spits are formed by the accumulation of materials brought by waves like sand and gravel.

Lagoon :

• Sometimes due to deposition of waves and currents both the ends of the bar join to enclose a part of the sea water between the coast and the bar.
• This enclosed part of the sea forms a lake of saline water.
• This saline water lake is called a lagoon.
• Sometimes the lagoons are formed due to wave erosion also.
• A lagoon is generally connected with the sea through a narrow passage. The Chilka and Pulicate lakes on the northeastern coast and lake Vembanad on Kerala coast are examples of lagoon lakes in India.
• Topographical features like beaches, bars, spits and lagoons are formed by the action of waves.


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Friday, November 4, 2016

GEOLOGICAL STRUCTURE OF INDIA



SOURCE: D.R. KHULLAR &  MASJID HUSSAIN



1.THE ARCHAEAN ROCK SYSTEM :

(i). THE ARCHAEAN SYSTEM –GNEISSES AND SCHISTS.
(ii). DHARWAR SYSTEM.

(i). THE ARCHAEAN SYSTEM –GNEISSES AND SCHISTS :
PERIOD :  PRE-CAMBRIAN

• The Archaean Era is also known as the Precambrian Period.
• The division of geologic time scale from the formation of the Earth (about 4.6 billion years ago) to the beginning of the Cambrian Period of the Paleozoic Era (about 570 million years ago).
• The Precambrian time constitutes about 86.7% of the Earth's history.
• The term 'Archaean', introduced by J.D. Dana in 1782, refers to the oldest rocks of the Earth's crust.
The oldest known rocks of the Earth, the evolutionary atmosphere, the first chemosynthesis, the first photosynthesis, the life-supporting atmosphere and the Earth's modem atmosphere, were developed during the Precambrian Era (Archaean and Protozoic).
Rocks of the Archaean System are devoid of any form of life (No Life, no tree = no fossil & no coal).
• The Archaean rocks are all azoic or unfossiliferous.
• They are thoroughly crystalline, extremely contorted and faulted, and practically devoid of any sediment.
• They are largely intruded by plutonic intrusions and generally have a well-defined foliated structure.
• These rocks are known as the basement complex or fundamental gneisses.
• Cover two-thirds of Peninsular India.
• In the Peninsular region, the Archaean rocks are known to be of three well-defined types:

The Bengal Gneiss:
• Occurs in the Eastern Ghats, Orissa (known as Khodoliles after Khond tribes in Koraput and Bolangir districts), stretching over Manbhum and Hazaribagh districts of Jharkhand, Nellore district of Andhra Pradesh and Salem district of Tamil Nadu.
• For the first time these rocks were identified in the Midnapur district of West Bengal.

The Bundelkhand Gneiss:
• Forms the second group of fundamental gneiss of the Archaean age.
• Occurs in Bundelkhand (U.P.), Baghelkhand (M.P.), Maharashtra, Rajasthan, Andhra Pradesh and Tamil Nadu.
• A coarse grained gneiss which looks like granite.
• Conspicuously criss-crossed and characterised by quartz veins.

The Nilgiri Gneiss:
• The name being given in honour of job Charnock whose tombstone in Kolkata was made of this rock.
• Bluish-grey to dark coloured rock, medium to coarse grained in texture.
• This is plutonic gneiss intruding into the other Archaean rock masses.
• Nilgiri gneiss is popularly recognised as belonging to the Chamockite series.
• widely found in South Arcot, Palni Hills, Shevaroy Hills and NiJgiri in Tamil Nadu, Nellore in Andhra Pradesh, Balasore in Orissa, Kamataka, Kerala, Malabar,Jharkhand, Chhattisgarh and Aravallis (Rajasthan).

ECONOMICAL IMPORTANT:
• The Archaean rocks are the repositories of the mineral wealth of lndia.
• These rocks are rich in ferrous and non-ferrous minerals like iron ore, copper, manganese, mica, dolomite, lead, zinc, silver and gold.



(ii). DHARWAR SYSTEM (PROTEROZOIC FORMATIONS) :
PERIOD :  This geologic time extends from 2500 million years ago to 1800 million years ago.

• The first metamorphosed sedimentary rock systems known as the Dhatwar System in the Indian Geological Time Scale.
• In India, these rocks were studied for the first time in the Dharwar district of Karnataka.
• Composed largely of igneous debris, schists and gneisses.

Distribution:
• Dharwar and Bellary districts of Kamataka and extend up to the Nilgiris and Madurai districts of Tamil Nadu,  Central and eastern parts of the Chotanagpur Plateau, Meghalaya Plateau and Mikir Hills, and the Aravallis, Rialo (Delhi series), from Delhi to the south of Alwar and the Himalayan region Nilgiris and Madurai districts of Tamil Nadu,.

ECONOMICAL IMPORTANT:

• Dharwar rocks are highly metalliferous.
• Rich in iron ore, manganese, lead, zinc, gold, silver, dolomite, mica, copper, tungsten, nickel, precious stones and building materials.




2.THE PURANA ROCK SYSTEM :
PERIOD :  1400 – 600 MILLION YEARS

(i).THE CUDDAPAH SYSTEM.
(ii). THE VINDHYAN SYSTEM.



(i).THE CUDDAPAH SYSTEM
• named after the district of Cuddapah in Andhra Pradesh,
sedimentary & metamorphic formations.

Distribution :

• The Cuddapah System occurs in the (i) Cuddapah and Kumool districts of Andhra Pradesh, (ii) Chhattisgarh, (iii) Rajasthan-Delhi to the south of Alwar, and (iv) the Lesser Himalayas in the extra-Peninsular region.

ECONOMICAL IMPORTANT :

• The principle rocks of the Cuddapah System are sandstones, shales, limestone, quartzites slates, inferior quality of iron-ore, manganese ore, asbestos, copper, nickel, cobalt (Delhi System), marble, jasper, building material and stones for interior decoration.
• The metallic contents in the ores of Cuddapah rocks are, however, low and at places uneconomical for extraction.



(ii). THE VINDHYAN SYSTEM:

• Derives its name from the Vindhyan Mountain.
• This mountain forms a dividing line between the Ganga Plain and the Deccan Plateau.
• The system covers an extensive area of 103,600 sq km from Chittorgarh in Rajasthan to Sasaram in Bihar.
• Has enormous sedimentary deposits and at places their depth is more than 4000 metres.
• In some tracts, the Vindhyan rocks are buried under Deccan lava.
• The Great Boundary Fault (GBF) separates the Vindhyan System from the Aravallis for a distance of about eight hundred km.

ECONOMICAL IMPORTANT:

• Well known for red-sandstone, sandstone, building material, ornamental stone, conglomerates, diamondiferous and raw materials for cement, lime, glass and chemical industries.
• In certain places these rocks yield inferior, quality of iron ore and manganese.
• The well known diamond mines of Panna and Golconda lie In the Vindhyan System.
• The historical buildings of Qutab Minar, Humayun's Tomb, Fatehpur Sikri, Agra Fort, Red Fort,Jama-Masjid, Birla Mandir, the Buddhist Stupa of Sanchi, etc. have been constructed from the red-sandstone obtained from the Vindhyan Ranges.
• Coarser sandstones have been used as grindstones and millstones.






3.THE DRAVIDIAN ROCK SYSTEM:(THE PALAEOZOIC GROUP)

PERIOD :  CAMBRIAN TO CARBONIFEROUS PERIOD.

• The Palaeozoic Era includes the Ordovician, Silurian, Devonian, Carboniferous and the Permian periods of the Standard Geological Time Scale. known as the Dravidian Era in the Indian Geological Time Scale.
• The Palaeozoic Era extends from 570 million years ago to 24.5 million years ago.
It marks the beginning of life on the Earth's surface.
• The formations of this period are almost absent in the Peninsular India except near Umaria in Rewa.
• These formations exist in the Pir-Panjal, Handwara, Lidder-Valley, AnantnagofKashmir Uammu & Kashmir), Spiti, Kangra, Shimla region (Himachal Pradesh), and Garhwal and Kumaun (Uttarakhand).
• It was during this period that the Pangaea was broken and the Tethys Sea came into existence.
• The Cambrian rocks include shales, sandstones, clays, quartzites slates, salts, marble, etc.
• Palaeozoic System in the Indian Geologic Time Scale The Gondwana formations are fluviatile and lacustrine in character.
• They were deposited in the river basins and lakes during the Upper Carboniferous Period.
• These basins later subsided along the trough faults amidst ancient rocks of the great southern continent called the Gondwanaland.
• These rocks were formed during the Upper Carboniferous and the Jurassic Periods (Mesozoic Era).


4.THE ARYAN ROCK SYSTEM:
PERIOD : Upper Carboniferous

• The beginning of the Upper Carboniferous Period is known as the Aryan period.

The salient features of the Aryan formations are:

• During the Upper Carboniferous Period, the Himalayan region was occupied by a vast geosyncline which was connected to the Pacific Ocean in the east through China and the Atlantic Ocean in the west through Afghanistan, Iran, Asia Minor and the present Mediterranean Sea. This was called the Tethys Sea.
• The area of the Kashmir Himalayas (from Pir Panjallo Hazara in the north-west and Ladakh in the north-east) witnessed violent volcanic activity.
• The Upper continent of Gondwanaland developed fissures and its broken parts started drifting away from each other.
• The Subcontinent of India drifted towards north and northeast to collide with the Asian land mass (Eurasian Plate).



There was large scale eruption of lava in the Deccan Trap.
• The development and expansion of the Arabian Sea and the Bay of Bengal.
The Tertiary mountain building gave birth to Himalayas.
• The Subcontinent of India assumed its present shape.
• The beginning of ice Age, belonging to the Pleistocene Period, covering large parts of the earth under ice-sheet.
• Evolution and spread of man in different parts of the world.


(i).THE GONDWANA ROCK SYSTEM.
(ii). THE DECCAN TRAP.
(iii). THE TERTIARY SYSTEM.
(iv).THE QUATERNARY.

(i).THE GONDWANA. SYSTEM:
PERIOD:THE MESOZOIC ERA 

• 'Mesozoic' means middle life.
The term is used for a period of geologic time in which the presence of fossil invertebrates dominated the rocks.
• includes three periods: Triassic, Jurassic, and Cretaceous.
• In the Indian Geological Time Scale, these periods extend from the Upper Carboniferous up to the beginning of the Cenozoic Era or the Aryan Era.
• The Gondwana group begins with the Permo-Carboniferous period which, in the Standard Geologic Time Scale, is known as a period of coal formation.

ECONOMICAL IMPORTANT :

• The Lower Gondwana rocks are found in the Talcher, Panchet and Damuda series.
• Most of the good quality coal deposits (bituminous and anthracite) of India are found in Gondwana formations.
• Moreover, iron ore occurs in the iron-stone shales of Raniganj coal fields.
• In addition to coal and iron, kaolin, fireclay, sandstone and grits are also found in the Gondwana formations.
The Gondwana System of rocks provides over 95% of the coal of India.
• Moreover, it provides iron-ore, limestone, sandstone and raw material for ceramic industry.
• India's best and largest coal deposits are found in the Gondwana System-mainly in the Damodar Valley of West Bengal,Jharkhand, the Mahanadi valley of Orissa and Chhattisgarh, the Godavari valley of Andhra Pradesh and the Satpura basin of Madhya Pradesh



(ii). THE DECCAN TRAP
PERIOD : THE CRETACEOUS ERA



• The Cretaceous Period extends from about 146 million years ago to 65 million years ago.
• The term 'Cretaceous' has been obtained from the Latin creta, meaning 'chalk'.
• Very widely distributed system in the country which has divergent facies of deposits in different parts of India.
• This period is marked by the transgression of the sea (Coromandal coast, Narmada valley) and outpouring of huge quantity of lava (basalt) so as to form the Deccan Trap and intrusion of plutonic rocks such as gabbro and granite.
• Towards the end of the Cretaceous period the Peninsula was affected by intense volcanic activity.
• During this period, enormous quantity of basaltic lava was poured out to the surface assuming a great thickness of over three thousand metres.
• The Lava Plateau (the Deccan Trap) is the result of that lava eruption.
• The Deccan lava covers about five lakh sq km of area in Gujarat (Kachchh, Kathiawad), Maharashtra, Madhya Pradesh (Malwa Plateau), Chhattisgarh,Jharkhand, northern Andhra Pradesh and north-western Karnataka.
• The lava plateau of India (Deccan Trap) has a maximum thickness of about 3000 m along the coast of Mumbai from where it decreases towards south and east
• It is about 800 m in Kachchh, 150 m at Amarkantak and 60 m at Belgaum (Karnataka).
• The individual lava flows, on an average, have a thickness of about 5 m to 29 m.
• Such flows have been identified in a boring near Bhusawal (Maharashtra).
• These are inter-bedded with sedimentary beds called 'inter-trappean beds'.

ECONOMICAL IMPORTANT:

• The basalt of the Deccan Trap is used for the construction of roads and buildings.
• Moreover, quartz, bauxite, magnetite, agate and semi-precious stones are also found in the trap. It is also rich in magnesium, carbonate, potash and phosphates.


(iii). THE TERTIARY ROCK SYSTEM
PERIOD: THE CENOZOIC ERA.

Cenozoic means recent life.
• The beginning of the Tertiary Period is about 66 million years ago.
• Fossils in these rocks include many types, closely related to modern forms, including mammals, plants and invertebrates.
• The Cenozoic Era has two periods: The Tertiary and the Quaternary.

• The two great events that occurred during the Tertiary Period include:
(i) The final breaking-up of the old Gondwana continent, and
(ii) The uplift of the Tethys geosyncline in the form of the Himalayas.

• During the early Tertiary Period, as India collided with Tibet, the sediments which had been accumulating in the Tethys basin had begun to rise by a slow rise of ocean bottom.
• The upheaval of the Himalayas altered the old topography of the subcontinent.
Three phases of the upheaval of the Himalayas have been distinguished:
• During the first upheaval (Eocene-about 65 million years ago), which culminated in the Oligocene, and resulted in the upheaval of the Greater Himalayas.
• It was followed by a more intense movement during the mid-Miocene period about 45 million years ago, which resulted in the folding of Lesser Himalayas.
• The third upheaval took place during the Post-Pliocene period, about 1.4 million years ago which resulted in the folding of Shiwaliks or the Outer Himalayas. There is enough evidence to prove that the Himalayas are still rising.
• In the Peninsular region, the Tertiary System occurred on the coast of Kachchh, Kathiawar, Konkan, Malabar, Nilgiris, and the Eastern Ghats.



(iv).THE QUATERNARY:
PERIOD: THE PLEISTOCENE AND RECENT FORMATIONS
• Quaternary is the name proposed for very recent deposits, which contain fossils of species with living representatives.
• During the Quaternary Period, the ice-sheets descended to as low as 1500 metres in altitude.
• The bottom configuration of this plain, occupies largely a synclinal basin, called foredeep, which is a down warp of the Himalayan foreland of variable depth, formed concommitantly with the rise of the Himalayas to the north.
• The Pleistocene period is marked by Ice Age and glaciation on a large scaJe in the Northern Hemisphere.
• The moraine deposits and the Karewa formations· of Kashmir Valley and the Bhadarwa (Doda District of Jammu Division) are of the Pleistocene period.
• It forms the terraces of the Jhelum, on the flanks of the Pir-Panjal. The thickness of the karewas at places is up to 1400 metres.
• The river terraces of the narmada, Tapi, Godavari, Krishna, and Kaveri, etc. are also of the Pleistocene Period.
                          

Karewas :
• The lacustrine deposits of the Pleistocene period.
• They consist of sands, clays, loams, silt and boulders.
• The karewas of Kashmir are generally found along the lower slopes of Pir-Panjal with a dip towards the Kashmir Valley.
• The Pampore and Pulwama karewas are well known for the cultivation of saffron, almond, and walnut .

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Wednesday, November 2, 2016

CARNATIC WARS


FIRST CARNATIC WAR:

PERIOD: 1746-1748.
BETWEEN :  French and (British + Nawab of Arcot).

REASONS:
 1.Colonial competition between French and British.
 2.Austrian war of succession.

COARSE OF WAR:
 1. 1746- St.George Fort was surrounded by French.
 2. Arcot nawab helped British @ Chennai –sent huge force under MAFUZ KHAN.
 3. 1746 – BATTLE OF ADAYAR- French under Dupleix defeated combined force of Nawab and British.

REASON FOR FAILURE:
1.Backward nature of Indian army-strong organized French forces(with modern war tactics and weapons).

TREATY:
Treaty of Aix-la-Chapelle (1748). (Also ends the Austrian war of succession)


SECOND CARNATIC WAR:

PERIOD: 1749-1754

REASONS:
1. War of succession in Nizam of Hyderabad and Nawab of Arcot.
2. Dupliex aligned with Muzaffar Jung (Hyderabad) and Chanda Sahib (Arcot).

COURSE OF WAR:

1. 1751- BATTLE OF AMBUR –French and its ally won the Battle.
2. Muzaffar Jung (Hyderabad) became Nizam and Chanda Sahib (Arcot) became Nawab.
3. Anwaruddin(Arcot) and Nasir Jang(Hyderabad) were killed.
4. French got Pondicherry and Masulipatnam + Jagir.
5. 1752- ROBERT CLIVE entered India.
6. Arcot was recaptured by Clive - British won the (French + Ally).
7. Chanda Sahib killed.
8. Recall of Dupleix.

TREATY: Treaty of PONDICHERRY (1754).




THIRD CARNATIC WAR:

PERIOD: 1758-1763
BETWEEN: French (Count de lally) and British (Sir Eyre Coote)

REASONS:
1.due to seven years war in Europe( British Vs French).

COARSE OF WAR:

1. Count de  lally captured Fort St.David.
2. Initially British defeated by French.
3. At Battle of Wandiwash (1760)-British defeated French.
4. 1761-Pondicherry captured by British.
5. British demolished French monuments.


TREATY: Treaty of Paris(1763). (Also ends the French domination in India).

Reasons for decline of French:

    1.   British’s EIC was a private  Organization and British crown didn’t interfere into the affairs often.
    2.   Leaders like eyre coote and Robert Clive were absent in French army.
    3.   English were strong in NAVY but French used outdated naval equipment.


Importance of Carnatic war:

    1.   South India dominated by English Politically and Economically.
    2.   English availed the port facilities of Eastern coast. 

    3.   In Europe, English became political mistress.


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