Horticulture in Meghalaya

Horticulture in Meghalaya

Meghalaya has three factors conducive for the development of horticulture – vast land suitable for horticulture development, diversity in agro-climatic factors making cultivation of an array of crops feasible and established tradition of horticulture activity making further expansion easy.

A large extent of land is available in the form of fallows, cultivable waste and miscellaneous tree crops. Most of this land is in hill slopes and is more suitable for plantation and fruit crops than traditional agricultural crops. With diversity in elevation, temperature, topography and rainfall a variety of horticultural crops can be grown.

Meghalaya has a long history of growing horticultural crops. Potato, Pineapple, orange, turmeric, ginger and areca nut are grown traditionally and besides these crops, a variety of new crops like tea, cashew and strawberry have been introduced. Most of the land used for these crops is not suitable for traditional agricultural crops like cereals, pulses, oil seeds and fibres. With the introduction of Horticulture in MeghalayaHorticulture Mission for North Eastern & Himalayan States, a lot of area expansion has taken place, but the programme has had little impact on marketing and processing. This can be taken as a potential for future development of the sector.

Strategy

  • Cluster approach to strengthen the existing concentration of crops. For each crop post harvest management and value chain management will be given emphasis so that additional income and employment will be generated in the State itself.
  • New technologies in Post-Harvest infrastructure like grading, packaging, ripening chambers will be introduced for the major crops in areas of their concentrations. As it is difficult to attract huge investment to start large scale processing units, small scale and cottage units will be encouraged and support will be provided for them.
  • Farmers associations (FPOs & FIGs, etc) will be promoted for development of horticulture as a holistic approach.
  • Convergence with other programmes will be established for optimising the resource use.
  • Demonstration of new technologies and crop management practices are being taken up with farmers and other stakeholders.

Quality planting material production

As good quality planting material is the backbone of any horticultural economy, this is one of the most important issues to be addressed, especially since there has been tremendous expansion of cultivation (under convergent schemes like the RKVY, BRGF, NREGS in addition to the normal schemes of the Department) and since around 60% of planting material is imported into the State either from nurseries in other States or from outside the country, resulting in increased production costs and draining of valuable foreign exchange. Moreover, the bulk of supply is from small, unregistered nurseries where quality is difficult to enforce.

The State will seek the involvement of the private sector through the establishment of nurseries, which could be registered and affiliated with the NHB and other recognised agencies, so that quality standards are adhered to and a system of surveillance and certification of the operating standards and planting material are put in place.

It is envisged that this will usher in income-earning opportunities for retired Departmental officers and entrepreneurial avenues for fresh unemployed graduates. The Planting Material Production Centres (PMPCs) set up with grants from the 13th Finance Commission, will produce quality planting material for new crops like strawberry, kiwi, raspberry and blackberry as well as for traditonal crops like potato, cashew, citrus (orange and sweet oranges), pineapple, spices (turmeric, ginger, black pepper) and temperate fruits. These PMPCs will be geared to cater not only to the planting material needs of their own clusters, but also to the needs of the other districts of the State as well as other States of the North East. The objective, in the long run, is to turn Meghalaya into a planting material destination for the entire North East.

 

Area expansion

Model orchards : There are a number of unique fruit crops which are indigenous to the State with tremendous commercial potential, but which have never been properly utilized due to the lack of organized cultivation. The area under many of these crops is declining and some are on the verge of extinction. Keeping in view the need to preserve the horticultural heritage of the State and to provide for the commercial cultivation and exploitation of these crops, there is an imperative need to demonstrate the economic viability of these crops through the establishment of model orchards. In order to make these model orchards successful, for emulation by the farming community, and to ensure their continuity, it is proposed that the orchards be set up within and in conjunction with the integrated farming proposed to be implemented in the micro-watersheds.

Theme villages : The remarkable success achieved in the ‘’Strawberry Village’’ of Sohliya in the Ri Bhoi district will be transferred to different crops and villages of the State. At least 1000 farmers in each such area will be motivated to take up cultivation of selected crops – Orchid Valley in Zikzak horti-hub area, Kiwi Village in the uplands in the vicinity of Shillong, Strawberry Villages in other districts, Citrus Hills in the Nokrek range, Pineapple Hills in the Chibinang area, etc.

Rejuvenation of citrus & cashew: The senile plantations of citrus and cashew will be brought under systematic and scientific rejuvenation to restore the profitability of these traditional crops for the benefit of this group of farmers, especially considering the potential for export of these crops to neighboring Bangladesh.

Post harvest management and processing

Meghalaya is predominantly a horticultural state where a wide range of fruit crops both indigenous and exotic are grown abundantly in different altitudes of the State. During the peak season of harvest the State experiences glut in the market and the farmers are not getting remunerative prices for their produces. To overcome the said problem the State had established two processing centres located in Shillong, East Khasi Hills district and Dainadubi in North Garo Hills district.

The objectives of these Centres were to demonstrate, develop value addition technology for the farmers and entrepreneurs of the State. These two Processing Centres are being upgraded and the products marketed as MEG brand. The Department had initiated programme on modernization of arecanut soakage tanks traditionally practiced by the farmers. These improved technologies have generated additional livelihood to the arecanut growers of the state. The Lakadong variety of Turmeric has high Curcumin content between 7 to 8 percent. Capitalizing on the potential of the turmeric grown in the State the Government had taken step to improve the processing technology adopted by the farmers. Effort is being made to attract private investment in the PHM sector by scaling up volume of production, especially targeting niche markets outside the country and setting up of scientific modern storage facilities across the state Traditional crops like ginger, turmeric, pineapple, citrus, potato and vegetables are the mainstay of a majority of the farmers of the State.

Marketing infrastructure

Farmers markets, implemented during the 11th Plan, will be expanded to cover more areas within the State during the 12th Plan, where farmers market will be tried on the hub and spoke model – large central markets and satellite markets in their hinterland. The effective functioning of farmers markets depends to a large extent on the flow and easy availability of market related information to enable farmers to take proper and profitable market decisions based on reliable real time data. Market information system is thus a crucial and urgent intervention that would be made in order to make Farmers Markets viable and vibrant entities leading to the evolution of a much more transparent marketing system.

 

Migration of Meghalaya

Migration of Meghalaya

Migration is a common phenomenon in developing country like India as well as the state of Meghalaya. North-East India has experienced two massive immigration waves in historical period of time. At the time of independence of India and formation of Bangladesh, Meghalaya also has experienced a significant proportion of immigration from Bangladesh. Meghalaya and others North-Eastern state has experienced a large scale illegal immigration from Bangladesh which effect on social harmony and social well-being.Migration of Meghalaya

Rural to urban migration

In recent time each part of our country as well as Meghalaya also has experienced high volume of rural to urban out-migration. Percentage of scheduled tribe population in India has recorded 8.02% in 2001 whereas Meghalaya has recorded 85.9%. The present study aims to analyse pattern of out-migration at district and state level.

Poverty and migration corelation in Meghalaya

Despite the wage difference between remote areas and towns, there is hardly any migration of unskilled poor workers to the towns. There may be many factors that distinguish Meghalaya from mainland India in this respect. Firstly, the character of the urban work force in the Northeast, unlike other urban centres, is not primarily in manufacturing, but in the services sector, implying existence of either government servants or a largely self-owned and self-managed business sector, with family labour and minimal hired labour. Secondly, opportunities for unskilled wage labour in the urban areas beyond construction are limited. In construction too, contractors prefer Oriya or Bihari labour, and the locals lose out in preference. And lastly, first generation migration requires some previous history of migration from the same village, and in its absence push factor does not work well.

There are additional problems of sustainability arising from rural – urban migration and the fragility of marriage, combined with men’s lack of responsibility for children. The upper sections of the villages, who are the families with larger forest holdings, are also the ones who invest in urban areas, and whose families tend to migrate to the cities. At one level this transfer of rural surpluses to urban investment since it remains within the same ethnic political unit, is not a loss to the local economy. But at another level such transfer of timber income also can mean that the families involved in such migration may not be so concerned about the longer sustainability of forest income.

 

Wetland Conservation Programme, Ramsar Convention and The Montreux Record.

Wetland Conservation Programme

  • Wetlands are lands transitional between terrestrial and aquatic system where the water table is usually near the water surface and land is covered by shallow water.
  • Essential as: control floods, water treatment, recharging of water sources, reduce sediments, check soil erosion, bulwark against encroachment by the sea, winter resort for birds and important for flora and fauna. They also provide a variety of resources
  • Ramsar Convention: mangroves, corals, estuaries, bays, creeks, flood plains, sea grasses, lakes etc included
  • A programme on conservation of wetlands was initiated in 1987 with the basic objective of identification of wetlands of national importance, assessment of wetland resources, promotion of R&D activities and formulation and implementation of management action plans
  • A steering committee in each state headed by the Chief Secretary consists of members from all departments related to the wetland conservation in the state. Successful model.
  • India is a member of the Standing Committee of the Ramsar Convention on Wetlands, 1971
  • Steps forward
    • Make use of the traditional knowledge of the people living near the wetlands for its conservation along with the engineering solutions
    • Monitor the impact of implementation of management action plans
  • Wetlands of India under Ramsar Convention
Name State Remark
1.       Ashtamudi WL Kerala
2.       Bhitarkanika Mangroves Orissa
3.       Bhoj WL MP
4.       Chilka Lake Orissa 2nd largest in India: 116500 ha
5.       Deepor Beel Assam
6.       East Calcutta WL WB
7.       Harike Lake Punjab
8.       Kanjli Punjab
9.       Keoladeo National Park Rajasthan
10.   Kolleru Lake AP
11.   Loktak Lake Manipur
12.   Point Calimere Wildlife and Bird Sanctuary TN
13.   Pong Dam Lake HP
14.   Ropar Punjab
15.   Sambhar Lake Rajasthan
16.   Sasthamkotta Lake Kerala
17.   Tsomoriri J&K
18.   Vembanad-Kol WL Kerala Largest in India: 151250 ha
19.   Wular Lake J&K
20.   Chandratal HP 2nd Smallest: 49 ha
21.   Renuka HP Smallest: 20 ha
22.   Rudrasagar Tripura
23.   Upper Ganga UP Total area of these 26 wetlands: 677131 ha
24.   Hokarsar (Hokera) J&K Kerala has the highest area under wetlands
25.   Surinsar & Mansar J&K J&K has the largest number of wetlands (4)
26.   Gharana (2010) J&K

 

 

The Montreux Record. Sites on the List of Wetlands of International Importance which are considered to have undergone, to be undergoing, or to be likely to undergo change in their ecological character brought about by human action may be placed on the Montreux Record and may benefit from the application of the Ramsar Advisory Mission and other forms of technical assistance.

  • Keoladeo national park and Loktak lake from India are included in the list

Changwon Declaration

The primary purpose of the  “Changwon Declaration on human well-being and wetlands”,adopted by Resolution X.3 of the recent meeting of the Conference of the Parties, “is to transmit key messages concerning wetland-related issues to the many stakeholders and decision-makers beyond the Ramsar community who are relevant to the conservation and wise use of wetlands, to inform their actions and decision-making”

 

India’s Missile program

 

 

Introduction

  • India’s missile programme took a shot from space programme, beginning 1967.
  • In 1972, Rohini- a 560 two-stage, solid propulsion sounding rocket was developed and test fired
  • India first launched its small 17-tonne SLV-3 space booster in 1979
  • India successfully injected the 35 kg Rohini I satellite into near-earth orbit in 1980.
  • In 1987, an augmented booster, the 35-tonne ASLV had begun flight testing.
  • In 1983 a decisive shift took place in India’s missile program with the launch of the Integrated Guided Missile Development Programme (IGMDP) The principal aim was to develop a family of strategic and tactical guided missiles based on local design and development for three defence services.

Integrated Guided Missile Development Programme

The Integrated Guided Missile Development Programme (IGMDP) was conceived by renowned scientist DR.A P J Abdul Kalam to enable Indian Attain self-sufficiency in the filed of Missile Technology.

 

Prithvi

  • The Prithvi missile is a family of tactical surface-to-surface short-range ballistic missiles(SRBM) and is
  • India’s first indigenously developed ballistic missile.
  • it was first test-fired on 25 February 1988 from Sriharikota, SHAR Centre,
  • It has a range of up to 150 to 300 km.
  • The land variant is called Prithvi while the naval operational variant of Prithvi I and Prithvi II class missiles are code named Dhanush(meaning Bow).

Agni

Surface to surface intercontinetal ballistic missile.

Agni-I is a single stage, solid fuel, road and rail mobile, medium-range ballistic missiles (MRBM) This shorter ranger missile is specially designed to strike targets in Pakistan.

Agni II is an operational version of Agni I and is an intermediate range ballistic missile (IRBM) test-fired in April 1999.

The range for Agni II is more than 2000 km.

Agni III, an intermediate-range ballistic missile was developed by India as the successor to Agni II. Intended to be a two-stage ballistic missile capable of nuclear weapons delivery, it is touted as India’s nuclear deterrent against China. The missile is likely to support a wide range of warhead configurations, with a 3,500 km range and a total payload weight of 2490 kg.

Agni V, believed to be an upgraded version of the Agni III The inter-continental ballistic missile  have a range of about 5000-6000 km . Agni V will be able to carry multiple warheads and would also display countermeasures against anti-ballistic missile systems.

 

Trishul

Trishul is the name of a short range surface-to-air missile developed by India as a part of the Integrated Guided Missile Development Program. It has a range of 9 km and is fitted with a 5.5 kg warhead. Designed to be used against low-level (sea skimming) targets at short range, the system has been developed to defend naval vessels against missiles and also as a short-range surface-to-air missile on land.

 

Akash

Akash is a medium range surface-to-air missile developed as part of India’s Integrated Guided Missile Development Programme to achieve self-sufficiency in the area of surface-to-air missiles. It is the most expensive missile project ever undertaken by the Union government in the 20th century.

 

Nag

Nag is India’s third generation “Fire-and-forget” anti-tank missile. It is an all weather, top attack missile with a range of 3 to 7 km.

 

Other Missiles

Significant additions also include

 

PINAKA– the Multi-Barrel Rocket System , an area weapon system to supplement the existing artillery gun at ranges beyond 30 km, having quick reaction time and high rate of fire has been accepted by the user after extensive trials.

 

BrahMos-  being jointly developed with Russia, is a supersonic cruise missile that can be launched from submarines, ships, aircraft or land.

BrahMos is among the fastest supersonic cruise missiles in the world, at speeds ranging between Mach 2.5 to 2.8, being about three and a half times faster than the American subsonic Tomahawk cruise missile. Although BrahMos is primarily an anti-ship missile, it is also capable of engaging land-based targets.

 

Nirbhay- cruise missile  was announced in 2007—a subsonic missile with a range of 1000 km. Capable of being launched from multiple platforms on land, sea and air. Nirbhay will supplement BrahMos in the sense that it would enable delivery of warheads farther than the 300 km range of BrahMos.

In 2008, New Delhi announced the end of the IGMDP with the focus now shifting towards serial production of missiles developed under this programme.

 

Shaurya– a landbased variant of the K-15 Sagarika which can be stored in underground silos for longer time and can be launched using gas canisters as booster was successfully test-fired in November 2008. This nuclear-capable missile aims to enhance India’s second-strike Sagarika missile is being integrated with India’s nuclearpowered Arihant class submarine that began sea trials in July 2009.

 

Dhanush– which has been tested several times in recent years believed to be a short-range, sea-based, liquid-propellant ballistic missile—perhaps a naval variant of the Prithvi series, with a maximum range of approximately 300 km.

 

Air-to-air missile Astra– It is an air to air missile Beyond Range (BVR). This is the first indigenous air-to-air missile developed by India. The range of this missile is 80 km in head-on chase and 15 km in tail chase.

 

Ballistic Missile Defence system

Two interceptor missiles, the Prithivi air defence missile and the Advanced Air Defence (Ashwin) missile are designed to provide a high-low cover against incoming ballistic missiles. Prithivi is reported to be capable of intercepting missiles at exo-atmospheric altitudes of 50 – 80km, while the AAD is designed to operate at endo-atmospheric altitudes of upto 30kms.

 

It would be apposite to conclude by stating that India’s missile programme represents an iconic image demonstrating sovereignty and self-reliance vis-à-vis its technological achievements. Resultant of nearly three decades of research, India’s guided missile programme has assumed a self-sustaining character and become fundamentally crucial to New Delhi’s proposed minimal deterrent.

 

Physical factors: Terrain, topography, climate, and soil. which determine agriculture

Physical Factors:


(a) Terrain, Topography, and Altitude

  1. dependent on the geo-ecological conditions; terrain, topography, slope and altitude.
  2. paddy cultivation requires leveled fields, tea plantations perform well in the undulating topography in which water does not remain standing.
  3. Orchards of coconut are found at low altitudes, preferably closer to the sea level, while the apple orchards in the tropical and sub-tropical conditions perform well above 1500 metres above sea level.
  4. Cultivation of crops is rarely done 3500 m above sea-level in the tropical and sub-tropical latitudes.
  5. highly rarified air, low-pressure, low temperature, and shortage of oxygen at high altitudes are the serious impediments not only in the cultivation of crops, but also in keeping dairy cattle.
  6. soils of high mountainous tracts are generally immature which are also less conducive for agriculture.
  7. topographical features also affect the distribution of rainfall.
  8. the windward side gets more rainfall than the leeward side.
  9. Apart from altitude and aspects of slope, the nature of the surface also affects the agricultural activities.
  10. gullied land is least conducive for cropping.
  11. The Chambal ravines in Madhya Pradesh, Rajasthan, and Uttar Pradesh have put over thousands of hectares of good arable land out of agriculture.

(b) Climate

(1) Temperature:

  • The crops to be grown, their patterns and combinations controlled by the temperature and precipitation conditions.
  • each crop has a specific zero temperature below which it can not be grown.
  • also an optimal temperature in which the crop is at its greatest vigour.
  • For each stage of crop life, i.e. germination, foliation, blossoming or fructification a specific zero and optimum can be observed in temperature.
  • The upper limit of temperature for plants growth is 60°C under high temperature conditions, i.e. at over 40°C, crops dry up, if the moisture supply is inadequate.
  • In contrast to this, the chilling and freezing temperatures have a great adverse effect on the germination, growth and ripening of crops.
  • Crops like rice, sugarcane, jute, cotton, chilli and tomatoes are killed or damaged at the occurrence of frost.
  • minimum temperature for wheat and barley is 5°C, maize 10°C, and rice 20°C.
  • impact of temperature on cropping patterns may be seen from the fact that the northern limit of the regions in which date-palm bear ripe fruit coincides almost exactly with the mean annual temperature of 19°C.
  • essential factor in the limit of grape orchards seem to be temperature. Grapes ripen only in those countries in which the mean temperature from April to October exceeds 15° C.
  • Crops like winter-wheat and barley perform well when the mean daily temperature ranges between 15°C and 25°C.
  • tropical crops like cocoa, coffee, spices, squash, rubber and tobacco require over 18° C temperature even in the coldest months, while crops like wheat, gram, peas, lentil, potato, mustard, and rapeseed require a temperature of about 20°C during the growth and development, stage and relatively higher (over 25°C) during the sowing and harvesting periods.

 

(2) Moisture:

  • All crops need moisture.
  • Take water and moisture from the soil.
  • Available from the rains or from irrigation systems.
  • Within wide temperature limits, moisture is more important than any other climatic factor in crop production.
  • There are optimal moisture conditions for crop development just as there are optimal temperature conditions.
  • Excessive amount of water in the soil alters various chemical and biological processes, limiting the amount of oxygen and increasing the formation of compounds that are toxic to plant roots.
  • Excess of water in the soil, therefore, leads to stunted growth of plants.
  • The problem of inadequate oxygen in the soil can be solved by drainage practices in an ill-drained tract. Heavy rainfall may directly damage plants or interfere with flowering and pollination.
  • Cereal crops are often lodged by rain and this makes harvest difficult and promotes spoilage and diseases.
  • Heavy rainfall at the maturity of wheat, gram, millets, oilseeds, and mustards cause loss of grains and fodder.
  • Indian farmers all over the country have often suffered on account of failure of rains or fury of floods.

(3) Drought:

  • Devastating consequences on the crops, their yields and production.
  • Soil drought has been described as a condition in which the amount of water needed for transpiration and direct evaporation exceeds the amount of water available in the soil.
  • Damages the crops when plants are inadequately supplied with moisture from the soil.
  • drought prone areas of India lie in the states of Rajasthan, Gujarat, Madhya Pradesh, Chhattisgarh, Jharkhand, Maharashtra, Andhra Pradesh, Karnataka, Tamil Nadu, Orissa, Bundelkhand (U.P.), Uttarakhand, H.P.J&K, south-west Punjab and Haryana.
  • Where the average annual rainfall is less than 75 cm, agriculture is considered a gamble on monsoon.
  • The incidence of drought and its intensity can be determined from the annual, seasonal and diurnal distribution of rainfall.
  • drought prone areas of India, dry farming is practiced, while in the more rainfall recording regions, intensive agriculture of paddy crop is a common practice.

(4) Snow:

  • Occurrence of snow reduces the ground temperature which hinders the germination and growth of crops.
  • Land under snow cannot be prepared for sowing because of permafrost.
  • Melting of snow may cause hazardous floods in the summer season, affecting the crops, livestock, and land property adversely.

(5)Winds

  • Have both, direct and indirect effects on crops.
  • Direct winds result in the breaking of plant structure, dislodging of cereals, fodder and cash crops and shattering of seed-heads.
  • Fruit and nut crops may be stripped from the trees in high winds.
  • Small plants are sometimes completely covered by wind-blown dust or sand.
  • The indirect effect of winds are in the form of transport of moisture and heat in the air.

(c) Soils

  • Important determining physical factor.
  • Determines the cropping patterns, their associations and production.
  • Fertility of soil, its texture, structure and humus contents have a direct bearing on crops and their productivity.
  • The alluvial soils are considered to be good for wheat, barley, gram, oilseeds, pulses, and sugarcane; while the clayey loam gives good crop of rice.
  • Regur soil is known for cotton, and sandy soil for bajra, guar, pulses (green-gram, black-gram, red-gram, etc.).
  • The saline and alkaline soils are useless from the agricultural point of view unless they are reclaimed by chemical fertilisers and biological manures and fertilisers.

 

Multipurpose Projects & Hydro-Electric Projects in India

  • Damodar Valley Project—- Damodar—– West Bengal & Jharkhand. It includes Maithon & Tilaiya Dam on Barakar river in Bihar, Konar Dam (Konar river) & Panchet Dam (Damodar).
  • Rihand Dam —-Rihand —–Uttar Pradesh
  • Nagarjunasagar Project —–Krishna—- Andhra Pradesh. Consists of two canals – Lal Bahadur Canal (Left) & Jawahar canal (Right).
  • Tungabhadra Project Tungabhadra JV of Andhra Pr & Karnataka.
  • Gandak Project Gandak JV between UP, Bihar & Nepal
  • Kosi Project Kosi JV of Bihar & Nepal
  • Beas Project Beas Includes Pong Dam
  • Mayurkashi Project Mayurkashi Mayurkashi is a tributary of Hugli.
  • Indira Gandhi Canal It consists of Rajastan Feeder Canal (taking off from Harike Barrage, 204 km long, fully lined masonry canal) & Rajasthan main canal (445Km)
  • Narmada Valley Project Involves Sardar Sarovar dam in Gujarat & Narmada sagar (or Indira Sagar) dam in M.P.
  • Pochampad Project Godavari Andhra Pradesh.
  • Tehri Dam Bhagirathi Uttaranchal. Implemented with Soviet Aid.Highest rock fall dam in the country.
  • Parambikulam Project JV between Tamil Nadu & Kerala. Hydro-Electric Projects
  • Mata Tella Dam Betwa Near Jhansi in U.P.
  • Kangsbati Project West Bengal
  • Rajasthan Canal Project Sutlej, Beas JV of Punjab & Rajastan. Ravi water is also used.
  • Kadana Project Mahi Gujarat
  • Tata Hydroelectric Scheme Indravati Maharashtra. Called Bhivpuri dam.
  • Koyna Hydroelectic Dam Koyna Maharashtra
  • Sivasamudram Cauvery Falls Karnataka
  • Pykara Hydro Elec Project Pykara Tamil Nadu (along Nilgiris)
  • Mettur Project Cauvery Tamil Nadu
  • Papansam Scheme Tambraparni Tamil Nadu
  • Sabargiri Hydel Project Pampa Kerala
  • Idukki Project Periyar Kerala
  • Sholayar Project Sholayar Kerala. JV between Kerala & Tamil Nadu
  • Machkund Power Project Machkund Orissa. JV between A.P & Orissa
  • Srisailam Power Project Krishna Andhra Pradesh
  • Balimela Hydro Project Sileru river JV between A.P & Orissa
  • Umiam Project Umiam Meghalaya
  • Salal Hydro Project Chenab J & K
  • Thein Dam Project Ravi Punjab
  • Banasagar Project Son JV between MP, UP & Bihar
  • Jayakwadi Project Godavari Maharashtra
  • Kakrapara Project Tapi Gujarat
  • Mahi Project Mahi Gujarat
  • Malprabha Project Malprabha Karnataka
  • Pallivasal project Mudirapujha Kerala
  • Poochampad Godavari Andhra Pradesh
  • Rajghat Dam Project Betwa
  • Sarda Sahayak Ghagara Uttar Pradesh
  • Hansdev Bango Project Hansdev M.P.
  • Tawa Project Tawa M.P. Tawa is tributary of Narmada
  • Ukai Project Tapi Gujarat
  • Purna Project Purna Maharashtra
  • Rana Pratap Sagar Chambal Rajasthan (Rawatbhata)
  • Jawahar Sagar Dam Chambal Rajasthan (Kota)
  • Gandhi Sagar Dam Chambal Churasigarh Fort at MP-Rajasthan border
  • Chibro Tons Uttar Pradesh
  • Dool Hasti Chenab J & K.
  • Nathpa Jhakri Satluj Himachal Pr. Biggest hydel power project inIndia
  • Panchet Dam Damodar West Bengal

Wavell Plan & Shimla Conference-

In May 1945, Lord Wavell, the Viceroy of India, went to London and discussed his ideas about the future of India with the British administration. The talks resulted in the formulation of a plan of action that was made public in June 1945. The plan is known as Wavell Plan.

The Plan suggested reconstitution of the Viceroy’s Executive Council in which the Viceroy was to select persons nominated by the political parties. Different communities were also to get their due share in the Council and parity was reserved for Cast-Hindus and Muslims. While declaring the plan, the Secretary of State for Indian Affairs made it clear that the British Government wanted to listen to the ideas of all major Indian communities. Yet he said that it was only possible if the leadership of the leading Indian political parties agreed with the suggestions of the British Government.

To discuss these proposals with the leadership of major Indian parties, Wavell called for a conference at Simla on June 25, 1945. Leaders of both the Congress and the Muslim League attended the conference, which is known as the Simla Conference. However, differences arose between the leadership of the two parties on the issue of representation of the Muslim community. The Muslim League claimed that it was the only representative party of the Muslims in India and thus all the Muslim representatives in the Viceroy’s Executive Council should be the nominees of the party. Congress, which had sent Maulana Azad as the leader of their delegation, tried to prove that their party represented all the communities living in India and thus should be allowed to nominate Muslim representative as well. Congress also opposed the idea of parity between the Cast-Hindus and the Muslims. All this resulted in a deadlock. Finally, Wavell announced the failure of his efforts on July 14. Thus the Simla Conference couldn’t provide any hope of proceeding further.

 

 

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