Friday, July 18, 2014

Kekru

KEKRU:
Botanical Name: Sapindus trifoliatus.
Place- Found mainly in west Manipur
Parts Used:
1: Fruit .
@Medicinal information
*Disease Name: Epilepsy(sarei haoba), Asthma, Hysteria(nupigi wanthaba leina jat ama), Hemicrania(kok nakal amata chikpa), Piles(nungshang).
*Uses: The fruit is given as tonic(hakchang hengathanba natraga tekhathanba), expectorant(lok khudongnaba), emetic(ohannaba hidak), purgative(hakchang sengdokpa) and nuasent.
The decoction(futlaga machi laothokpa) of the fruit is used for washing hair and also as detergent for jewellery ornaments.
The crushed fruit is given in worm diseases for children.

Langthrei

LANGTHREI:
Botanical name: Blumea balsamifera.
Parts Use: Whole plant.
@MEDICAL INFORMATION:
*Disease name: Diabetes: Fever.
*Uses: The whole plant is used in Insomnia (ahingda tumba yadaba); as expectorant (lok thokhanaba/lok khudoknaba); and in cough.
¤ Leaf extract(sumdokaba mahi) produces drop in B.P; dilatation of blood vessel and Body pain.
¤ Leaf are also used as Fish-poison...

HARIKHAGOK

HARIKHAGOK;
Botanical Name: Aegle marmelos.
Place- Cultivated in Manipur.
Parts Used:
1: Fruit.
@Medicinal information
*Disease Name: Piles(nungshang), Cystitis(inflammation of the gallblader),.Ophthalmia(mit naba),Diarrhoea, Intermittent fever,Dysentry(eeton faiba),.
*Uses: The pulp(athotpa uheigi matong) of roasted green and ripe fruit are used in chronic stomach disorders.
The fruit is laxative(khom hamba yanaba hidak), astringent(chingsanhanabagi hidak), and stomachic(chaba tumhanba).
It is also used in postnatal Contraction of uterus, Lubricant. The pulp of the fruit is also used for body odour.

Thursday, July 17, 2014

Ningsingli meragi thabaldo

Ningsingli meragi thabaldo
Thabalna chamthoklaba maithongdo
Ekai Nungshi yanana
Ngna enakta lepkhiba

Napada haireba
Naeen anina
Nongthang Chamagum
Ekaihankhi pukningbu
Samjireina Ekairaduna
Samlang lakta lotkhiba

Eigi wahangi paokhum
Pekhide ngna
Eigi wahangi paokhum
Pekhide ngna
Maithong lukna leikhe tumina
Khong noira noiraduna
Khongbina Leimaida takhiba

Fijina Maithong khumduna
Kari khnkhiba khnghoude
Fijina Maithong khumduna
Kari khnkhiba khnghoude
Ningamhoudana Ahingdo
Nongankhiba khnghoude

Ningsingli meragi thabaldo
Thabalna chamthoklaba maithongdo
Ekai Nungshi yanana
Ngna enakta lepkhiba
Ningsingli meragi thabaldo

  - Nongmaithem Pahari

Jati koubi sakhenbi

Jati koubi sakhenbi
Leirang laktagi athoibi
Pamuba chenglou ubara
Nuja eingonda tamuda

Jati koubi sakhenbi
Leirang laktagi athoibi
Pamuba chenglou ubara
Nuja eingonda tamuda

Jati koubi sakhenbi

Semjariba Nachomna
Nujage napa sanduna
Semjariba Nachomna
Nujage napa sanduna
Nungshibi Takhellei
Oiuu nujagi samji Lei
Nungshibi Takhellei
Oiuu nujagi samji Lei

Pamubado laklaga lenajage mamangda

Semjariba Nachomna
Nujage napa sanduna
Semjariba Nachomna
Nujage napa sanduna

Nungshibi Takhellei
Oiuu nujagi samji Lei
Nungshibi Takhellei
Oiuu nujagi samj Lrei

Pamubado laklaga lenajage mamangda

Jati koubi sakhenbi
Leirang laktagi athoibi
Pamuba chenglou ubara
Nuja eingonda tamuda
Jati koubi sakhenbi
Leirang laktagi athoibi
Pamuba chenglou ubara
Nuja eingonda tamuda

Jati koubi sakhenbi
Jati koubi sakhenbi

Saturday, July 12, 2014

The reality of parallel worlds and time travel is proved?

The reality of parallel worlds and time travel is proved?

In 2002 Nobel Prize winner, American physicistRaymond Davismade a sensational statement:the existence of a parallel world is proved.

Neutrino, the smallest particle known to science,exists simultaneously in two worlds: in ours, the material one, and in a parallel one.

Up until the 1930s, scientists used to deny the existence of supernatural forces. It changed in1930withthe discovery of neutrino particles. In the 1920s during the first experiments on the splitting of the nucleus it turned out thatsome part of energy disappears to nowhere.

Then young Swiss physicist Wolfgang Pauli suggested a crazy hypothesis: there areparticles with no mass, and they can freely depart from the laboratory, without being recorded by physical devices.

These particles carry off the missing energy.
Pauli was first laughed at, but soon it was found that he was right. The new found particle called “neutrino” hadalmost no massand couldtravel at the speed of light, freely passing through any obstacle.

That was a completely new view of space and time. By studying the properties of neutrinos, scientists got a chance to access such things aszero-transportation, an instantaneous movement of objects in space-time (despite Einstein’s theory).

Studies related to the properties of neutrinos are classified in many countries. It is understandable: the first one who will discoverthe laws of parallel worlds, will get into his hands of a powerful weapon and the key tounlimited power over people, nature and time.

Indeed, studies of neutrinos have shown thattime travel is a reality.
The laws of fundamental physics say: if an object ismoving with the speed of light, time stops for it.

That is, if we put a clock in a capsule moving with the speed of light, the hands will stop. And if the capsule is dispersed faster than the speed of light, the hands will start moving in the opposite direction.

It was only a theory, but in May 2012 it was proved in practice, when scientistsdispersed neutrinos faster than the speed of lightand found thatthe particles overtook the time, i.e. they had reached the destination a few nanoseconds before they started the way!

Another sensational discovery was made by researchers from the University of North Carolina and Rochester. It is known that neutrino is the basic matterwhich the universe is built of. Earth is permeated by fluxes of neutrinos: every second 10 billion of these particles pass through our body.

Scientists were able to establish thatneutrinos can transfer information! With the help of neutrino it is possible to instantlysend messages to any distance in any environment!

In fact,the first message using neutrino beamhas already been transferred. But the transfer took a long time: one word was passing for 2 hours, which is explained by the fact that the neutrino catcher handles only a single particle from 10 billion neutrinos.

Scientists believe that over time the process will be greatly accelerated, andthe neutrino communicationswill supersede all other forms of communication.

Maybe that could also explainthe phenomenon of clairvoyance?

Cosmologists claim that half of the neutrino fluxes in the universe are moving through time in the opposite direction, i.e. theycarry information from the future into the past.

Perhaps, some people on Earth are capable of receiving this information because of some innate abilities. And we call these peoplepsychics or clairvoyants.

Controversial theory suggests the speed of light is SLOWER than first thought

Was Einstein wrong all along? Controversial theory suggests the speed of light is SLOWER than first thought.

*.Einstein claimed speed of light in a vacuum is 186,282 miles per second

*.But James Franson from Maryland University believes it is slower than this

*.In 1987, light particles of a supernova arrived 4.7 hours later t
han expected

*.Dr James Franson suggests this may be because of 'vacuum polarisation'

*.This, he claims, had a gradual, but significant, impact on speed of photons

*.If he is correct, it means scientists have to recalculate everything from our distance to the sun to some of the most distant objects in other galaxies
In 1905, Albert Einstein calculated that the speed of light remains at a constant 186,282 miles per second (299,792 km per second) when travelling through a vacuum.

While this theory has been accepted for over a century, a controversial new study suggests Einstein was in fact wrong, and that the speed of light is slower than we think.

The study was conducted by Baltimore-based physicist, James Franson, who looked at why light particles of supernova SN 1987A arrived 4.7 hours later than expected.

The star’s collapse, which was seen from Earth in 1987, triggered a burst of neutrinos - an electrically neutral, weakly interacting elementary subatomic particle.

According to Einstein, this should have happened roughly three hours before a burst of optical light - and from that moment on, the pulses should have kept pace, both travelling at the speed of light.

However, the optical light arrived roughly 7.7 hours after the neutrinos - or 4.7 hours late.