-

Comments on Greek painting, art, contemporary thought

Our blog is an artistic, cultural guide to the Greek landscapes. At the same time it offers an introduction to the history of Greek fine arts, Greek artists, mainly Greek painters, as well as to the recent artistic movements

Our aim is to present the Greek landscapes in a holistic way: Greek landscapes refer to pictures and images of Greece, to paintings and art, to poetry and literature, to ancient philosophy and history, to contemporary thought and culture...
--
--
greek artists, contemporary thought, greek painters, literature, greek paintings, modern greek artists



Showing posts with label ships. Show all posts
Showing posts with label ships. Show all posts

Wednesday, August 11, 2010

Comments & Greek painting, Greek artists: the sea darkens...

Poets & Greek artists, Greek painting, modern Greek artists


Yannis Stavrou, A Ship, oil on canvas

The nature, the sea, the lake, the big and the small thoughts...

The wonderful world of Japanese poetry...

Haiku

Matsuo Basho (1644-1694)

The sea darkens;
the voices of the wild ducks
are faintly white.

Waking in the night;
the lamp is low,
the oil freezing.

It has rained enough
to turn the stubble on the field
black.

Winter rain
falls on the cow-shed;
a cock crows.


The leeks
newly washed white,-
how cold it is!

** ** **

None is travelling

Here along this way but I,

This autumn evening.


The first day of the year:

thoughts come - and there is loneliness;

the autumn dusk is here.


An old pond

A frog jumps in -

Splash!


Old dark sleepy pool . . .

quick unexpected

frog

Goes plop! Watersplash!


Lightening -

Heron's cry

Stabs the darkness


Clouds come from time to time -

and bring to men a chance to rest

from looking at the moon.


In the cicada's cry

There's no sign that can foretell

How soon it must die.


Poverty's child -

he starts to grind the rice,

and gazes at the moon.


Won't you come and see

loneliness? Just one leaf

from the kiri tree.


Temple bells die out.

The fragrant blossoms remain.

A perfect evening!


Ballet in the air ...

twin butterflies

until, twice white

They meet, they mate


Black cloudbank broken

scatters in the

night ... Now see

Moon-lighted mountains!


Seek on high bare trails

sky-reflecting

violets...

Mountain-top jewels


For a lovely bowl

let us arrange these

flowers...

Since there is no rice


Now that eyes of hawks

in dusky night

are darkened . . .

Chirping of the quails


April's air stirs in

willow-leaves . . .

a butterfly

Floats and balances


In the sea-surf edge

mingling with

bright small shells ..

Bush-clover petals


The river

Gathering may rains

from cold streamlets

for the sea . . .

Murmuring Mogami


White cloud of mist

above white

cherry-blossoms . . .

Dawn-shining mountains


Twilight whippoorwill . . .

whistle on,

sweet deepener

Of dark loneliness


Mountain-rose petals

falling, falling,

falling now . . .

Waterfall music


Ah me! I am one

who spends his little

breakfast

Morning-glory gazing


Seas are wild tonight . . .

stretching over

Sado Island

Silent clouds of stars


Why so scrawny, cat?

starving for fat fish

or mice . . .

Or backyard love?


Dewdrop, let me cleanse

in your brief

sweet waters . . .

These dark hands of life

-------------------------

**The last poems are translated by Jon LaCure

Friday, July 30, 2010

Ships & Greek artists, Greek painters, modern Greek artists


Yannis Stavrou, Bleu blanc rouge, oil on canvas

Walt Whitman

Song For All Seas, All Ships

TO-DAY a rude brief recitative,
Of ships sailing the Seas, each with its special flag or ship-signal;
Of unnamed heroes in the ships--Of waves spreading and spreading, far
as the eye can reach;
Of dashing spray, and the winds piping and blowing;
And out of these a chant, for the sailors of all nations,
Fitful, like a surge.

Of Sea-Captains young or old, and the Mates--and of all intrepid
Sailors;
Of the few, very choice, taciturn, whom fate can never surprise, nor
death dismay,
Pick'd sparingly, without noise, by thee, old Ocean--chosen by
thee, 10
Thou Sea, that pickest and cullest the race, in Time, and unitest
Nations!
Suckled by thee, old husky Nurse--embodying thee!
Indomitable, untamed as thee.

(Ever the heroes, on water or on land, by ones or twos appearing,
Ever the stock preserv'd, and never lost, though rare--enough for
seed preserv'd.)


Flaunt out O Sea, your separate flags of nations!
Flaunt out, visible as ever, the various ship-signals!
But do you reserve especially for yourself, and for the soul of man,
one flag above all the rest,
A spiritual woven Signal, for all nations, emblem of man elate above
death, 20
Token of all brave captains, and all intrepid sailors and mates,
And all that went down doing their duty;
Reminiscent of them--twined from all intrepid captains, young or old;
A pennant universal, subtly waving, all time, o'er all brave sailors,
All seas, all ships.

Friday, June 25, 2010

Comments & Greek artists, Greek painters: Marine landscapes & poetry...

Marine landscapes & Greek artists, Greek painters, Greek painting


Yannis Stavrou, On Waves II, oil on canvas

Marine landscapes...

To the sound of poetry

To ships & boats...

To escapes & journeys...

Walt Whitman

After the Sea-Ship

After the Sea-Ship--after the whistling winds;
After the white-gray sails, taut to their spars and ropes,
Below, a myriad, myriad waves, hastening, lifting up their necks,
Tending in ceaseless flow toward the track of the ship:
Waves of the ocean, bubbling and gurgling, blithely prying,
Waves, undulating waves--liquid, uneven, emulous waves,
Toward that whirling current, laughing and buoyant, with curves,
Where the great Vessel, sailing and tacking, displaced the surface;
Larger and smaller waves, in the spread of the ocean, yearnfully
flowing;
The wake of the Sea-Ship, after she passes--flashing and frolicsome,
under the sun, 10
A motley procession, with many a fleck of foam, and many fragments,
Following the stately and rapid Ship--in the wake following.


Walt Whitman
Walt Whitman (1819-1892)


O Captain! my Captain!


O Captain! my Captain! our fearful trip is done;
The ship has weather'd every rack, the prize we sought is won;
The port is near, the bells I hear, the people all exulting,
While follow eyes the steady keel, the vessel grim and daring:
But O heart! heart! heart!
O the bleeding drops of red,
Where on the deck my Captain lies,
Fallen cold and dead.


O Captain! my Captain! rise up and hear the bells;
Rise up--for you the flag is flung--for you the bugle trills; 10
For you bouquets and ribbon'd wreaths--for you the shores a-crowding;
For you they call, the swaying mass, their eager faces turning;
Here Captain! dear father!
This arm beneath your head;
It is some dream that on the deck,
You've fallen cold and dead.


My Captain does not answer, his lips are pale and still;
My father does not feel my arm, he has no pulse nor will;
The ship is anchor'd safe and sound, its voyage closed and done;
From fearful trip, the victor ship, comes in with object won; 20
Exult, O shores, and ring, O bells!
But I, with mournful tread,
Walk the deck my Captain lies,
Fallen cold and dead.

Tuesday, September 9, 2008

CERN 10-9-2008. Mysteries of the universe will be solved


Yannis Stavrou, Bleu Blanc Rouge, oil on canvas

The most ambitious experiment in history will take place tomorrow at CERN.

We present you the relative article from TIMES http://www.timesonline.co.uk/tol/news/uk/
science/article4670445.ece :

It is the most ambitious and expensive civilian science experiment in history, based on the biggest machine that humanity has yet built. It has sparked alarmist fears that it might create a black hole that will tear the Earth apart, and it has triggered two last-minute legal attempts to stop it. And next Wednesday, after almost two decades of planning and construction, the project in question will finally get under way.

Beneath the foothills of the Jura mountains, in a network of tunnels that bring to mind the lair of a crazed Bond villain, scientists will fire a first beam of particles around a ring as long as the Circle Line on the London Underground. This colossal circuit, 17 miles (27km) in circumference, is the world’s most powerful atom-smasher, the £3.5 billion Large Hadron Collider (LHC), created at CERN, the European particle physics laboratory near Geneva. Some 10,000 scientists and engineers from 85 countries have been involved. In the years ahead it will recreate the high-energy conditions that existed one trillionth of a second after the big bang. In doing so, it should solve many of the most enduring mysteries of the Universe.

This extraordinary feat of engineering will accelerate two streams of protons to within 99.9999991 per cent of the speed of light, so that they complete 11,245 17-mile laps in a single second. The two streams will collide, at four points, with the energy of two aircraft carriers sailing into each other at 11 knots, inside detectors so vast that one is housed in a cavern that could enclose the nave of Westminster Abbey. The detectors will trace the sub-atomic debris that is thrown off by the collisions, to reveal new particles and effects that may never have existed on Earth before.

The mountains of data produced will shed light on some of the toughest questions in physics. The origin of mass, the workings of gravity, the existence of extra dimensions and the nature of the 95 per cent of the Universe that cannot be seen will all be examined. Perhaps the biggest prize of all is the “God particle” – the Higgs boson. This was first proposed in 1964 by Peter Higgs, of Edinburgh University, as an explanation for why matter has mass, and can thus coalesce to form stars, planets and people. Previous atom-smashers, however, have failed to find it, but because the LHC is so much more powerful, scientists are confident that it will succeed.

Even a failure, however, would be exciting, because that would pose new questions about the laws of nature.

“What we find honestly depends on what’s there,” said Brian Cox, of the University of Manchester, an investigator on one of the four detectors, named Atlas. “I don’t believe there’s ever been a machine like this, that’s guaranteed to deliver. We know it will discover exciting things. We just don’t know what they are yet.” The guarantee applies, however, only if the hardware works as it should, and the LHC’s first big test comes on Wednesday, when the first beam of particles is injected into the accelerator. That is a huge technical challenge. “The beam is 2mm in diameter and has to be threaded into a vacuum pipe the size of a 50p piece around a 27km loop,” said Lyn Evans, the LHC’s project manager, who will oversee the insertion. “It is not going to be trivial.”

Engineers will use magnets to bend the beam around the LHC’s eight sectors, until it finally begins to circulate. “That’ll be the first sight of relief, that there are no obstacles in the vacuum chamber,” Dr Evans said. “There could be a Kleenex in the chamber – we’ve had that before. Only when we get the beam around will we be able to tell it’s clear.”

Once the first beam is in – probably the one running clockwise, though that has yet to be decided – the team will insert the second, anticlockwise stream of particles. The first collisions, to test the detectors, should follow by the end of next week.

The next step will be to “capture” the beams so they fire in short pulses, 2,800 times a second. These will then be accelerated to an energy of 5 tera-electronvolts (TeV), generating collisions of 10TeV.The detectors should be calibrated by the end of the year and the collisions will then be ramped up to their maximum energy of 14TeV, generating the conditions that prevailed fractions of a second after the Big Bang.

One of the first scientific discoveries is likely to concern a theory called supersymmetry. Tejinder Virdee, of Imperial College, London, who leads the Compact Muon Solenoid (CMS) detector team, said: “What supersymmetry predicts is that, for every particle you have a partner, so it doubles up the spectrum. You have a whole new zoology of particles, if you like.”

Theory suggests that if supersymmetry is real, evidence to confirm it should emerge quickly from the LHC, possibly as soon as next year. “If it pops up it’ll be quite easy to see,” Professor Cox said.

Such a discovery might also help to explain dark matter, which is thought to account for much of the missing mass of the Universe. Only about 4 per cent of matter – galaxies and the like – is visible to our telescopes. “In this new zoology, the lightest super-symmetric particle is a prime candidate for explaining dark matter,” Professor Virdee said.

The search for the Higgs could take longer, though it depends on the particle’s mass and thus the energy of the collisions in which it might be found. If it is at the heavier end of the possible range, the discovery could take as little as 12 months. A lighter Higgs would take longer to find, as the particles into which it would decay would also be lighter and harder to track.

Other potential discoveries include evidence for the existence of extra dimensions beyond the familiar three of space and one of time, and the creation of miniature (and harmless) black holes, though these are less probable. “Most of us think we’d be very lucky to find these things,” Professor Cox said.

There are two more detectors. The LHCb will investigate why there is any matter in the Universe at all, while Alice aims to study a mixture known as quark-gluon plasma, which last existed in the first millionth of a second after the big bang.

From gluons to sparticles

Particle
In physics, this term refers to sub-atomic particles – entities that are smaller than atoms. Some, such as protons and electrons, are the constituents of atoms. Others, such as quarks, are the constituents of other particles. Still others, such as photons and neutrinos, are generated by the Sun. And yet more, such as the Higgs boson, are theoretical: predicted but still undiscovered

Hadron
This is more than an excuse for a geeky physics joke – “Is that your hadron, or are you just pleased to see me?” Hadrons are particles with mass, made up of quarks that have been bound together

Protons, neutrons, quarks and gluons
Protons and neutrons are the best-known types of hadron. Each is composed of three smaller units, called quarks, and gluons that stick the quarks together. Protons have a positive charge, while neutrons have a neutral charge

Higgs boson
A theoretical particle, which is thought to give matter its mass. First proposed by Peter Higgs, of the University of Edinburgh, in 1964, it is sometimes nicknamed the “God particle”. The Large Hadron Collider (LHC) should confirm whether it exists. The theory suggests that other particles travel through and interact with a field of Higgs bosons, which slows the particles down and gives rise to their mass. The process is often likened to moving through treacle. In the early 1990s Lord Waldegrave of North Hill, then the Science Minister, staged a competition for the best explanation. The winning analogy was of Margaret Thatcher – a massive particle – wandering through a Tory cocktail party and gathering hangers-on as she went

Standard model
The orthodox theory of modern physics. It is based on two other theories – general relativity and quantum mechanics – and its main weakness is that it cannot yet fully describe gravity or mass

Quantum mechanics
The main principle of the standard model, which describes how particles and forces behave at atomic and sub-atomic scales

General relativity
Einstein’s theory describing gravity. It is exceptionally well attested, but not fully compatible with quantum mechanics

Supersymmetry
The hypothesis that all particles have an accompanying partner known as a “superparticle” or “sparticle”. There is good theoretical evidence for it, but it has not yet been confirmed by experiment

Dark matter
Only about 4 per cent of the Universe is made up of visible matter. Another 25 per cent is “dark matter” – which can be inferred from its gravity, but cannot be seen. The remaining 71 per cent is still more mysterious “dark energy”. The LHC could shed light on what dark matter is, possibly through discoveries about supersymmetry

Extra dimensions
We are all familiar with four dimensions – three of space and one of time. But some theoretical physicists suggest that there could be as many as 26. Most physicists find these every bit as hard to visualise as normal people, but they make mathematical sense

Wednesday, August 20, 2008

...as I was young and easy at the mercy of his means *


Yannis Stavrou, Red Ships, oil on canvas

Nothing I cared, in the lamb white days, that time would take me

Up to the swallow thronged loft by the shadow of my hand,

In the moon that is always rising,

Nor that riding to sleep

I should hear him fly with the high fields

And wake to to the farm forever fled from the childless land,

Oh as I was young and easy at the mercy of his means,

Time let me green and dying

Though I sang in my chains like the sea

______________________________

* Dylan Thomas, from "Fern Hill"