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From the eighth to the twelfth centuries the Vikings were the masters of the northern seas, sending their
slender ships into the uncharted waters of the North Atlantic.They discovered
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From the eighth to the twelfth centuries the Vikings were the masters of the northern seas, sending their
slender ships into the uncharted waters of the North Atlantic.They discovered the Faroe islands, Iceland and
far-off Greenland and even found their way to North America. But how did they make such voyages in the
days before even the simple magnetic compass? The navigational techniques used by the Vikings remain
shrouded in mystery.
In Viking Voyage, world-renowned mariner Sir Robin Knox-Johnston and a Norwegian crew attempt a journey
across the North Sea in a replica Viking ship. Not only do they navigate without modern charts or compasses
- as did their Viking ancestors - but they also put to the test the Viking practice of portaging, by attempting to
haul a 9 tonne cargo ship across a narrow strip of land in Shetland from the North Sea to the Atlantic.
Sir Robin Knox-Johnston, tests these navigational skills and leads a voyage across the North Sea from Norway
to Shetland without modern magnetic compass or chart. He tries out the only piece of navigation equipment
he thinks they may have had - a sun-compass.This wooden disc with a central hole and notches along the
outer edge and a pin fixed in the centre may have acted as a compass; casting a shadow from the sun which
would help seafarers head in the right direction. Sir Robin and the rest of the crew are amazed at the
accuracy of this simple tool which, along with the aid of some fair winds, brings them safely to their
destination.
On arrival in Shetland another challenge awaits the team.There is evidence in the sagas that Vikings hauled
their smaller warships across narrow stretches of land to avoid lengthy and dangerous sea voyages - a
practice known as portaging. But would they have been able to do this with a larger cargo ship like the one
the team are using? With the help of some game locals and a bucket of rancid cod liver, the team discover
that it really would have been possi
In 55 BC Julius Caesar marched through Europe, crushing the rebellious tribes in the North. In mid-summer he
arrived at the mighty Rhine. He was determined to get his legions across to
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In 55 BC Julius Caesar marched through Europe, crushing the rebellious tribes in the North. In mid-summer he
arrived at the mighty Rhine. He was determined to get his legions across to teach the tribes on the other side
a lesson, but considered it beneath the dignity of the Roman army to cross the river by boat. Consequently, he
ordered his men to build a wooden bridge over a river which was at least 400 metres wide, up to 8 metres
deep and flowing at 2 metres a second. In his account of 'The Gallic Wars' he claims that from the felling of the
first tree to the completed bridge, this massive structure was built in only ten days.
This programme attempts to discover if Caesar was boasting.
Caesar left a surprisingly detailed account of how the bridge was built. Based on a series of trestles spaced
across the river, it was unusual in a number of ways. For example, the pairs of timber piles that formed the
trestles were driven in to the river bed at a slanting angle to provide more stability.This is much harder to
achieve than the more usual vertical piling. Caesar tells us that 'the stability of the structure was so great and
its character such that, the greater the force and thrust of the water, the tighter were the balks held in lock.'
But how did Caesar's engineers pile 8 metre long oak timbers into the pebbly bed of the Rhine at an angle?
The first challenge is to design and build a Roman pile-driver, with no evidence to go on.
Engineer Chris Wise takes on the challenge and attempts to build a timber bridge across the North Tyne, in
Hadrian's Wall country, another outpost of the Roman Empire, using the same techniques as the Romans had at
their disposal. Chris has had a major role in building the Millennium bridge over the River Thames which will
take a year to complete, and here again his main challenge is the time limit. Just like Caesar, he has only a
matter of days to do the job with a small dedicated team - hardly the legions that Cae
In 213 BC, the Romans sent a large force to capture the strategically vital Greek city state of Syracuse in Sicily.
The siege was to go down in history because this mighty force was
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In 213 BC, the Romans sent a large force to capture the strategically vital Greek city state of Syracuse in Sicily.
The siege was to go down in history because this mighty force was stopped in its tracks almost single-handedly
by one man - Archimedes.
The unfortunate Romans were by no means badly armed. Before he arrived in Syracuse, Marcellus made sure
that he was equipped with the best available military technology, including a catapult so enormous that it had to
be housed on the decks of eight ships lashed together. But the Greeks were able to unleash a number of
Archimedes’ innovations on their unprepared invaders. Most terrifying of them all was The Claw.
Archaeologist Roger Wilson tells the story of the siege as the ancient sources described it. Polybius talks about
a battery of weapons directed against the Roman enemy. Catapults with different ranges were fired at them
from the walls, but once the Romans had got through this barrage, coming up close to the walls to set up their
siege engines, they thought they were out of range.They were wrong. Archimedes had designed great machines
that dropped huge stones on the ships and a ‘claw’ which "lifted the ship’s prow out of the water and stood it
up vertically on its stern".Then the crane operator "fastened the machine to make it immovable, and then by
some sort of release mechanism, cast off the grappling hook and chain.The ships then either capsized, listed
badly or became filled with confusion and much sea-water".
Engineer and expert rock climber Jo da Silva and Brian Austen, an expert in putting up big tops for the circus
take on the task of attempting to recreate Archimedes’ invention on the sea front in Syracuse.They are assisted
by mathematician and Archimedes expert Chris Rorres, who explains the two great laws of Archimedes - the
law of the lever and the law of buoyancy - are used in practice in this ancient war machine.They begin by
building a crane strong enough to lif
Over three thousand years ago, in the fertile jungles of lowland Mexico, the first civilisation in the Americas was
born. Five hundred years before Rome was founded, the Olmec were
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Over three thousand years ago, in the fertile jungles of lowland Mexico, the first civilisation in the Americas was
born. Five hundred years before Rome was founded, the Olmec were building great cities with pyramids and
ball courts. Considered by most archaeologists to be the ‘mother culture’of Mexico, the roots of the later Maya
and Aztec cultures lie with the Olmec.
One of the most extraordinary feats of the ancient Olmec was their monumental sculptures.The inhabitants of
the site of La Venta erected huge sculptures, some of which weighed up to 40 tonnes.The most famous of these
are the massive stone heads. Believed to be portraits of their leaders, they are over two metres high and
sculpted entirely without the help of metal tools.There are thousands of tonnes of stones at the site but, most
extraordinarily of all, these sculptures are found in an area where there is no rock available. The area identified
as the source of the Olmec boulders lies in the Tuxtla mountains over 160 kilometres away. And between these
mountains and La Venta the land is criss-crossed with massive rivers and swamps which would have made the
transportation even more difficult. So how did the stones get to La Venta?
Archaeologist Ponciano Ortiz believes the Olmec would have transported their stones by water wherever
possible. But Anne Cyphers, who has excavated and moved large stone monuments at another Olmec site -
San Lorenzo - is convinced that the stones would have been moved over land on sledges during the dry season
using the simplest technology.
Engineer Peter Guthrie and rigger Bob Loew soon encounter the difficulties of moving a 12 tonne stone over
land and on water with the most basic technology. Peter falls ill and cannot go to Mexico so Bob struggles on
alone with Peter’s preliminary sketches. Getting the stone on the sled and moving it over land proves far more
difficult than expected but when Bob tries to manoeuvre the stone onto a massive raft
Millennia after its destruction, the city of Babylon remains a symbol of extravagance and wealth. Its most
celebrated feature was one of the ‘Seven Wonders of the World’.The so-called
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Millennia after its destruction, the city of Babylon remains a symbol of extravagance and wealth. Its most
celebrated feature was one of the ‘Seven Wonders of the World’.The so-called ‘Hanging Gardens of Babylon’
astounded and perplexed observers. In the first century BC Diodorus Siculus described them as ‘gardens
suspended in the air’. From a distance they were described as looking like a terraced hillside, or the rows of
seats in a Greek theatre.They are said to have been built for a favoured wife of Nebuchadnezzar who came
from the mountainous country in the North. Some experts even believe that the ancient chroniclers got the
location wrong and that the gardens were not at Babylon at all, rather that they were built centuries earlier by
King Sennacherib of Nineveh.
But wherever they were located the mystery remains - how could such elaborate gardens possibly have been
irrigated? Ancient sources describe a mysterious, hidden system of irrigation which carried water to the
summit. So what was this system and how did it work? Without any archaeological evidence for the gardens
surviving this question becomes even more difficult to answer.The experts are divided.
John Oleson, an expert on ancient water-lifting devices, believes that a whole series of Shadufs may have been
used. Commonly used to this day in the Near East, shadufs are basic levers with buckets at one end and a
counterweight at the other. But Stephanie Dalley thinks not. Reading his ancient writings, she believes
Sennacherib employed screws mounted within tubes to lift water. If this is true, then Sennacherib’s engineers
invented the Archimedes Screw centuries before Archimedes was born.Water engineer Jo Parker attempts to
test both theories by reconstructing each method to see if they were feasible using the technology of the time.
However, there is one final challenge to face. Stephanie Dalley insists that the sources say that Sennacherib
made his screw out of b
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