G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.
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G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Researchers have announced a new understanding of Roman concrete – a versatile artificial stone that allowed Roman builders to create magnificent, open interiors of unprecedented scale. Collaborators used X-ray beams to study samples under the auspices of the Lawrence Berkeley National Laboratory to understand better why Roman concrete does not crumble and how monuments like the Pantheon, Colosseum, and Markets of Trajan stand to this day. Not only does this research enhance our comprehension of ancient building practice but also it offers hope for more environmentally friendly methods today.
Roman concrete used a volcanic ash-lime mortar that was virtually crack-resistant combined with chunks of volcanic stone and other materials, often brick. Today’s concrete is made with limestone-based Portland cement, which requires a temperature of 1,450°C to create and releases upwards of 7% of the world’s carbon emissions annually. Roman concrete, by contrast, does not require such high heat and could lead to the development of greener concrete through the use of volcanic material as the Romans did over two millennia ago.
The Pantheon, built 118-128 CE, aerial view
A sample of Roman concrete. Photo by Roy Kaltschmidt, Berkeley Lab
The Colosseum, built 70-80 CE, supporting concrete vaults, Rome
Trajan’s Market, built 100-110 CE, distant view and vaults of great hall, Rome
Templar armor during the history
G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.
Researchers have announced a new understanding of Roman concrete – a versatile artificial stone that allowed Roman builders to create magnificent, open interiors of unprecedented scale. Collaborators used X-ray beams to study samples under the auspices of the Lawrence Berkeley National Laboratory to understand better why Roman concrete does not crumble and how monuments like the Pantheon, Colosseum, and Markets of Trajan stand to this day. Not only does this research enhance our comprehension of ancient building practice but also it offers hope for more environmentally friendly methods today.
Roman concrete used a volcanic ash-lime mortar that was virtually crack-resistant combined with chunks of volcanic stone and other materials, often brick. Today’s concrete is made with limestone-based Portland cement, which requires a temperature of 1,450°C to create and releases upwards of 7% of the world’s carbon emissions annually. Roman concrete, by contrast, does not require such high heat and could lead to the development of greener concrete through the use of volcanic material as the Romans did over two millennia ago.
The Pantheon, built 118-128 CE, aerial view
A sample of Roman concrete. Photo by Roy Kaltschmidt, Berkeley Lab
The Colosseum, built 70-80 CE, supporting concrete vaults, Rome
Trajan’s Market, built 100-110 CE, distant view and vaults of great hall, Rome

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
Templar armor during the history
Templar armor during the history
G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.
Researchers have announced a new understanding of Roman concrete – a versatile artificial stone that allowed Roman builders to create magnificent, open interiors of unprecedented scale. Collaborators used X-ray beams to study samples under the auspices of the Lawrence Berkeley National Laboratory to understand better why Roman concrete does not crumble and how monuments like the Pantheon, Colosseum, and Markets of Trajan stand to this day. Not only does this research enhance our comprehension of ancient building practice but also it offers hope for more environmentally friendly methods today.
Roman concrete used a volcanic ash-lime mortar that was virtually crack-resistant combined with chunks of volcanic stone and other materials, often brick. Today’s concrete is made with limestone-based Portland cement, which requires a temperature of 1,450°C to create and releases upwards of 7% of the world’s carbon emissions annually. Roman concrete, by contrast, does not require such high heat and could lead to the development of greener concrete through the use of volcanic material as the Romans did over two millennia ago.
The Pantheon, built 118-128 CE, aerial view
A sample of Roman concrete. Photo by Roy Kaltschmidt, Berkeley Lab
The Colosseum, built 70-80 CE, supporting concrete vaults, Rome
Trajan’s Market, built 100-110 CE, distant view and vaults of great hall, Rome
Templar armor during the history

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.
Researchers have announced a new understanding of Roman concrete – a versatile artificial stone that allowed Roman builders to create magnificent, open interiors of unprecedented scale. Collaborators used X-ray beams to study samples under the auspices of the Lawrence Berkeley National Laboratory to understand better why Roman concrete does not crumble and how monuments like the Pantheon, Colosseum, and Markets of Trajan stand to this day. Not only does this research enhance our comprehension of ancient building practice but also it offers hope for more environmentally friendly methods today.
Roman concrete used a volcanic ash-lime mortar that was virtually crack-resistant combined with chunks of volcanic stone and other materials, often brick. Today’s concrete is made with limestone-based Portland cement, which requires a temperature of 1,450°C to create and releases upwards of 7% of the world’s carbon emissions annually. Roman concrete, by contrast, does not require such high heat and could lead to the development of greener concrete through the use of volcanic material as the Romans did over two millennia ago.
The Pantheon, built 118-128 CE, aerial view
A sample of Roman concrete. Photo by Roy Kaltschmidt, Berkeley Lab
The Colosseum, built 70-80 CE, supporting concrete vaults, Rome
Trajan’s Market, built 100-110 CE, distant view and vaults of great hall, Rome
Templar armor during the history
G. Embleton’s illustrations of a Landsknecht’s arms and armour, from the book “Landsknecht soldier 1486-1560”.
Templar armor during the history

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
i-is-surrounded-by-idjits reblogged your post Ancient Roman marble relief panel depi… and added:
if that’s Roman then why is the writing Greek? fun fact: ancient Greeks thought large penises were grotesque
I’m pretty sure it’s Roman because I have seen that same design and it was very...
Even in Rome the greek was used as a second language or as the main one either during the first century b.C. - i.e. Julius Caesar probably said "kai sy, teknon;" in spite of "et tu, Brute, fili mi?", with the same meaning); the "koinè diàlektos" - "common (greek) dialect" - was just like the english nowadays or the french between the 1700 and 1800.
Ancient Roman marble relief panel depicting a winged penis, 1st century AD.