3D printing is helping museums in repatriation and decolonisation efforts

By Myrsini Samaroudi and Karina Rodriguez Echavarria
Original paper on MuseumNext >

Manchester Museum recently returned items taken from Australia more than 100 years ago to Aboriginal leaders, the latest move in an ongoing debate over calls to “repatriate” museum artefacts to their countries of origin.
It’s part of a wider discussion over to what degree museums need to reform and “decolonise” away from displaying collections that were gathered or stolen from other countries during the colonial era, in a way that portrays foreign cultures as strange or inferior and other nations as unsuitable possessors of the world’s cultural heritage and knowledge. Major institutions including the British Museum and the Victoria & Albert Museum have been caught up in the debate.
One way forward may be found in digital technologies that can enable people to access representations of other cultures in fair, interesting ways, without cultural institutions needing to hold on to controversial artefacts. For example, with 3D imaging and 3D printing we can produce digital and physical copies of artefacts, allowing visitors to study and interact with them more closely than ever before.

Copying artefacts

Copying artefacts has a surprisingly long history. Many ancient Greek statues that we have today are actually Roman copies made hundreds of years after the originals. Famous Renaissance artists’ workshops regularly produced copies of artwork. In the 19th century, museums produced copies through processes that involved making a mould of the original item, such as casting and electrotyping. The famous diplodocus skeleton “Dippy” actually exists as a number of copies in museums all over the world.

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Cultural Democracy and Inclusion

ICOM informations

Tomás Saraceno, Algo-r(h)i(y)thms 2018

Proactively addressing inequalities and exclusion becomes essential for museums when fulfilling their mission to serving society.

This becomes even more important in a context of increasing movements of populations, polarisation and divisive public discourses. Museums deal with these issues by working on diverse themes such as participation, accessibility, well-being, gender, marginalization and inclusion/exclusion through a variety of activities.

Animation Course at the HKB | Autumn semester 2019

Teacher: Hugo Ryser

During the autumn semester 2019, I took a training course in animation at the HKB. I developed an animation to present the history of the Neuchâtel Observatory. This experience allowed me to understand the technique and to think about presentation solutions for the public. The idea is to be able to explain different aspects of the Observatory’s history in a didactic way.

Dropbox link on the animation

izi.TRAVEL – Audio guides for museum

STORY
In 2011, we – a team of Dutch innovators – joined forces with a Swiss investor with the aim of connecting cities, museums and their stories with travellers who wanted to explore the world in a brand new, innovative way: via a global, open and free platform. A bit like Facebook or Wikipedia. Although this idea wasn’t anything new, no-one had yet done it on such a large and ambitious scale.

izi.travel

Musée international d’horlogerie (MIH) – La Chaux-de-Fonds, Switzerland

Space-time is swirling around a dead star, proving Einstein right again

Space-time is indeed churned by massive rotating bodies, as scientists had thought
Article on Space.com

Artist’s illustration of Lense-Thirring frame-dragging resulting from a rotating white dwarf in the PSR J1141-6545 binary star system.
(Image: © Mark Myers, ARC Centre of Excellence for Gravitational Wave Discovery (OzGrav))

The way the fabric of space and time swirls in a cosmic whirlpool around a dead star has confirmed yet another prediction from Einstein’s theory of general relativity, a new study finds.
That prediction is a phenomenon known as frame dragging, or the Lense-Thirring effect. It states that space-time will churn around a massive, rotating body. For example, imagine Earth were submerged in honey. As the planet rotated, the honey around it would swirl — and the same holds true with space-time.

Satellite experiments have detected frame dragging in the gravitational field of rotating Earth, but the effect is extraordinarily small and, therefore, has been challenging to measure. Objects with greater masses and more powerful gravitational fields, such as white dwarfs and neutron stars, offer better chances to see this phenomenon. ….