Research provides insight into the eating habits of Homo erectus

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia).

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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An international scientific team led by Professor Wolfgang Müller from the Goethe University of Frankfurt and the Senkenberg Research Institute and Natural History Museum in Frankfurt recently published a paper entitled Dietary strategies of Pleistocene Pongo sp. and Homo erectus on Java (Indonesia). The team includes the research of his student Jülide Kubat, Luca Bondioli (Department of Cultural Heritage of the University of Padua) and Beatrice Peripoli (former Department of Cultural Heritage of the University of Padua student and current PhD student at Sapienza University of Rome)

Through the study of teeth, researchers compared the eating habits of Homo erectus with those of orangutans and other contemporary animal species. These human ancestors and the other animal species in the study lived on the island of Java during the Pleistocene (Ice Age) between 1.4 million and 700,000 years ago marked by monsoon rainforests, open wooded landscapes, and grassy savannahs.

Throughout the course of a year, our ancestors switched from a plant-based diet to a mixed diet, making them less dependent on the availability of seasonal food than other species that inhabited the island, such as orangutans.

Researchers embedded teeth in resin to analyse its enamel, then cut them into wafer-thin slices about 150 micrometres thick. Subsequently, a special laser removed a small amount of enamel from the thin sections, chemically analysing them using a mass spectrometer to detect the presence of several chemical elements, including strontium and calcium, found in both bones and teeth (Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICPMS).

The teeth of the hominids orangutan and Homo erectus were quite exciting as researchers discovered annual cycles during which the dietary composition of great apes and humans changed: both showed variations during the years, but the regular Sr/Ca peaks were much more pronounced for the orangutan than for Homo erectus.

Jülide Kubat, the first author of the publication, explains: “These peaks indicate an abundant supply of plant food in the wet season, during which the rainforest, for example, produced many types of fruit. During the dry season, orangutans switched to other food sources, which may have included insects or eggs. By contrast, Homo erectus, as an omnivore and occasional carnivore, was less dependent on seasonal food supply – as indicated by the less pronounced peaks and lower Sr/Ca values.”

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Trasparenza Indicatore annuale di tempestività dei pagamenti per l'anno 2022

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pubblicato il 25-01-2023
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pubblicato il 25-01-2023
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pubblicato il 25-01-2023
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Padua offers more support to its international students

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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
[summary] => [format] => 2 [safe_value] =>

The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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The University’s Board of Directors has approved three funding opportunities to support international students who have chosen the University of Padua for their academic careers by investing over 800,000 euros in scholarships for 2023.

The following three financial opportunities also include student fee waivers:

  • Padua International Excellence Scholarship – offers 53 annual scholarships equal to 8,000 euros to deserving candidates of each course of study/curriculum delivered in English
  • Invest Your Talent in Italy – has added two additional scholarships equal to 900 euros (net) per month, for 9 months (funding is renewable)
  • Unipd 4 Myanmar – offers two scholarships of 8,000 euros per year to support Burmese students for the 2023/2024 A.Y.
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Tesi per il clima. Un premio per stimolare la ricerca sul cambiamento climatico

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinar

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Dal 2021 Aequilibria promuove una serie di iniziative in collaborazione con alcune prestigiose università italiane per l’assegnazione a studenti e studentesse di premi per tesi di laurea aventi ad oggetto la crisi climatica. Il contributo è inteso a riconoscere l’impegno degli studenti e delle studentesse che decidono di affrontare il tema della crisi climatica tramite lo studio e la ricerca, promuovendo le tesi innovative con l’obiettivo di incentivare la ricerca sui temi del cambiamento climatico da più punti di vista, con una prospettiva multidisciplinare e innovativa.

In occasione dell’apertura del nuovo bando di Aequilibria, il 7 febbraio dalle 14 alle 17, un seminario online è l’occasione per approfondire tale esperienza e per dialogare con coloro che hanno preso parte al progetto, in rappresentanza dell’università partner o come partecipanti al bando. In particolare, vengono presentate e tesi finaliste e vincitrici della scorsa edizione del bando: 1° classificato è Philippe Fleury, Università di Padova, con una tesi incentrata sul concetto di “energy democracy”. Fleury ha conseguito una laurea in Relazioni Internazionali e Diritto Internazionale presso l'Università del Quebec a Montreal, e una M.Sc internazionale congiunta in Sviluppo Territoriale Sostenibile all'Università degli Studi di Padova; attualmente lavora con i membri del Parlamento del Canada nello studio di progetti di legge in relazione, tra le altre cose, all'ambiente e allo sviluppo sostenibile.

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Trasparenza - Indicatore tempestività pagamenti IV trimestre 2022

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2022RUB03 - Allegato 27 - Verbale 2 - Elenco candidati e convocazione

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2022RUAPNRR_PE_01 - Allegato 11 Verbale 2 - Giudizi analitic

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2022RUB05 - Allegato 2 - Verbale 3 - Giudizi analitici

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Elenco riepilogativo dei budget assegnati per Dipartimento - 2023

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BIRD Finanziamento per l'anno 2023

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Linee guida per l'articolazione e la gestione del finanziamento aggiornamento 2023 [format] => [safe_value] => Budget Integrato per la Ricerca dei Dipartimenti (BIRD)<br>Linee guida per l'articolazione e la gestione del finanziamento aggiornamento 2023 ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 115108 [uid] => 32 [filename] => Allegato 3_LineeGuidaBIRD_finaziamenti-assegnati2020_2023.pdf [uri] => public://2023/Allegato 3_LineeGuidaBIRD_finaziamenti-assegnati2020_2023.pdf [filemime] => application/pdf [filesize] => 109550 [status] => 1 [timestamp] => 1674642398 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2529 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => stefano.zampieri [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:48:"form-WsCySmos4vAVlyFhG6gU5T7knfAyqco8LxlocSU_yIA";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 413559 [is_current] => 1 [is_pending] => [revision_moderation] => ) ) ) [1] => Array ( [#type] => link [#title] => Elenco riepilogativo dei budget assegnati per Dipartimento - 2023 [#href] => node/96443 [#options] => Array ( [entity_type] => node [entity] => stdClass Object ( [vid] => 413560 [uid] => 32 [title] => Elenco riepilogativo dei budget assegnati per Dipartimento - 2023 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 96443 [type] => allegato [language] => it [created] => 1674642496 [changed] => 1674642496 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1674642496 [revision_uid] => 32 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Elenco riepilogativo dei budget assegnati per Dipartimento [format] => [safe_value] => Elenco riepilogativo dei budget assegnati per Dipartimento ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 115109 [uid] => 32 [filename] => Tabelle Bird 2023 erogato-DEF.pdf [uri] => public://2023/Tabelle Bird 2023 erogato-DEF.pdf [filemime] => application/pdf [filesize] => 55595 [status] => 1 [timestamp] => 1674642455 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2529 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => stefano.zampieri [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:48:"form-WsCySmos4vAVlyFhG6gU5T7knfAyqco8LxlocSU_yIA";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 413560 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) ) ) ) [field_accordion_state] => Array ( [#theme] => field [#weight] => -1 [#title] => Aperto/Chiuso [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_accordion_state [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 413561 [uid] => 32 [title] => BIRD Finanziamento per l'anno 2023 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 96444 [type] => elemento_accordion [language] => it [created] => 1674642485 [changed] => 1674642485 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1674642485 [revision_uid] => 32 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( [und] => Array ( [0] => Array ( [nid] => 96442 [access] => 1 [node] => stdClass Object ( [vid] => 413559 [uid] => 32 [title] => Budget Integrato per la Ricerca dei Dipartimenti (BIRD) - Linee guida per l'articolazione e la gestione del finanziamento aggiornamento 2023 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 96442 [type] => allegato [language] => it [created] => 1674642407 [changed] => 1674642407 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1674642407 [revision_uid] => 32 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Budget Integrato per la Ricerca dei Dipartimenti (BIRD)
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