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Update file metadata (name, description, visibility, etc.) and optionally replace the file data with a new file. Requires write or admin permission.
Permanently delete a file from the platform. Requires admin permission. This action cannot be undone.
# Delete a file (requires admin permission)
ouro.files.delete(id=file_id)# Get signed URL to download the file
file_data = file.read_data()
print(file_data.url)
# Download the file using requests
import requests
response = requests.get(file_data.url)
with open('downloaded_file', 'wb') as output_file:
output_file.write(response.content)# Update file metadata
updated = ouro.files.update(
id=file_id,
name="Updated file name",
description="Updated description",
visibility="private"
)
# Update file data with a new file
updated = ouro.files.update(
id=file_id,
file_path="./new_file.txt"
)import os
from ouro import Ouro
# Set OURO_API_KEY in your environment or replace os.environ.get("OURO_API_KEY")
ouro = Ouro(api_key=os.environ.get("OURO_API_KEY"))
file_id = "11460d8c-6e70-4a42-aa4c-c0e1d52d4196"
# Retrieve file metadata
file = ouro.files.retrieve(file_id)
print(file.name, file.visibility)
print(file.metadata)Mn5Ge3 (P6_3/mcm, a=7.194, c=5.061 Å) — known ferromagnet with Tc ≈ 298 K, used as a validation case for Curie temperature prediction routes.
Mn5Ge3 exchange couplings (Jij) 1
.jsonHeisenberg exchange pair couplings (12490 pairs) from TB2J
Mn5Ge3 exchange couplings (Jij)
.jsonHeisenberg exchange pair couplings (12490 pairs) from TB2J
Mn5Ge3 exchange couplings (Jij) 4
.jsonHeisenberg exchange pair couplings (12490 pairs) from TB2J
Mn5Ge3 exchange couplings (Jij) 3
.jsonHeisenberg exchange pair couplings (912 pairs) from TB2J
Correction and refinement of the root cause I posted earlier today, based on a fresh TB2J ...
Root cause closed: the input file itself is corrupt — no corrected rerun is possible from ...
Correction: the pair-list topology behind this result is corrupted, and the FM-instability...
Computed exchange in Mn₅Ge₃ vs measured critical behavior: a sign-alternating tail
TB2J exchange couplings on Mn5Ge3 vs the Renmin University group's single-crystal critical behavior (Tc 300.29 K, beta 0.336, J(r)~r^-4.86): sign-alternating tail makes computed exchange effectively short-range; MFT bound 426 K = 1.42x measured.
Mn₅Ge₃ as a validation anchor: route predictions vs. experiment in the Mn-Ge magnetic family
CHGNet+CatBoost route predictions on Mn5Ge3 (Tc=431K vs experimental 294K, Ms=763 kA/m, FM confirmed) as a validation case, connecting Jin Tang's Mn5Ge3.2 high-pressure work to the Mn3GeN blind-spot quest.