This commit is contained in:
guanjihuan 2023-06-28 16:35:24 +08:00
parent dea77a992e
commit 9b84c30ee9
4 changed files with 22 additions and 3 deletions

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@ -521,6 +521,9 @@ guan.change_directory_by_replacement(current_key_word='code', new_key_word='data
# Module 14: others
# 拼接两个PDF文件
guan.combine_two_pdf_files(input_file1='a.pdf', input_file2='b.pdf', output_file='combined_file.pdf')
# 通过Sci-Hub网站下载文献
guan.download_with_scihub(address=None, num=1)

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@ -1,7 +1,7 @@
[metadata]
# replace with your username:
name = guan
version = 0.0.170
version = 0.0.171
author = guanjihuan
author_email = guanjihuan@163.com
description = An open source python package

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@ -1,6 +1,6 @@
Metadata-Version: 2.1
Name: guan
Version: 0.0.170
Version: 0.0.171
Summary: An open source python package
Home-page: https://py.guanjihuan.com
Author: guanjihuan

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@ -2,7 +2,7 @@
# With this package, you can calculate band structures, density of states, quantum transport and topological invariant of tight-binding models by invoking the functions you need. Other frequently used functions are also integrated in this package, such as file reading/writing, figure plotting, data processing.
# The current version is guan-0.0.170, updated on June 19, 2023.
# The current version is guan-0.0.171, updated on June 28, 2023.
# Installation: pip install --upgrade guan
@ -3135,6 +3135,22 @@ def download_with_scihub(address=None, num=1):
## PDF
# 拼接两个PDF文件
def combine_two_pdf_files(input_file1='a.pdf', input_file2='b.pdf', output_file='combined_file.pdf'):
import PyPDF2
output_pdf = PyPDF2.PdfWriter()
with open(input_file1, 'rb') as file1:
pdf1 = PyPDF2.PdfReader(file1)
for page in range(len(pdf1.pages)):
output_pdf.add_page(pdf1.pages[page])
with open(input_file2, 'rb') as file2:
pdf2 = PyPDF2.PdfReader(file2)
for page in range(len(pdf2.pages)):
output_pdf.add_page(pdf2.pages[page])
with open(output_file, 'wb') as merged_file:
output_pdf.write(merged_file)
# 获取PDF文献中的链接。例如: link_starting_form='https://doi.org'
def get_links_from_pdf(pdf_path, link_starting_form=''):
import PyPDF2