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README.md
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sdk: gradio
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sdk_version: 3.
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app_file: run.py
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pinned: false
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hf_oauth: true
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sdk: gradio
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sdk_version: 3.41.2
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app_file: run.py
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pinned: false
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hf_oauth: true
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requirements.txt
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https://gradio-main-build.s3.amazonaws.com/
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https://gradio-main-build.s3.amazonaws.com/d76d50112328711b1a692b80c1e88a085b15b301/gradio-3.41.2-py3-none-any.whl
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run.ipynb
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{"cells": [{"cell_type": "markdown", "id": 302934307671667531413257853548643485645, "metadata": {}, "source": ["# Gradio Demo: latex"]}, {"cell_type": "code", "execution_count": null, "id": 272996653310673477252411125948039410165, "metadata": {}, "outputs": [], "source": ["!pip install -q gradio "]}, {"cell_type": "code", "execution_count": null, "id": 288918539441861185822528903084949547379, "metadata": {}, "outputs": [], "source": ["import gradio as gr\n", "\n", "with gr.Blocks() as demo:\n", " gr.Markdown(\n", " r\"\"\"\n", " # Hello World! $\\frac{\\sqrt{x + y}}{4}$ is today's lesson\n", "\n", " ## the $\\sqrt{x + y}$ is first\n", "\n", " Start with $\\frac{\\frac{x+1}{x+2}}{x+3}$ then we get $ 2+x $ and $3$.\n", " \n", " There are three formulas to know:\n", " \n", " the first is $\\gamma^2 + \\theta^2 = \\omega^2$\n", " \n", " $\\sqrt{x^2+1}
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{"cells": [{"cell_type": "markdown", "id": 302934307671667531413257853548643485645, "metadata": {}, "source": ["# Gradio Demo: latex"]}, {"cell_type": "code", "execution_count": null, "id": 272996653310673477252411125948039410165, "metadata": {}, "outputs": [], "source": ["!pip install -q gradio "]}, {"cell_type": "code", "execution_count": null, "id": 288918539441861185822528903084949547379, "metadata": {}, "outputs": [], "source": ["import gradio as gr\n", "\n", "with gr.Blocks() as demo:\n", " gr.Markdown(\n", " r\"\"\"\n", " # Hello World! $\\frac{\\sqrt{x + y}}{4}$ is today's lesson\n", "\n", " ## the $\\sqrt{x + y}$ is first\n", "\n", " Start with $\\frac{\\frac{x+1}{x+2}}{x+3}$ then we get $ 2+x $ and $3$.\n", " \n", " There are three formulas to know:\n", " \n", " the first is $\\gamma^2 + \\theta^2 = \\omega^2$\n", " \n", " $\\sqrt{x^2+1}$ is next\n", " \n", " Integral $\\int_{a}^{b} x^2 \\,dx$ is last\n", "\n", " Start typing below to see the output.\n", "\n", " I spent $5 at the grocery store. Then I bought a $2.50 ice cream cone.\n", " \"\"\")\n", "\n", "if __name__ == \"__main__\":\n", " demo.launch()"]}], "metadata": {}, "nbformat": 4, "nbformat_minor": 5}
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run.py
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the first is $\gamma^2 + \theta^2 = \omega^2$
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$\sqrt{x^2+1}
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$ is next
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Integral $\int_{a}^{b} x^2 \,dx$ is last
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the first is $\gamma^2 + \theta^2 = \omega^2$
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$\sqrt{x^2+1}$ is next
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Integral $\int_{a}^{b} x^2 \,dx$ is last
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