90-Hour Training Reflection
90-Hour Training Reflection
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Description
Transform training PPTs and lecture notes into a 90-hour training reflection with theoretical depth, personal reflection, and ready-to-submit quality. This is not "AI writing reflections for you." It is a professional two-step confirmation workflow: first, systematically extract each expert's core theory, key viewpoints, typical cases, and memorable quotes from the training materials, generating a structured summary for your confirmation—only after you confirm does it proceed to writing. The theoretical framework names must remain consistent with the original materials and cannot be fabricated. Core capabilities: • Accurate extraction of expert viewpoints: Read each PPT/PDF/Word/image file individually, extract core theoretical frameworks, 2–3 key statements, typical cases, and memorable quotes by expert, not superficial generalization. • Analysis of inter-theory connections: Identify internal correspondences between different experts' viewpoints (e.g., the correspondence between Bloom's cognitive taxonomy and the three levels of knowledge, ability, and competency), demonstrating systematic understanding—this is the key to distinguishing a deep reflection from a mere record. • Practice transformation section: Select specific teaching units, integrate training theory into assignment design practice, and generate conversion cases from training to classroom—this is the part that reviewers value most. • Complete five-part structure: Training overview and overall feelings → Expert-specific reflections → Internal connections between theories → From training to practice → Reflection and outlook, 3,000–6,000 words. • Reflective writing style: First-person, interweaving theory with personal teaching experience, language with warmth, avoiding empty clichés and slogans. • Word format download: Simultaneously generates a Word download tool, allowing one-click export of a directly submittable document. Applicable scenarios: - Reflection essay writing for middle school math teachers after completing 90-hour training - Reflective article writing for teacher professional development training - Any scenario that requires extracting theory from training materials and transforming it into practical reflection Upload your training materials, confirm the extracted expert viewpoints, and it will generate a complete, well-grounded, and deeply reflective reflection document, along with a Word download tool.
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Course Design Assistant v7.0
💡 What can this assistant do for you? An expert with years of experience in instructional design and lesson plan writing, guiding you step by step to create professional-level instructional designs. (Offline training valued at least ¥3000 per session.) 📋 13-step standardized process, scientific and rigorous, no omissions From course information collection → learning situation analysis → pain point diagnosis → key/difficult point confirmation → objective writing (draft + refinement) → teaching model selection → AI tool integration → process design → evaluation design → board design → complete plan → multi-format delivery Each step includes quality checks to ensure no skipped steps, no omissions, and no vague content. 🎯 Automatic ABCD principle check, no more headaches in objective writing The system automatically checks each objective against the ABCD principle and tags Bloom's taxonomy levels (L1-L6). 📊 Dedicated "Advancedity, Innovation, Challenge" check, aligned with first-class course standards No more worrying about reviewers saying "insufficient challenge." The system quantifies the check for you. 🧠 Intelligent Bloom's taxonomy matching, automatically achieving higher-order thinking The system includes a Bloom's verb classification table (L1-L6) and automatically identifies: Each objective is automatically tagged with its level, ensuring the proportion of higher-order objectives meets standards. 🎨 Natural integration of curriculum-based ideological and political education, no more forced labeling The system provides 5 integration strategies: - Situational embedding: Introduce through real cases/historical stories (e.g., "China's high-speed rail control system from import to independent innovation") - Behavioral concretization: Replace abstract concepts with observable behaviors (e.g., "Identify violations in engineering accidents" rather than "Improve professional ethics") - Value conflict: Set ethical dilemmas to guide judgment (e.g., "Economic benefits vs. environmental protection") - Cultural inheritance: Introduce through traditional culture/institutional advantages (e.g., "The artisan spirit of ancient astronomical instruments") - Comprehensive literacy goals: Covering scientific literacy, engineering literacy, innovation literacy, digital literacy, values, humanistic literacy, and global perspective ⏱️ Time-driven design to ensure the teaching process is implementable Automatically calculate the total time for each segment Compare with the total time set by the user If the error exceeds ±5 minutes, automatically alert and provide adjustment suggestions No more awkward situations where "the design looks great but there isn't enough class time" 🤖 Deep integration of AI tools, supporting higher-order thinking rather than just efficiency improvement Three-tier architecture: - L1 Tool layer: Visualization, real-time feedback, virtual simulation - L2 Teaching layer: Personalized paths, layered tasks, collaborative support - L3 Innovation layer: AI as debate opponent, decision simulation, design assistance Only recommends domestic AI tools (Wenxin Yiyan, Tongyi Qianwen, Doubao, etc.), supports integration of teacher-built intelligent agents 📐 Comprehensive evaluation design, perfect objective-activity-assessment alignment - Diagnostic evaluation: Pre-class assessment - Formative evaluation: Process monitoring (classroom questioning, group discussion, lab reports) - Summative evaluation: Outcome validation (exams, project presentations) For L4-L6 higher-order objectives, automatically generate evaluation rubrics including four dimensions: "Depth of analysis, Innovation, Argument quality, Critical thinking" 🎭 Two working modes to suit different needs - Mode A (Quick output): Provide basic information → System automatically completes steps 2-11 → Outputs complete plan directly → Suitable for time-constrained users who trust AI judgment - Mode B (Step-by-step interaction): Gradually confirm each step → User can modify at any time → Suitable for fine-tuning and deep involvement Regardless of mode, 4 delivery formats are available: Detailed version, concise version, visual web page, teaching process framework diagram ⚡ Six core competitive advantages (unique features) 🔬 1. Scientific process, not based on intuition 13-step standardized process strictly executed in order, no skipping. Each step has clear output and quality check to ensure the design aligns with educational principles. 📊 2. Quantitative check of "Advancedity, Innovation, Challenge" Automatically detect advancedity (proportion of higher-order objectives ≥50%), innovation (real situations + innovative modes), and challenge (open-ended questions + interdisciplinary integration), aligned with first-class course standards. 🎯 3. Automatic ABCD principle verification Each objective must include "Condition-Behavior-Standard," with observable and measurable action verbs. The system automatically checks and tags Bloom's levels. 🧠 4. Intelligent Bloom's taxonomy matching Built-in L1-L6 verb classification table, automatically identifies objective levels, ensures higher-order thinking standards are met, no more worrying about reviewers saying "objective level is too low." ⏱️ 5. Time-driven design Automatically calculate segment durations, compare with total duration, alert if error exceeds ±5 minutes, ensuring the teaching design is implementable and within time limits. 📐 6. Perfect objective-activity-assessment alignment Constructive Alignment principle ensures consistency among "teaching objectives, teaching activities, and assessment methods." Each objective has corresponding activities and evaluations. 🎯 Applicable scenarios (covering all higher education) ✅ Teaching competitions: Teaching innovation competitions, young teacher teaching competitions, classroom teaching contests ✅ Course construction: First-class course applications, curriculum-based ideological and political demonstration courses, blended course design ✅ Daily teaching: New lesson preparation, teaching reform, teaching model innovation ✅ Teaching evaluation: Peer review, supervisory observation, teaching quality assessment ✅ Teacher development: New teacher training, teaching ability enhancement, teaching research 🚀 User experience Quick mode (Mode A): Provide course name, chapter, major, class hours → Select Mode A → System automatically completes 13-step process → Get complete teaching design in 30 minutes → Choose delivery format (detailed/concise/visual web page/framework diagram) Detailed mode (Mode B): Provide basic information → Select Mode B → Gradually confirm learning situation analysis, pain point diagnosis, key/difficult points, teaching objectives, teaching model, AI tools, teaching process, evaluation design, board design → Modify at each step → Complete high-quality teaching design in 1-2 hours Review mode: Upload existing teaching design → System evaluates step by step against all elements → Summarize three strengths and three weaknesses → Provide specific and actionable optimization suggestions → Generate a standardized and well-formatted evaluation report document

Automated Course Lesson Plans
One-line summary: Generate all lesson plans for an entire course in one go — not just one lesson, but a whole system of logically connected lesson plans. Detailed description: Still writing lesson plans one by one? This skill directly helps you batch-output all lesson plans for a full course (16 weeks/32 class hours or more) in your school's template format. 🔥 Core Capabilities 1. Cascading design for the entire course, not isolated pieces Each lesson plan is not standalone — the skill has a built-in OBE (Outcome-Based Education) logic engine that works backward from course objectives to each lesson's teaching goals, key/difficult points, activities, and assessment methods. Knowledge progression, ability scaffolding, and method rotation across units are all auto-planned. The result is a systematic set of lesson plans, not 16 unrelated documents. 2. Fully automated pipeline From template parsing → content source confirmation → first unit deep polishing → style locking → subsequent unit auto-generation → course summary matrix → batch file output — the entire pipeline runs automatically. You only need to confirm at key nodes; the repetitive work is all done by AI. 3. Two content sources, flexible adaptation With a textbook: Upload textbook/handouts/PPT, AI automatically extracts knowledge points and chapter structure to generate lesson plans directly. Without a textbook: Just provide the topic and outline, AI searches online for materials, organizes them into structured material packages, and generates after confirmation. Mixed mode: Some units have materials, others need to be gathered — switch flexibly per unit. 4. Template adaptation + style learning No matter what your school's lesson plan template looks like, upload it and AI automatically parses the fields. For the first unit, confirm field by field and edit until satisfied; then AI locks in your writing style (word choice, level of detail, formatting preferences) and automatically generates subsequent units in your style. 5. Professional quality assurance Teaching goals strictly use Bloom's action verbs, avoiding vague expressions like "understand" or "master." Each lesson plan undergoes automatic consistency checks (goals ↔ methods ↔ activities ↔ assessment fully aligned). Every 3 units, an automatic quality inspection (method diversity, knowledge progression, style consistency). Finally outputs a course objective coverage matrix, providing a clear view of the entire course's design logic. 📦 Final Deliverables 📁 A folder containing individual lesson plan documents for all units 📊 A course overview document (unit progression table + objective coverage matrix + method distribution statistics) 🎯 Each lesson plan strictly output in your school's template format, ready to submit 💡 Who Should Use It College/vocational teachers who need to write a full course's lesson plans for a new semester Teaching teams that need to batch-produce lesson plans for multiple courses Teachers preparing for teaching inspections or course evaluations who need to quickly complete a full set of lesson plans Teachers who want to write professional, standardized lesson plans that can pass OBE accreditation review One skill, complete lesson plans for an entire course. It doesn't just help you write one — it helps you design a complete course teaching system, then automatically outputs each one.
Information
- Version
- v3
- Last updated
- Runtime credits
- Usage-based
- Models
- Auto