--- base_model: google/gemma-3-4b-it library_name: peft license: other tags: - lora - peft - adapter - adaption --- # adaption_agronomy_problem_solving ## Model Training A LORA adapter for `google/gemma-3-4b-it`. This model was trained with SFT using [Adaption](https://adaptionlabs.ai)'s AutoScientist on the agronomy_problem_solving dataset. ![Training metrics](training-metrics.png) ### AutoScientist Config ```json { "job_id": "18fe9ddd-e21b-43b3-8739-c07511cd5337", "training_experiment_id": "0352f9e2-8e81-4302-8d91-5d0eee1eb330", "original_model_name": "google/gemma-3-4b-it", "trained_model_name": "adaption_agronomy_problem_solving", "training_method": "sft", "training_type": "lora", "data_format": "chat", "hyperparams": { "lora": "true", "lora_r": 16, "n_evals": 5, "n_epochs": 1, "batch_size": "max", "lora_alpha": 32, "lora_dropout": 0, "min_lr_ratio": 0.1, "warmup_ratio": 0.1, "weight_decay": 0, "learning_rate": 0.00001, "max_grad_norm": 2, "base_model_size": "4B", "train_on_inputs": "false", "training_method": "sft", "lr_scheduler_type": "cosine", "scheduler_num_cycles": 0.5, "lora_trainable_modules": "all-linear" } } ``` ## Training Data The model was trained on 27,622 rows of adapted data with the following domain distribution: agriculture (97%), math (3%). ## Model Evaluation The model was evaluated on an in-distribution held-out test set as well as a broader domain-specific test set to measure generalization. ![Win rates](win-rates.png) ## How to use ```bash pip install torch transformers peft ``` ```python import torch from transformers import AutoModelForCausalLM, AutoTokenizer from peft import PeftModel BASE = "google/gemma-3-4b-it" ADAPTER = "" device = "cuda" if torch.cuda.is_available() else "cpu" dtype = torch.float32 if device == "cpu" else torch.bfloat16 base = AutoModelForCausalLM.from_pretrained(BASE, dtype=dtype).to(device) model = PeftModel.from_pretrained(base, ADAPTER) # Optional: merge the LoRA weights into the base for faster inference model = model.merge_and_unload() model.eval() tokenizer = AutoTokenizer.from_pretrained(BASE) messages = [{"role": "user", "content": "Hello!"}] text = tokenizer.apply_chat_template( messages, tokenize=False, add_generation_prompt=True) inputs = tokenizer(text, return_tensors="pt").to(device) with torch.inference_mode(): out = model.generate(**inputs, max_new_tokens=512) print(tokenizer.decode(out[0][inputs["input_ids"].shape[1]:], skip_special_tokens=True)) ```