{ "meta": { "version": "1.0.0", "description": "Global glossary used for inline linking across the app." }, "terms": [ { "id": "term_function", "term": "function", "aliases": ["functions", "mapping"], "definition": "A rule that maps each input to exactly one output.", "related_topic_ids": ["concept_function_basics"], "related_formula_ids": [] }, { "id": "term_derivative", "term": "derivative", "aliases": ["rate of change", "slope"], "definition": "How fast a function changes at a specific point.", "related_topic_ids": ["concept_derivative_intro"], "related_formula_ids": ["power_rule", "product_rule_ex", "chain_rule_ex", "quotient_ex"] }, { "id": "term_integral", "term": "integral", "aliases": ["antiderivative", "accumulation"], "definition": "A continuous sum; can represent area under a curve.", "related_topic_ids": ["concept_integral_intro"], "related_formula_ids": ["poly_integral", "trig_integral", "exp_integral", "def_integral_x2", "def_integral_sin"] }, { "id": "term_limit", "term": "limit", "aliases": ["approaches", "near a point"], "definition": "The value a function approaches as the input approaches a target.", "related_topic_ids": ["concept_limits_intro", "concept_limit_at_infinity"], "related_formula_ids": ["sinc_limit", "inf_limit", "exp_limit"] }, { "id": "term_taylor_series", "term": "Taylor series", "aliases": ["series expansion", "power series"], "definition": "A polynomial-based expansion used to approximate functions near a point.", "related_topic_ids": ["concept_taylor_series"], "related_formula_ids": ["taylor_sin", "taylor_exp", "taylor_cos", "taylor_ln"] }, { "id": "term_quotient_rule", "term": "quotient rule", "aliases": ["u over v rule"], "definition": "Differentiation rule for a ratio of two functions.", "related_topic_ids": ["concept_quotient_rule"], "related_formula_ids": ["quotient_ex"] }, { "id": "term_chain_rule", "term": "chain rule", "aliases": ["composite derivative"], "definition": "Differentiation rule for nested functions.", "related_topic_ids": ["concept_chain_rule"], "related_formula_ids": ["chain_rule_ex", "log_deriv", "exp_deriv"] }, { "id": "term_product_rule", "term": "product rule", "aliases": ["uv prime rule"], "definition": "Differentiation rule for a product of functions.", "related_topic_ids": ["concept_product_rule"], "related_formula_ids": ["product_rule_ex"] } ] }