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La $f : I \\to \\mathbb{R}$ være en funksjon med $a \\in I$, og anta at $f$ er $n$-ganger deriverbar i punktet $a$. Husk at Taylor-polynomet til $f$ av grad $n$ om punktet $a$ er
\n$T_nf(x)=\\sum\\limits_{k=0}^n \\frac{f^{(k)}(a)}{k!}(x-a)^k$ og restleddet er gitt ved $R_nf(x)=f(x)-T_nf(x)$.
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\n$(T_0g)(x)=$ [[0]] og $(T_0g)(0.2)==$ [[4]]
\n$(T_1g)(x)=$ [[1]] og $(T_1g)(0.2)=$ [[5]]
\n$(T_2g)(x)=$ [[2]] og $(T_2g)(0.2)=$ [[6]]
\n$(T_3g)(x)=$ [[3]] og $(T_3g)(0.2)=$ [[7]] (avrund til 4 desimaler)
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"failureRate": 1, "vsetRangePoints": 5, "vsetRange": [0, 1], "checkVariableNames": false, "singleLetterVariables": false, "allowUnknownFunctions": true, "implicitFunctionComposition": false, "caseSensitive": false, "valuegenerators": [{"name": "x", "value": ""}]}, {"type": "jme", "useCustomName": false, "customName": "", "marks": 1, "scripts": {}, "customMarkingAlgorithm": "", "extendBaseMarkingAlgorithm": true, "unitTests": [], "showCorrectAnswer": true, "showFeedbackIcon": true, "variableReplacements": [], "variableReplacementStrategy": "originalfirst", "nextParts": [], "suggestGoingBack": false, "adaptiveMarkingPenalty": 0, "exploreObjective": null, "answer": "1+x+x^2/2+x^3/(3!)", "showPreview": true, "checkingType": "absdiff", "checkingAccuracy": 0.001, "failureRate": 1, "vsetRangePoints": 5, "vsetRange": [0, 1], "checkVariableNames": false, "singleLetterVariables": false, "allowUnknownFunctions": true, "implicitFunctionComposition": false, "caseSensitive": false, 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true, "variableReplacements": [], "variableReplacementStrategy": "originalfirst", "nextParts": [], "suggestGoingBack": false, "adaptiveMarkingPenalty": 0, "exploreObjective": null, "minValue": "1.2", "maxValue": "1.2", "correctAnswerFraction": false, "allowFractions": false, "mustBeReduced": false, "mustBeReducedPC": 0, "displayAnswer": "", "showFractionHint": true, "notationStyles": ["plain", "en", "si-en"], "correctAnswerStyle": "plain"}, {"type": "numberentry", "useCustomName": false, "customName": "", "marks": 1, "scripts": {}, "customMarkingAlgorithm": "", "extendBaseMarkingAlgorithm": true, "unitTests": [], "showCorrectAnswer": true, "showFeedbackIcon": true, "variableReplacements": [], "variableReplacementStrategy": "originalfirst", "nextParts": [], "suggestGoingBack": false, "adaptiveMarkingPenalty": 0, "exploreObjective": null, "minValue": "1.22", "maxValue": "1.22", "correctAnswerFraction": false, "allowFractions": false, "mustBeReduced": false, "mustBeReducedPC": 0, "displayAnswer": "", "showFractionHint": true, "notationStyles": ["plain", "en", "si-en"], "correctAnswerStyle": "plain"}, {"type": "numberentry", "useCustomName": false, "customName": "", "marks": 1, "scripts": {}, "customMarkingAlgorithm": "", "extendBaseMarkingAlgorithm": true, "unitTests": [], "showCorrectAnswer": true, "showFeedbackIcon": true, "variableReplacements": [], "variableReplacementStrategy": "originalfirst", "nextParts": [], "suggestGoingBack": false, "adaptiveMarkingPenalty": 0, "exploreObjective": null, "minValue": "1.2213", "maxValue": "1.2213", "correctAnswerFraction": false, "allowFractions": false, "mustBeReduced": false, "mustBeReducedPC": 0, "displayAnswer": "", "showFractionHint": true, "notationStyles": ["plain", "en", "si-en"], "correctAnswerStyle": "plain"}], "sortAnswers": false}, {"type": "gapfill", "useCustomName": false, "customName": "", "marks": 0, "scripts": {}, "customMarkingAlgorithm": "", "extendBaseMarkingAlgorithm": true, "unitTests": [], 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\n$(R_0g)(0.2)=$ [[0]] (avrund til 4 desimaler).
\n$(R_1g)(0.2)=$ [[1]] (avrund til 4 desimaler).
\n$(R_2g)(0.2)=$ [[2]] (avrund til 4 desimaler).
\n$(R_3g)(0.2)=$ [[3]] (avrund til 4 desimaler).
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", "minMarks": 0, "maxMarks": 0, "shuffleChoices": false, "displayType": "radiogroup", "displayColumns": 0, "showCellAnswerState": true, "choices": ["$d_A(f,g)=\\sup \\{ |f(x)-g(x)|:x\\in A\\}=\\sup \\{ x^2:x\\in(-\\var{a},\\var{a})\\}=0$", "$d_A(f,g)=\\sup \\{ |f(x)-g(x)|:x\\in A\\}=\\sup \\{ x^2:x\\in(-\\var{a},\\var{a})\\}=\\var{a^2}$", "$d_A(f,g)=\\sup \\{ |f(x)-g(x)|:x\\in A\\}=\\sup \\{ x^2:x\\in(-\\var{a},\\var{a})\\}$ som ikke kan defineres fordi $(-\\var{a},\\var{a})$ er et åpent intervall"], "matrix": [0, "1", 0], "distractors": ["", "", ""]}], "partsMode": "all", "maxMarks": 0, "objectives": [], "penalties": [], "objectiveVisibility": "always", "penaltyVisibility": "always", "type": "question"}, {"name": "punktvis konvergens og uniform konvergens", "extensions": [], "custom_part_types": [], "resources": [], "navigation": {"allowregen": true, "showfrontpage": false, "preventleave": false, "typeendtoleave": false}, "contributors": [{"name": "Elena Malyutina", "profile_url": "https://numbas.mathcentre.ac.uk/accounts/profile/7213/"}], "tags": [], "metadata": {"description": "", "licence": "None specified"}, "statement": "La $\\{f_n(x)\\}, f(x): A\\subseteq\\mathbb{R}\\rightarrow\\mathbb{R}$.
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