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Productivity & Study Skills Learning Science & Effective Study Strategies Flashcards
50 question-and-answer cards covering Learning Science & Effective Study Strategies as it is examined in Productivity & Study Skills. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.
24 sample cards from the Learning Science & Effective Study Strategies deck
Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.
What is self-explanation, and how does it improve learning?
Explaining to yourself, step by step, how a worked example or text passage works and why each step follows; it forces the learner to detect gaps in understanding, connect steps to principles, and build coherent schemas.
How does elaboration differ from retrieval practice as a learning mechanism?
Retrieval practice strengthens access to a memory by pulling it out of long-term memory; elaboration enriches the memory itself by adding meaningful connections and cues during encoding — the two are complementary and best combined.
What is dual coding theory, and who proposed it?
Allan Paivio's theory that information is processed through two separate channels — verbal and visual — and that encoding material in both forms (words plus images/diagrams) creates two memory traces, doubling the retrieval routes.
How should a student apply dual coding in practice?
Pair verbal material with meaningful visuals: draw diagrams, timelines, concept maps, or sketches of what the text describes, and conversely put words to graphs and figures — creating the representations yourself is more effective than just viewing them.
Why is dual coding different from the debunked 'learning styles' idea?
Learning styles claims each student should receive material in one preferred modality (visual OR verbal), which evidence does not support; dual coding says every learner benefits from combining verbal and visual representations of the same content.
Why do concrete examples improve learning of abstract concepts?
Abstract ideas are hard to grasp and remember on their own; concrete examples anchor them in familiar, vivid experiences, making the concept easier to encode, understand, and retrieve (e.g., illustrating scarcity with concert ticket prices).
What is the recommended way to use multiple concrete examples when studying an abstract concept?
Collect at least two or three different examples (including self-generated ones checked for correctness), then explicitly link each example back to the underlying principle and identify what deep structure the examples share, so you don't just remember surface details.
Why is rereading a low-utility study strategy according to Dunlosky et al.'s 2013 review?
Rereading mostly increases familiarity and fluency with the text rather than durable memory; its benefits fade quickly, it rarely improves comprehension or exam performance beyond the first reread, and it takes time away from high-utility strategies like practice testing and spacing.
What are the main pitfalls of highlighting as a study technique?
It is a passive activity that requires no deep processing, students often highlight too much or mark the wrong material, it can isolate facts rather than build connections, and highlighted pages create a false sense of mastery — Dunlosky et al. rated it low utility.
If a student insists on rereading or highlighting, how can these techniques be made more effective?
Make them active: delay the reread (spacing), highlight sparingly only after reading a full section, and convert highlights into self-test questions, marginal summaries in your own words, or flashcards that force retrieval.
What is massed practice (cramming), and what are its short-term and long-term effects?
Concentrating all study of a topic into one long session close to the test; it can produce acceptable short-term performance on an immediate exam, but the material is forgotten rapidly afterward and long-term retention is far worse than spaced study.
Why does cramming feel effective to students even though it produces poor retention?
During massed practice the material stays highly accessible in working memory and retrieval strength is temporarily high, so recall feels easy; students mistake this momentary fluency for durable learning, but without spacing the storage strength gains are minimal.
What is the 'illusion of fluency' (illusion of knowing) in studying?
The metacognitive error of mistaking ease of processing — a text that reads smoothly, notes that look familiar, a solution that makes sense when seen — for actual mastery, leading students to overestimate how well they know material they cannot actually recall or apply.
Which common study behaviors create illusions of fluency, and what is the antidote?
Rereading, reviewing highlighted notes, watching worked solutions, and cramming all boost familiarity without building recall; the antidote is objective self-testing — judging your knowledge only by what you can retrieve or produce closed-book.
Why is recognizing information a misleading substitute for recalling it?
Recognition ('I've seen this before') is much easier than recall (producing the answer from memory with no cues); exams usually demand recall or application, so a student who only verifies recognition during review will feel prepared but fail to retrieve answers under test conditions.
List four passive review traps and, for each, the active alternative.
Rereading the chapter → free recall then check; recopying notes verbatim → summarize from memory in your own words; watching solution videos → attempt the problem first, then compare; flipping flashcards too quickly → answer fully out loud before turning the card and grade yourself honestly.
Describe the page layout of the Cornell note-taking method.
The page is divided into three zones: a wide right-hand column (about $15\,\text{cm}$) for notes taken during class, a narrow left-hand cue column (about $6\,\text{cm}$) for questions and keywords added after class, and a summary strip (about $5\,\text{cm}$) across the bottom for a brief synthesis in your own words.
What are the 'Five Rs' of the Cornell note-taking system?
Record (take notes in the main column), Reduce (condense into cue-column questions/keywords), Recite (cover the notes and answer the cues from memory), Reflect (connect ideas to prior knowledge), and Review (revisit the notes regularly over time).
Why is the Cornell method considered aligned with learning science rather than a passive format?
The cue column turns notes into a built-in self-testing tool (retrieval practice), writing the bottom summary forces elaboration in your own words, and the recite-and-review cycle naturally implements spaced retrieval — the format bakes active strategies into ordinary note review.
Compare the outline method and the mind-mapping method of note-taking.
Outlining organizes content linearly and hierarchically with indented levels (main topics, subtopics, details) — ideal for structured lectures and sequential material; mind mapping places the central concept in the middle with labeled branches radiating outward — ideal for showing relationships between ideas, brainstorming, and visual/dual-coded overviews of a topic.
What are the core steps of the Feynman Technique?
1) Choose a concept and study it; 2) explain it from scratch in simple language, as if teaching a child, without jargon; 3) identify the points where your explanation breaks down and return to the source to fill those gaps; 4) simplify further and add analogies, repeating until the explanation is clear and complete.
Why does the Feynman Technique work, in terms of learning science?
Generating an explanation from memory is retrieval practice; translating jargon into plain language and analogies forces elaboration and connection to prior knowledge; and failed explanations give precise, honest feedback that destroys the illusion of fluency by exposing exactly what you don't understand.
What is the Zettelkasten method, and who is its most famous practitioner?
A 'slip-box' knowledge system popularized by sociologist Niklas Luhmann: each idea is written as one atomic note in your own words, given a unique identifier, and densely linked to related notes, so the network of connections grows into a thinking and writing partner over time.
In a Zettelkasten workflow, what distinguishes fleeting notes, literature notes, and permanent notes?
Fleeting notes are quick temporary captures of passing ideas; literature notes summarize a source's ideas briefly in your own words with a citation; permanent notes are polished, atomic, self-contained ideas written as if for someone else, linked into the slip-box — only permanent notes form the lasting knowledge network.
What this deck covers
The Learning Science & Effective Study Strategies deck follows the Productivity & Study Skills Learning Science & Effective Study Strategies syllabus — 6 chapters and 26 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 8.3 cards per chapter.
Answers are written to be recallable, not just readable — averaging about 271 characters, which is long enough to carry the reasoning and short enough to say out loud.
A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.
Learning Science & Effective Study Strategies flashcards FAQ
How many Learning Science & Effective Study Strategies flashcards are in this Productivity & Study Skills deck?
50 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.
Are these Productivity & Study Skills flashcards free?
Yes. The preview here is free to read with no signup, and the full 50-card deck is free inside the Examius app.
What do the Learning Science & Effective Study Strategies cards cover?
They follow the Productivity & Study Skills Learning Science & Effective Study Strategies syllabus — 6 chapters and 26 topics — so the questions track what is actually examinable.
How should I use these flashcards?
Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.