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Guitar Gear and Tone Flashcards
50 question-and-answer cards covering Gear and Tone as it is examined in Guitar. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.
24 sample cards from the Gear and Tone deck
Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.
What is the difference between true bypass and buffered bypass pedals?
True bypass routes the signal straight through when the pedal is off, adding nothing — but long cable runs then cause treble loss from capacitance. Buffered pedals always pass the signal through a low-output-impedance buffer, preserving high frequencies over long chains. A good chain often mixes both.
Compare overdrive, distortion, and fuzz.
Overdrive: mild, dynamic soft clipping that mimics a pushed tube amp and cleans up with picking/volume (e.g., Tube Screamer). Distortion: heavier, more compressed hard clipping with sustained saturation regardless of dynamics (e.g., Boss DS-1, ProCo RAT). Fuzz: extreme, transistor-based square-wave-like clipping — woolly, splatty, and vintage (e.g., Fuzz Face, Big Muff).
What is the difference between soft clipping and hard clipping in gain pedals?
Soft clipping rounds off the signal peaks gradually, producing mostly even, smooth harmonics — the basis of overdrive. Hard clipping slices the peaks off abruptly (closer to a square wave), producing more odd harmonics and the aggressive, compressed sound of distortion and fuzz.
What is the Ibanez Tube Screamer known for tonally?
It is the archetypal overdrive: a mid-hump EQ boost, soft symmetric clipping, and cut lows, which tightens an amp's tone and helps guitar cut through a band mix. It is widely used to push tube amps harder (as a boost) in blues and metal alike.
How does a chorus pedal create its effect?
It splits the signal, delays one copy slightly (roughly $15$–$35$ ms) and continuously varies that delay with an LFO, causing pitch modulation; mixing it with the dry signal simulates multiple slightly-detuned instruments playing together — a shimmering, watery thickening.
What is the difference between a phaser and a flanger?
A phaser passes the signal through all-pass filter stages that create moving notches at non-harmonic frequencies — a smooth, swirling whoosh. A flanger mixes the signal with a very short modulated delay (about $1$–$10$ ms) with feedback, producing harmonically related comb-filter notches — a more metallic, jet-plane sweep.
What do the Rate and Depth knobs control on a modulation pedal?
Rate sets the speed of the LFO (how fast the effect sweeps or wobbles); Depth sets the intensity of the modulation (how far the delay time, phase, or pitch is swept from its center value).
Compare analog, digital, and tape delay.
Tape delay (e.g., Echoplex) records to a tape loop — warm, degraded, wobbly repeats. Analog delay uses bucket-brigade (BBD) chips — dark, warm repeats that degrade naturally, limited delay time (~$300$–$600$ ms). Digital delay samples the signal — pristine, exact repeats with long times and extra features.
How do you calculate the delay time in milliseconds for a quarter note at a given tempo?
Divide $60{,}000$ ms (one minute) by the tempo: $$t_{\text{quarter}} = \frac{60000}{\text{BPM}} \text{ ms}$$ At $120$ BPM a quarter note is $500$ ms; a dotted eighth is $\frac{3}{4}$ of that, i.e. $375$ ms.
What are the main reverb types a guitarist should know?
Spring (metal springs in a tank — boingy, surf-classic, built into many amps), plate (large vibrating metal sheet — dense, smooth studio sound), hall/room (simulations of real acoustic spaces — natural ambience), plus creative digital types like shimmer (adds octave-up regeneration).
In what order should pedals typically be arranged on a pedalboard?
Tuner first, then filters/dynamics (wah, compressor), then gain (overdrive/distortion/fuzz — though fuzz often goes first to see the pickup directly), then modulation (chorus/phaser/flanger), then delay, then reverb last. It's a guideline, not a law — experimentation is encouraged.
What power specifications do most guitar pedals require, and why are isolated power supplies preferred?
Most pedals run on $9$ V DC with a center-negative barrel connector (check current draw in mA — digital pedals need more). Isolated supplies give each pedal its own transformer-separated output, eliminating ground loops and the hum/noise caused by daisy-chaining pedals off one output.
Why does signal quality degrade on large pedalboards, and how do you prevent it?
Every pedal, patch cable, and long cable run adds capacitance and potential noise, causing high-frequency (tone) loss — especially through many true-bypass pedals. Prevent it with short quality patch cables, at least one good buffer in the chain, and isolated power.
What is "action" on a guitar, and what are typical electric guitar action heights at the 12th fret?
Action is the height of the strings above the frets. A common electric setup measures about $\frac{4}{64}$ in ($1.6$ mm) on the treble E and $\frac{6}{64}$ in ($2.4$ mm) on the bass E at the 12th fret. Too low causes fret buzz; too high makes playing hard and hurts intonation.
How do you check and correct a guitar's intonation?
Compare the 12th-fret harmonic (or open string) with the fretted 12th-fret note on a tuner — they should be identical. If the fretted note is sharp, lengthen the string by moving the saddle back (away from the neck); if flat, shorten it by moving the saddle forward. Repeat per string after retuning.
Why is the 12th fret located at the midpoint of the scale length?
Halving a string's vibrating length doubles its frequency, producing the octave: $f_{12} = 2f_{0}$. Fret positions follow equal temperament, where each fret shortens the vibrating length by a factor of $\frac{1}{\sqrt[12]{2}} \approx \frac{1}{1.0595}$, so after 12 frets the length is exactly halved.
What does the truss rod do?
It is an adjustable metal rod inside the neck that counteracts string tension to control neck relief (forward bow). It is used to keep the neck properly, slightly concave — it is NOT the correct tool for setting action height, which is done at the saddles and nut.
Which way do you turn a truss rod adjustment nut, and what does each direction do?
Righty-tighty: turning clockwise tightens the rod, straightening the neck (reduces relief/forward bow). Counterclockwise loosens it, allowing more relief. Make small adjustments — no more than about $\frac{1}{4}$ turn at a time — and let the neck settle.
How do you measure neck relief?
Capo the 1st fret, press the string at the last fret (string becomes a straightedge), and measure the gap between the string and the 7th–8th fret. A typical target is about $0.008$–$0.010$ in ($\approx 0.25$ mm); no gap means a dead-straight or back-bowed neck, a large gap means too much relief.
Why should you wipe down your strings after every playing session?
Sweat, skin oils, and dirt corrode strings and pack into the windings, killing brightness, sustain, and tuning stability and shortening string life. A quick wipe with a dry microfiber cloth (and occasional string cleaner) dramatically extends string life.
How should you care for different fretboard woods when cleaning?
Unfinished woods like rosewood and ebony should be cleaned and occasionally conditioned with a small amount of fretboard (lemon) oil when they look dry — a few times a year at most. Finished maple boards should only be wiped with a slightly damp cloth; never oil a lacquered maple fretboard.
What are the signs that your strings need changing?
Dull, lifeless tone; visible discoloration, rust, or kinks; difficulty staying in tune; poor intonation; and rough feel or flat spots in the windings. As a rule of thumb, change every $1$–$3$ months for regular players, or sooner for heavy/sweaty playing.
How does a magnetic guitar pickup work?
By electromagnetic induction: permanent magnets (or magnetized pole pieces) create a field through a coil of thousands of turns of fine copper wire. When the steel string vibrates, it disturbs the magnetic flux through the coil, inducing a small alternating voltage — per Faraday's law, $\varepsilon = -\frac{d\Phi_B}{dt}$ — which becomes the guitar's signal.
Compare single-coil and humbucker pickups, and explain what a tone control does electrically.
Single-coils (Strat/Tele style) sound bright, clear, and glassy but pick up $50/60$ Hz hum; humbuckers use two coils wired with opposite polarity so hum cancels, giving a thicker, hotter, darker tone (Les Paul style). The tone knob is a variable low-pass RC filter that bleeds highs to ground, with cutoff $f_c = \frac{1}{2\pi RC}$ — rolling it down darkens the sound.
What this deck covers
The Gear and Tone deck follows the Guitar Gear and Tone syllabus — 4 chapters and 15 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 12.5 cards per chapter.
Answers are written to be recallable, not just readable — averaging about 285 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.
Gear and Tone flashcards FAQ
How many Gear and Tone flashcards are in this Guitar 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 Guitar 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 Gear and Tone cards cover?
They follow the Guitar Gear and Tone syllabus — 4 chapters and 15 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.