Types of Word Relationships
Word analogies test something subtle: not just your vocabulary, but how cleanly you can spot the exact relationship between two ideas. In RPF Constable reasoning, three to five questions out of forty are usually analogies — and they're often free marks for a candidate who has internalised the relationship-types catalogue. This lesson walks through the nine high-yield relationship types and the "build-a-sentence" trick that solves nearly all of them.
Definition: Analogy — a question that gives you a pair of related words (or numbers, or figures) and asks you to find another pair connected the same way. The standard format is A : B :: C : ? read as "A is to B as C is to ?".
Definition: Relationship — the specific link between the first pair. Identifying it precisely is the entire skill; once you have it, the answer pair is obvious.
The Master Method — Build a Sentence
Before scanning the options, frame the relationship in a clear sentence using the first pair. Then re-use the same sentence with the third word and fill in the blank.
Example: Carpenter : Saw :: Tailor : ?
- Sentence with first pair: "A carpenter uses a saw (as their primary tool)."
- Same sentence with the third word: "A tailor uses a ___ (as their primary tool)."
- Fill in: needle.
The sentence forces you to be specific about the relationship. "A carpenter has a saw" is too loose; "a carpenter uses a saw to cut wood" is precise. Precision is what separates the right option from the trap option.
Why it matters: Most wrong answers in RPF reasoning are written to match a vague version of the relationship. Your sentence is the filter that throws them out.
The Nine High-Yield Relationship Types
1. Synonyms
Two words with similar meanings. Example: Happy : Joyful. Sentence: "A is a synonym of B."
Test pair: Brave : ? → Courageous, Bold, Valiant — all valid synonyms.
2. Antonyms
Two words with opposite meanings. Example: Hot : Cold. Sentence: "A is the opposite of B."
Test pair: Day : ? → Night.
3. Worker–Tool
A worker and the primary tool they use. Example: Carpenter : Saw. Sentence: "A carpenter uses a saw."
Test pair: Farmer : ? → Plough. Surgeon : ? → Scalpel.
4. Worker–Product
A worker and what they produce. Example: Author : Book. Sentence: "An author produces/writes a book."
Test pair: Poet : ? → Poem. Baker : ? → Bread.
5. Animal–Young One
An adult animal and its young one. Example: Cow : Calf. Sentence: "A cow's baby is a calf."
Test pair: Dog : ? → Puppy. Cat : ? → Kitten. Horse : ? → Foal. Lion : ? → Cub.
6. Cause–Effect
The cause and its consequence. Example: Disease : Death. Sentence: "A disease can cause death."
Test pair: Spark : ? → Fire. Hard work : ? → Success.
7. Part–Whole
A component and the whole it belongs to. Example: Wheel : Car. Sentence: "A wheel is a part of a car."
Test pair: Petal : ? → Flower. Finger : ? → Hand.
8. Object–Function
A thing and what it's used for. Example: Pen : Write. Sentence: "A pen is used to write."
Test pair: Knife : ? → Cut. Microscope : ? → Magnify.
9. Container–Contents
A container and what it typically holds. Example: Glass : Water. Sentence: "A glass holds water."
Test pair: Bottle : ? → Liquid/Oil/Milk (pick what fits the option set). Bag : ? → Books/Clothes.
Real-World Example
In RPF Constable 2019, an analogy asked: Doctor : Stethoscope :: Painter : ?
- Sentence: "A doctor uses a stethoscope (primary tool of trade)."
- Apply to painter: "A painter uses a ___."
- Answer: Brush (worker–tool, type 3).
A distractor option might be "paint" — but paint is the material, not the tool. The sentence saves you.
Common Misconceptions
Common misconception 1: "Just go by feeling." Feeling fails when two options both feel right. The sentence reveals which one matches exactly.
Common misconception 2: "Reverse order doesn't matter." It does. Pen : Write (object–function) ≠ Write : Pen (function–object). When you transfer the relationship to the second pair, keep the same direction.
Common misconception 3: Treating every animal-related analogy as animal–young one. It might be animal–habitat (Lion : Jungle), animal–sound (Dog : Bark), animal–food (Cow : Grass), or animal–group (Lion : Pride). Read the first pair carefully.
A Few More Relationship Types to Watch For
Beyond the core nine, examiners also use:
- Country–Capital: India : Delhi
- Country–Currency: Japan : Yen
- Profession–Place: Doctor : Hospital, Judge : Court
- Instrument–Measurement: Thermometer : Temperature, Barometer : Pressure
- Singular–Plural: Mouse : Mice
- Raw material–Product: Wheat : Bread, Cotton : Cloth
Same trick — build a sentence, transfer.
Question: Solve — Cobbler : Shoe :: Goldsmith : ?
Solution:
Step 1: Identify relationship. A cobbler makes shoes (worker–product, type 4).
Step 2: Sentence: "A cobbler makes a shoe."
Step 3: Transfer: "A goldsmith makes ___."
Step 4: Fill: Ornament / Jewellery.
Conclusion: Ornament.
Why Method > Memorisation
You cannot memorise every possible word pair. What you can do is master the relationship catalogue and the sentence trick — then any new pair becomes a 10-second problem. RPF, SSC, RRB and bank exams all reuse the same relationship types because the testing logic doesn't change. The vocabulary is the surface; the structure is constant.
| Type | Example | Sentence pattern |
|---|---|---|
| Synonym | Happy : Joyful | A means B |
| Antonym | Hot : Cold | A is opposite of B |
| Worker–Tool | Carpenter : Saw | A uses B |
| Worker–Product | Author : Book | A makes B |
| Animal–Young | Cow : Calf | A's baby is B |
| Cause–Effect | Disease : Death | A causes B |
| Part–Whole | Wheel : Car | A is part of B |
| Object–Function | Pen : Write | A is used to B |
| Container–Contents | Glass : Water | A holds B |
- ✓- Frame a sentence with the first pair before scanning options.
- ✓- The same sentence, applied to the third word, gives the answer.
- ✓- Be specific — vague relationships let distractors win.
- ✓- Maintain the direction of the relationship from pair 1 to pair 2.
- ✓- STWAP = Synonym, Tool, Worker-product, Animal-young, Part-whole — the five biggest types.
- ✓- Cause–effect, Object–function, Container–contents round out the core nine.
- ✓- Other useful types: Country–capital, Country–currency, Profession–place, Instrument–measurement.
- ✓- The trick scales to any new word pair you encounter on the exam.
"STWAP" — Synonym, Tool, Worker-product, Animal-young, Part-whole. Cover STWAP first; the rest are rarer.
Sentence rule: "A [verb] B" — keep the verb the same when you move to the second pair.
- ✓- Word analogies test the exact relationship between two terms.
- ✓- Build a sentence with the first pair, transfer it to the second.
- ✓- Memorise the nine high-yield types and a few honourable mentions.
- ✓- Specificity in the sentence eliminates distractor options every time.
Animal & Young One Pairs
Animal–young one pairs are one of the easiest scoring areas of the RPF Constable reasoning paper. Every shift has at least one such question, sometimes two or three, and the entire topic can be locked down in a single focused study session. The trick is to memorise three parallel categories together — young one, dwelling place, and sound — because RPF often disguises the same question by switching from one category to another.
Definition: A word-pair analogy is a reasoning question in which two words are linked by a fixed relationship (here, animal → young), and you must identify another pair that shares the same relationship. The format is usually "A : B :: C : ?" — read aloud as "A is to B as C is to what?".
Definition: A young one is the name given to the baby form of an animal. In English the word changes from one species to another — a young dog is not called a "young dog" but a puppy. Indian competitive exams test these vocabulary mappings directly.
How RPF asks this topic
The format varies but the underlying knowledge is the same:
- Direct: "Calf is the young one of which animal?"
- Analogy: "Cow : Calf :: Horse : ?"
- Odd one out: "Calf, Puppy, Kennel, Kitten — find the odd one." (Answer: Kennel, because it is a dwelling place, not a young one.)
- Reverse: "Foal is the young of?" — Horse.
Notice the third format. Examiners deliberately mix categories to trip you up, which is why you should learn young ones, dwelling places, and sounds together — not in three separate sessions.
Category 1 — Young ones (memorise every pair)
- Cow → Calf
- Dog → Puppy
- Cat → Kitten
- Horse → Foal (also called Colt if male, Filly if female)
- Sheep → Lamb
- Goat → Kid
- Hen → Chick (also used for cock's young)
- Lion → Cub
- Bear → Cub
- Tiger → Cub
- Deer → Fawn
- Frog → Tadpole
- Butterfly → Caterpillar (more precisely, the larva)
- Cock/Hen → Chick
- Duck → Duckling
- Pig → Piglet
- Elephant → Calf
- Kangaroo → Joey
- Rabbit → Bunny / Kit
Cow and elephant share the word "Calf" — this is a favourite RPF trap. Lion, bear, and tiger all share "Cub" — another trap. Memorise these overlaps so you don't lose marks on the obvious-looking question.
Category 2 — Dwelling places (home of the animal)
- Dog → Kennel
- Horse → Stable
- Lion → Den
- Bee → Hive (or Apiary for the keeper's setup)
- Bird → Nest
- Cow → Shed / Byre / Cowshed
- Pig → Sty
- Hen → Coop
- Rabbit → Burrow
- Eagle → Eyrie
- Sheep → Pen / Fold
- Squirrel → Drey
- Beaver → Lodge
- Spider → Web
- Ant → Anthill
Note that some animals share names — "Den" is used for lion, tiger, wolf, and even fox in casual usage. RPF tends to use the most common pairing, which is Lion → Den and Wolf → Lair.
Category 3 — Animal sounds
- Lion → Roar
- Dog → Bark
- Cat → Mew / Purr
- Horse → Neigh
- Snake → Hiss
- Cow → Moo / Low
- Sheep → Bleat
- Goat → Bleat
- Duck → Quack
- Frog → Croak
- Bee → Buzz
- Owl → Hoot
- Wolf → Howl
- Donkey → Bray
- Pig → Grunt / Squeal
- Hen → Cluck
- Cock → Crow
- Elephant → Trumpet
- Crow → Caw
Why it matters
In an RPF Constable paper of 120 questions in 90 minutes, every question must be answered in under 45 seconds on average. Reasoning questions on word-pair analogies are free marks — they need no calculation, no diagram, no logical chain. If you have the pairs memorised, the question takes 10 seconds. That gives you a 30-second buffer for harder questions on coding-decoding or seating arrangement. Across a paper, simply having these three categories tight can put you 4–6 marks ahead of an equally-prepared candidate.
Real-world example
When a herd of cows passes through a village in rural Maharashtra, the vasrus (calves) trail behind their mothers — that single Marathi word vasru maps cleanly to the English "calf". Similarly, in a village near Pune, a poshind (foal) might be seen following a mare. Indian rural vocabulary actually preserves these distinctions vividly, so if you grew up around farms, you already know more than you think. The exam only asks for the English label.
Common misconception
Students often assume that every animal has a unique word for its young one. Wrong. Several animals share a name: lion, bear, tiger, panther, and leopard all have cubs; elephant and cow both have calves; whale and dolphin also have calves; eagle and other birds of prey have eaglets or chicks. When the question gives you a young one and asks the animal, look for context — if the option list mentions both "lion" and "tiger" with "cub" as the young, then the question must give additional context (perhaps the dwelling place is "den", which fits both, but if it says "savanna" then lion is more likely). Read every word of the stem.
Another misconception: that "puppy" means any young animal. In English, puppy is specifically for dogs (and informally, for seals and sharks). The correct generic term is young one, offspring, or neonate, not puppy.
Question: Cow : Calf :: Goat : ?
Options: (a) Lamb, (b) Kid, (c) Foal, (d) Cub.
Solution:
Step 1: Identify the relationship — animal to its young one.
Step 2: Recall the young one of goat — Kid.
Step 3: Eliminate distractors — Lamb is young of sheep, Foal is young of horse, Cub is young of lion/bear/tiger.
Conclusion: Answer is (b) Kid. RPF often uses Goat-Sheep traps because both their youngs (Kid, Lamb) sound informal — make sure you separate them in your head.
Question: Find the odd one out: Kennel, Puppy, Stable, Sty.
Solution:
Step 1: Categorise each word — Kennel (dwelling), Puppy (young), Stable (dwelling), Sty (dwelling).
Step 2: Three are dwelling places and one is a young one.
Step 3: The odd one is Puppy.
Conclusion: This is why studying young ones together with dwelling places is essential — the question itself crosses categories.
| Animal | Young one | Dwelling | Sound |
|---|---|---|---|
| Cow | Calf | Shed/Byre | Moo |
| Dog | Puppy | Kennel | Bark |
| Cat | Kitten | — | Mew |
| Horse | Foal/Colt | Stable | Neigh |
| Sheep | Lamb | Pen/Fold | Bleat |
| Goat | Kid | — | Bleat |
| Lion | Cub | Den | Roar |
| Hen | Chick | Coop | Cluck |
| Deer | Fawn | — | — |
| Frog | Tadpole | — | Croak |
| Bee | — | Hive | Buzz |
| Pig | Piglet | Sty | Grunt |
| Bird | — | Nest | — |
| Snake | — | — | Hiss |
| Elephant | Calf | — | Trumpet |
- ✓- Cow → Calf, Dog → Puppy, Cat → Kitten, Horse → Foal/Colt, Sheep → Lamb, Goat → Kid.
- ✓- Hen → Chick, Lion/Tiger/Bear → Cub, Deer → Fawn, Frog → Tadpole, Butterfly → Caterpillar.
- ✓- Dwelling places: Dog → Kennel, Horse → Stable, Lion → Den, Bee → Hive, Bird → Nest, Pig → Sty.
- ✓- Sounds: Lion → Roar, Dog → Bark, Snake → Hiss, Horse → Neigh, Bee → Buzz, Owl → Hoot.
- ✓- Cow and elephant share "Calf"; lion, tiger, and bear share "Cub" — RPF favourites.
- ✓- Always read the question stem fully — analogies sometimes mix categories.
- ✓- These three categories (young, home, sound) appear in nearly every RPF reasoning set.
"PUPPY KITTEN CALF, LAMB KID FOAL" — a six-word chant covering the six most-asked young ones. For sounds, "Lions roar, dogs bark, snakes hiss, bees buzz" — a four-beat rhythm easy to recall under exam pressure.
- ✓- Memorise young ones, dwellings, and sounds as one combined chart.
- ✓- Watch for shared words — calf (cow/elephant), cub (lion/bear/tiger).
- ✓- Treat these questions as free marks; under 15 seconds each is the target.
- ✓- Use the leftover time on tougher reasoning sections.
Worked Word Analogy Example
Every electronic gadget around you — a mobile charger, an LED bulb driver, the FM radio at a railway booking counter — converts AC mains into the steady DC that the internal circuit demands. The block that does this conversion is the rectifier, and it is a high-frequency topic in Physics for RPF Constable, NEET, and most engineering-entrance exams.
Definition: A rectifier is a circuit that converts alternating current (AC) into direct current (DC) by exploiting the one-way conduction property of a diode (a diode allows current only when forward biased).
Definition: A half-wave rectifier uses a single diode that conducts during only one half-cycle of the AC input, blocking the other half completely.
Definition: A full-wave rectifier uses either two diodes with a centre-tapped transformer or four diodes in a bridge arrangement, so the load receives current during both halves of the AC input.
How the Diode Does the Trick
A p-n junction diode behaves like a one-way valve for charge. When the anode is more positive than the cathode (forward bias), current flows essentially freely. When the polarity reverses (reverse bias), the diode blocks — current is practically zero. Now an AC source swings between positive and negative every cycle. Place a diode in series with the load, and you have already filtered out the negative halves: the result is a DC voltage that is no longer alternating but still pulsating.
Half-Wave: Simple but Wasteful
In a half-wave rectifier, the input wave's positive half passes through the single diode and reaches the load resistor R; the negative half is rejected. So at the output you see one pulse per cycle of the input. If the input frequency is f = 50 Hz (Indian mains), the output ripple frequency is also f = 50 Hz — exactly the same. Worse, the load gets no current at all during half the time, so only about 40.6 % of the input AC power is delivered as DC. The DC component is V_m/π (where V_m is the peak input voltage).
Half-wave is cheap and uses only one diode, but the high ripple and low efficiency make it unsuitable for anything beyond very small signal demodulators or low-cost battery-charging circuits.
Full-Wave: Both Halves Used
A full-wave rectifier flips the negative half-cycle up, so the output has a pulse for every half-cycle of the input. With f = 50 Hz input, you get an output ripple frequency of 2f = 100 Hz. This is the famous result you must memorise for the exam: output frequency of a full-wave rectifier is twice the input frequency.
There are two common architectures.
The centre-tap full-wave rectifier uses a transformer whose secondary winding has a tap in the middle. Two diodes are connected so that, during each half-cycle, only one of them is forward-biased. Each diode "sees" only half the secondary voltage, so the peak DC output is lower.
The bridge rectifier uses four diodes arranged in a Wheatstone-bridge pattern with the AC source on one diagonal and the load on the other. In every half-cycle, two diodes conduct in series with the load. The big advantage is that no centre-tapped transformer is required, and the load uses the full secondary voltage. This is why almost every modern AC adapter uses a bridge inside.
Full-wave rectifiers deliver about 81.2 % efficiency — roughly double the half-wave figure — with a DC component of 2V_m/π.
The Capacitor Filter: Smoothing the Pulses
Even a full-wave rectifier outputs a bumpy "humped" DC, not the clean flat DC a chip needs. Adding a capacitor in parallel with the load smooths this out: the capacitor charges to the peak during each pulse and discharges slowly through the load between pulses. The remaining wobble is called the ripple, and the ratio of ripple to DC value is the ripple factor.
A full-wave rectifier has a much lower ripple factor than a half-wave rectifier because the time gap between pulses is smaller (1/2f for full-wave vs 1/f for half-wave), so the capacitor has less time to discharge. Hence full-wave is "more efficient" — a phrase that combines both higher power throughput and lower ripple.
Why it matters: Inside the very RPF mobile chargers, walkie-talkie batteries, and station PA-system power supplies you will use on the job, a bridge rectifier plus a capacitor is the standard front end. Knowing the difference between the two designs is part of basic electronics literacy expected of trainees.
Real-world example: An LED desk lamp running on 230 V AC contains a small bridge rectifier and a smoothing capacitor that together deliver a near-steady DC to the LED driver IC. If the bridge had been replaced by a half-wave rectifier, the LED would visibly flicker at 50 Hz.
Common misconception: "Full-wave means the output DC is the same as the input AC." Wrong. The output is a pulsating DC of double frequency, not the original AC. AC has both polarities; DC after a rectifier always has the same polarity (only one sign).
Common misconception: "Bridge rectifier uses four diodes, so four diodes conduct at a time." Wrong. Only two diodes conduct at any instant — the pair forward-biased by that half-cycle's polarity.
Worked Example
Question: A bridge rectifier is fed from a 230 V, 50 Hz AC mains. State (a) the frequency of the rectified output ripple, (b) how many diodes conduct at any instant, and (c) whether a centre-tapped transformer is necessary.
Solution:
Step 1: For a full-wave (bridge) rectifier, output ripple frequency = 2 × input frequency = 2 × 50 = 100 Hz.
Step 2: In a bridge, during each half-cycle a pair of diodes (two diagonally opposite) is forward-biased while the other pair is reverse-biased. So 2 diodes conduct at any instant.
Step 3: The bridge topology does not need a centre tap; an ordinary secondary works.
Conclusion: 100 Hz, two diodes conducting at a time, no centre-tap needed.
| Property | Half-Wave Rectifier | Full-Wave (Centre-Tap) | Full-Wave (Bridge) |
|---|---|---|---|
| Number of diodes | 1 | 2 | 4 |
| Input cycles used | 1 of 2 halves | both halves | both halves |
| Output ripple frequency | f | 2f | 2f |
| Centre-tapped transformer | not needed | required | not needed |
| Peak DC voltage | V_m | V_m / 2 (per half) | V_m |
| Efficiency (max) | ~40.6 % | ~81.2 % | ~81.2 % |
| Ripple factor | 1.21 | 0.482 | 0.482 |
- ✓- A diode conducts only one way — that is the basis of every rectifier.
- ✓- Half-wave uses 1 diode; output frequency = input frequency f.
- ✓- Full-wave uses 2 (centre-tap) or 4 (bridge) diodes; output frequency = 2f.
- ✓- Bridge needs no centre-tap and uses the full secondary voltage.
- ✓- A parallel capacitor smooths the pulsating DC; the leftover wobble is the ripple.
- ✓- Full-wave is ~2× more efficient than half-wave and has a much lower ripple factor.
- ✓- At any instant in a bridge, only 2 diodes conduct.
"Full-wave Folds the negative half up, so the output frequency Doubles to 2f."
Half / Full → 1 / 2 → frequency multiplier matches the name backwards.
- ✓- Rectifier = AC to DC, using diode's one-way conduction.
- ✓- Half-wave: 1 diode, output frequency = f, low efficiency, high ripple.
- ✓- Full-wave: 2 or 4 diodes, output frequency = 2f, high efficiency, low ripple.
- ✓- Capacitor filter smooths the pulses; bridge is the modern standard.
Word & Meaning Analogy — Flashcards
Cover the answer, recall, then check. 11 cards on semantic analogy for RPF Constable.
Q1. First step in any word analogy?
A1. Frame a clear "bridge" sentence linking the pair, e.g. "A DOCTOR treats a PATIENT." Then test the same sentence on the options.
Q2. Doctor : Patient :: Lawyer : ?
A2. Client — worker : person they serve.
Q3. Name three high-frequency relation types.
A3. Worker–tool, cause–effect, part–whole, synonym, antonym, product–raw material, individual–group.
Q4. Pen : Write :: Knife : ?
A4. Cut — tool : its function.
Q5. Hunger : Food :: Fatigue : ?
A5. Rest / Sleep — problem : remedy.
Q6. Cub : Bear :: Foal : ?
A6. Horse — young one : adult animal.
Q7. Ship : Fleet :: Sheep : ?
A7. Flock — individual : collective group.
Q8. Trap when two options both "relate"?
A8. Make the bridge sentence MORE specific until only one option fits; word order (direction) must match too.
Q9. Flower : Petal :: Book : ?
A9. Page — whole : part.
Q10. Thread : Cloth :: Yarn : ? / Clay : ?
A10. Raw material : product. Yarn→Sweater, Clay→Pot.
Q11. Why does direction matter?
A11. Cause:Effect ≠ Effect:Cause. If A→B is cause→effect, the answer pair must also be cause→effect, not reversed.