I'm Using the Same Amount of Wax in a Tall Narrow Jar and a Short Wide Jar — Why Do They Need Different Wick Sizes?
Aktie
What does the extra height do, then? It changes how the candle burns down, not how wide it must melt. The tall jar's surface drops 0.40 cm per 10 g burned against 0.20 cm in the wide one, so per gram burned its flame sinks into the glass twice as fast. Height sets hours and the late-burn check, not the wick.
Why does diameter matter so much? Area grows with the square of the diameter. A jar 10% wider inside has about 21% more pool; 20% wider has about 44% more. Small width changes are large wick changes.
What should I do with my two jars? Bracket each jar separately with the same wax, oil and load: for example C1 / C2 / Cotton Braided in the narrow one and C2 / Cotton Braided / two C1s in the wide one. Burn them side by side and let the pools decide.
- Straight answer: same wax, different wicks?
- Diameter is squared: the maths of the pool
- Distance, heat and the edge of the pool
- What the height changes: hours, descent and the last third
- A real pair from CSI's listings
- Proving it: a paired test in twelve candles
- Wicks and tools for a paired test
- What the paired test costs, and what the wrong wick costs
- Frequently asked questions
Diameter is squared: the maths of the pool
Everything in this article follows from one formula. The area of the pool is π × r², where r is half the inside diameter at the height of the wax. Because the radius is squared, area grows much faster than width. That is the part people underestimate: a jar that looks "a bit wider" is often a lot more pool.
| Inside diameter | Pool area | vs 6.0 cm | Wax depth for 170 ml | Wick to glass |
|---|---|---|---|---|
| 6 cm | 28.27 cm² | — | 6.01 cm | 3.00 cm |
| 6.5 cm | 33.18 cm² | 17% more | 5.12 cm | 3.25 cm |
| 7 cm | 38.48 cm² | 36% more | 4.42 cm | 3.50 cm |
| 7.5 cm | 44.18 cm² | 56% more | 3.85 cm | 3.75 cm |
| 8 cm | 50.27 cm² | 78% more | 3.38 cm | 4.00 cm |
| 8.5 cm | 56.75 cm² | 101% more | 3.00 cm | 4.25 cm |
Read down the table: each half centimetre of width adds more area than the last, while the depth needed for the same candle shrinks from about 6 cm to 3 cm. The wax did not change. The oil did not change. The grams did not change. Only the shape of the space did, and with it the job the wick has to do.
Why 170 ml? A 150 g candle, by the common 0.86-to-0.9 rule of thumb for wax against water, needs about 167 to 174 ml of space; we use 170 ml as a round middle. Your jar's real figure comes from a weighed test pour (see the 200 ml fill-weight hub). None of this changes the conclusion: equal volume is not equal area.
Distance, heat and the edge of the pool
A candle flame heats the wax immediately around the wick first. Heat then spreads outward through the liquid pool and the softening wax towards the glass. At the same time the glass and the air above it are losing heat to the room. The pool reaches the wall when the flame supplies heat fast enough to win that race at the edge.
In the narrow jar in our example, the edge is 3.00 cm from the wick; in the wide jar it is 4.25 cm, 41.7% farther. The wide jar also has more pool to keep liquid: at a common working depth of 0.5 to 1 cm, about 14.1 to 28.3 ml of molten wax in the narrow jar against 28.4 to 56.8 ml in the wide one. A wick sized for the narrow jar's job simply does not produce enough heat to melt the wide jar's edge in 3 to 4 hours. The wax at the glass stays solid; the pool drills down around the wick; and after a few burns you have a tunnel.
Why the fix is not "burn it longer"
A small wick in a wide jar can sometimes creep to the edge if you leave it burning for many hours. That is not a solution. Very long burns are poor practice, the flame can grow as carbon builds on the wick, and your customer will not burn for six hours to make up for your wick. The rough rule some makers use, about one hour per 2.5 cm of width for a full pool, gives about 2.4 hours for 6 cm and 3.4 hours for 8.5 cm. If a wick needs much more than that, it is under-sized for the jar.
And the reverse problem
Now take the wick that makes a full pool in the wide jar and put it in the narrow one. It delivers heat for 56.75 cm² into a pool of 28.27 cm². The pool reaches the glass early and keeps deepening; the flame can grow tall and flicker; soot on the glass is common; and the glass near the flame runs hotter than it needs to. None of that proves the wick is "bad". It proves it belongs in a wider jar.
What the height changes: hours, descent and the last third
If diameter decides the wick, what does the tall jar's extra height do? Three things, all of which show up in testing rather than wick choice.
1. How fast the flame sinks
Every gram the candle burns comes off the top. In the narrow jar, 10 g of wax lowers the surface by about 0.40 cm (using a 0.88 mid-point factor); in the wide jar, about 0.20 cm. So in the tall jar the flame moves down into the glass about twice as fast for the same grams burned. Deeper in a narrow jar, there is less air movement around the flame and the glass has been warming for longer. A wick that looked calm at the top can behave differently halfway down.
2. How many hours the candle lasts
Total burn time is roughly grams of candle divided by grams burned per hour. You can measure the second number yourself: weigh the candle before and after a 3-hour session. Because the wide jar needs a larger wick (or two) to melt its larger pool, it usually burns more grams per hour, so the same 150 g tends to finish in fewer hours. We do not publish burn-rate figures for CSI wicks; weigh your own sessions and you will have the number for your wax and oil.
3. Where the final third starts
Makers watch the last third of a candle closely, because heat builds as the wax gets shallow and the flame nears the base. In the tall jar the last third is the bottom 2.0 cm or so; in the short jar it is the last 1.0 cm, and the whole candle is only 3.00 cm deep. The short jar reaches its "final third" conditions after very little wax has gone, and the base glass is never far from the flame. Stopping the burn with about 1 cm of wax left is common practice; in a 3 cm candle that is a third of the candle, so plan fill weight and label claims accordingly. A thick base makes this worse; see the thick-base post.
| Question | Tall narrow (6.0 cm inside) | Short wide (8.5 cm inside) | What to test |
|---|---|---|---|
| Pool area the wick must melt | 28.27 cm² | 56.75 cm² | Separate brackets |
| Surface drop per 10 g burned | 0.40 cm | 0.20 cm | Flame behaviour at mid-height (tall jar) |
| Wax depth | 6.01 cm | 3.00 cm | Number of sessions to burn down |
| Final third starts about | 2.0 cm above the base | 1.0 cm above the base | Glass warmth and flame height, last sessions |
| Rough first-burn time (1 h per 2.5 cm) | about 2.4 h | about 3.4 h | Log the pool hourly |
| Likely bracket (our judgement) | C1 / C2 / Cotton Braided | C2 / Cotton Braided / two C1s | Winner through a full burn-down |
A real pair from CSI's listings
Two pairs of CSI listings state the same wax capacity in very different shapes. We quote them as written, verified 26 September 2026; none of the diameters is stated as inside, so the comparison is on listed figures only.
| Listing | Capacity wording | Dimensions wording | Stock on 26 September 2026 | Area on listed diameter |
|---|---|---|---|---|
| Shot Glass Jar 130gram | "Fill Capacity - 130gram" | "Height - 8cm Diameter - 6cm" | In stock | 28.27 cm² |
| Cute Ceramic Candle Container | "holds 130 grams of wax" | "diameter of 7.5 cm and a height of 5.5 cm" | Out of stock | 44.18 cm² (56.3% more) |
| Black Shiny Glass Jar with Golden Lid and sisters | "Capacity: 120 gm" | "6 cm diameter, 6.5 cm height" | In stock | 28.27 cm² |
| Premium Ceramic Candle Container | "holds 120 grams of wax" | "7.5 cm in height and 5 cm in diameter" | Out of stock | 19.63 cm² (the Shiny jar's is 44% more) |
On the listed figures, the 130 g ceramic's pool would be 56.3% larger than the 130 g shot glass's, and the 120 g Shiny jar's 44% larger than the 120 g tall ceramic's. Ceramic walls are often thicker than glass, which would narrow the difference on the inside, but it would take a lot of wall to close a gap of that size. Both of these ceramic containers are out of stock on 26 September 2026 (CSI's separate Ceramic Jar for Candle Making is in stock), so treat them as an illustration, not a purchase.
Notice the reverse case in the same table: the in-stock Shot Glass (130 g, 8 cm tall) and Shiny jars (120 g, 6.5 cm tall) both list 6 cm. If their insides measure alike, they are one wick bracket despite different heights and capacities. That is a hypothesis to prove with a burn test, and the business logic behind it is the fewer-wick-sizes post.
Proving it: a paired test in twelve candles
The fastest way to see the physics is to pour the same batch into both jars and bracket each. Twelve candles: three rungs per jar, two jars per rung. Every candle gets the same wax, oil, load and cure, so any difference you see comes from diameter and height.
| Rung | Tall narrow, 6 cm inside | Short wide, 8.5 cm inside |
|---|---|---|
| C1 | Possible winner; may leave a thin ring | Not tested alone: expect a tunnel |
| C2 | Possible winner | Likely ring of solid wax at the glass |
| Cotton Braided | Likely deep pool, tall flame: the ceiling | Possible winner |
| Two C1s, 3 to 4 cm apart | Not tested: too much heat for the area | Possible winner; watch the pool between wicks |
If the results surprise you (C1 over-melting the narrow jar, say, or Cotton Braided under-melting the wide one), the oil or load is shifting the wick more than the jar is. That is a fragrance effect, not a diameter effect, and it is covered in the wick-works-with-one-fragrance post. Whether to go to one big wick or two small ones in the wide jar is the single-versus-double post.
Wicks and tools for a paired test
Five items, chosen on page wording, price and stock on 26 September 2026. None of them has been burn-tested by CSI in your jars.
| Pack | Price | Per wick | What it covers |
|---|---|---|---|
| Thin (C1) / 10 Wicks | ₹59.00 | ₹5.90 | both jars in a paired test |
| Thin (C1) / 20 Wicks | ₹118.00 | ₹5.90 | a paired test plus a retest |
| Thin (C1) / 50 Wicks | ₹295.00 | ₹5.90 | 50 candles of the jar it wins in |
| Thin (C1) / 100 Wicks | ₹590.00 | ₹5.90 | 100 candles |
| Thin (C1) / 500 Wicks | ₹2,950.00 | ₹5.90 | a season of one jar |
| Thin (C1) / 1000 Wicks | ₹5,900.00 | ₹5.90 | bulk: confirm dispatch first |
| Thick (C2) / 10 Wicks | ₹94.40 | ₹9.44 | both jars in a paired test |
| Thick (C2) / 20 Wicks | ₹188.80 | ₹9.44 | a paired test plus a retest |
| Thick (C2) / 50 Wicks | ₹472.00 | ₹9.44 | 50 candles of the jar it wins in |
| Thick (C2) / 100 Wicks | ₹944.00 | ₹9.44 | 100 candles |
| Thick (C2) / 500 Wicks | ₹4,720.00 | ₹9.44 | a season of one jar |
| Thick (C2) / 1000 Wicks | ₹9,440.00 | ₹9.44 | bulk: confirm dispatch first |
| Pack | Price | Per wick | What it covers |
|---|---|---|---|
| Pack of 10 | ₹120.00 | ₹12.00 | top rung in the narrow jar, middle in the wide |
| Pack of 50 | ₹600.00 | ₹12.00 | 50 wide-jar candles if it wins |
| Pack of 100 | ₹1,200.00 | ₹12.00 | 100 candles |
| Pack of 500 | ₹6,000.00 | ₹12.00 | 500 candles |
| Pack of 1000 | ₹12,000.00 | ₹12.00 | bulk production |
| Pack | Price | Per wick | What it covers |
|---|---|---|---|
| Pack of 10 | ₹590.00 | ₹59.00 | a separate wooden rung in the wide jar |
| Pack of 50 (Save 25%) | ₹2,360.00 | ₹47.20 | 50 candles once it has won |
| Pack of 100 (Save 30%) | ₹4,130.00 | ₹41.30 | 100 candles once it has won |
| Pack | Price | Per holder | What it covers |
|---|---|---|---|
| Pack of 5 | ₹250.00 | ₹50.00 | one paired test pour, single or double wick |
| Pack of 10 | ₹500.00 | ₹50.00 | two pours at once |
| Pack of 25 | ₹1,250.00 | ₹50.00 | a production bench |
| Pack | Price | Per jar | What it covers |
|---|---|---|---|
| One listing (5 or 6 jars: confirm) | ₹288.00 | ₹48.00 if 6; ₹57.60 if 5 | a three-rung narrow-jar bracket, two jars per rung (needs 6) |
What the paired test costs, and what the wrong wick costs
Worked example: twelve 150 g candles at 8% (12 g oil + 138 g wax each), your own jars. Prices are CSI live pricing on 26 September 2026; costs exclude labour, freight, packaging and GST.
| Item | Needed | Buy | Price |
|---|---|---|---|
| Luxury Soy Wax CSI 464 | 1,656 g (12 × 138 g) | 2 × 1 kg | ₹1,014.80 |
| Lavender Fragrance Oil (costing example) | 144 g (12 × 12 g) | 100 g + 50 g | ₹810.00 |
| Eco C1 + Eco C2 + Cotton Braided | 6 C1, 4 C2, 4 Cotton Braided | 10 of each | ₹273.40 |
| Steel Wick Holder | one per jar, reused across pours | Pack of 5 | ₹250.00 |
| Total | 12 candles | 344 g wax and 6 g oil spare | ₹2,348.20 |
With your own oil the kit is ₹1,538.20. Six grams of Lavender left over will not cover a re-pour; add another 50 g (₹270.00) if a rung needs repeating. Five holders will not hold all twelve at once; pour in two rounds, or use sticks for the singles. Lavender is a costing example only; every size is in stock on 26 September 2026, and 8% sits inside both its stated 6-10% range and CSI 464's 10% ceiling.
Per candle, the jar shape moves the wick cost only
Wax and oil for one 150 g candle at the 10 kg wax and 1 kg oil prices: ₹70.02 + ₹62.65 = ₹132.67, identical in both jars. If C1 wins the narrow jar and Cotton Braided wins the wide one, the materials are ₹138.57 and ₹144.67: the wide candle costs ₹6.10 more, all of it wick. Two C1s would cost ₹11.80 per candle instead of ₹12.00. Neither difference is worth a tunnelled candle. The expensive mistake is the refund, or the whole batch melted out and re-poured, when a narrow-jar wick goes into a wide jar because "it's the same candle".
CandleMakingSuppliesIndia sells the wicks, holders, wax and oils named here and does not sell finished candles. This page tells you that none of our jar listings states an inside diameter, that one of our in-stock jars contradicts itself on pack count, and that two jars measuring alike may share one bracket rather than needing two. That is deliberate: advice that sells fewer wicks is more likely to be right.
Every price and per-wick figure was verified on CSI's live store on 26 September 2026; every pack in a pick table was in stock that day, and the out-of-stock ceramic containers are named as such. Wick and jar wording is quoted from the product pages.
Pool areas and depths are geometry on stated inside diameters; the 0.86-to-0.9 wax factor (0.88 mid-point), 0.5-to-1 cm pool depth, one hour per 2.5 cm, the final-third watch and the 1 cm stop line are rules of thumb; the rung assignments and the expected grid are editorial judgement, not burn data. For bulk pricing, GST invoicing, and MSDS and IFRA documentation on request, message us on WhatsApp at +91 7397976926.
Frequently asked questions
- My Candle Jar Holds 200 ml but Has a 7 cm Internal Diameter — Which Measurement Should I Use When Choosing the Wick?
- I'm Changing to a Wider Candle Jar but Keeping the Same Soy Wax and Fragrance — How Much Should I Adjust My Starting Wick Size?
- I Have a Straight-Sided 3-Inch Candle Jar — How Do I Choose the First Three Wick Sizes to Test Rather Than Guessing Randomly?
- I'm Buying a 4-Inch-Wide Luxury Candle Jar — Should I Plan for One Wick, Two Wicks or Three Before Ordering Production Quantities?
- Two Glass Jars Have the Same Capacity but Different Diameters — Can I Use the Same Wick If the Wax and Fragrance Stay Identical?
- I Already Finalised My Wick for a 7 cm Jar — If My New Jar Is 8 cm Wide, Do I Have to Repeat the Entire Burn-Testing Process?
- My Candle Burns Perfectly in a Narrow Jar but Tunnels in My Wider Jar Using the Same Wick — What Should I Change First?
- My Large Candle Jar Needs a Huge Single Wick That Produces Soot — Would Two Smaller Wicks Be a Better Choice?
- How Much Can a 5 mm Difference in Candle Jar Diameter Affect the Wick Size and Melt Pool?
- I Want to Reduce the Number of Wick Sizes in My Business — Should I Choose Candle Jars With Similar Diameters Even If Their Capacities Differ?
Customer reviews: The six reviews at the top of this page are genuine, published Judge.me reviews left by CSI customers on the product pages named on each card — Bamboo Wick Holder, Eco Candle Wicks, Luxury Soy Wax CSI 464 (Flakes Form) For Container Candles, Luxury Soy Wax Chunks for Jar / Container Candles, White Matte Glass Jar. They are general product reviews, not assessments of the container advice on this page. Names, star ratings, dates and products are as recorded by Judge.me and wording is unedited. "Verified buyer" appears only on reviews Judge.me recorded as verified — Subhankar Roy, Jaya Sawlani, Sakshi Jain. The reviews from Ashwini, Lalitha Jagan, Ashwini are published but not recorded as verified, and carry no badge. Reviews below five stars are included as published, not filtered out.
Figures verified 26 September 2026, CSI live pricing: Eco Candle Wicks Thin (C1) 10 ₹59.00, 20 ₹118.00, 50 ₹295.00, 100 ₹590.00, 500 ₹2,950.00, 1000 ₹5,900.00 (₹5.90 per wick); Thick (C2) 10 ₹94.40, 20 ₹188.80, 50 ₹472.00, 100 ₹944.00, 500 ₹4,720.00, 1000 ₹9,440.00 (₹9.44 per wick); Cotton Braided Wicks Ready Made 10 ₹120.00 to 1000 ₹12,000.00 (₹12.00 per wick); Performance Wooden Wicks 10 ₹590.00, 50 ₹2,360.00, 100 ₹4,130.00; Steel Wick Holder 5 ₹250.00, 10 ₹500.00, 25 ₹1,250.00; Shot Glass Jar 130gram ₹288.00 (pack count to confirm); Luxury Soy Wax CSI 464 1 kg ₹507.40, 10 kg ₹5,074.00; Lavender Fragrance Oil 50 g ₹270.00, 100 g ₹540.00, 1 kg ₹5,221.00 (₹5.22 per gram at 1 kg). Cute Ceramic Candle Container and Premium Ceramic Candle Container out of stock. Per wick and per jar = pack price ÷ units; two decimals.
Non-price figures: pool area = π × r² on inside diameters; 150 g of candle taken as about 170 ml of space (150 ÷ 0.86 to 0.9 = 167 to 174 ml, rule of thumb); surface drop uses a 0.88 mid-point. Inside dimensions of the two example jars are illustrative. The 0.5-to-1 cm pool depth, 3-to-4-hour first burn, one hour per 2.5 cm, final-third watch and 1 cm stop line are rules of thumb. Test candles are 150 g at 8% (12 g oil + 138 g wax). Wax and oil ceilings are as stated on their pages (formulation limits, not regulatory limits). Diwali is a calendar date. Costs exclude labour, freight, packaging and GST.