My New Jar Holds the Same 200 g but Is Slightly Wider and Shorter — Can I Use the Same Wick as My Previous Container?
शेयर करना
What actually changes? In our illustrative 7.2 → 7.6 cm jars: melt-pool area +11.4%, height of 200 g −10.2% (5.58 cm → 5.01 cm), surface per cm of depth +24.1%. Total fuel: none.
How many candles? Stage 1: six (three old jar, three new, approved wick). Stage 2 only if the new jar trails: three more on a bracket wick. Stage 1 in CSI materials: ₹1,679.00.
What must be retested in full? The full-life burn, one candle per set — the shorter column brings the end-of-life zone sooner. Compatibility, cure and cold throw: KEEP. See the matrix.
Same 200 g is not the same candle
Keeping the weight the same feels like keeping the candle the same: the customer pays for 200 g, you pour 200 g, the fuel is identical. What changes is the shape the fuel takes. A wider jar spreads the same volume of wax over a bigger floor, so the column gets shorter, and a wick's job is set by the surface it has to melt each burn, not by the weight it will eventually consume. Your title gives no dimensions, so this page uses a labelled illustration: an old jar with a 7.2 cm internal diameter and a new one at 7.6 cm. Put your own measurements into the same formulas.
| Measure | Old jar (7.2 cm, illustrative) | New jar (7.6 cm, illustrative) | Change |
|---|---|---|---|
| Melt-pool area, π × d² ÷ 4 | 40.72 cm² | 45.36 cm² | +11.4% |
| Height of 200 g of candle | 5.58 cm | 5.01 cm | −10.2% (5.7 mm) |
| Surface per cm of depth (area ÷ height) | 7.29 cm²/cm | 9.05 cm²/cm | +24.1% |
| Wax + oil in the top 1 cm | 35.8 g | 39.9 g | +11.4% |
| Total fuel | 200 g | 200 g | none |
Read the table from the bottom up. Total fuel: identical. Fuel in the top centimetre — roughly what the first burn has to melt to reach the glass — is 4.1 g more in the new jar. The depth the wick burns through is 5.7 mm less. And the ratio of surface to depth, which is the simplest single number for how "wide and shallow" a candle is, rises by 24.1%, because the area goes up and the height comes down at the same time. That ratio is why "same weight" is misleading: a 200 g candle can be a tall, easy-to-wick column or a short, wide disc, and the wick that suits one may under-melt the other.
| Internal diameter | Melt-pool area | Fill height | Area ÷ height | Area vs 7.2 cm | Height vs 7.2 cm |
|---|---|---|---|---|---|
| 6.8 cm | 36.32 cm² | 6.26 cm | 5.80 | −10.8% | +12.1% |
| 7.2 cm | 40.72 cm² | 5.58 cm | 7.29 | +0.0% | +0.0% |
| 7.6 cm | 45.36 cm² | 5.01 cm | 9.05 | +11.4% | −10.2% |
| 8.0 cm | 50.27 cm² | 4.52 cm | 11.12 | +23.5% | −19.0% |
| 8.4 cm | 55.42 cm² | 4.10 cm | 13.51 | +36.1% | −26.5% |
The five-jar table makes the point without any burn data: moving 0.4 cm wider each step, the area climbs 11.4%, 23.5%, then 36.1% above the old jar, while the column shrinks towards 4 cm. Somewhere along that row your approved wick stops reaching the glass in a normal burn. Where exactly depends on your wax, your oil and your wick — which is why CSI does not publish a wick-per-diameter chart and why nobody honestly can. For a change you can measure precisely, the 7.6 → 7.9 cm hub post shows how area and height move for a 3 mm step.
So can you use the same wick?
Yes, as the starting point of the test — not as the approval. The approved wick is your best first guess because everything else in the candle is unchanged: same wax, same oil, same load, same fuel. What you are checking is whether it can still melt a bigger surface in a normal burn, and whether the shorter column changes anything at the end of the candle's life. Those are the two ways a wider, shorter jar can catch out a wick that was right in the old one.
| Mechanism | What you might see | Where on the scoring sheet |
|---|---|---|
| Bigger surface, same flame | Slower to a full melt pool; a ring of unmelted wax left on the glass that can grow each burn | Time to full pool · tunnel ring width |
| Wider pool feeds the wick more fuel | Can mean a slightly larger flame or more carbon on the wick once the pool is wide | Flame height · mushrooming · soot |
| Shorter column | Fewer burn cycles before the wick reaches the base zone; end-of-life arrives sooner | Full-life burn · jar-side reading near the end |
Notice that the first two mechanisms pull in opposite directions. A wider pool is harder to melt fully, but once it is melted it can feed the wick more fuel. That is why a wider jar sometimes produces both a tunnel ring in the first burns and a busier flame later — and why the answer is always a side-by-side, never a size change on instinct. If your new jar is wider because its walls are thinner, with the same outside diameter, the thicker-glass post covers the reverse case.
The retest matrix for a wider, shorter jar
The matrix below uses the series' four verdicts: KEEP (still valid), CONFIRM (short side-by-side), REPEAT (full retest), NEW (never needed before). It differs from the general jar list in the only-the-jar post in one place: because this jar is also shorter, the end-of-life line moves up from conditional to planned.
| Test | Verdict | Reason |
|---|---|---|
| Oil–wax compatibility, seepage at your load | KEEP | Formula identical |
| Cure time and cold throw | KEEP | Formula identical; slightly larger exposed top only |
| Surface appearance after cure | CONFIRM | Different glass and cooling shape |
| Time to full melt pool | CONFIRM | 11.4% more surface in the illustration |
| Tunnel ring after cool-down | CONFIRM | First sign a wick is under-reaching |
| Flame height, mushrooming, soot | CONFIRM | Wider pool can feed the wick differently |
| Jar-side reading | CONFIRM | New glass, flame a little lower in the jar |
| Hot throw, fixed room | CONFIRM | Pool size changes release |
| Consumption, g per hour | CONFIRM | Needed for the label's burn time |
| Full-life burn to the end | REPEAT — one per set | Column is 5.7 mm shorter; late stage arrives sooner |
| Label burn time | NEW calculation | Burn hours = usable wax ÷ measured g per hour |
The staged test: six candles first, bracket only if needed
For a same-weight change the approved wick is a strong starting point, so this page recommends a staged test rather than pouring every option at once. Stage 1 is six candles: three in the old jar as the control, three in the new jar, all on the approved wick. Only if the new jar lands in ADJUST do you pour Stage 2, three more new-jar candles on a bracket wick. Pouring the bracket up front, as the hub post suggests for a diameter change you cannot control, costs a little more material but saves one cure cycle if the approved wick falls short. Here is the trade in rupees.
| Plan | Candles | Oil to buy | Wax to buy | Wicks and tools | CSI total |
|---|---|---|---|---|---|
| Stage 1 only (approved wick passes) | 6 | 1 × 100 g + 1 × 15 g · ₹604.00 | 1 × 1 kg + 1 × 500 g · ₹898.00 | Thin C1 × 10 ₹59.00 · centering × 5 ₹118.00 | ₹1,679.00 |
| Stage 2 add-on (bracket), poured later | 3 | 1 × 50 g + 1 × 15 g · ₹374.00 | 1 × 1 kg · ₹599.00 | Thick C2 × 10 ₹94.40 | ₹1,067.40 |
| Stage 1 + Stage 2 bought separately | 9 | ₹2,746.40 | |||
| All nine poured at once | 9 | 1 × 100 g + 1 × 50 g + 1 × 15 g · ₹874.00 | 2 × 1 kg · ₹1,198.00 | Thin C1 + Thick C2 × 10 each · centering × 5 | ₹2,343.40 |
If the approved wick passes, the staged plan costs ₹1,679.00 and you are done. If it does not, buying the bracket materials as a separate order brings the total to ₹2,746.40, against ₹2,343.40 for pouring everything at once — the separate order costs ₹403.00 more, because small packs are rounded twice, and it costs one extra cure cycle. For a same-weight change with a modest area increase, many makers will take that bet. For a change you cannot see the end of — a jar lot that varies, a festive deadline — pour all nine.
| Line | Method | Why it matters here |
|---|---|---|
| Time to full melt pool | Minutes until the pool meets the glass all round | First place a wider surface shows |
| Pool diameter at 1 h and 2 h | Ruler, two directions | Shows whether the pool is still growing |
| Tunnel ring width after cool-down | mm of wax left on the glass | Growing ring = under-reaching wick |
| Pool depth at end of burn | Marked skewer | Wider pools are often shallower |
| Flame height, mushrooming, soot | Ruler behind flame · 0–3 scale | Wider pool can feed a busier flame |
| Jar-side reading | Same thermometer, same point | New glass, lower flame position |
| Weight loss ÷ hours | Scale to 0.1 g | Your new burn time |
| Hot throw, fixed room | 1–5 score, two noses | Same room, same day as control |
The priced test kit
The worked example uses Luxury Soy Wax Chunks — CSI's default container wax, rated up to 13% by the wax maker — and Japanese Cherry Blossom, a floral with 15 g, 50 g and 100 g in stock. The 8% load is our working assumption. Jars are yours: CSI does not know your jar, and your new supplier's jar is the thing being tested.
| Pack | Price | Per kg |
|---|---|---|
| 500 g | ₹299.00 | ₹598.00 |
| 1 kg | ₹599.00 | ₹599.00 |
| 5 kg | ₹2,995.00 | ₹599.00 |
| 10 kg | ₹5,999.00 | ₹599.90 |
| Pack | Price | Per gram |
|---|---|---|
| 15 g | ₹104.00 | ₹6.93 |
| 50 g | ₹270.00 | ₹5.40 |
| 100 g | ₹500.00 | ₹5.00 |
| 500 g | ₹2,500.00 | ₹5.00 |
| 1 kg | ₹4,842.00 | ₹4.84 |
The wick line needs a plain statement. We use Eco Candle Wicks Thin C1 as the approved wick in this example and Thick C2 as the Stage 2 bracket only because those are the two Eco sizes CSI lists (₹59.00 and ₹94.40 for ten). CSI does not publish which wick suits which diameter, and we do not claim Thick C2 is "one size up" for your wax. If your approved wick is from another range, bracket within that range. Your new jars are an example cost only — for instance six at ₹45.00, ₹270.00; replace with your supplier's price.
Decision rule and release
CSI publishes no numeric flame-height or jar-temperature limits, so the rule is relative to your control and to the standard you work to. Set your own tolerance for the performance lines — for example, "full melt pool within the same burn cycle as the control" — before you read any results, and write it on the sheet.
| Stage 1 result | Decision | Action |
|---|---|---|
| All lines within your tolerance; safety lines no worse than control; full-life candle clean to the end | Same wick approved | Release; update jar spec, fill height and label burn time |
| Slower to full pool or ring growing; safety lines fine | Stage 2 | Pour three on the bracket wick; approve it only if every safety line is no worse than control |
| Any safety line worse (hotter glass, taller flame, soot) | Stop | Do not release; recheck the jar lot and the fill weight before any wick change |
| Bracket wick fixes the pool but runs hotter | Escalate | The jar is too far from the old one for either wick; treat as a new candle system |
Once a decision is made, record it: old and new jar supplier, measured internal diameters and fill heights, whether you fill by weight or by line, the wick used, the test sheet and the date. Keep one unburned candle from each set. The reproducibility-record post shows a format that still makes sense a year later, and the change-control form post turns it into a one-page form.
When your change is not just wider and shorter
Real jar swaps rarely change one dimension. If the new jar is wider and tapered, the straight-to-tapered post shows how the pool area shifts with depth, and the narrowing-jar post covers the specific risk of a wick that is right at the top and too strong near the base. If the new jar is also heavier-bottomed, read the thicker-base post before you plan the full-life burn. If the new jar is the same width but taller, the shape problem reverses — the taller-jar post works that one.
And if you have not chosen the new jar yet — you are comparing candidates because your usual one is out of stock — do the geometry before you order samples. The alternative-container post scores candidates on the measurements that predict redevelopment work, and the 1,000-candle post adds the quantity and deadline maths when the order is already promised.
CANDLEMAKINGSUPPLIESINDIA supplies raw materials, not jars made to your specification. This page recommends the cheapest test that answers the question — six candles on the wick you already approved — and says plainly that if you already hold approved wax and oil, the only thing you may need from us is a pack of wicks.
Wax and oil prices are CSI live pricing, pulled on 24 September 2026; wick, jar and tool prices are those verified for Blog 760 on 10 September 2026, with the wick pack list rechecked on 25 September 2026. The jar diameters on this page are illustrations, because the title gives none; every area, fill height and ratio is plain geometry from them and can be rerun with your own measurements.
The 200 g fill comes from the title. The 8% load, 0.88 g/ml wax factor, 5% allowance, three-candle sets, 3–4 hour cycles and 7-day cure are labelled working assumptions. CSI does not publish jar dimensions, wick-per-diameter charts or numeric flame or temperature limits. For help planning the test, GST invoicing, MSDS or IFRA documentation, WhatsApp +91 7397976926.
Frequently asked questions
- My Jar Supplier Changed the Internal Diameter from 7.6 cm to 7.9 cm — Is That Difference Large Enough to Require New Wick Testing?
- My Replacement Jar Has the Same External Diameter but Thicker Glass and a Smaller Internal Diameter — Should I Treat It as a New Candle System?
- My New Jar Has a Much Thicker Base — Should I Repeat End-Of-Life Burn Testing Even If the Upper Dimensions Are Unchanged?
- My New Jar Is Taller but the Diameter Is Identical — Do I Need a Complete Burn Test or Mainly Later-Stage Heat Testing?
- I Changed from a Straight-Sided Jar to a Tapered Container — Can the Same Wick Behave Differently as the Candle Burns Deeper?
- My Jar Supplier Is Temporarily Out of Stock — How Do I Choose an Alternative Container That Requires the Least Formulation Redevelopment?
- I Have 1,000 Candles Due but Can Only Source a Slightly Different Jar — What Measurements Should I Compare Before Deciding Whether the Substitution Is Practical?
- If I Change Only the Jar, Which Tests Should Be Repeated to Confirm Wick Performance and Container Heat Remain Acceptable?
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 — Eco Candle Wicks, Premium Candle Wicking Needle and Bamboo Wick Holder. They are general product reviews, not assessments of the guidance set out here. Names, star ratings, dates and products are as recorded by Judge.me and wording is unedited. "Verified buyer" appears only on the three reviews Judge.me recorded as verified — Monika Deep, Subhankar Roy and Sneha Tamang; the reviews from Ashwini, LJ and Lalitha Jagan are published but not recorded as verified, and carry no badge.
Figures pulled 24 September 2026, CSI live pricing: Luxury Soy Wax Chunks ₹299.00 / 500 g, ₹599.00 / 1 kg, ₹2,995.00 / 5 kg, ₹5,999.00 / 10 kg (rated up to 13% fragrance load). Japanese Cherry Blossom Fragrance Oil ₹104.00 / 15 g, ₹270.00 / 50 g, ₹500.00 / 100 g, ₹2,500.00 / 500 g, ₹4,842.00 / 1 kg. Figures verified 10 September 2026 (Blog 760), wick packs rechecked 25 September 2026: Eco Candle Wicks Thin C1 ₹59.00 / 10; Thick C2 ₹94.40 / 10; Wick Centering Device ₹118.00 / 5; White Matte Glass Jar ₹354.00 / 5; Salsa 200 ml ₹200.60 / 5; Yankee 130 ml ₹47.20 each.
Non-price figures and assumptions: The 200 g fill is the reader's. The 7.2 cm and 7.6 cm internal diameters and the 6.8–8.4 cm row are illustrative. Area = π × d² ÷ 4; height = (mass ÷ wax factor) ÷ area; the 0.88 g/ml wax factor is a labelled approximation within 0.86–0.90 g/ml. The 8% load (oil = W × L), 5% allowance, three-candle sets, 3–4 hour cycles, 7-day cure and ₹45.00 example jar price are working assumptions. CSI does not publish jar dimensions, wick charts, burn results or safety limits. Diwali 2026 falls on 8 November.