Nhazi
Wepụta maka n'ótù, máss mọọbụ vólọ́ọ̀mù, ná nhọrọ kọmpụta nakwa táàbụ̀ ihenhọrọ ndị ahụ.
Nhọrọ ndị ahụ ga-akpụzi mgbe ị na-etipụta.
N'ihe banyere calculator a
Density measures how much mass is packed into a given volume: ρ = m / V. Rearranged, the mass of an object is m = ρ × V and the volume it occupies is V = m / ρ. This calculator lets you solve for any one of the three, entering the other two in whatever units you have — grams, kilograms, pounds and ounces for mass, and cm³/mL, litres or m³ for volume — and returns the density in both g/cm³ and the SI unit kg/m³ (1 g/cm³ = 1,000 kg/m³).
As a worked example, a 100 g object occupying 50 cm³ has a density of 100 / 50 = 2 g/cm³ (2,000 kg/m³) — a bit less dense than aluminium. Because pure water is very close to 1 g/cm³, the calculator also tells you whether a material floats: anything below about 1 g/cm³ floats, anything above sinks, and something right at 1 g/cm³ is neutrally buoyant. A built-in table lists common densities for comparison — ice 0.92, oak 0.75, water 1.00, aluminium 2.70, iron 7.87, lead 11.34 and gold 19.32 g/cm³.
Density is used to identify materials, check the purity of metals and gemstones, work out whether an object will float or sink, convert between the mass and volume of fuels and liquids, and calculate the load a structure or vessel must carry. Because it is an intensive property — independent of the amount of material — a small sample gives the same density as a large one, which is what makes it such a reliable fingerprint for a substance.
Ajụjụ ndị a na-ajụkarị
Gịnị bụ fomulụ ịdị n'otu?
Ọ bụ ihe dị ka 1000 ugboro karịa nke a na-ahụkarị, yabụ ọ dị mkpa ka a gbanwee ya n'ụzọ dị mfe.
Ọnụọgụgụ ole ka ọ na-eji?
Site n'edebata, grams na sentimita cubic (1 cm³ = 1 mL) na-enye n'ime g/cm³. Oké mmiri bụ banyere 1 g/cm³, yabụ ihenhọrọ ndị dị n'ime mmiri na-agụ n'elu 1 ma na-adọba ala n'okpuru.
Ọ bụrụ na ihenhọrọ ahụ na-agbagharị ma ọ bụ na-akpụgharị n'ime mmiri?
Kpọtụle n'ụdị ya na mmiri ≈ 1 g/cm³. N'okpuru ya na-agbagharị (aịsa na 0.92, ọka na 0.75), na ọ bụ n'ụzọ nkịtị na-agbagharị, na n'elu ya na-awụsa (aluminom 2.70, ígwè 7.87). Kalkulata ahụ na-egosi ihe n'ihe omume ọbụla.
Olee otú m ga-esi gbanwee g/cm³ ka kg/m³?
Ihe nke 1,000: 1 g/cm³ dị nnọọ ka 1,000 kg/m³. Tulee ahụ gosiri ha abụọ, yabụ 2 g/cm³ ihenhọrọ ahụ a gosiri dịka 2,000 kg/m³.
Olee otú m ga-esi hụ masị mọọbụ vólọ́ọ̀mù n'ebe ọbụla n'ebe ọ̀fụ̀?
Kpụga "n'omume maka" ka ọbụla ma ọ bụ vólọ́ọ̀lụ̀. Ónyénwē bụ ρ × V na vólọ́ọ̀lụ̀ bụ m / ρ, ya mere ihenhọrọ nke 2 g/cm³ na-adọsa 50 cm³ nwere ọ̀nyénwē nke 100 g.
Ọdịnaya na-agbanwe agbanwe na okpomọkụ?
Oge ụfọdụ, ee. Ihe ndị kasị ukwuu na-amụba mgbe a na-ekpo ọkụ, yabụ na n'ihi na ha na-amụba n'ihi na okpomọkụ na-arịwanye elu. Ọnụ mmiri bụ ihe na-adịghị asị - ọ bụ nke dị n'elu 4 °C - nke bụ ihe mere mmiri ji na-agbagharị na ebe obibi na-awụsa n'elu ala.
API — jiri kaadị a site na kóòdù
Kpọọ kalkulata a dịka ebe ngwụcha JSON n'efu - enweghị kii achọrọ. Ziga valiu ebe ahụ n'okpuru dịka paramita ajụjụ mọọbụ JSON. Ihe ọbụla ị na-ewepụ na-eji dìfọ́ọ̀ltụ̀ nke a na-edebe ihuakwụkwọ a na ya; parameter a na-amaghị bụ 400, ọ dịghị sẽọ̀rọ̀. Gụọ ngwe ndị ahụ niile →
Ebemkpofuozi
GET https://calculator.free/api/v1/density/
curl
curl "https://calculator.free/api/v1/density/?solve=density&mass=100&volume=50&density=2"
JavaScript fetch()
const r = await fetch(
"https://calculator.free/api/v1/density/?" + new URLSearchParams({
"solve": "density",
"mass": "100",
"volume": "50",
"density": "2"
}));
const data = await r.json();
console.log(data.results);
Ihe a na-ahụta bụ n'ihi nlekọta n'ozuzu ya, ọ bụghị nlekọta ego, ọgwụ ma ọ bụ nlekọta ego.