몰 질량 of Glibornuride (C18H26N2O4S) is 366.4750 g/mol
C18H26N2O4S 중량과 몰 사이의 변환
다음 물질의 원소 조성 C18H26N2O4S
요소 | 상징 | 원자량 | 원자 | 질량 비율 |
---|
탄소 | C | 12.0107 | 18 | 58.9924 | 수소 | H | 1.00794 | 26 | 7.1509 | 질소 | N | 14.0067 | 2 | 7.6440 | 산소 | O | 15.9994 | 4 | 17.4630 | 황 | S | 32.065 | 1 | 8.7496 |
몰질량을 단계별로 계산하기 |
---|
먼저 C18H26N2O4S에 있는 각 원자의 수를 계산합니다.
C: 18, H: 26, N: 2, O: 4, S: 1
그런 다음 주기율표 의 각 원소에 대한 원자량을 검색합니다.
C: 12.0107, H: 1.00794, N: 14.0067, O: 15.9994, S: 32.065
이제 원자 수와 원자량의 곱의 합을 계산합니다.
몰 질량 (C18H26N2O4S) = ∑ Counti * Weighti =
Count(C) * Weight(C) + Count(H) * Weight(H) + Count(N) * Weight(N) + Count(O) * Weight(O) + Count(S) * Weight(S) =
18 * 12.0107 + 26 * 1.00794 + 2 * 14.0067 + 4 * 15.9994 + 1 * 32.065 =
366.4750 g/mol
|
화학 구조 |
---|
![C18H26N2O4S - 화학 구조](data:images/png;base64,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) |
관련 화합물
힐 시스템의 공식은 C18H26N2O4S
|
계산 몰 질량 (몰 중량)화합물의 몰 질량을 계산하려면 공식을 입력하고 '계산'을 클릭하세요. 화학식에서 당신은 다음과 같은 것들을 사용할 수 있습니다 :
- 어떤 화학 원소. 화학 기호의 첫 글자를 대문자로 하고 나머지 글자는 소문자를 사용합니다. Ca, Fe, Mg, Mn, S, O, H, C, N, Na, K, Cl, Al.
- 기능 그룹 :D, T, Ph, Me, Et, Bu, AcAc, For, Tos, Bz, TMS, tBu, Bzl, Bn, Dmg
- 괄호() 또는 대괄호 []입니다.
- 관용명
몰 질량 계산의 예 : NaCl, Ca(OH)2, K4[Fe(CN)6], CuSO4*5H2O, 질산, 과망간산 칼륨, 에탄올, 과당, 카페인, 물.
몰 질량 계산기는 또한 일반적인 화합물 이름, Hill 공식, 원소 구성, 질량 백분율 구성, 원자 백분율 구성을 표시하고 무게를 몰수로 또는 그 반대로 변환할 수 있습니다.
컴퓨팅 분자량 (분자량)
화합물의 분자량을 계산하려면 공식을 입력하고 각 원소 뒤에 동위원소 질량수를 대괄호 안에 지정하세요.
분자량 계산의 예 :
C[14]O[16]2,
S[34]O[16]2.
정의
- molecular_mass_def
- 몰질량은 (molar weight) 어떤 물질이 1몰 있을때의 질량을 이야기 하고 단위는 g/mol입니다.
- 두더지는 원자나 분자와 같은 매우 작은 물질을 대량으로 측정하기 위한 표준 과학 단위입니다. 1몰에는 정확히 6.022 ×10 23 입자(아보가드로 수)가 들어 있습니다.
몰 질량을 계산하는 단계
- 화합물 식별: 화합물의 화학식을 적습니다. 예를 들어, 물은 H 2 O입니다. 이는 수소 원자 2개와 산소 원자 1개를 포함한다는 의미입니다.
- 원자 질량 찾기: 화합물에 존재하는 각 원소의 원자 질량을 찾아보세요. 원자 질량은 일반적으로 주기율표에서 찾을 수 있으며 원자 질량 단위(amu)로 표시됩니다.
- 각 원소의 몰 질량을 계산합니다. 각 원소의 원자 질량에 화합물에 포함된 해당 원소의 원자 수를 곱합니다.
- 합산: 3단계의 결과를 더하여 화합물의 총 몰 질량을 구합니다.
예: 몰질량 계산
이산화탄소(CO 2 )의 몰질량을 계산해 보겠습니다.
- 탄소(C)의 원자 질량은 약 12.01 amu입니다.
- 산소(O)의 원자 질량은 약 16.00amu입니다.
- CO 2 에는 탄소 원자 1개와 산소 원자 2개가 있습니다.
- 이산화탄소의 몰 질량은 12.01 + (2 × 16.00) = 44.01 g/mol입니다.
각 원소와 동위원소의 질량을 NIST기사를 참조하십시오 href='http://physics.nist.gov/cgi-bin/Compositions/stand_alone.pl'> a> 관련 : 아미노산의 분자량 |