몰 질량 of Creatine (C4H9N3O2) is 131.1332 g/mol
C4H9N3O2 중량과 몰 사이의 변환
다음 물질의 원소 조성 C4H9N3O2
요소 | 상징 | 원자량 | 원자 | 질량 비율 |
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탄소 | C | 12.0107 | 4 | 36.6367 | 수소 | H | 1.00794 | 9 | 6.9177 | 질소 | N | 14.0067 | 3 | 32.0438 | 산소 | O | 15.9994 | 2 | 24.4018 |
몰질량을 단계별로 계산하기 |
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먼저 C4H9N3O2에 있는 각 원자의 수를 계산합니다.
C: 4, H: 9, N: 3, O: 2
그런 다음 주기율표 의 각 원소에 대한 원자량을 검색합니다.
C: 12.0107, H: 1.00794, N: 14.0067, O: 15.9994
이제 원자 수와 원자량의 곱의 합을 계산합니다.
몰 질량 (C4H9N3O2) = ∑ Counti * Weighti =
Count(C) * Weight(C) + Count(H) * Weight(H) + Count(N) * Weight(N) + Count(O) * Weight(O) =
4 * 12.0107 + 9 * 1.00794 + 3 * 14.0067 + 2 * 15.9994 =
131.1332 g/mol
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화학 구조 |
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![C4H9N3O2 - 화학 구조](data:images/png;base64,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) 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모습 |
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구아니디노프로피온산은 백색 결정성 분말입니다. |
관련 화합물
힐 시스템의 공식은 C4H9N3O2
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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, 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 |