Newton-meters to Btu (3.9°C)

Btu (3.9°C) to Newton-meters (Swap Units)

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Newton-meters to Btu (3.9°C) formula

Btu (3.9°C) =
Nm * 0.00094369
 
 
 
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More information: Newton-meters
More information: Btu (3.9°C)

Newton-meters

One newton metre is the distance travelled in the direction of applied force, (ie not the perpendicular distance from a fulcrum which is the NM when used to express torque)

 

Newton-meters to Btu (3.9°C) formula

Btu (3.9°C) =
Nm * 0.00094369
 
 
 

Btu (3.9°C)

One BTU is the energy required to warm 1 avoirdupois pound of liquid water by 1 degree Fahrenheit, at one atmosphere. The Btu (3.9°C) uses the calorie value of water at the temperature of its maximum density

 

Newton-meters to Btu (3.9°C) table

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Newton-meters Btu (3.9°C)
0Nm 0.00Btu (3.9°C)
1Nm 0.00Btu (3.9°C)
2Nm 0.00Btu (3.9°C)
3Nm 0.00Btu (3.9°C)
4Nm 0.00Btu (3.9°C)
5Nm 0.00Btu (3.9°C)
6Nm 0.01Btu (3.9°C)
7Nm 0.01Btu (3.9°C)
8Nm 0.01Btu (3.9°C)
9Nm 0.01Btu (3.9°C)
10Nm 0.01Btu (3.9°C)
11Nm 0.01Btu (3.9°C)
12Nm 0.01Btu (3.9°C)
13Nm 0.01Btu (3.9°C)
14Nm 0.01Btu (3.9°C)
15Nm 0.01Btu (3.9°C)
16Nm 0.02Btu (3.9°C)
17Nm 0.02Btu (3.9°C)
18Nm 0.02Btu (3.9°C)
19Nm 0.02Btu (3.9°C)
Newton-meters Btu (3.9°C)
20Nm 0.02Btu (3.9°C)
21Nm 0.02Btu (3.9°C)
22Nm 0.02Btu (3.9°C)
23Nm 0.02Btu (3.9°C)
24Nm 0.02Btu (3.9°C)
25Nm 0.02Btu (3.9°C)
26Nm 0.02Btu (3.9°C)
27Nm 0.03Btu (3.9°C)
28Nm 0.03Btu (3.9°C)
29Nm 0.03Btu (3.9°C)
30Nm 0.03Btu (3.9°C)
31Nm 0.03Btu (3.9°C)
32Nm 0.03Btu (3.9°C)
33Nm 0.03Btu (3.9°C)
34Nm 0.03Btu (3.9°C)
35Nm 0.03Btu (3.9°C)
36Nm 0.03Btu (3.9°C)
37Nm 0.03Btu (3.9°C)
38Nm 0.04Btu (3.9°C)
39Nm 0.04Btu (3.9°C)
Newton-meters Btu (3.9°C)
40Nm 0.04Btu (3.9°C)
41Nm 0.04Btu (3.9°C)
42Nm 0.04Btu (3.9°C)
43Nm 0.04Btu (3.9°C)
44Nm 0.04Btu (3.9°C)
45Nm 0.04Btu (3.9°C)
46Nm 0.04Btu (3.9°C)
47Nm 0.04Btu (3.9°C)
48Nm 0.05Btu (3.9°C)
49Nm 0.05Btu (3.9°C)
50Nm 0.05Btu (3.9°C)
51Nm 0.05Btu (3.9°C)
52Nm 0.05Btu (3.9°C)
53Nm 0.05Btu (3.9°C)
54Nm 0.05Btu (3.9°C)
55Nm 0.05Btu (3.9°C)
56Nm 0.05Btu (3.9°C)
57Nm 0.05Btu (3.9°C)
58Nm 0.05Btu (3.9°C)
59Nm 0.06Btu (3.9°C)