As we know One aΩ is equal to 1e-18 V/A (1 aΩ = 1e-18 V/A).
To convert Attoohm to Volt/Ampere, multiply your aΩ figure by 1e-18.
Example : convert 25 aΩ to V/A:
25 aΩ = 25 × 1e-18 V/A = V/A
To convert Volt/Ampere to Attoohm, divide your V/A figure by 1e-18.
Example : convert 25 V/A to aΩ:
25 V/A = 25 ÷ 1e-18 aΩ = aΩ
As we know One V/A is equal to 1e+18 aΩ (1 V/A = 1e+18 aΩ).
To convert Volt/Ampere to Attoohm, multiply your V/A figure by 1e+18.
Example : convert 45 V/A to aΩ:
45 V/A = 45 × 1e+18 aΩ = aΩ
To convert Attoohm to Volt/Ampere, divide your aΩ figure by 1e+18.
Example : convert 45 aΩ to V/A:
45 aΩ = 45 ÷ 1e+18 V/A = V/A
aΩ to Ω | 1 aΩ = 1e-18 Ω |
aΩ to MΩ | 1 aΩ = 1e-24 MΩ |
aΩ to μΩ | 1 aΩ = 1e-12 μΩ |
aΩ to mΩ | 1 aΩ = 1e-15 mΩ |
aΩ to kΩ | 1 aΩ = 1e-21 kΩ |
aΩ to V/A | 1 aΩ = 1e-18 V/A |
aΩ to 1/S | 1 aΩ = 1e-18 1/S |
aΩ to abΩ | 1 aΩ = 1e-9 abΩ |
aΩ to EMU of resistance | 1 aΩ = 1e-9 EMU of resistance |
aΩ to stΩ | 1 aΩ = 1.11265e-30 stΩ |
aΩ to ESU of resistance | 1 aΩ = 1.11265e-30 ESU of resistance |
aΩ to Quantized Hall resistance | 1 aΩ = 3.874046e-23 Quantized Hall resistance |
aΩ to Planck impedance | 1 aΩ = 3.335641e-20 Planck impedance |
aΩ to EΩ | 1 aΩ = 1e-36 EΩ |
aΩ to PΩ | 1 aΩ = 1e-33 PΩ |
aΩ to TΩ | 1 aΩ = 1e-30 TΩ |
aΩ to GΩ | 1 aΩ = 1e-27 GΩ |
aΩ to hΩ | 1 aΩ = 1e-20 hΩ |
aΩ to daΩ | 1 aΩ = 1e-19 daΩ |
aΩ to dΩ | 1 aΩ = 1e-17 dΩ |
aΩ to cΩ | 1 aΩ = 1e-16 cΩ |
aΩ to nΩ | 1 aΩ = 1e-9 nΩ |
aΩ to pΩ | 1 aΩ = 0.000001 pΩ |
aΩ to fΩ | 1 aΩ = 0.001 fΩ |
aΩ to kV/A | 1 aΩ = 1e-21 kV/A |
aΩ to mV/A | 1 aΩ = 1e-15 mV/A |
aΩ to μV/A | 1 aΩ = 1e-12 μV/A |
aΩ to MV/A | 1 aΩ = 1e-24 MV/A |
aΩ to V/kA | 1 aΩ = 1e-15 V/kA |
aΩ to V/mA | 1 aΩ = 1e-21 V/mA |
aΩ to V/μA | 1 aΩ = 1e-24 V/μA |
aΩ to V/MA | 1 aΩ = 1e-12 V/MA |
Created @ o.vg | Free Unit Converters |
V/A. Since one aΩ equals 1e-18 V/A, 9 aΩ in V/A will be V/A.
There are 1e-18 V/A in one aΩ. In turn, one V/A is equal to 1e+18 aΩ.
1 V/A is approximately equal to 1e+18 aΩ.
The Attoohm value of 8 V/A is aΩ. (i.e.,) 8 x 1e+18 = aΩ.
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