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Log 363 (1)

Log 363 (1) is the logarithm of 1 to the base 363:

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Result:
Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log363 (1) = 0.

Calculate Log Base 363 of 1

To solve the equation log 363 (1) = x carry out the following steps.
  1. Apply the change of base rule:
    log a (x) = log b (x) / log b (a)
    With b = 10:
    log a (x) = log(x) / log(a)
  2. Substitute the variables:
    With x = 1, a = 363:
    log 363 (1) = log(1) / log(363)
  3. Evaluate the term:
    log(1) / log(363)
    = 1.39794000867204 / 1.92427928606188
    = 0
    = Logarithm of 1 with base 363
Here’s the logarithm of 363 to the base 1.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 363 0 = 1
  • 363 0 = 1 is the exponential form of log363 (1)
  • 363 is the logarithm base of log363 (1)
  • 1 is the argument of log363 (1)
  • 0 is the exponent or power of 363 0 = 1
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log363 1?

Log363 (1) = 0.

How do you find the value of log 3631?

Carry out the change of base logarithm operation.

What does log 363 1 mean?

It means the logarithm of 1 with base 363.

How do you solve log base 363 1?

Apply the change of base rule, substitute the variables, and evaluate the term.

What is the log base 363 of 1?

The value is 0.

How do you write log 363 1 in exponential form?

In exponential form is 363 0 = 1.

What is log363 (1) equal to?

log base 363 of 1 = 0.

For further questions about the logarithm equation, common logarithms, the exponential function or the exponential equation fill in the form at the bottom.

Summary

In conclusion, log base 363 of 1 = 0.

You now know everything about the logarithm with base 363, argument 1 and exponent 0.
Further information, particularly about the binary logarithm, natural logarithm and decadic logarithm can be located in our article logarithm.

Besides the types of logarithms, there, we also shed a light on the terms on the properties of logarithms and the logarithm function, just to name a few.
Thanks for visiting Log363 (1).

Table

Our quick conversion table is easy to use:
log 363(x) Value
log 363(0.5)=-0.11759413125459
log 363(0.51)=-0.11423456662133
log 363(0.52)=-0.11094024039302
log 363(0.53)=-0.10770866706723
log 363(0.54)=-0.10453750053218
log 363(0.55)=-0.10142452383477
log 363(0.56)=-0.098367639870555
log 363(0.57)=-0.09536486289771
log 363(0.58)=-0.092414310789061
log 363(0.59)=-0.089514197946428
log 363(0.6)=-0.086662828810495
log 363(0.61)=-0.083858591907119
log 363(0.62)=-0.081099954377757
log 363(0.63)=-0.078385456947512
log 363(0.64)=-0.075713709289447
log 363(0.65)=-0.073083385748301
log 363(0.66)=-0.070493221390677
log 363(0.67)=-0.067942008352246
log 363(0.68)=-0.065428592455555
log 363(0.69)=-0.062951870074742
log 363(0.7)=-0.060510785225831
log 363(0.71)=-0.058104326863417
log 363(0.72)=-0.055731526366404
log 363(0.73)=-0.053391455197166
log 363(0.74)=-0.051083222719961
log 363(0.75)=-0.048805974165772
log 363(0.76)=-0.046558888731938
log 363(0.77)=-0.044341177806013
log 363(0.78)=-0.042152083304209
log 363(0.79)=-0.039990876115692
log 363(0.8)=-0.037856854644723
log 363(0.81)=-0.035749343443361
log 363(0.82)=-0.033667691928047
log 363(0.83)=-0.031611273173991
log 363(0.84)=-0.02957948278174
log 363(0.85)=-0.027571737810832
log 363(0.86)=-0.025587475775804
log 363(0.87)=-0.023626153700246
log 363(0.88)=-0.021687247224905
log 363(0.89)=-0.019770249766189
log 363(0.9)=-0.01787467172168
log 363(0.91)=-0.016000039719546
log 363(0.92)=-0.01414589590897
log 363(0.93)=-0.012311797288942
log 363(0.94)=-0.010497315072936
log 363(0.95)=-0.0087020340872151
log 363(0.96)=-0.006925552200632
log 363(0.97)=-0.0051674797839817
log 363(0.98)=-0.0034274391970766
log 363(0.99)=-0.0017050643018623
log 363(1)=7.5340831350806E-17
log 363(1.01)=0.0016880982065437
log 363(1.02)=0.0033595646332594
log 363(1.03)=0.0050147238104793
log 363(1.04)=0.0066538908615623
log 363(1.05)=0.0082773718629832
log 363(1.06)=0.0098854641873562
log 363(1.07)=0.011478456830352
log 363(1.08)=0.013056630722411
log 363(1.09)=0.014620259026087
log 363(1.1)=0.016169607419818
log 363(1.11)=0.017704934368854
log 363(1.12)=0.019226491384031
log 363(1.13)=0.020734523269055
log 363(1.14)=0.022229268356876
log 363(1.15)=0.023710958735753
log 363(1.16)=0.025179820465526
log 363(1.17)=0.026636073784605
log 363(1.18)=0.028079933308158
log 363(1.19)=0.029511608217923
log 363(1.2)=0.030931302444091
log 363(1.21)=0.032339214839636
log 363(1.22)=0.033735539347467
log 363(1.23)=0.035120465160767
log 363(1.24)=0.036494176876829
log 363(1.25)=0.037856854644723
log 363(1.26)=0.039208674307074
log 363(1.27)=0.040549807536239
log 363(1.28)=0.04188042196514
log 363(1.29)=0.04320068131301
log 363(1.3)=0.044510745506286
log 363(1.31)=0.045810770794857
log 363(1.32)=0.047100909863909
log 363(1.33)=0.04838131194154
log 363(1.34)=0.04965212290234
log 363(1.35)=0.050913485367134
log 363(1.36)=0.052165538799031
log 363(1.37)=0.05340841959596
log 363(1.38)=0.054642261179844
log 363(1.39)=0.055867194082549
log 363(1.4)=0.057083346028755
log 363(1.41)=0.058290842015878
log 363(1.42)=0.059489804391169
log 363(1.43)=0.060680352926104
log 363(1.44)=0.061862604888183
log 363(1.45)=0.063036675110249
log 363(1.46)=0.06420267605742
log 363(1.47)=0.065360717891738
log 363(1.48)=0.066510908534625
log 363(1.49)=0.06765335372724
log 363(1.5)=0.068788157088815

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