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Log 120 (143)

Log 120 (143) is the logarithm of 143 to the base 120:

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Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log120 (143) = 1.0366272981551.

Calculate Log Base 120 of 143

To solve the equation log 120 (143) = 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 = 143, a = 120:
    log 120 (143) = log(143) / log(120)
  3. Evaluate the term:
    log(143) / log(120)
    = 1.39794000867204 / 1.92427928606188
    = 1.0366272981551
    = Logarithm of 143 with base 120
Here’s the logarithm of 120 to the base 143.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 120 1.0366272981551 = 143
  • 120 1.0366272981551 = 143 is the exponential form of log120 (143)
  • 120 is the logarithm base of log120 (143)
  • 143 is the argument of log120 (143)
  • 1.0366272981551 is the exponent or power of 120 1.0366272981551 = 143
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log120 143?

Log120 (143) = 1.0366272981551.

How do you find the value of log 120143?

Carry out the change of base logarithm operation.

What does log 120 143 mean?

It means the logarithm of 143 with base 120.

How do you solve log base 120 143?

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

What is the log base 120 of 143?

The value is 1.0366272981551.

How do you write log 120 143 in exponential form?

In exponential form is 120 1.0366272981551 = 143.

What is log120 (143) equal to?

log base 120 of 143 = 1.0366272981551.

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 120 of 143 = 1.0366272981551.

You now know everything about the logarithm with base 120, argument 143 and exponent 1.0366272981551.
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 Log120 (143).

Table

Our quick conversion table is easy to use:
log 120(x) Value
log 120(142.5)=1.0358956769347
log 120(142.51)=1.0359103345008
log 120(142.52)=1.0359249910383
log 120(142.53)=1.0359396465475
log 120(142.54)=1.0359543010285
log 120(142.55)=1.0359689544815
log 120(142.56)=1.0359836069065
log 120(142.57)=1.0359982583038
log 120(142.58)=1.0360129086734
log 120(142.59)=1.0360275580155
log 120(142.6)=1.0360422063303
log 120(142.61)=1.0360568536179
log 120(142.62)=1.0360714998785
log 120(142.63)=1.0360861451122
log 120(142.64)=1.036100789319
log 120(142.65)=1.0361154324993
log 120(142.66)=1.0361300746531
log 120(142.67)=1.0361447157806
log 120(142.68)=1.0361593558818
log 120(142.69)=1.0361739949571
log 120(142.7)=1.0361886330064
log 120(142.71)=1.03620327003
log 120(142.72)=1.0362179060279
log 120(142.73)=1.0362325410004
log 120(142.74)=1.0362471749476
log 120(142.75)=1.0362618078696
log 120(142.76)=1.0362764397666
log 120(142.77)=1.0362910706386
log 120(142.78)=1.0363057004859
log 120(142.79)=1.0363203293086
log 120(142.8)=1.0363349571069
log 120(142.81)=1.0363495838808
log 120(142.82)=1.0363642096305
log 120(142.83)=1.0363788343562
log 120(142.84)=1.0363934580581
log 120(142.85)=1.0364080807361
log 120(142.86)=1.0364227023906
log 120(142.87)=1.0364373230216
log 120(142.88)=1.0364519426293
log 120(142.89)=1.0364665612138
log 120(142.9)=1.0364811787753
log 120(142.91)=1.0364957953139
log 120(142.92)=1.0365104108298
log 120(142.93)=1.036525025323
log 120(142.94)=1.0365396387938
log 120(142.95)=1.0365542512423
log 120(142.96)=1.0365688626687
log 120(142.97)=1.0365834730729
log 120(142.98)=1.0365980824554
log 120(142.99)=1.036612690816
log 120(143)=1.0366272981551
log 120(143.01)=1.0366419044727
log 120(143.02)=1.036656509769
log 120(143.03)=1.0366711140441
log 120(143.04)=1.0366857172982
log 120(143.05)=1.0367003195314
log 120(143.06)=1.0367149207439
log 120(143.07)=1.0367295209357
log 120(143.08)=1.0367441201071
log 120(143.09)=1.0367587182582
log 120(143.1)=1.0367733153892
log 120(143.11)=1.0367879115001
log 120(143.12)=1.0368025065911
log 120(143.13)=1.0368171006623
log 120(143.14)=1.036831693714
log 120(143.15)=1.0368462857462
log 120(143.16)=1.0368608767591
log 120(143.17)=1.0368754667528
log 120(143.18)=1.0368900557275
log 120(143.19)=1.0369046436832
log 120(143.2)=1.0369192306203
log 120(143.21)=1.0369338165387
log 120(143.22)=1.0369484014387
log 120(143.23)=1.0369629853203
log 120(143.24)=1.0369775681838
log 120(143.25)=1.0369921500293
log 120(143.26)=1.0370067308568
log 120(143.27)=1.0370213106666
log 120(143.28)=1.0370358894588
log 120(143.29)=1.0370504672335
log 120(143.3)=1.0370650439909
log 120(143.31)=1.0370796197311
log 120(143.32)=1.0370941944542
log 120(143.33)=1.0371087681605
log 120(143.34)=1.03712334085
log 120(143.35)=1.0371379125229
log 120(143.36)=1.0371524831793
log 120(143.37)=1.0371670528193
log 120(143.38)=1.0371816214432
log 120(143.39)=1.0371961890511
log 120(143.4)=1.037210755643
log 120(143.41)=1.0372253212191
log 120(143.42)=1.0372398857797
log 120(143.43)=1.0372544493247
log 120(143.44)=1.0372690118544
log 120(143.45)=1.037283573369
log 120(143.46)=1.0372981338684
log 120(143.47)=1.037312693353
log 120(143.48)=1.0373272518227
log 120(143.49)=1.0373418092779
log 120(143.5)=1.0373563657185
log 120(143.51)=1.0373709211448

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