A signal processing algorithm converts an input voltage vvv into a compressed metric M(v)M(v)M(v) using the formula:
M(v)=ev/4+10M(v) = e^{v/4} + 10M(v)=ev/4+10
for v∈Rv \in \mathbb{R}v∈R.
Identify the expression for the inverse function M−1(x)M^{-1}(x)M−1(x).
Tick (✓\checkmark✓) one box.
□M−1(x)=4ln(x)−10\square \quad M^{-1}(x) = 4\ln(x) - 10□M−1(x)=4ln(x)−10
□M−1(x)=1ex/4+10\square \quad M^{-1}(x) = \frac{1}{e^{x/4} + 10}□M−1(x)=ex/4+101
□M−1(x)=4ln(x−10)\square \quad M^{-1}(x) = 4\ln(x - 10)□M−1(x)=4ln(x−10)
□M−1(x)=ln(x−10)+4\square \quad M^{-1}(x) = \ln(x - 10) + 4□M−1(x)=ln(x−10)+4
Practise Edexcel A Level Maths Functions and Graphs with exam-style questions for A Level Maths. 100 questions covering 2.1 The Modulus Function, 2.2 Functions and Mappings, 2.3 Composite Functions, 2.4 Inverse Functions, 2.5 y=|f(x)| and y=f(|x|), 2.6 Combining Transformations, and 2.7 Solving Modulus Problems, matched to the Edexcel A Level Maths (9MA0) specification and written in Paper 1, Paper 2 and Paper 3 style. Every question includes a full worked solution and mark scheme, so you can see where marks are awarded rather than just whether you got the answer right.