Compute the Roots of a Hermite_e series with given Complex Roots using NumPy in Python Last Updated : 23 Jul, 2025 Comments Improve Suggest changes Like Article Like Report In this article, we are going to see how to compute the roots of a Hermite_e series with given complex roots in Python. NumPy hermeroots() Methods We use the hermite e.hermeroots() function in Python Numpy to get the roots of a Hermite e series. This function will return an array containing the series' roots. If from all the roots present, all roots are real then the output is real as well else it will be complex. A 1-D array of coefficients is used as the parameter c. The eigenvalues of the companion matrix are used to calculate the root estimations; nevertheless, roots far from the complex plane's origin may have high inaccuracies due to the numerical instability of the series. Because the value of the series around such points is largely insensitive to mistakes in the roots, roots with multiplicity greater than 1 will display significant errors. A few repeats of Newton's technique on isolated roots near the origin can help. Also, the outputs of the function may look contradictory since the HermiteE series basis polynomials are not powers of x. Syntax : numpy.polynomial.hermite_e.hermeroots(arr) Parameter : arr (1-D array_like structure) Returns : ndarray (Array of the roots of the series.If from all the roots present, all roots are real then the output is real as well else it will be complex. Example 1 : Python3 # importing hermite_e library from numpy.polynomial import hermite_e # creating an array 'arr' of complex coefficient a = complex(1,2) b = complex(2,0) arr = [a, b] # Evaluating roots of a Hermite_e # series using hermeroots() function print(hermite_e.hermeroots(arr)) Output : [-0.5-1.j] Example 2 : Python3 # importing hermite_e library from numpy.polynomial import hermite_e # creating an array 'arr' of complex coefficient a = complex(1,2) # Evaluating roots of a Hermite_e # series using hermeroots() function print(hermite_e.hermeroots([a,-a])) Output : [1.-0.j] Create Quiz Comment S siddheshsagar Follow 0 Improve S siddheshsagar Follow 0 Improve Article Tags : Python Python-numpy Python numpy-polynomials Explore Python FundamentalsPython Introduction 2 min read Input and Output in Python 4 min read Python Variables 4 min read Python Operators 4 min read Python Keywords 2 min read Python Data Types 8 min read Conditional Statements in Python 3 min read Loops in Python - For, While and Nested Loops 5 min read Python Functions 5 min read Recursion in Python 4 min read Python Lambda Functions 5 min read Python Data StructuresPython String 5 min read Python Lists 4 min read Python Tuples 4 min read Python Dictionary 3 min read Python Sets 6 min read Python Arrays 7 min read List Comprehension in Python 4 min read Advanced PythonPython OOP Concepts 11 min read Python Exception Handling 5 min read File Handling in Python 4 min read Python Database Tutorial 4 min read Python MongoDB Tutorial 3 min read Python MySQL 9 min read Python Packages 10 min read Python Modules 3 min read Python DSA Libraries 15 min read List of Python GUI Library and Packages 3 min read Data Science with PythonNumPy Tutorial - Python Library 3 min read Pandas Tutorial 4 min read Matplotlib Tutorial 5 min read Python Seaborn Tutorial 3 min read StatsModel Library - Tutorial 3 min read Learning Model Building in Scikit-learn 6 min read TensorFlow Tutorial 2 min read PyTorch Tutorial 6 min read Web Development with PythonFlask Tutorial 8 min read Django Tutorial | Learn Django Framework 7 min read Django ORM - Inserting, Updating & Deleting Data 4 min read Templating With Jinja2 in Flask 6 min read Django Templates 5 min read Build a REST API using Flask - Python 3 min read Building a Simple API with Django REST Framework 3 min read Python PracticePython Quiz 1 min read Python Coding Practice 1 min read Python Interview Questions and Answers 15+ min read Like