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Your step-by-step guide — integrate complex company
Using airSlate SignNow’s eSignature any business can speed up signature workflows and eSign in real-time, delivering a better experience to customers and employees. integrate complex company in a few simple steps. Our mobile-first apps make working on the go possible, even while offline! Sign documents from anywhere in the world and close deals faster.
Follow the step-by-step guide to integrate complex company:
- Log in to your airSlate SignNow account.
- Locate your document in your folders or upload a new one.
- Open the document and make edits using the Tools menu.
- Drag & drop fillable fields, add text and sign it.
- Add multiple signers using their emails and set the signing order.
- Specify which recipients will get an executed copy.
- Use Advanced Options to limit access to the record and set an expiration date.
- Click Save and Close when completed.
In addition, there are more advanced features available to integrate complex company. Add users to your shared workspace, view teams, and track collaboration. Millions of users across the US and Europe agree that a solution that brings everything together in a single holistic enviroment, is what enterprises need to keep workflows working efficiently. The airSlate SignNow REST API allows you to integrate eSignatures into your application, website, CRM or cloud. Try out airSlate SignNow and enjoy faster, easier and overall more effective eSignature workflows!
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Integrate complex required
here we're going to explore some of the strangeness that is complex integration what do we even mean by a complex integral like is the integral from alpha to beta of f of z dz well-defined where alpha and beta are complex numbers and i really ask if it's well defined because if you're thinking about the complex plane and two numbers alpha and beta in the complex plane then there are infinitely many paths that you can take from alpha to beta so those are two such paths we could have another path kind of like squiggling in the middle like that if this type of thing is well defined where all we're doing is talking about the starting point and the ending point then that must say something about taking the integral about a different path okay so how are we going to do this exploration well we're going to set up two paths that go from zero to the point one plus i that's a complex number and then we'll integrate two functions over those paths so what will the paths in question be well maybe the most obvious one first which is the line segment starting at 0 and ending at 1 plus i so notice that we can parametrize that by this thing i'm calling gamma 1 which is 1 plus i times t so at t equals 0 we're at the origin and at t equals one we're at the point one plus i then for our second path we'll actually take a kind of two piece path given by gamma two and gamma three so gamma two of t is just t so as t goes between 0 and 1 that takes us from the origin to this point which is 1 unit along the positive real axis and then gamma 3 is 1 plus i t so as t goes between 0 and 1 that takes us from this point 1 to this point up here 1 plus i so in the end the combination of gamma 2 and gamma 3 represent a different path from the origin to the point 1 plus i and if you want to see this more in depth along with some general proofs i've got a whole course on my second channel of complex analysis and so that channel is called math major okay so let's first do the integral over each path of the function z dz okay so let's see our first path is gamma 1 and so that means z will be equal to gamma 1 and our parameter like i said goes between 0 and 1 so that gives me the integral from 0 to 1 of gamma 1 of t so that's going to be 1 plus i times t times dz but dz will just be gamma 1 prime dt so the derivative of this with respect to t is just 1 plus i and then we have a dt...
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