2.) CONFIRMATION EMAIL: After establishing your initial claim online or over the phone, claimants receive a confirmation number in an email that your claim has been established. The email contains information about the next steps.

Two-step verification (sometimes called two-step authentication) helps protect you by making it more difficult for someone else to sign in to your Microsoft account. It uses two different forms of identity: your password, and a contact method (also known as security info). Even if someone else finds your password, they'll be stopped if they don't have access to your security info. This is also why it's important to use different passwords for all your accounts.


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Two-step verification begins with an email address (we recommend two different email addresses, the one you normally use, and one as a backup just in case), a phone number, or an authenticator app. When you sign in on a new device or from a new location, we'll send you a security code to enter on the sign-in page. For more info about the authenticator app, see How to use the Microsoft Authenticator app.

If you forget your password when you have two-step verification turned on for your account, you can reset your password as long as we have two ways to contact you, like one of the alternate contact email addresses or phone numbers that you used when you turned on two-step verification.

If you're looking for info about changing, removing, or updating the alternate email address or phone number where you get security codes, follow the steps in either Security info & verification codes or Replace your Microsoft account security info.

App passwords are only available if you use two-step verification. If you don't have two-step verification turned on, you won't see the App passwords section on the Additional security options page.

The Patent and Trademark Resource Center Program also provides a CBT (computer-based training) tutorial with a detailed review of the step-by-step strategy. The current CBT covers searching using Cooperative Patent Classification (CPC).

The step attribute is a number that specifies the granularity that the value must adhere to or the keyword any. It is valid for the numeric input types, including the date, month, week, time, datetime-local, number and range types.

The default stepping value for number inputs is 1, allowing only integers to be entered, unless the stepping base is not an integer. The default stepping value for time is 1 second, with 900 being equal to 15 minutes.

If any is not explicitly set, valid values for the number, date/time input types, and range input types are equal to the basis for stepping - the min value and increments of the step value, up to the max value, if specified. For example, if we have any even integer, 10 or greater, is valid. If omitted, , any integer is valid, but floats, like 4.2, are not valid, as step defaults to 1. For 4.2 to be valid, step would have had to be set to any, 0.1, 0.2, or any the min value would have had to be a number ending in .2, such as

Note: When the data entered by the user doesn't adhere to the stepping configuration, the value is considered invalid in constraint validation and will match the :invalid and :out-of-range pseudoclasses

What to expect: If USCIS approved your Form N-400 in step 7, you may be able to participate in a naturalization ceremony on the same day as your interview. If a same day naturalization ceremony is unavailable, USCIS will mail you a notification with the date, time, and location of your scheduled ceremony. If you filed your N-400 online, you can also access the electronic notice in your application.

ISO 10303-21 defines the encoding mechanism for representing data conforming to a particular schema in the EXPRESS data modeling language specified in ISO 10303-11. A STEP-File is also called p21-File and STEP Physical File. The file extensions .stp and .step indicate that the file contains data conforming to STEP application protocols while the extension .p21 should be used for all other purposes.[3]

In the wake of the Supreme Court's decision in Argus Leader, the term "confidential" under Exemption 4 must be given its "ordinary" meaning. This step-by-step guide can be used by agencies, in conjunction with OIP's guidance, to determine whether commercial or financial information provided by a person is "confidential" under Exemption 4.

Importance:  A goal of 10 000 steps/d is commonly believed by the public to be necessary for health, but this number has limited scientific basis. Additionally, it is unknown whether greater stepping intensity is associated with health benefits, independent of steps taken per day.

Conclusions and relevance:  Among older women, as few as approximately 4400 steps/d was significantly related to lower mortality rates compared with approximately 2700 steps/d. With more steps per day, mortality rates progressively decreased before leveling at approximately 7500 steps/d. Stepping intensity was not clearly related to lower mortality rates after accounting for total steps per day.

New tests may be developed as alternatives to one or both steps of the two-step process. Before CDC will recommend new tests, they must be cleared by the Food and Drug Administration (FDA). For more details, see: Recommendations for Test Performance and Interpretation from the Second National Conference on Serologic Diagnosis of Lyme Disease.

By default, the function applies step for t0 = 0, U = 0, dU = 1, and td = 0. But, you can configure these values using RespConfig. You can also specify the initial state x(t0). When you don't, step assumes the system is initially at rest with input level U.

[y,tOut] = step(sys) computes the step response y of the dynamic system sys. The time vector tOut is in the time units of sys. step automatically determines the time steps and duration of the simulation based on the system dynamics.

[y,tOut] = step(sys,___,config) specifies additional options for computing the step response, such as the step amplitude (dU) or input offset (U). Use RespConfig to create the option set config. You can use config with any of the previous input-argument and output-argument combinations.

For this example, create a tf model that represents the transfer function. You can similarly plot the step response of other dynamic system model types, such as zero-pole gain (zpk) or state-space (ss) models.

The step plot automatically includes a dotted horizontal line indicating the steady-state response. In a MATLAB figure window, you can right-click on the plot to view other step-response characteristics such as peak response and settling time. For more information about these characteristics, see stepinfo (Control System Toolbox).

By default, step chooses an end time that shows the steady state that the response is trending toward. This system has fast transients, however, which are obscured on this time scale. To get a closer look at the transient response, limit the step plot to t = 15 s.

Alternatively, you can specify the exact times at which you want to examine the step response, provided they are separated by a constant interval. For instance, examine the response from the end of the transient until the system reaches steady state.

The left plot shows the step response of the first input channel, and the right plot shows the step response of the second input channel. Whenever you use step to plot the responses of a MIMO model, it generates an array of plots representing all the I/O channels of the model. For instance, create a random state-space model with five states, three inputs, and two outputs, and plot its step response.

The first LineSpec 'r--' specifies a dashed red line for the response with the PI controller. The second LineSpec 'b' specifies a solid blue line for the response with the PID controller. The legend reflects the specified colors and linestyles. For more plot customization options, use stepplot.

step uses the same linestyle for the responses of all entries in the array. One way to distinguish among entries is to use the SamplingGrid property of dynamic system models to associate each entry in the array with the corresponding w0 value.

The system step response displayed is chaotic. The step response of systems with internal delays may exhibit odd behavior, such as recurring jumps. Such behavior is a feature of the system and not software anomalies.

A time-series model, also called a signal model, is one without measured input signals. The step plot of this model uses its (unmeasured) noise channel as the input channel to which the step signal is applied.

For continuous-time systems, the function determines the step size and number of points automatically from system dynamics. Express tFinal in the system time units, specified in the TimeUnit property of sys. 006ab0faaa

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