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MTTC Physics (019) Practice Tests & Test Prep by Exam Edge


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Are you ready for advancement? The MTTC Physics exam, administered by one of the most respected qualifying organizations in the field, is a pivotal opportunity to demonstrate your knowledge and skills. Set yourself up for exam success with practice tests from Exam Edge.

Our MTTC Physics practice tests are designed to help you master both the subject matter and the art of test-taking. Created to mimic the length, difficulty, and feel of the real exam, our tests feature:

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Pass Your MTTC Physics Certification Exam with Exam Edge

Are you nervous about your upcoming MTTC Physics certification exam? Look no further, Exam Edge is here to help you achieve your goal! Our world-class online practice certification tests are designed to provide you with the knowledge and confidence you need to pass your MTTC Physics exam on your first try!

Key Facts on Exam Edge's online practice tests for your MTTC Physics Exam.

  • 15 Online Practice Exams: With Exam Edge, you'll have access to 15 practice tests available, each with 100 questions, to help you thoroughly prepare for your MTTC Physics (019) exam.
  • Instant Access: Get started right away with instant access to your online practice exams. No waiting or software installation required!
  • Detailed Explanations: Each question is accompanied by a detailed explanation, so you'll fully understand the reasoning behind the correct answer and improve your knowledge.
  • Take Each Exam 4 Times: You can take each of our practice exams up to 4 times, giving you plenty of opportunities to review and master the material.
  • Web-Based: Our practice tests are available 24/7 at your convenience, and because they are web-based, there is no software to install.
  • Psychological advantage: Exam Edge practice tests will allow you to walk into your test day with confidence.

Exam Edge practice tests are a valuable tool for helping you prepare for the Michigan Test for Teacher Certs (019) certification exam. The practice tests provide a realistic simulation of the actual exam, allowing you to become familiar with the format, style, and types of questions you will encounter on the actual test. Certification exams don't just measure what you know -- they are also a test of how well you perform under pressure. The right type of test preparation helps you familiarize yourself not only with the material you're being tested on, but also the format of the test, so you feel less anxiety on test day.

MTTC Physics - General Exam Info Sample Questions

Object A started to move with constant acceleration of 5 ms-2 and object B with a constant speed of 10 ms-1. If A was 5 m ahead of B when they started to move, at what time will they be in the same position?

WE





Correct Answer:
after 3.4 seconds and 0.59 seconds
to find the time at which object a and object b will be in the same position, we need to first set up equations for the positions of both objects as functions of time.

let's denote the position of object a as \( x_a(t) \) and the position of object b as \( x_b(t) \), where \( t \) is the time in seconds after they start moving.

object a starts with a constant acceleration \( a = 5 \, \text{m/s}^2 \) from an initial position \( x_a(0) = 5 \, \text{m} \) (since it is 5 meters ahead). the initial velocity of object a is not given, so we assume it starts from rest, i.e., \( v_{a0} = 0 \, \text{m/s} \). using the kinematic equation for position under constant acceleration, the position of object a as a function of time is: \[ x_a(t) = x_a(0) + v_{a0}t + \frac{1}{2}at^2 \] \[ x_a(t) = 5 + 0 \cdot t + \frac{1}{2} \cdot 5 \cdot t^2 \] \[ x_a(t) = 5 + 2.5t^2 \]

object b moves with a constant speed \( v_b = 10 \, \text{m/s} \) from the same starting point as a, which is \( x_b(0) = 0 \). since there is no acceleration, the position of object b as a function of time is simply: \[ x_b(t) = x_b(0) + v_b \cdot t \] \[ x_b(t) = 10t \]

to find when they are at the same position, we set \( x_a(t) \) equal to \( x_b(t) \): \[ 5 + 2.5t^2 = 10t \] rearranging the terms, we get a quadratic equation: \[ 2.5t^2 - 10t + 5 = 0 \]

dividing the entire equation by 2.5 simplifies it to: \[ t^2 - 4t + 2 = 0 \] now, using the quadratic formula \( t = \frac{-b \pm \sqrt{b^2 - 4ac}}{2a} \), where \( a = 1 \), \( b = -4 \), and \( c = 2 \), we find: \[ t = \frac{-(-4) \pm \sqrt{(-4)^2 - 4 \cdot 1 \cdot 2}}{2 \cdot 1} \] \[ t = \frac{4 \pm \sqrt{16 - 8}}{2} \] \[ t = \frac{4 \pm \sqrt{8}}{2} \] \[ t = \frac{4 \pm 2\sqrt{2}}{2} \] \[ t = 2 \pm \sqrt{2} \]

simplifying further, the solutions are: \[ t_1 = 2 + \sqrt{2} \approx 3.41 \, \text{s} \] \[ t_2 = 2 - \sqrt{2} \approx 0.59 \, \text{s} \]

therefore, objects a and b will be in the same position at approximately 0.59 seconds and 3.41 seconds after they start moving.

The primary coil of a transformer has 400 turns, while the secondary coil has 2000 turns. If the power output from the secondary coil at 1000V is 12 kW, what is the primary voltage?





Correct Answer:
200v


to solve this problem, we need to determine the voltage in the primary coil of the transformer, given the number of turns in both the primary and secondary coils, the voltage in the secondary coil, and the power output from the secondary coil.

first, let us denote the number of turns in the primary coil as \(n_p\) and in the secondary coil as \(n_s\). according to the problem statement, \(n_p = 400\) and \(n_s = 2000\). the voltage in the secondary coil is given as \(e_s = 1000\) v.

transformers work on the principle of electromagnetic induction and the transformer equations, which relate the primary and secondary voltages and the number of turns in the coils by the equation: \[ \frac{e_p}{e_s} = \frac{n_p}{n_s} \] where \(e_p\) is the primary voltage which we need to find.

plugging in the known values into the transformer equation: \[ \frac{e_p}{1000} = \frac{400}{2000} \] this simplifies to: \[ \frac{e_p}{1000} = 0.2 \] from which \(e_p = 1000 \times 0.2 = 200\) v.

therefore, the primary voltage \(e_p\) required to achieve a secondary voltage of 1000 v and a power output of 12 kw, with the given turns ratio, is 200 v. this shows that the transformer reduces the voltage by a factor determined by the ratio of turns in the primary coil to the secondary coil.


MTTC Physics (019) Exam Prep

Our comprehensive MTTC Physics practice tests are designed to mimic the actual exam. You will gain an understanding of the types of questions and information you will encounter when you take your Michigan Test for Teacher Certs Certification Exam. Our MTTC Physics Practice Tests allow you to review your answers and identify areas of improvement so you will be fully prepared for the upcoming exam and walk out of the test feeling confident in your results.

How to Prepare for the MTTC Physics Exam

So, you've decided to pursue your MTTC Physics certification. Not sure what comes next? Follow these steps to register for the exam, craft an effective study plan, and go into test day feeling confident.

Step 1: Check Eligibility and Apply for MTTC Physics

Start by researching the testing agency or credentialing organization and the different exams they offer for your field. Before you register for your exam, make sure that the MTTC Physics exam is the right match for your education, experience, and career goals.

Then, check whether you meet the requirements for taking the MTTC Physics exam. You can find eligibility information on the Michigan Test for Teacher Certs website: Michigan Test for Teacher Certs (MTTC). Once you have determined that you meet the qualifications or have completed the appropriate prerequisites, you can register with the organization and apply to take the MTTC Physics exam.

Step 2: Schedule the MTTC Physics

Once you have registered, you are ready to schedule your exam! The MTTC Physics exam is offered at various times throughout the year and at various locations across the United States. You can use the Michigan Test for Teacher Certs website to find a testing center near you and choose a date and time that suits your availability.

When you schedule your MTTC Physics exam, consider how much time you want to study and prepare. Choose a test date that gives you plenty of time to create a study plan, thoroughly review the material, and take several practice tests so that you can go into test day feeling confident and ready. Be sure to schedule your exam well in advance to secure your preferred date and time.

Step 3: Study and Practice for the MTTC Physics

After you schedule your test day, dive into your MTTC Physics study plan! Before you crack open a book or start reviewing exam flashcards, take a timed practice test to get a raw baseline of your readiness. As you continue your exam prep, take regular practice tests to track your progress.

Exam Edge practice tests for the MTTC Physics exam offer test-takers key benefits, like helping you identify areas where you need further study and practice. These insights into your test performance will empower you to focus your test prep efforts and prioritize the content areas or skills. This can help you use your study time more effectively and make the most of your efforts before you take the actual exam

Practice tests can also help you to develop your test-taking skills. When you take frequent practice exams, you become more familiar with the format of the MTTC Physics exam and learn how to pace yourself throughout it. You will also learn how to approach different types of questions and how to eliminate incorrect answers.

Ultimately, Exam Edge practice tests can help you build your confidence and reduce test-taking anxiety as you become a more comfortable and strategic test-taker. Incorporate MTTC Physics practice exams into your study plan to set yourself up for success on test day

Check out our resources to learn more about MTTC Physics test prep and practice tests.

Step 4: Take the MTTC Physics

On the day of the exam, arrive at the test center early to allow plenty of time to check in and get settled at your testing station. You will need to bring at least one valid, government-issued ID with you. Check on the Michigan Test for Teacher Certs (MTTC) website for other requirements, like:

  • Additional forms of identification
  • Required materials or supplies
  • Other recommended or permitted items, such as water or snacks
  • Prohibited items
The website will also include important information about procedures for check-in, security, and breaks, if applicable.

Once you are settled in your seat or at your testing station, take a moment to center yourself and visualize how to ace the MTTC Physics exam. Your diligent studying and use of practice tests have prepared you to tackle the exam with confidence. Trust yourself and your exam prep, pace yourself as you have practiced, and have fun showing off what you know!

MTTC Physics Exam Prep

Practice tests are a valuable tool for helping you prepare for the MTTC Physics exam. At Exam Edge, we focus on making our clients' career dreams come true by offering world-class practice tests designed to cover the same topics and content areas tested on the actual MTTC Physics. Our practice tests provide a realistic simulation of the actual exam, allowing you to become familiar with the format, style, and types of questions you will encounter on the actual test.

Location Information and Website

For more information on scheduling the Michigan Test for Teacher Certs exam, visit our Michigan Test for Teacher Certs (MTTC) information page.


MTTC Physics Aliases Test Name

Here is a list of alternative names used for this exam.

  • MTTC Physics
  • MTTC Physics test
  • MTTC Physics Certification Test
  • MTTC
  • MTTC 019
  • 019 test
  • MTTC Physics (019)
  • Physics certification