Question 4 (1 point) If I apply an acceleration for (2.440x10^0) seconds of (5.68x10^0) m/s2 when I hav an initial veloc
Posted: Wed May 18, 2022 8:53 am
Question 4 (1 point) If I apply an acceleration for (2.440x10^0) seconds of (5.68x10^0) m/s2 when I hav an initial velocity of +(3.5200x10^0) m/s, what final velocity do I have? Give your answer to 3 sf. Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: X10 Answer Question 5 (1 point) If I accelerate at (3.5x10^0) m/s2 in my car for (5.500x10^0) seconds from being at rest, how far have I travelled in metres in that time? Note: Your answer is assumed to be reduced to the highest power possible, Your Answer:
Question 6 (1 point) Calculate the value of the y-component of the displacement vector r, which has magnitude (6.40x10^0) cm, and has an angle (2.6200x10^0) degrees, as shown in the diagram. Give your answer in cm and use 3 significant figures in your answer. +y +x a Note: Your answer is assumed to be reduced to the highest power possible! Your Ancwar
Question 7 (1 point) Calculate the x component of the displacement vector r. which has magnitude (5.680x10^0) metres and is at angle (6.2x10^0) degrees with respect to the positive x-axis. Use 2 significant figures in your answer. +y +X B Note: Your answer is assumed to be reduced to the highest power possible Your Answer:
Question 6 (1 point) Calculate the value of the y-component of the displacement vector r, which has magnitude (6.40x10^0) cm, and has an angle (2.6200x10^0) degrees, as shown in the diagram. Give your answer in cm and use 3 significant figures in your answer. +y +x a Note: Your answer is assumed to be reduced to the highest power possible! Your Ancwar
Question 7 (1 point) Calculate the x component of the displacement vector r. which has magnitude (5.680x10^0) metres and is at angle (6.2x10^0) degrees with respect to the positive x-axis. Use 2 significant figures in your answer. +y +X B Note: Your answer is assumed to be reduced to the highest power possible Your Answer: