In the figure a potential difference of V=89.1 V is applied across a capacitor arrangement with capacitances C₁ = 10.1 µF, C₂ = 5.40 µF, and C3 = 4.23 µF. If capacitor 3 undergoes electrical breakdown so that it becomes equivalent to conducting wire, what is the increase in (a) the charge on capacitor 1 and (b) the potential difference across capacitor 1? G₁ C₂
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- online textbook practice question that does not have linked explanationConsider the System Diagram and Free Body Diagram shown below. If you were to add up the force of tension and the force of gravity, what would you get? Question options: The normal force - - The force of kinetic friction -0 - The centripetal force - The force of static friction - The centrifugal force Consider the System Diagram and Free Body Diagram shown below. System Diagram Free Body Diagram the system the environment FT tension Non-contact forces Gravity**ALL NECESSARY INFORMATION IS GIVEN, A spool rests on a horizontal, frictionless surface and you are looking at it from the top view (appears as a circle).In the following questions, the spool is pulled by tension forces that are applied at various locations, directions, and radii.To solve each problem, draw the spool as a circle on a piece of paper and then draw the given tension vectors.REMEMBER that the direction UPWARD points to the TOP of the page and DOWNWARD points to the BOTTOM of the page.The resulting TORQUE will be either OUT OF the page (CCW motion, POSITIVE torque) or INTO the page (CW motion, NEGATIVE torque).A rope of tension 2T applies a force at radius 3R on the spool. It is located at 12 o'clock and pulls to the left.What is the resulting torque in terms of rT? Remember to check whether the torque is positive (results in CCW motion) or negative (results in CW motion). A rope of tension 1T applies a force at radius 4R on the spool. It is located at 12 o'clock and…
- V=0 Force Cart I Lab Set Up #1 Sensor Mass - M Xo v=0 Lab Set Up #2 Force Cart 2 Sensor Mass -3.SM In a physics lab student have two different setups. Each setup has a frictionless cart connect to an identical massless spring. For each trial the springs are compressed against a force sensor mounted to the track. Each spring is compressed from the equilibrium position x, to the compresses position x. When the released cart returns to position x, the spring is no longer in contact with the force sensor. The force sensor is set to record force and time information.A person pushes a box along the ground. The box has the force diagram shown below. Examine the force diagram to answer the following questions: a. Is the box in equilibrium? If so explain how you can tell. If not, explain why not. b. If the person wants the box to move at constant velocity, should they adjust their pushing on the block? If so, explain how they should change their push. If not, explain why they should change nothing about their pushplease show work for question number 12
- Which of the following graphs represents the speed of the car as a function of the release height? Which of the following graphs represents the skid distance of the car as a function of the speed at the bottom of the hill? Which of the following graphs represents the skid distance of the car as a function of the release height?Final position kv A small block of mass m slides to the left on a frictionless, horizontal surface with speed v. Then, the block slides up a m rough ramp that has an incline angle of 0. The coefficient of The Rough surface H. kinetic friction between the ramp and box is Initial position acceleration due to gravity is g. Frictionless surface What is the height h of the block when its speed up the ramp equals kv, where 0 < k < 1? h = help contact us terms of use privacy policy careers about us