Review Sheet. 1. A spring whose spring constant is 850 N/m is compressed 0.40 m. What is the maximum speed it can give to a 500 g ball? 2. A 5.0 kg flowerpot falls from a window ledge 15.0m above the sidewalk. a. What is its potential energy at the top? b. What is the kinetic energy of the flowerpot as it reaches the sidewalk? c.
HoffSpangmanberg ETM Review Name Date 16-17 Pd Energy Storage and Transfer Model: Review Sheet 1. A baseball (m = 140 g) traveling at 38 m/s moves a fielder''s glove backward 35 cm when the ball is caught. a. Construct an energy k
1. How much kinetic energy does a 2000 kg SUV traveling 70 mph have? 2. How much energy does a 180 Calorie, half-pint carton of chocolate milk (One food Calorie = 4186 Joules) stored. 3. Consider your 3 kg physics binder resting on the table in the. meters) classroom.
1. How much kinetic energy does a 2000 kg SUV traveling 70 mph have? (1 mile = 1600 meters) 2. How much energy does a 180 Calorie, half-pint carton of chocolate milk store? (One food Calorie = 4186 Joules) 3. Consider your 3 kg physics binder resting on the table in the classroom.
Qualitative Analysis - Pie Charts. Use pie charts to analyze the energy changes in each situation given. • Designate your choice of system with a dotted line. Choose your system so that the energies involved are internal (within the system).
Energy always has a home; it is either stored in an object - which we label kinetic energy when the object is moving or elastic energy when it undergoes a restorable deformation. We can also store energy in a field (gravitational potential energy, electric potential
Energy Storage and Transfer Model Worksheet 2: Name Hooke''s Law and Elastic Energy Date Pd Suppose one lab group found that F = 1000 N/m (∆x). Construct a graphical representation of force vs. displacement. (Hint: make the
Energy Storage and Transfer Model: 1. Three balls are rolled down three tracks starting from rest at the point marked "start.". a. Describe the acceleration of the ball traveling on track A. b. Describe the acceleration of the ball traveling on track B. d. Describe the velocity of the ball traveling on track A.
Energy Storage and Transfer Model: Review Sheet. 1. Three balls are rolled down three tracks starting from rest at the point marked "start.". a. Describe the acceleration of the ball traveling on track A. The acceleration of the ball is low at first, and
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