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1. Start by placing the charges to 4cm and 6cm. Set their charges to zero. 2. Create a setup where in you can have a
1. Start by placing the charges to 4cm and 6cm. Set their charges to zero. 2. Create a setup where in you can have a resultant electric force that falls within the range of the following: a. zero Newton b. between 100-200N c. between 200-300N d. between 500-600N e. between 900-1000N 3. Screenshot each scenario. Place it on MS Word. 4. Verify your simulation by solving for the electric force. using the values you have set (the charges and distance). A. zero Newton Force on q2 by q, = 0.000 N Force on q, by q2 = 0.000 N 0 cm 1 6 7 9 10 Charge 1 Charge 2 Force Values OUC OpC Scientific Notation 1 cm Coulomb's Law Macro Scale PhET :B. between 100-200N Force on q2 by q1 = 149.793 N Force on q, by q2 = 149.793 N 0 cm 3 9 10 Charge 1 Charge 2 Force Values -3 pC 5 HC Scientific Notation -10 1 cam Coulomb's Law PHET: Macro ScaleC. between 200-300N Force on q2 by q, = 279.613 N Force on q, by q2 = 279.613 N 6 10 Charge 1 Charge 2 Force Values 4 uC 7 UC Scientific Notation -10 1 cm Coulomb's Law PhET : Macro ScaleD. between 500-600N Force on q2 by q, = 559.225 N Force on q1 by q2 = 559.225 N 10 Charge 1 Charge 2 Force Values -7 HC C 8 UC ) Scientific Notation -10 -10 10 1 cm Coulomb's Law Macro Scale PhET :E. between 900-1000N Force on q2 by q, = 998.617 N Force on q, by q2 = 998.617 N Orcm 10 Charge 1 Charge 2 Force Values -10 PC 10 pC Scientific Notation -10 10 -10 1 crn Coulomb's Law PhET
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