Recent content by lokal704

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    Solving dx/dt = 6/x with initial condition x(0) = 7

    \intx/6 = 6*ln(x) 0=6ln(7) 0=11.6755 x(t)=6ln(t)+11.6755 I have no idea where I am going wrong
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    Solving dx/dt = 6/x with initial condition x(0) = 7

    Solve the separable differential equation dx/dy = 6/x , and find the particular solution satisfying the initial condition x(0) = 7.
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    Solving dx/dt = 6/x with initial condition x(0) = 7

    Homework Statement Solve the separable differential equation \frac{dx}{dt} = \frac{6}{x} , and find the particular solution satisfying the initial condition x(0) = 7. x(t) = . Homework Equations \[ \frac{dy}{dt} = ky \] The Attempt at a Solution lnx=6 x=e^6
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    What is the average pressure exerted on the other pedestal.

    it would be 52 right? Because collectively they are supporting 102. So it should look like this right? Please correct me if I am wrong. p=52/13 p=4kg
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    What is the average pressure exerted on the other pedestal.

    SO would it be the remaining 52 kg? Or 102 kg?
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    What is the average pressure exerted on the other pedestal.

    Oh, sorry. This is the second time I have used this forum, and I am still new. Here is what I have so far: p=F/A First answer: 2=F/25 2*25=F F=50 so would it be p=50/13 p=3.85 kg?
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    What is the average pressure exerted on the other pedestal.

    Homework Statement An artist has designed a sculpture made from granite. The sculpture is essentially a small rectangular block whose weight is 102 kg. This centerpiece will be balanced on two granite pedestals, one at each end of the centerpiece. The pedestals are different sizes, such that...
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    Calculating Deceleration on an Uphill Road

    I'm still confused, and have no idea what I'm doing.
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    Calculating Deceleration on an Uphill Road

    This is the first time I have encountered a problem like this, and have no idea how to set it up, let alone solve it. Any help would be great. Homework Statement A car can decelerate at -5.00 m/s2 without skidding when coming to rest on a level road. What would be the magnitude of its...