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115.
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Repeated error test failures (check all inputs).
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represents a line break.
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(no translation yet)
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116.
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Repeated convergence failures (perhaps bad jacobian supplied or wrong choice of jacobian type or tolerances).
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represents a line break.
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(no translation yet)
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117.
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Error weight became zero during problem. (solution component i vanished, and atol or atol(i) = 0.)
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represents a line break.
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(no translation yet)
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118.
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The user-supplied subroutine res set its error flag (ires = 3) despite repeated tries by lsodi to avoid that condition.
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represents a line break.
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(no translation yet)
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119.
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istate was 0 on input but lsodi was unable to compute the initial value of dy/dt.
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represents a line break.
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(no translation yet)
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120.
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Integration was not completed because relative error tolerance was too small. rerr has been increased appropriately for continuing.
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represents a line break.
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(no translation yet)
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121.
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Integration was not completed because more than 3000 derivative evaluations were needed. This is approximately 500 steps.
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represents a line break.
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(no translation yet)
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122.
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Integration was not completed because solution vanished making a pure relative error test impossible. Must use non-zero aerr to continue. Using the one-step integration mode for one step is a good way to proceed.
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represents a line break.
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(no translation yet)
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123.
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Integration was not completed because requested accuracy could not be achieved using smallest allowable stepsize. User must increase the error tolerance before continued integration can be attempted.
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represents a line break.
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(no translation yet)
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124.
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It is likely that rkf45 is inefficient for solving this problem. Too much output is restricting the natural stepsize choice. Use the one-step integrator mode.
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represents a line break.
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(no translation yet)
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